Liquid control device

The electric field and magnetic field generated by the electrode are adjusted by the liquid control device, which solves the problem of the large-scale potential treatment device and the indirect treatment effect of existing potential treatment devices, and achieves a compact treatment device and a more direct treatment effect.

CN120112334APending Publication Date: 2025-06-06ETERNAL QUANTUM HLDG PTE LTD
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Patent Information

Application Number
CN202380059030.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2022-08-11
Filing Date
2023-08-14
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing potential therapy device will be larger and more complex when applying high voltage, and at the same time it will not be able to effectively exert the parasympathetic nerve-dominated relaxation effect, resulting in indirect treatment effect.

Method used

A liquid control device is designed, including at least one electrode and a controller, by adjusting the voltage, current, frequency or phase applied by the electrode, to control the generated electric field, magnetic field, electromagnetic field or electromagnetic wave to improve or prevent edema, cell edema, or nerve cell edema, and to control the balance of hormones, endocrine, lymph, or meridians.

Benefits of technology

It realizes the adjustment of electric field, magnetic field, electromagnetic field or electromagnetic wave through a compact device structure, and effectively treats or disposal, improves fluid metabolism, prevents edema and nerve cell edema, and balances the hormone and endocrine system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a liquid control device which can adjust an electric field, a magnetic field, an electromagnetic field or an electromagnetic wave generated by an electrode through a compact device structure, and can perform effective treatment or treatment. A liquid control device according to one embodiment of the present invention is provided with at least one electrode, and a controller that controls at least one of a voltage value, a current value, a frequency, or a phase of a voltage or current applied to the electrode. The voltage value, the current value, the frequency, or the phase of the voltage or current applied to the electrode is adjusted, and the electric field, the magnetic field, the electromagnetic field, or the electromagnetic wave generated by the electrode is controlled. At least one of a frequency and a voltage applied to the electrode, and an emission direction of an electric field, a magnetic field, an electromagnetic field, or an electromagnetic wave generated by the electrode is controlled so as to change over time, or a time at which the voltage is applied to the electrode is controlled.
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Description

Technical Field

[0001] The invention relates to a liquid control device. Background Art

[0002] Previously, regarding the treatment of headaches, stiff shoulders, etc. by applying electromagnetic fields to the human body, research has been conducted on the effects of exposure to electromagnetic fields on the human body.

[0003] For example, in Patent Document 1, electrodes are provided on the head side and the sole side of the chair where the patient sits, and AC high voltages of different frequencies are applied to the two electrodes, respectively, so that the difference in the frequency of the AC high voltage applied between the two electrodes is roughly the same as the low frequency (1 to 1.8 Hz) below the normal heartbeat cycle (60 to 90 times / minute) of the human body, thereby expecting a relaxation effect dominated by the parasympathetic nerve. In addition, as such a potential treatment device, for example, the Hakushou AC high voltage electric field health care device Healthtron HES-A30 is approved by the Ministry of Health, Labor and Welfare of Japan (approval number 21100BZZ00265000) and is sold on the market.

[0004] [Background Technology Literature]

[0005] [Patent Document]

[0006] [Patent Document 1] Japanese Patent No. 5235040 Summary of the invention

[0007] [Problems to be solved by the invention]

[0008] However, according to the potential therapy device described in Patent Document 1, in order to apply a high voltage of about 9000V to the electrode, it is necessary to use a transformer to boost the 100V (50 / 60Hz) commercial power supply to a high voltage, which will lead to a large device and, in order to ensure safety, there is a problem that the device becomes complicated. In addition, in Patent Document 1, since the relaxation effect dominated by the parasympathetic nerve is expected, the psychological effect expected of the subject is limited, and a more direct therapeutic effect cannot be exerted.

[0009] An object of the present invention is to provide a fluid control device that can adjust the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by electrodes through a compact device structure to perform effective treatment or disposal.

[0010] [Technical means to solve the problem]

[0011] The purpose of each embodiment of the present invention can be achieved by the following configuration. That is, the first embodiment of the present invention is characterized in that the liquid control device is provided with at least one electrode and a controller for controlling at least one of the voltage value, current value, frequency or phase of the voltage or current applied to the electrode, and the controller adjusts at least one of the voltage value, current value, frequency or phase of the voltage or current with a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged opposite to the object, controls at least one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, controls the state of the liquid in the object opposite to the electrode, and performs control to improve or prevent edema, cell edema, or nerve cell edema, controls the balance of hormones, endocrine, lymph, or meridians, or controls mitochondrial activity, autophagy activity, egg activity, or sperm activity.

[0012] The second aspect of the liquid control device of the present invention is characterized in that it has at least one electrode and a controller that controls at least one of the voltage value, current value, frequency or phase of the voltage or current applied to the electrode, wherein the controller adjusts at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state in which the electrode is arranged opposite to an object, controls at least any one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, controls the state of the liquid in the object opposite to the electrode, and performs control to improve or prevent blockage of body fluids, medicinal liquids, cosmetics, or liquids, performs control to improve or increase the fluidity of body fluids, medicinal liquids, cosmetics, or liquids, performs control to improve or prevent induration or hardening, performs control to improve or prevent dehydration of cells or tissues, and performs control to remove active oxygen or lactate. acid control, control to improve or prevent muscle imbalance, control to improve or enhance body balance, fascia balance, occlusion, osteopathy, chiropractic, control to improve or prevent fractures or joint diseases, control to improve or enhance heartbeat or pulse, control to improve or normalize blood pressure, control to improve or enhance respiratory function or lung function, control to improve or enhance dialysis function, control to improve or enhance vision, dynamic vision, control to improve or prevent ophthalmic diseases, control to improve or prevent internal medicine diseases, control to improve or enhance immune function, control to improve the permeability of drug delivery systems, or cosmetics, control to improve or enhance the efficacy or quality of drugs, cosmetics, or liquids, control to improve or enhance the extraction of body fluids, drugs, cosmetics, or liquids, or control the fluctuation of liquids, or ectoplasm.

[0013] The third aspect of the liquid control device of the present invention is characterized in that it comprises at least one electrode and a controller for controlling at least one of a voltage value, a current value, a frequency or a phase of a voltage or a current applied to the electrode, wherein the controller controls at least any one of an electric field, a magnetic field, an electromagnetic field or an electromagnetic wave generated by the electrode and controls the state of a liquid in the object facing the electrode by adjusting at least one of a voltage value, a current value, a frequency or a phase of a voltage or a current having a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged facing the object, thereby controlling the state of a liquid in the object facing the electrode, thereby preventing the proliferation of microorganisms, bacteria, fungi, or viruses, improving or preventing burns, necrosis, or bedsores, preventing metastasis, and improving or preventing Control of dementia, Alzheimer's disease, Parkinson's disease, sleep improvement, beauty improvement, PMS, menstrual pain, pain, itching, health promotion, motor function improvement, or anti-aging, control to improve or enhance the production of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, control to improve the preservation, freezing, thawing, cultivation, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids, or electrodes or containers for improving the preservation, freezing, thawing, cultivation, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids.

[0014] The fourth form of the liquid control device of the present invention is characterized in that, in any of the liquid control devices in the first to third forms, the voltage value of the voltage applied to the electrode is controlled within the range of 0V to 7000V, or the frequency of the AC component of the voltage is controlled within the range of 0Hz to 1MHz.

[0015] The liquid control device of the fifth aspect of the present invention is characterized in that, in any one of the liquid control devices of the first to third aspects, the voltage value and / or the frequency of the voltage varies smoothly or stepwise over time within a predetermined range.

[0016] The sixth form of the liquid control device of the present invention is characterized in that, in any of the liquid control devices in the first to third forms, any of the following controls is performed: controlling the chain arrangement, arrangement direction, water binding, or water activity of water in the substance; controlling the interface polarization, interface tension, or emulsification state between the water phase and other phases in the substance; or controlling the state of active oxygen in the substance.

[0017] The seventh form of the liquid control device of the present invention is characterized in that, in any of the liquid control devices in the first to third forms, after the electric field, magnetic field, electromagnetic field, or electromagnetic wave is generated by the electrode for a specified time, the control effect continues for a specified time even after the electric field, magnetic field, electromagnetic field, or electromagnetic wave is released.

[0018] The liquid control device according to an eighth aspect of the present invention is characterized in that, in any one of the liquid control devices according to the first to third aspects, the voltage applied to the electrode includes the AC component in addition to the DC component.

[0019] The 9th form of the liquid control device of the present invention is characterized in that in any of the liquid control devices in the 1st to 3rd forms, the electrode is in the shape of a plate, a rod, a sheet, a needle, a comb, or a shape formed by combining two or more electrodes.

[0020] A tenth aspect of the liquid control device of the present invention is characterized in that, in any one of the liquid control devices of the first to third aspects, the controller is managed via a cloud, a server, or a network.

[0021] The liquid control device according to an eleventh aspect of the present invention is the liquid control device according to any one of the first to third aspects, wherein the controller sets the control parameters by machine learning.

[0022] The twelfth aspect of the present invention is characterized in that, in any one of the first to third aspects of the liquid control device, control is performed in a manner having at least any one of the following effects: infarction, necrosis, bedsore, burn, active oxygen removal, lactic acid removal, blood flow improvement, lymph flow improvement, cerebral infarction, myocardial infarction, thrombosis, embolism, arteriosclerosis, improvement or prevention of blockage of body fluids, medical solutions, cosmetics, or liquids, improvement of fluidity of body fluids, medical solutions, cosmetics, or liquids, improvement or prevention of induration or hardening, improvement or prevention of dehydration of cells or tissues, cell edema, nerve cell edema, edema, pulmonary edema, joint edema, abdominal edema, insulin secretion disorders, excretion disorders, difficulty in excretion, constipation, urination disorders, stagnation, blisters, improvement in drug delivery, reduction in viscosity of drug solutions or body fluids, cell culture, regenerative medicine, shortening of culture time in regenerative medicine, improvement in culture quality, or improvement in culture efficiency, cell tissue regeneration, reduction in lactic acid, swelling, enlargement, edema, fluid retention, dehydration of extracellular fluid or intracellular fluid, skin diseases, pigmentation disorders, liver spots, freckles, epidermal wrinkles, dermal wrinkles, expression wrinkles, dry skin, improvement in physical condition, induration, muscle induration, fascia relaxation, improvement in fascia potential, neurodegenerative diseases, fascia electromagnetic therapy, muscle imbalance, improvement in fascia potential balance, improvement in body balance , fascia balance improvement, bite improvement, osteopathic improvement, chiropractic improvement, improvement or prevention of fractures or joint diseases, improvement of endocrine, lymphatic, or meridian balance, fractures, joint diseases, skin care, moisturizing, fertility improvement, infertility, sperm motility improvement, sperm activity, egg activity, mitochondrial activity, autophagy activity, PMS, pain, itching, abnormal sensation, cold-sensitive constitution, sexual indifference, cramps, anti-aging, hair follicle care, menopausal disorder improvement, cleanliness improvement, hair loss, AGA, ED, fat decomposition promotion, contact lens wearing feeling improvement, dry eyes, vision improvement, dynamic vision improvement, sleep disorder, sleep improvement, sleep apnea syndrome, prevention Medical improvement, improvement of nerve cells, improvement of cell edema, countermeasures against viruses, bacteria, or fungi, cancer, glaucoma, cataracts, age-related macular degeneration, ophthalmic diseases, hearing loss, hearing impairment, visual impairment, dementia, Alzheimer's disease, Parkinson's disease, water balance, digestive system medical diseases, respiratory system medical diseases, circulatory system medical diseases, neurological diseases, blood medical diseases, kidney medical diseases, endocrine medical diseases, internal medicine diseases, blood pressure improvement or normalization, improvement or increase of pulse or heartbeat, improvement or increase of respiratory function or lung function, improvement or increase of dialysis function, osteopathy, rigor mortis improvement, or rehabilitation medical improvement treatment.

[0023] The 13th aspect of the liquid control device of the present invention is characterized in that, in any of the liquid control devices in the 1st to 3rd aspects, control is performed in a manner having at least any one of the following effects: preservation, freezing, thawing, cultivation, or improvement of logistics of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids, preservation, freezing, thawing, cultivation, or improvement of logistics of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids, Improvements in electrodes or containers for freezing, thawing, culturing, or logistics, improvements or enhancements in the efficacy or quality of drugs, cosmetics, or liquids, improvements or enhancements in the extraction of body fluids, drugs, cosmetics, or liquids, improvements or enhancements in the production of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, improvements or enhancements in emulsification, improvements or enhancements in drug delivery, improvements or enhancements in the efficacy or performance of drugs, prevention or countermeasures for the proliferation of microorganisms, bacteria, fungi, or viruses, prevention of migration, reduction in the viscosity of drug solutions, or control of fluctuations in liquids, and control of exoplasm.

[0024] The liquid control device of the 14th form of the present invention is characterized in that, in any liquid control device of the 1st to 3rd forms, control is performed in a manner to improve the performance of at least one of the following machines: electromagnetic therapy device, potential therapy device, low-frequency therapy device, EMS, massage machine, beauty machine, vibration machine, cavitation machine, microbubble machine, nano-microbubble machine, nanobubble machine, microbubble machine, megahertz machine, high-frequency machine, quantum therapy device, hair growth machine, cellulite firming machine, muscle relaxation machine, ultrasonic therapy machine, ozone generating machine, hydrogen generating machine, LED machine, beauty machine, slimming machine.

[0025] The 15th form of the liquid control device of the present invention is characterized in that it has at least one electrode and a controller that controls at least one of the voltage value, current value, frequency or phase of the voltage or current applied to the electrode, and the controller adjusts at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state in which the electrode is configured opposite to an object portion, controls at least any one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, controls the frequency, voltage applied to the electrode, and at least one of the emission directions of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode so that they change over time according to the object portion opposite to the electrode, or controls the time when the voltage is applied to the electrode.

[0026] [Effects of the invention]

[0027] According to the liquid control device of the present invention, the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode can be adjusted by a compact device structure to perform effective treatment or treatment. Specifically, each form of the liquid control device achieves the following effects.

[0028] The first form of the liquid control device increases the interfacial polarization of the water in the object by controlling the state of the liquid in the object opposite to the electrode, reduces the interfacial tension, and makes the particles of the liquid micronized. In the liquid control device of this form, the size of the water droplet particles obtained by applying an electric field is 2.5 to 8 μm. The interval between the cells of the organism is less than 12 μm, so the water droplets with a particle size of less than 12 μm obtained in this embodiment have the property of easily penetrating between the cells of the organism. In this embodiment, the water particles micronized by applying an electric field penetrate into the cells of the organism of an animal or plant, thereby producing various effects. By improving the metabolism of the liquid, it is possible to improve or prevent edema, cell edema, or nerve cell edema. In addition, by improving the metabolism of the liquid, it is possible to control the balance of hormones, endocrine, lymph, or meridians. In addition, by improving the metabolism of the liquid, it is possible to control mitochondrial activity, autophagy activity, egg activity, or sperm activity.

[0029] The second form of the liquid control device of the present invention increases the interfacial polarization of the water in the object and reduces the interfacial tension by controlling the state of the liquid in the object facing the electrode, so that the particles of the liquid are micronized. In the liquid control device of this form, the size of the water droplet particles obtained by applying an electric field is 2.5 to 8 μm. The interval between the cells of the organism is less than 12 μm, so the water droplets with a particle size of less than 12 μm obtained in this embodiment have the property of easily penetrating between the cells of the organism. In this embodiment, the water particles micronized by applying an electric field penetrate into the cells of the organism of animals or plants, thereby producing various effects. By micronizing the liquid, it is possible to improve or prevent the blockage of body fluids, medicinal liquids, cosmetics, or liquids, and to improve or increase the fluidity of body fluids, medicinal liquids, cosmetics, or liquids. By properly maintaining the amount of water in cells or tissues, it is possible to improve or prevent the control of hardening or sclerosis. In addition, by spreading water throughout cells or tissues, it is possible to improve or prevent the dehydration of cells or tissues. By improving the flow of liquid, metabolism is improved, and control of removing active oxygen or lactic acid can be performed. For example, muscle dehydration can lead to muscle hardening, and by applying an electric field from the electrodes of the liquid control device of this form, the interfacial tension of the liquid can be controlled to reduce it, and the water can be micronized, thereby improving the metabolism of cells or tissues, so that control of improving or preventing muscle imbalance can be performed, and control of improving or improving body balance, fascia balance, occlusion, osteopathy, and chiropractic can be performed. The same is true for fractures or vascular diseases. Sufficient supply of blood or lymph to the affected part is essential for improving natural healing power. By improving the fluidity of the liquid, control of improving or preventing fractures or joint diseases can be performed. Along with the improvement of blood flow, control of improving or improving heartbeat or pulse can be performed, and control of improving or normalizing blood pressure can be performed. Improved blood flow and improved fluidity of the liquid also help to improve or improve respiratory function or lung function, and improve or improve dialysis function. Through improved metabolism of the liquid, control of improving or improving vision and dynamic vision can be performed, and control of improving or preventing ophthalmic diseases can be performed. By improving blood flow and water balance, it is possible to improve or prevent medical diseases. In addition, by improving liquid metabolism, it is possible to improve or enhance immune function. By improving liquid fluidity, it is possible to improve the permeability of drug delivery systems or cosmetics. By applying an electric field from an electrode using the liquid control device of this form, the emulsified state of the liquid is improved, that is, while the two liquids are micronized, the degree of mixing of the two liquids is increased, thereby achieving a state where, for example, oil is well dispersed in water, or water is well dispersed in oil. Thus, it is possible to improve or enhance the efficacy or quality of medicines, cosmetics, or liquids. In addition, it is possible to improve or enhance the extraction of body fluids, medicines, cosmetics, or liquids.The previous extraction time can be greatly shortened, and the extract will become a substance that will not deteriorate for a long time, and a large amount of extraction can be performed with the same raw material, so that the extraction efficiency can be improved. By applying an electric field from the electrode using the liquid control device of this form, the interfacial tension of the liquid can be reduced, so that the particles of the liquid are arranged in a beaded shape, and the quality of the water can be improved while improving the emulsification, such as improving the fluctuation of the liquid. The improvement of the quality of water can realize the control of all natural phenomena related to water, so for example, it can also control the ectoplasm.

[0030] The third form of the liquid control device of the present invention controls the state of the liquid in the object facing the electrode to control the interfacial tension of the liquid to reduce it, and can simultaneously micronize the particles of the liquid and control the particles of the micronized liquid to be arranged in beads. In the body, tissues, and cells, microorganisms, bacteria, fungi, and viruses combine with the free water in the body and use the moisture of the free water to proliferate. Therefore, by controlling the free water in the body, tissues, and cells to be combined in beads, the proliferation of microorganisms, bacteria, fungi, and viruses can be prevented and inhibited. Thus, control can be performed to prevent the proliferation of microorganisms, bacteria, fungi, or viruses. In addition, the liquid control device of this form can reduce the interfacial tension of the liquid, micronize the liquid particles, and arrange the micronized liquid particles in beads. By preventing the proliferation of microorganisms, bacteria, fungi, or viruses while improving the metabolism of the liquid, control can be performed to improve or prevent burns, necrosis, or bedsores. The so-called transfer refers to the movement of the lesion to other organs following the flow of blood or lymph, and then proliferating again there, and the improvement of liquid metabolism also helps to improve the immune function, so it is possible to prevent the transfer. The activation of the brain also requires the improvement of liquid metabolism, so the improvement of water balance and water metabolism in the brain is achieved through the liquid control device of this form, and then the control of dementia, Alzheimer's disease and Parkinson's disease can be improved or prevented. By improving water balance and water metabolism through the liquid control device of this form, sleep improvement, beauty improvement, PMS, physiological pain, pain, itching, health promotion, motor function improvement, or anti-aging control can be performed. By applying an electric field from the electrode using the liquid control device of this form, the interfacial tension of the liquid can be reduced, the particles of the liquid can be micronized, and the emulsified state of the liquid can be improved, that is, while the two liquids are micronized, the mixing degree of the two liquids is improved, so that, for example, oil is well dispersed in water, or water is well dispersed in oil. Regarding the generation of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, the liquid control device of this form reduces the interfacial tension of water and makes water particles finer, thereby improving water permeability, improving water retention characteristics, and improving emulsification. Therefore, in the case of artificially generating various tissues, it is also possible to improve or enhance the control such as quality improvement, shortening the generation time, simplifying the quality steps, and reducing costs. The liquid control device of this form controls the state of the liquid in the object facing the electrode to control the interfacial tension of the liquid to reduce it, and can micronize the particles of the liquid, and at the same time control the particles of the micronized liquid to arrange them in beads. In the body, in the tissue, and in the cell, microorganisms, bacteria, fungi, and viruses combine with the free water in the body and use the moisture of the free water to proliferate.Therefore, by controlling the free water in the body, tissue, and cell to make it beaded, it is possible to stop and inhibit the proliferation of microorganisms, bacteria, fungi, and viruses. In addition, by making the moisture in the tissue and cell be arranged in beads, it is possible to prevent the evaporation and dehydration of moisture, and therefore, it is possible to maintain the freshness of tissue or cell. Thus, it is possible to improve the preservation, freezing, thawing, cultivation, or logistics control of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, ovum, medicines, cosmetics, or liquids, and improve the preservation, freezing, thawing, cultivation, or logistics electrodes or containers of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, ovum, medicines, cosmetics, or liquids.

[0031] In the fourth form of the liquid control device of the present invention, the voltage value of the voltage applied to the electrode is in the range of 0V to 7000V, and the frequency of the AC component of the voltage is in the range of 0Hz to 1MHz. Within this range, the voltage value and frequency pre-set in the controller according to the position and state of the object are selected and controlled.

[0032] In the fifth aspect of the liquid control device of the present invention, the voltage value and / or the frequency are controlled in a manner that they vary smoothly or stepwise over time within a specified range. Thus, even if the optimal voltage value and frequency are not known in advance, the optimal voltage value and frequency can be supplied to the electrode.

[0033] In the liquid control device of the sixth form of the present invention, any of the following controls is performed: controlling the chain arrangement, arrangement direction, water binding, or water activity of water in the substance; controlling the interface polarization, interface tension, or emulsification state between the water phase and other phases in the substance; or controlling the state of active oxygen in the substance.

[0034] In the seventh form of the liquid control device of the present invention, after the electric field, magnetic field, electromagnetic field, or electromagnetic wave is generated by the electrode for a specified time, the control effect continues for a specified time even after the electric field, magnetic field, electromagnetic field, or electromagnetic wave is released.

[0035] In the liquid control device according to the eighth aspect of the present invention, the voltage applied to the electrode includes the AC component in addition to the DC component.

[0036] In the liquid control device according to the ninth aspect of the present invention, the electrode is in the shape of a plate, a rod, a sheet, a needle, a comb, or a shape in which two or more electrodes are combined.

[0037] The liquid control device according to the tenth aspect of the present invention is characterized in that the controller is managed via the cloud, a server, or a network.

[0038] In the liquid control device according to the eleventh aspect of the present invention, the controller sets the control parameters through machine learning.

[0039] The twelfth aspect of the present invention is a liquid control device that controls in a manner having at least any one of the following effects: infarction, necrosis, bedsore, burn, active oxygen removal, lactic acid removal, blood flow improvement, lymph flow improvement, cerebral infarction, myocardial infarction, thrombosis, embolism, arteriosclerosis, improvement or prevention of blockage of body fluids, liquid medicines, cosmetics, or liquids, improvement of the fluidity of body fluids, liquid medicines, cosmetics, or liquids, improvement or prevention of induration or hardening, improvement or prevention of dehydration of cells or tissues, cell edema, nerve cell edema, edema, pulmonary edema, joint edema, abdominal edema, insulin secretion disorder, excretion disorder, excretion difficulty, constipation, urination disorder obstruction, stagnation, blisters, improvement of drug delivery, reduction of viscosity of drug solution or body fluid, cell culture, regenerative medicine, shortening of culture time in regenerative medicine, improvement of culture quality, or improvement of culture efficiency, cell tissue regeneration, reduction of lactic acid, swelling, enlargement, edema, retention of body fluid, dehydration of extracellular fluid or intracellular fluid, skin diseases, pigmentation, liver spots, freckles, epidermal wrinkles, dermal wrinkles, expression wrinkles, dry skin, improvement of physical condition, induration, muscle induration, fascia relaxation, improvement of fascia potential, neurodegenerative disease, fascia electromagnetic treatment, muscle imbalance, improvement of fascia potential balance, improvement of body balance, improvement of fascia balance, improvement of occlusion, Osteopathy improvement, chiropractic improvement, improvement or prevention of fractures or joint diseases, improvement of endocrine, lymphatic, or meridian balance, fractures, joint diseases, skin care, moisturizing, fertility improvement, infertility, sperm motility improvement, sperm activity, egg activity, mitochondrial activity, autophagy activity, PMS, pain, itching, abnormal sensation, cold-sensitive constitution, sexual indifference, cramps, anti-aging, hair follicle care, menopausal disorder improvement, cleanliness improvement, alopecia, AGA, ED, fat decomposition promotion, contact lens wearing feeling improvement, dry eyes, vision improvement, dynamic vision improvement, sleep disorder, sleep improvement, sleep apnea syndrome, preventive medicine improvement, neuro Treatment for cell improvement, cell edema improvement, virus, bacteria, or fungus countermeasures, cancer, glaucoma, cataracts, age-related macular degeneration, ophthalmic diseases, hearing loss, hearing impairment, visual impairment, dementia, Alzheimer's disease, Parkinson's disease, water balance, digestive system medical diseases, respiratory system medical diseases, circulatory system medical diseases, neurological diseases, blood medical diseases, kidney medical diseases, endocrine medical diseases, internal medicine diseases, blood pressure improvement or normalization, pulse or heart rate improvement or increase, respiratory function or lung function improvement or increase, dialysis function improvement or increase, osteopathy, rigor mortis improvement, or rehabilitation medical improvement.

[0040] The 13th aspect of the present invention is a liquid control device that controls in a manner having at least one of the following effects: preservation, freezing, thawing, cultivation, or logistics improvement of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids; preservation, freezing, thawing, cultivation, or logistics improvement of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids; Improvement of electrodes or containers, improvement or enhancement of the efficacy or quality of drugs, cosmetics, or liquids, improvement or enhancement of the extraction of body fluids, drugs, cosmetics, or liquids, improvement or enhancement of the production of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, improvement or enhancement of emulsification, improvement or enhancement of drug delivery, improvement or enhancement of the efficacy or performance of drugs, prevention or countermeasures for the proliferation of microorganisms, bacteria, fungi, or viruses, prevention of transfer, reduction of the viscosity of drug solutions, or control of liquid fluctuations, control of exoplasm.

[0041] The liquid control device of the 14th form of the present invention is controlled in a manner to improve the performance of at least one of the following machines: electromagnetic therapy device, potential therapy device, low-frequency therapy device, EMS, massage machine, beauty machine, vibration machine, cavitation machine, microbubble machine, nano-microbubble machine, nanobubble machine, microbubble machine, megahertz machine, high-frequency machine, quantum therapy device, hair growth machine, cellulite firming machine, muscle relaxation machine, ultrasonic therapy machine, ozone generating machine, hydrogen generating machine, LED machine, beauty machine, slimming machine.

[0042] The 15th aspect of the present invention is a liquid control device having at least one electrode and a controller for controlling at least one of the voltage value, current value, frequency or phase of the voltage or current applied to the electrode, wherein the controller adjusts at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged opposite to an object portion, controls at least one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, controls at least one of the frequency, voltage applied to the electrode, and the emission direction of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode to change with time according to the object portion facing the electrode, or controls the time for applying the voltage to the electrode. By applying an electric field from the electrode using the liquid control device of this aspect, the interfacial polarization of the liquid is increased and the interfacial tension is reduced, thereby making the particles of the liquid micronized, controlling the particles of the micronized liquid to be arranged in beads, and further improving the emulsification of the micronized liquid, and further improving the quality of the liquid, for example, improving the wave energy of the liquid. The liquid control device of this form can use these functions and a compact device structure to adjust the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrodes to perform effective treatment or disposal. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] Figure 1 This is a conceptual diagram of the electrode according to the first embodiment.

[0044] Figure 2 This is a schematic diagram of a water molecule. Figure 2 A is a free-moving water molecule. Figure 2 B is the water molecules arranged in a chain.

[0045] Figure 3 This is a microscope photo of free water. Figure 3 A represents the state of free water before the electric field is applied, Figure 3 B represents the state of free water when an electric field is applied.

[0046] Figure 4 is the simulation result of the potential of water particles, Figure 4 A is an illustration of the simulation model. Figure 4 B is the result of potential simulation.

[0047] Figure 5 This is a graph showing the interfacial tension between edible oil and water when the frequency and voltage value (0 to 75 V) of the applied voltage are changed.

[0048] Figure 6 This is a graph showing the interfacial tension between edible oil and water when the frequency and voltage value (0 to 150 V) of the voltage applied to the electrodes are changed.

[0049] Figure 7 It's a picture of water droplets dripping in oil.

[0050] Figure 8 This is a photo of microparticles surrounding a water droplet in oil.

[0051] Fig. 9 This is a conceptual diagram of electrodes according to Modification 1 of Embodiment 1.

[0052] Fig.10 is a conceptual diagram of different electrodes of Variation 1 of Implementation Example 1, Fig.10 A is an example using 1 electrode. Fig.10 B is an example using one electrode and two electrodes facing the electrode.

[0053] Fig.11 This is a waveform diagram when voltages of different frequencies according to Modification 2 of Embodiment 1 are used.

[0054] Fig.12 This is a waveform diagram when voltages of different phases according to Modification 2 of Embodiment 1 are used.

[0055] Fig.13 This is a block diagram of a liquid control device according to a third variation of the first embodiment.

[0056] Fig.14 This is a graph for explaining sweeps of voltage values, current values, and frequencies in Modification 4 of Embodiment 1.

[0057] Fig.15 It is the result of improved blood flow after 30 minutes.

[0058] Fig.16 It is the result of improved blood flow during the 4 weeks.

[0059] Fig.17 It is the result of the resurrection of ghost blood vessels.

[0060] Fig.18 This is the result of improved blood flow in a mouse hind limb ischemia model.

[0061] Fig.19 It is the result of decreased viscosity of the contrast agent.

[0062] Fig. 20 It is the result of the antibacterial effect on anthrax bacteria.

[0063] Fig.21 It is the measurement result of the particle size of water droplets.

[0064] Fig. 22 It is the result of improvement in hydroponic cultivation of green leaf lettuce.

[0065] Fig.23It is the result of improvement of preservation of shiso.

[0066] Fig.24 It is the result of improvement of rheumatic edema rate.

[0067] Fig.25 It has the effect of improving blood flow in lower limb ischemia model mice.

[0068] Fig.26 It is the viscosity reducing effect of high viscosity agents.

[0069] Fig. 27 This is the effect of improving CPK in the blood of heart transplanted mice.

[0070] Fig.28 This is the verification result of the side effects caused by the electrical stimulation of radio wave vibration.

[0071] Fig.29 yes Fig.28 experimental conditions.

[0072] Fig.30 It is the result of improvement of fish's rigor mortis and blood coagulation.

[0073] Fig.31 It is a device for embalming corpses.

[0074] Fig.32 It is a blood coagulation inhibition device.

[0075] Fig.33 It is the anti-mildew effect of strawberries.

[0076] Fig.34 It is the inhibitory effect of the growth of anthrax bacteria.

[0077] Fig.35 The chewing balance is improved by relieving the tension of the chewing muscles.

[0078] Fig.36 This is the test result of Sacral No. 1 (effectiveness on bladder, ovary and prostate).

[0079] Fig.37 This is the measurement result of thoracic vertebra No. 12 (performance on kidneys).

[0080] Fig.38 It is the measurement result of thoracic vertebra No. 8 (efficiency on liver).

[0081] Fig.39 It is the measurement result of thoracic vertebra No. 1 (efficiency of heart and lung).

[0082] Fig.40 It is the measurement result of cervical vertebra No. 3 (effectiveness on throat and sinuses).

[0083] Fig.41 It has the effect of improving the survival rate of human cultured cells.

[0084] Fig.42 This is the observation result of peripheral blood mononuclear cells.

[0085] Fig.43 This is example 1 of improving sleep.

[0086] Fig.44 This is sleep improvement example 2.

[0087] Fig.45 This is an experiment to improve menstrual pain.

[0088] Fig.46 It is the effect of improving menstrual pain.

[0089] Fig.47 It is the improving effect of contrast agent.

[0090] Fig.48 It has the effect of anti-mildew and anti-corrosion.

[0091] Fig.49 It has a preservative effect on fish.

[0092] Fig.50 It is a freshness maintenance effect.

[0093] Fig.51 It is the anti-mold effect of bread.

[0094] Fig.52 It is a device for improving melasma and wrinkles.

[0095] Fig.53 This is Example 1 of the improvement effect on melasma and wrinkles.

[0096] Fig.54 This is Example 2 of the improvement effect on melasma and wrinkles.

[0097] Fig.55 This is Example 3 of the improvement effect on melasma and wrinkles.

[0098] Fig.56 This is an example 1 of the electrode structure.

[0099] Fig.57 This is an example 2 of the electrode structure.

[0100] Fig.58 This is the electrode structure example 3.

[0101] Fig.59 This is a construction example 4 of the electrode.

[0102] Fig.60 This is an example 5 of the electrode structure.

[0103] Fig.61 This is an example 6 of the electrode structure.

[0104] Fig.62 This is an example 7 of the electrode structure.

[0105] Fig.63 This is an example 8 of the electrode structure.

[0106] Fig.64 This is an example 9 of the electrode structure.

[0107] Fig.65 It is an extract of green tea.

[0108] Fig.66 It is an extract of kelp.

[0109] Fig.67 It is the extraction of soup stock.

[0110] Fig.68 It is the maturation of the noodles.

[0111] Fig.69 It is the result of improvement of water fluctuation 1.

[0112] Fig.70 It is the result of improvement of water fluctuation 2.

[0113] Fig.71 It is the result of improvement of water fluctuation 3.

[0114] Fig.72 It is the result of improvement of water fluctuation 4. DETAILED DESCRIPTION

[0115] Hereinafter, the liquid control device of the embodiment of the present invention will be described with reference to the accompanying drawings. However, the embodiments shown below are examples of liquid control devices for embodying the technical ideas of the present invention, and the present invention is not specific to these embodiments, and can also be equally applied to other embodiments included in the claims. In addition, in each embodiment, the liquid contained in the interior or surface of the object part is described by taking "water" such as free water as an example, but in the present invention, the liquid contained in the interior or surface of the substance is not limited to water, for example, it can be widely used in all liquids such as aqueous solutions, blood, body fluids, drugs, emulsions, oils, organic matter, ionic fluids, viscous fluids, non-viscous fluids, compressible fluids, and non-compressible fluids. In addition, in each embodiment, the expression "water" is sometimes used, but it is not intended to limit the liquid to only water, and it can be widely applied to all liquids.

[0116] [Implementation Method 1]

[0117] Reference Figures 1 to 19 , the liquid control device of embodiment 1 is described.

[0118] Figure 1 1 is a conceptual diagram of a liquid control device 1. The liquid control device 1 includes a controller 10, and a pair of electrodes 13 and 14. The controller 10 includes a current and voltage control unit 33, a control unit 36, a communication unit 35, and a storage unit 37. At least one of a DC voltage or an AC voltage is supplied to the electrodes 13 and 14 from a current and voltage application unit 11 controlled by the current and voltage control unit 33. The current and / or voltage applied to the electrodes 13 and 14 is detected by a detection unit 38 and fed back to the control unit 36. In addition, a material detection unit 32 (such as a camera, etc.) is provided, which detects the type or size of the material arranged in the space between the electrodes 13 and 14. In addition, in the actual circuit configuration of the controller 10, the current and voltage application unit 11 and the detection unit 38 can be provided integrally with the controller 10. In addition, for example, the controller 10 and the current and voltage application unit 11 can also be integrated and accommodated in one housing.

[0119] The detection unit 38 may also be provided at the electrodes 13 and 14 to detect the state of the electromagnetic waves generated. In this case, the detection unit 38 for detecting the state of the electromagnetic waves may be provided integrally with the electrodes 13 and 14. The cable used for the detection unit 38 may also be integrated with the cables of the electrodes 13 and 14, in which case the wiring of the cables is easy. In addition, the electrodes 13 and 14 may also serve as a detection mechanism for the generation of the electromagnetic field. In addition, although the detection unit 38 is provided with a current and / or voltage detection mechanism, in this case, the current and / or voltage may also be detected in the current and voltage application unit 11, so the current and / or voltage detection mechanism of the detection unit 38 may be integrated with the current and voltage application unit 11, and further, may also be assembled integrally with the housing of the controller or the like. In addition, since the data detected by the current and / or voltage detection mechanism of the detection unit 38 is superimposed with the numerical value obtained by the generation of the electromagnetic waves, the electromagnetic waves generated in the electrodes 13 and 14 may also be detected based on the detection data.

[0120] The material detection unit 32 may be integrated with the controller, but in order to prevent the size increase due to the addition of a camera, etc., and in order to facilitate the configuration of the camera, etc., the material detection unit 32 may be configured separately from the controller 10. Figure 1In the embodiment, an example in which a pair of electrodes 13 and 14 are provided is described, but the present embodiment is not limited thereto. As described below, as long as there are more than one electrode, the number of electrodes is not limited, and various shapes can also be used. For example, in the case where there are one electrode 13 and 14, the substance can be configured in a manner opposite to the electrode. If the type, state, size, etc. of the substance configured opposite to the electrodes 13 and 14 are detected by the substance detection unit 32, then the control command value is calculated in the control unit 36 ​​in accordance with the detection of the substance. The current and voltage control unit 33 controls the current and voltage applying unit 11 according to the control command value, thereby controlling the current and voltage applied to the electrodes 13 and 14, and applying at least one of an electric field, a magnetic field, an electromagnetic field, or an electromagnetic wave to the substance configured opposite to the electrodes. In the following, sometimes the expressions such as "applying an electromagnetic field", "irradiating electromagnetic waves", and "applying an electric field" are simply used, but these expressions are not intended to limit electromagnetic fields, electromagnetic waves, or electric fields, but include electric fields, magnetic fields, electromagnetic fields, or electromagnetic waves. At this time, the electromagnetic field applied to the substance is controlled to a desired state according to a control instruction calculated by feedback control based on the detection value from the detection unit 38 in the control unit 36. A voltage containing at least an AC component is applied to the electrodes 13 and 14, and an electric field is generated from the electrodes 13 and 14 in accordance with the applied voltage, and a magnetic field is also generated. The so-called electromagnetic field refers to at least one of an electric field or a magnetic field. In addition, since the electrodes 13 and 14 have the function of an antenna, electromagnetic waves are generated from the electrodes 13 and 14 in accordance with the applied voltage. The electric field, magnetic field, electromagnetic field, and electromagnetic wave generated by the electrodes 13 and 14 correspond to the applied voltage and current, and are related to each other and can be calculated by calculation. Therefore, in this embodiment, the intensity of the electric field, magnetic field, electromagnetic field, and electromagnetic wave generated by the electrodes 13 and 14 is quantitatively evaluated based on the electric field intensity. It is also possible to apply only a DC component to the electrodes 13 and 14. In this case, it is also possible to reduce the interfacial tension of the liquid, control the bead arrangement, control emulsification, etc. In addition, a DC component and an AC component may be applied to the electrodes 13 and 14, but in this embodiment, in order to facilitate the evaluation between the various embodiments, an example is given in which only an AC component is applied, for example, an AC voltage of 50 KHz and 100 V is applied. By applying a voltage to the electrodes 13 and 14, a current is also supplied, and therefore, the objects controlled by the controller 10 are the voltage value, the current value, the frequency, and the phase, and the target value of each physical quantity can be set by the controller 10, but in this embodiment, in order to make the description uniform between the various embodiments, the voltage value and the frequency are described as the target values, and of course, the target value setting of other physical quantities can also be performed.

[0121] The communication unit 35 communicates with the management server 40, the database 43, other PCs 31a to 31n, and other liquid control devices 1a to 1n, and receives control parameters or control values ​​from the management server 40. The storage unit 37 stores a program, and the control unit 36 ​​including a CPU operates according to the program stored in the storage unit 37. Based on the control parameters or control values ​​received from the management server 40, the current and voltage applying unit 11 is controlled via the current and voltage control unit 33 built into the controller 10, thereby controlling the current and / or voltage applied to the electrodes 13 and 14. The program can be overwritten from the management server 40 via the communication unit 35. In addition, the program can be stored in a removable memory such as a flash memory, and the program of the controller 10 can be overwritten using the removable memory. In addition, the program can be set or overwritten via the human-machine interface 31 connected to the communication unit 35.

[0122] The management server 40 has the following functions: updating or maintaining the program of the controller 10, monitoring or surveillance of the usage status of the controller 10, collecting or analyzing the location information or environmental information of the controller 10, collecting or analyzing improvement request information from the controller 10, maintaining the controller 10, collecting control information from the controller 10 and / or information from the database 43, generating and providing learning model information for the controller 10, providing control information based on the learning model information, or providing control parameters of the controller 10.

[0123] Regarding the monitoring or surveillance of the use status of the controller 10, since the management server 40 can always collect the control information in the controller 10, the management server 40 has the function of always grasping the use status of the controller 10 and monitoring or surveillance. Here, the monitoring function includes grasping the user's status by analyzing the time period, degree, and method in which the user who uses the liquid control device 1 corresponding to the controller 10 uses the liquid control device 1. For example, when the liquid control device is used in a certain restaurant, the business status, customer status, cooking status, and purchasing status of the restaurant can be grasped in the management server 40. In addition, for example, in the case of an individual user, the personal life status, safety status, etc. of the user can be grasped in the management server 40 based on the use status of the liquid control device. Therefore, when the management server 40 determines that the liquid control device 1 is abnormal, it can also report to the corresponding user, and report the abnormality to the registered contact information, the police or the fire emergency contact information.

[0124] Regarding the collection or analysis of the location information or environmental information of the controller 10, the management server 40 can collect the location information, climate information, geographical information, etc. of the configuration of the liquid control device 1 from the controller 10, and grasp the location information or environmental conditions of the quality management device 1. Therefore, for example, control information corresponding to the usage environment can be sent from the management server 40 to the controller 10.

[0125] Regarding the collection or analysis of the improvement request information from the controller 10, the management server 40 may collect the improvement request information input from the PC 31 to the controller 10, or directly collect the improvement request information input from the PC 31 that communicates with the controller 10. The improvement request information includes information such as the improvement desire, the evaluation of the control result, or the expected matters from the user of the liquid control device 1. The improvement request information is analyzed in the management server 40 and used to set the control parameters of each liquid control device 1.

[0126] Regarding the maintenance of the controller 10, the management server 40 can collect and monitor the operating status of the controller 10, the status of the program, the status of the device control parameters, the information stored in the storage unit 37, the status of the machine, the environmental status of the liquid control device, and other information, and maintain the program, control parameters, detection information, control result information, various setting parameters, and storage content of the storage unit of the controller 10. The content of maintenance is not particularly limited, and includes setting or updating of programs, setting or updating of control parameters or setting parameters, setting or updating of learning models described later, etc. The collection of various operating status information, control information, etc. collected from the controller 10, and / or the collection of information from the database 43 is used for deep learning in the management server 40 as described below. In addition, the learning model information trained by deep learning and / or the control parameters calculated by the learning model are provided to the controller 10 of each liquid control device 1.

[0127] In addition, the controller 10 is connected with a material detection unit 32 for detecting the type and / or state of the material disposed between the electrodes. The controller 10 controls the built-in current and voltage application unit 11 to become an appropriate output voltage and / or output current according to the type, state, size, etc. of the material by grasping the type and / or state of the material. In addition, the current and voltage application unit 11 has at least one function of DC-DC conversion, DC-AC conversion, AC-DC conversion, and AC-AC conversion as described below. For example, the current and voltage application unit 11 can be set to a VVVF (VARIABLE VOLTAGE VARIABLE FREQUENCY) converter. In addition, the current and voltage application unit 11 can apply a DC voltage and a current to the electrodes 13 and 14, and a voltage and a current superimposed on an AC voltage and a current.

[0128] In addition, the user can set and operate the controller according to the input from the human-machine interface 31 by communicating with the controller 10 through the human-machine interface 31. The human-machine interface 31 includes, for example, a display, a touch panel, a keyboard, and a mouse. In addition, when operating the controller 10 using a personal computer such as a smartphone, a mobile phone, a tablet terminal, a mobile terminal, or a notebook computer (hereinafter, the human-machine interface 31 is sometimes referred to as a "PC"), the smartphone can have the functions of the human-machine interface 31 and the communication unit 35.

[0129] The PC 31 can perform control parameter setting, control program update, etc. by communicating with the controller 10, and can monitor the operation status and control status of the controller 10 by using the PC 31. In addition, if the PC 31 is connected to the controller 10 via a communication network, the PC 31 can perform setting, operation, monitoring, etc. of the controller 10 from a remote location.

[0130] In addition, the liquid control device 1 is connected to an external power source (not shown). The external power source may be an AC power source or a DC power source. In addition, the DC power source may be a battery including a primary battery and a secondary battery. If the liquid control device 1 is movable, transportable or portable, it is advantageous to ensure power by using a battery as the external power source 39.

[0131] In addition, the controller 10 performs feedback control on at least one of the current value, voltage value, frequency, or phase applied to the electrodes based on a detection signal from a detection unit 38 described later.

[0132] A substance to be processed is disposed between the electrodes 13 and 14. The substance to be processed is not particularly limited, and any substance may be at least one of an entity, a liquid, and a gas, and various substances may be used as the target as described below.

[0133] The controller 10 is connected to a communication network 45 via a communication unit 35 or via a PC 31, and the communication network 45 is connected to a management server 40, a database 43, liquid control devices 1a to 1n, and PCs 31a to 31n. The management server 40 can collect control information including detection data of the substance detection unit 32 and / or the detection unit 38 from the controller 10 via the communication unit 35 or the PC 31. In the management server 40, based on the data of the database 43, the information from each liquid control device 1, 1a to 1n, and the information from each PC 31, 31a to 31n, a learning model for obtaining control parameters of the controller is calculated by machine learning such as deep learning, for example. The management server 40 sends the calculation parameters obtained by the pre-trained learning model or the pre-learning model to the controller 10 of each liquid control device 1, 1a to 1n. The controller 10 uses a learning model in the control unit 36 ​​to calculate parameters of a material suitable for being arranged opposite to the electrodes 13 and 14 based on the detection data from the material detection unit 32 and / or the detection unit 38, or uses suitable parameters sent from the management server 40 in the control unit 36 ​​to perform calculations so as to control the current and / or voltage applied from the current and voltage application unit 11 to the electrodes 13 and 14 through the current and voltage control unit 33. A control program is stored in the storage unit 37. The controller 10 is controlled based on the control program. The control program can be overwritten from the management server 40, so the program can be updated and upgraded in a timely manner. In addition, the control program can also be set, changed, and updated by PC31. Furthermore, various control parameters of the controller 10 can also be set and changed by PC31.

[0134] [About electrodes]

[0135] exist Figure 1 In the embodiment, plate-shaped electrodes are exemplified as the pair of electrodes 13 and 14, but the form of the electrodes 13 and 14 is not limited to the plate-shaped, and may be foil-shaped, film-shaped, or layer-shaped. Furthermore, various shapes such as rod-shaped, spherical, hemispherical, cylindrical, semi-cylindrical, conical, semi-conical, substantially L-shaped, substantially U-shaped, polygonal, polygonal columnar, polygonal pyramidal, curved, or bent may be adopted (see the following description). Figure 32 to Figure 39 In addition, when the electrodes 13 and 14 are in the form of foil or film, the thickness of the electrodes can be made very thin, so that the installation space of the electrodes can be reduced, and the shape can be freely set, and the weight can be reduced, and further, the electrodes can be easily installed. In the case of a layered form, for example, a thin film electrode is provided in a manner overlapping a predetermined substrate, etc.

[0136] The shape of the electrodes 13 and 14 is not limited to a flat plate, and any shape is acceptable. When foil-shaped electrodes 13 and 14 are used, the electrodes can be formed into any shape according to the shape of the installation position, so for example, the electrodes can be formed into a curved surface.

[0137] A plurality of through holes may be provided in the electrodes 13 and 14. If a plurality of through holes are provided in the electrodes, the characteristics of electromagnetic waves generated by the electrodes can be improved, and air permeability can be provided, and further, visibility can be ensured through the electrodes. The shape of the hole may be various shapes such as circular, elliptical, polygonal, slit-shaped, line segment-shaped, or a combination thereof. For example, a hexagonal hole may be provided.

[0138] The material of the electrodes 13 and 14 is not particularly limited, as long as it is a conductive material, for example, conductive metals such as copper, iron, stainless steel, aluminum, titanium, gold, silver, platinum, alloys of these metals, or conductive materials such as conductive oxides and conductive glass. In addition, the surfaces of the electrodes 13 and 14 can also be covered with insulating materials. In addition, for example, when the electrodes are arranged in a frying pan, the inner surface of the frying pan is insulated from the electrodes. In addition, for example, when the electrodes are arranged on the inner surface of a container, it is preferable to insulate the inner surface of the container from the electrodes. One of the pair of electrodes 13 and 14 can also be made of different materials from the other. For example, the material of the electrode 13 can be made of stainless steel, and the material of the electrode 14 can be made of titanium. In addition, it can also be a combination of stainless steel and aluminum, stainless steel and copper, etc. By changing the material of the electrodes 13 and 14, the characteristics of the electromagnetic waves generated by the electrodes can be adjusted. In this case, the characteristics of the electromagnetic waves can also be adjusted by replacing the materials of the electrodes 13 and 14. As described below, the number of electrodes is not limited to one pair, and can be appropriately set to one piece, three pieces or more, two pairs or more, etc. In this case, the characteristics of the electromagnetic waves generated by the electrodes can also be adjusted by appropriately selecting the material of each electrode. For example, when two pairs of electrodes are used, the characteristics of the electromagnetic waves generated by these electrodes can be adjusted by setting the material of one pair of electrodes to stainless steel and the material of the other pair of electrodes to copper. The electrodes 13 and 14 generate at least one of an electric field, a magnetic field, an electromagnetic field, an electromagnetic wave, a sound wave, and an ultrasonic wave, but in the case of generating only a sound wave or an ultrasonic wave, the material of the electrodes 13 and 14 is not limited to a conductive material, and for example, a non-conductive material such as a resin can be used.

[0139] A dedicated housing may be provided for installing the liquid control device 1, but the present invention is not limited thereto, and the liquid control device 1 may be installed in an existing housing. As the existing housing in which the liquid control device 1 may be installed, various housings may be selected, such as refrigerators, freezers, cold storage warehouses, frozen storage warehouses, storage boxes, warehouses, refrigerated trucks, frozen trucks, refrigerated boxes, transport containers, storage containers, display cabinets, shelves, drawers, fryers, cultivation containers (for hydroponic cultivation, etc.), fuel tanks, personal computers, mobile phones, reclining chairs, furniture, bedding, household electrical appliances, various manufacturing machines in factories, processing machines, medical machines, health machines, beauty machines, cooking machines, grinding machines, vehicles, semiconductor cleaning machines, and control machines for controlling water vapor generated during cooling in refining steps, sintering steps, and drying steps.

[0140] In the case of a refrigerator, a pair of electrodes 13, 14 can be arranged, for example, along the top and bottom surfaces in the refrigerator, along the opposite side walls, along the top or shelf or bottom surface, along the top or bottom surface and the side surfaces, or along the inner surface of the door and the inner side surface. In the case of a deep fryer, for example, they can be arranged along the two side surfaces on the inner side of the oil container. That is, as long as the pair of electrodes 13, 14 are arranged in a manner that they face each other, they can be arranged in any manner. In addition, it is not necessary to arrange the pair of electrodes in parallel. For example, the two electrodes can be arranged in a perpendicular position relationship. As long as a space in which the material to be processed can be arranged can be provided between the two electrodes, the two electrodes can be arranged in any manner. The number, configuration, and shape of the electrodes are not particularly specified. The number is not limited to one pair. It can be one piece, three pieces or more, or two pairs or more. For example, please refer to the following description. Fig. 9 , 10 , 23~30, etc.

[0141] The object for setting the liquid control device 1 does not need to be a shell, and can be set at any position as long as it is a position where a pair of electrodes 13 and 14 can be arranged. As long as a pair of electrodes 13 and 14 can be arranged opposite to each other, they can be set at any position, such as a shelf or a wall, etc. In addition, a member such as a screen can be used to fix the electrodes 13 and 14. For example, it can also be configured as a cutting board. In addition, for example, the number of electrodes is not limited to one pair, and can be one piece, three pieces or more, or two pairs or more. For example, please refer to the following description. Fig. 9 , 10 , 23~30, etc.

[0142] [Regarding the voltage applied to the electrodes]

[0143] At least one of a DC component voltage or an AC component voltage is applied to a pair of electrodes 13 and 14 from the controller 10. The DC component voltage is not particularly limited, and can be adjusted between 0V and 7000V, for example, between 0V and 5000V, for example, between 0V and 2000V, for example, between 0V and 500V, for example, between 0V and 200V, for example, between 0V and 100V, and, for example, between 5V and 20V, and further, for example, between 10V and 15V. In addition, the polarity can be set to positive or negative. That is, when adjusting between 0V and 200V, for example, it can be adjusted between -200V and +200V in consideration of both positive and negative polarities. Therefore, in consideration of both positive and negative polarities, for example, it can be adjusted between -7000V and +7000V, for example, it can be adjusted between -5000V and +5000V, for example, it can be adjusted between -2000V and 2000V, for example, it can also be adjusted between -500V and +500V, for example, it can also be adjusted between -200V and +200V. Regarding the power supply voltage, a DC power supply can be used, and an AC power supply can also be used. When a DC power supply is used, for example, a battery can be used as a power supply, so portability is excellent. In addition, when an AC power supply is used, for example, a commercial power supply can be used, so the power supply can be easily ensured. Regarding the power supply voltage, for example, it can be set to AC 100V to 400V, for example, it can be set to DC 5V to 20V, and for example, it can be set to DC 10V to 15V. In addition, when expressed using the spatial electric field, it can be adjusted between, for example, -7000V / cm and +7000V / cm, for example, between -5000V / cm and +5000V / cm, for example, between -2000V / cm and +2000V / cm, and, for example, between -500V / cm and +500V / cm, or between -200V / cm and +200V / cm.

[0144] At least a DC component voltage may be applied to the pair of electrodes 13 and 14 , for example, the AC component voltage may be set to 0 V and only the DC component voltage may be applied.

[0145] The direction of the DC component voltage can be set to positive (+) or negative (-). In the present embodiment, the direction of the DC component voltage is set to positive when the potential of the electrode 14 is higher than the potential of the electrode 13 (ground potential), and conversely, the direction of the DC voltage is set to negative when the potential of the electrode 14 is lower than the potential of the electrode 13. In both the positive and negative cases of the DC component voltage, the effect of improving the properties of the substance is exerted.

[0146] In addition to the DC component voltage, an AC component voltage may be applied to a pair of electrodes 13 and 14. In addition, the DC component voltage may be set to 0V and only the AC component voltage may be applied. The frequency of the AC component voltage is not particularly limited, and may be adjusted between 0 and 1 MHz, for example, between 0 Hz and 500 kHz, for example, between 0 Hz and 200 kHz, and for example, between 5 Hz and 100 kHz. Depending on the object, there are cases where it is used in a low frequency band and cases where it is used in a high frequency band. In the low frequency band, for example, there is also a case where a frequency band of about 5 Hz to 500 Hz is used.

[0147] In addition, the voltage of the AC component voltage is not particularly limited, and the electric field per 1 cm of space can be adjusted between 0 and 7000 Vpp / cm, for example, between 0 and 5000 Vpp / cm, for example, between 0 and 2000 Vpp / cm, and also between 0 and 500 Vpp / cm, and also between 0 and 200 Vpp / cm, for example. Alternatively, for example, a voltage can be supplied to the electrode between 0 and 7000 V, for example, between 0 and 5000 V, for example, between 0 and 2000 V, and also between 0 and 500 V, and further, for example, between 50 and 250 V. For example, in the case of a pair of electrodes, regarding the voltage between the electrodes, for example, the voltage can be supplied between 0 and 7000V, for example, it can also be adjusted between 0 and 5000V, for example, it can also be adjusted between 0 and 2000V, for example, it can also be adjusted between 0 and 500V, and further, for example, it can also be adjusted between 50V and 250V.

[0148] In addition, there are cases where the effect of improving the properties of the material is improved when the DC component voltage is applied, but the effect can also be obtained when only the AC component voltage is applied, and in this case, the DC component voltage is set to 0 V. In principle, regarding the AC voltage component, [Vpp] is used as the unit when expressing the peak-to-peak value of the voltage, and [V] is used to express the effective value of the voltage.

[0149] As described above, the voltage of the external power supply may be a DC voltage or an AC voltage. As the external power supply, it may be an AC power supply or a DC power supply. As the AC power supply, for example, a commercial power supply may be used. In addition, as the DC power supply, for example, a battery including a primary battery and a secondary battery may be used, for example, various batteries such as a 12V storage battery or a dry cell may be used.

[0150] In order to adjust the voltage value of the DC component voltage in the controller 10, there are the following methods, etc.: a method of controlling the voltage of the DC power supply using a DC-DC converter; a method of controlling the voltage of the AC power supply using a DC-DC converter when or after the AC power supply is rectified using an AC-DC converter. In addition, in order to adjust the voltage value and frequency of the AC component voltage in the controller 10, there are the following methods, etc.: a method of controlling the DC power supply using a DC-AC converter (inverter); a method of controlling the AC power supply using a DC-AC converter (inverter) after rectifying the AC power supply using an AC-DC converter; a method of controlling the AC power supply using an AC-AC converter.

[0151] In addition, when the target voltage value of the DC component voltage is equal to the power supply voltage of the DC power supply, the power supply voltage of the DC power supply may be directly used as the DC component voltage. Similarly, when the target voltage and target frequency of the AC component voltage are equal to the power supply voltage of the AC power supply, the power supply voltage of the AC power supply may be directly used as the AC component voltage.

[0152] Furthermore, the DC component voltage is added to the AC component voltage, that is, the DC component voltage is added to the AC component voltage as an offset voltage, and the added voltage is applied between the pair of electrodes 13 and 14. In addition, when the AC component voltage is controlled in power conversion using a DC-AC converter, the DC component voltage can also be controlled.

[0153] As the AC component of the voltage applied to the electrode, a sinusoidal voltage can be cited, but the AC voltage component of the present embodiment is not limited to a sinusoidal wave, and includes all waveforms such as a rectangular wave and a PWM waveform. In addition, the so-called sinusoidal wave and rectangular wave do not only mean a sine wave or a rectangular wave in a strict sense, but mean a waveform when noise, strain, etc. are taken into consideration. In addition, as the DC component of the voltage applied to the electrode, it does not only mean a constant voltage, but a DC component voltage that changes with time can also be used.

[0154] As a mechanism for controlling voltage in the controller 10, any of an analog circuit, a digital circuit, and a circuit formed by combining an analog circuit and a digital circuit may be used. For example, a sine wave voltage may be generated by an analog circuit, or an equivalent sine wave may be generated by a PWM waveform. In addition, for example, as a circuit for generating a rectangular wave voltage, a digital circuit may be used, but an analog circuit may also be used.

[0155] The controller 10 controls the voltage or current applied to the electrodes 13 and 14 in the following manner. The voltage or current is at least one selected from the group consisting of the following voltages or currents.

[0156] (1) Voltage or current that reduces the interfacial tension of a substance,

[0157] (2) Voltage or current to prevent corrosion from food, drink, or liquids.

[0158] (3) a voltage or current that is useful for at least one of preserving cut flowers, preserving drinking water, promoting the cultivation of hydroponic plants or optimizing the environment, improving germination rates, improving hatching rates, preventing or purifying aquariums, optimizing water quality, promoting the growth of rock sugar, fuel reforming, or improving fuel efficiency;

[0159] (4) A voltage or current that contributes to at least any one of the following: preservation of blood or blood components, improvement of diabetes, improvement of chronic kidney disease, improvement of artificial dialysis, improvement of blood flow, regeneration of blood vessels, improvement of peripheral neuropathy, improvement of arthritis or rheumatism, preservation of organs, anti-tumor effect, improvement of ischemia, improvement of lymphedema, improvement of bedsores, prevention or improvement of necrosis, improvement of circulatory system diseases, or countermeasures against infectious diseases;

[0160] (5) A voltage or current that increases the efficiency of at least one of the charging or discharging of a storage device, a generator, or a power supply device;

[0161] (6) a voltage that promotes emulsification or formation of an emulsion, or a voltage or current that increases the time the emulsion is maintained in a state,

[0162] (7) Voltage or current to improve the effectiveness of air purifiers or ionizers,

[0163] (8) Voltage or current that separates atoms or molecules into their respective species,

[0164] (9) Voltage to control the temperature or humidity of the space, and

[0165] (10) a voltage or current that separates at least one of bacteria, germs, viruses, or microorganisms from water,

[0166] (11) Voltage or current that promotes chemical polishing, mechanical polishing, chemical mechanical polishing, or magnetic polishing.

[0167] [About controller control]

[0168] The liquid control device 1 is driven by the controller 10 to generate an electric field between a pair of electrodes 13 and 14. At this time, the electrodes 13 and 14 function as antennas and generate an electromagnetic field by radiating electromagnetic waves between the two electrodes 13 and 14. In addition, sound waves and / or ultrasonic waves can be generated between the electrodes by applying vibrations to the electrodes 13 and 14 using electrical, magnetic or mechanical mechanisms. As a mechanism for generating sound waves and / or ultrasonic waves between the electrodes, piezoelectric elements such as piezo elements can be used, for example. Therefore, at least one of an electric field, a magnetic field, an electromagnetic field, an electromagnetic wave, a sound wave and an ultrasonic wave is generated between the two electrodes 13 and 14. By using sound waves and / or ultrasonic waves in addition to electric fields, magnetic fields, electromagnetic fields or electromagnetic waves, the effect of improving the properties of the material is increased.

[0169] The controller 10 performs feedback control on at least one of the current value, voltage value, frequency and phase applied to the electrode based on the detection signal from the detection unit 38. The detection unit 38 includes at least one of the following: a voltage sensor for detecting the voltage applied to the electrode, a current sensor for detecting the current applied to the electrode, a frequency sensor for detecting the frequency of the voltage and / or current applied to the electrode, a phase sensor for detecting the phase of the voltage and / or current applied to the electrode, a magnetic field sensor for detecting the magnetic field between the two electrodes 13 and 14, an electric field sensor for detecting the electric field between the two electrodes 13 and 14, a sound wave sensor for detecting the size or frequency of the sound wave between the two electrodes 13 and 14, and an ultrasonic sensor for detecting the size or frequency of the ultrasonic wave between the two electrodes 13 and 14.

[0170] In addition, a sensor may be provided at the electrode. The electrode itself may also be used as a sensor. When the sensor is provided at the electrode, in addition to the power supply line for supplying power to the electrode, wiring (for example, 2 wires) for the sensor is also required. It is ideal that the number of wirings between the controller 10 and the electrode is small, so it is appropriate to concentrate the power supply line and the sensor line into a single cord. In this case, the single cord is covered with at least a raw material having insulation. Furthermore, it is also ideal to have durability or heat resistance. Furthermore, if the use in the freezer is also considered, it is ideal to be able to withstand low temperatures. For example, if the use in the deep fryer is considered, durability and heat resistance are required in addition to insulation, so as a raw material for covering the wire, for example, fluororesin may be used. In the case of providing a pair of electrodes, a sensor may also be provided at only one of the electrodes. Alternatively, in the case of providing a sensor at two electrodes, the physical quantity generated by the other electrode may be detected by the sensor of one of the electrodes. In the case of more than three electrodes, a sensor may be provided at at least one electrode, but it is not limited thereto, and sensors may also be provided at multiple electrodes or all electrodes.

[0171] The control target value of at least one of the current value, voltage value, frequency and phase in the controller 10 is set according to the type or state of the object substance. The setting of the control target value can be remotely set via a communicator not shown. In addition, the control parameters or control amount of the controller 10 can also be remotely controlled. Thus, the controllers 10 of multiple liquid control devices 1 can be centrally managed by a server 40 located in a remote location, and each controller 10 can be appropriately controlled. However, the form of control of the controller 10 is not limited to remote control from the server 40. For example, the controller 10 of each liquid control device 1 can be individually controlled by directly setting the control target value or setting the control parameter for each controller 10.

[0172] In addition, the controller 10 is provided with a storage unit 37, and a control program is stored in the storage unit 37. The controller 10 is controlled based on the control program. The control program can be overwritten via communication or storage media, so the program can be updated in a timely manner and the version can be upgraded. Furthermore, the controller 10 can communicate with the server 40, and the control parameters, control amounts, control programs or various setting values ​​sent from the server 40 are stored in the storage unit 37. In addition, the control program can be stored in an appropriate storage medium.

[0173] Figure 2 This is a schematic diagram of a water molecule. Figure 2 A is a free-moving water molecule. Figure 2 B is the water molecules arranged in a chain.

[0174] The target substances, for example, foods such as meat, fish, and vegetables, beverages, animal and plant cells, and oils, contain water molecules such as free water as water.

[0175] Usually, if Figure 2 As shown in A, water molecules (H2O) are arranged irregularly. Therefore, hydrogen atoms H capture active oxygen 30, or hydrogen bonds are formed, or the size of water molecules increases, and the activity of water molecules becomes sluggish. Then, oxidation of water molecules begins.

[0176] On the other hand, if an electric field is generated between the pair of electrodes 13 and 14, the water molecules tend to align in a fixed direction. This is because the oxygen atoms O, which have a stronger force to pull electrons, become slightly negative, and the hydrogen atoms H, which easily generate electrons, become slightly positive, and each tend to face the direction of the electric field between the pair of electrodes 13 and 14.

[0177] If the AC component voltage is generated by the controller 10, the water molecules change their directions alternately. At this time, the water molecules change their directions at the same frequency as the AC component voltage, and become in a state like vibration. Then, during this vibration, as shown in FIG. Figure 2As shown in B, the hydrogen bonds between the water molecules and the active oxygen 30 or other components are broken, and the water molecules are gradually arranged in regular fine particles.

[0178] The same effect also exists between water particles (fine water droplets) such as free water existing in a substance. Therefore, the electric field between the pair of electrodes 13 and 14 causes the water particles to attract each other and form a linked arrangement.

[0179] When a DC component voltage is applied between a pair of electrodes 13 and 14, there is a force component that forces the water molecules to be arranged in the direction of the electric field generated by the DC component voltage. Therefore, when only the DC component voltage is applied between the pair of electrodes 13 and 14, the water molecules are also regularly arranged. Furthermore, if an AC component voltage is applied to the DC component voltage, the water molecules change direction at the same frequency as the AC component voltage, and there is also a force component that forces the water molecules to be arranged in one direction, so the water molecules are more likely to be regularly arranged. Regarding the state of the water particles, similarly, the electric field between the pair of electrodes 13 and 14 causes the water particles such as free water, which are water, to attract each other to form a linked arrangement.

[0180] In addition, when the voltage applied between the pair of electrodes 13 and 14 does not include a DC component voltage, the water molecules also change direction at the same frequency as the AC component voltage through the AC component voltage, and become a vibrating state. Then, during the repetition of this vibration, the hydrogen bonds between the water molecules and the active oxygen 30 or other components are broken, and the water molecules are gradually arranged in regular fine particles. In addition, when the voltage applied between the pair of electrodes 13 and 14 does not include a DC component voltage, the effect generated by the AC component voltage on the state of the water particles is also similarly formed through the electric field between the pair of electrodes 13 and 14, so that the water particles such as free water as water attract each other to form a bead arrangement.

[0181] In addition, since sound waves or ultrasonic waves have the effect of vibrating water molecules, when a DC component voltage and / or an AC component voltage is applied between a pair of electrodes 13 and 14, sound waves and / or ultrasonic waves of a specified frequency and intensity are generated between the electrodes, thereby achieving the effect of promoting the arrangement of water molecules. In addition, when water molecules are vibrated by specified sound waves and / or ultrasonic waves, water molecules can be neatly arranged even when no voltage is applied between the electrodes.

[0182] The arrangement direction of water molecules or water particles is along the direction of the applied electromagnetic field. Therefore, the arrangement direction of water molecules or water particles can be controlled by controlling the applied electromagnetic field. For example, the electromagnetic field applied from the pair of electrodes 13 and 14 is in a fixed direction, but in the following description, Fig. 9In the process, an electromagnetic field is applied from two orthogonal pairs of electrodes (electrodes 13, 14 and electrodes 15, 16). Therefore, by controlling the current or voltage applied to each electrode, the intensity of the electromagnetic field generated between the electrodes can be adjusted. In addition, the direction of the electromagnetic field can also be adjusted, thereby controlling the arrangement direction of water molecules or water particles.

[0183] Water can be divided into "bound water" and "free water". Bound water is a stable state that is bound to other components through hydrogen bonds. In contrast, free water is in a state of free movement, and in the case of food, it is a state in which the food is fresh and moist. However, free water molecules are easy to bind to other components, and foods containing free water are prone to spoilage. In other words, corrosion is easy to progress due to the binding of bacteria, viruses, microorganisms, or active enzymes to free water. In addition, in the state of bound water, bound water will also become free water over time, when the temperature rises, or in a dry environment. At this time, it becomes easy to spoil because it takes away part of the components of the hydrogen-bonded cells. Therefore, by making the free water in a state of binding in a beaded arrangement (different from the "bound water state") or in a state of binding to other cells, etc., freshness can be maintained.

[0184] It is considered that the water molecules arranged in a row by the liquid control device 1 of this embodiment form a stable structure in which free water is combined with each other to form bound water. That is, the water molecules regularly arranged by the liquid control device 1 of this embodiment are retained in the substance and are not combined with other components, so that the food can be kept fresh and moist.

[0185] Therefore, as long as the liquid control device 1 of this embodiment is set in a container, the arrangement of free water of the substance in the container can be controlled, and when the substance is food, medicine, or cell, the freshness of the food, medicine, or cell can be maintained. For example, by using the liquid control device 1 as a transport container, food can be transported while maintaining its freshness even if it is transported over a longer distance than before. In addition, the container can be, for example, expanded polystyrene, and the liquid control device 1 of this embodiment can be installed on an existing expanded polystyrene to form a transport container.

[0186] In addition, once the water molecules are arranged regularly by the liquid control device 1 of this embodiment, they are kept in a regularly arranged state for several days to several tens of days. Therefore, when the target substance is food, medicine, or cells, after the free water is arranged in a state of beads by the liquid control device 1 of this embodiment, the freshness of the food, medicine, or cells can be maintained even if it is moved to another container for storage.

[0187] In addition, if a predetermined voltage is applied to the electrodes 13 and 14, the water molecules in the water of the substance are electrically arranged in a regular manner and oriented in a substantially fixed direction (direction of the electric field). At this time, by arranging the water molecules in a regular manner, the conductivity of the substance increases. When the substance is a liquid, the water molecules can also be arranged in a regular manner, thereby, for example, in the case of pure water, the conductivity can also be increased. In addition, since the water molecules vibrate slightly at a fixed frequency in the electric field, they will not crystallize at around 0°C.

[0188] In addition, if a predetermined voltage is applied to the electrodes 13 and 14, the hydrogen bonds of the water molecules in the substance are suppressed, so that the hydrogen bonds are reduced, and thus, for example, physiological water can be obtained. Furthermore, by adding microbubbles such as microbubbles, nano-microbubbles or nanobubbles to the water, more highly functional water can be obtained. This high functionality of the liquid caused by the electric field and microbubbles is not limited to water, and can also be applied to aqueous solutions, emulsions, oils, etc.

[0189] In addition, if a predetermined voltage is applied to the electrodes 13 and 14, hydration of water molecules in the water of the substance is promoted. For example, if proteins contained in the substance are hydrated and combined with water molecules so that the proteins are surrounded by water molecules, degradation of the substance can be suppressed.

[0190] Figure 3 This is a microscope photo of free water. Figure 3 A represents the state of free water before the electric field is applied, Figure 3 B represents the state of free water when an electric field is applied. Figure 3 As shown in B, among the free electrons when an electric field is applied, a chain arrangement of water particles can be confirmed in the portion marked with white underlines. Figure 3 As shown in A, no linked arrangement of water particles can be confirmed in the free water before the electric field is applied. Figure 3 It was confirmed that the free water can be arranged in a continuous pattern by the liquid control device 1 of this embodiment. Figure 3 , the linked arrangement of the water phase in the oil phase is shown, but the linked arrangement of liquids can be similarly controlled between other types of liquids by controlling the applied electric field.

[0191] Figure 4 is the simulation result of the potential of water particles, Figure 4 A is an illustration of the simulation model. Figure 4 B is the result of potential simulation. Figure 4 As shown in A, the simulation model has four water particles arranged in a row in the center and two independent water particles as free water on the left side.

[0192] Figure 4B shows three regions of equal potential in the vertical section along the longitudinal direction of the water particles. The rightmost section shows that at the location where the water particles are arranged in beads, the water particles in the beads are of equal potential. In addition, the regions of the four beads of water particles in the central part of the figure are colored in approximately the same color, which shows that the potentials of the regions of the four beads of water particles are approximately equal.

[0193] The electric lines pass through the four water particles arranged in a row, which shows that the four water particles attract each other. Furthermore, the electric lines from the four water particles arranged in a row also pass through two independent water particles that are located to the left and away from the four water particles arranged in a row, which shows that the force in the direction of attracting the four water particles arranged in a row also acts on these two independent water particles, and it is considered that there is a possibility that two independent water particles join the arrangement of the four water particles arranged in a row.

[0194] [About reduction of interfacial tension]

[0195] In W / O emulsion (e.g., tiny water droplets in edible oil), when an electromagnetic field is applied by the liquid control device 1 of this embodiment, the interfacial tension can be reduced. In this case, the reduction of the interfacial tension can be achieved by, for example, 10% or more, and can be achieved by 20% or more depending on the conditions of the electromagnetic field. Furthermore, if, for example, the DC component voltage and the AC component voltage are appropriately controlled, the interfacial tension can be reduced by 60% or more. This is believed to be due to the increase in interfacial polarization formed by the application of the electromagnetic field.

[0196] For example, when cooking food in cooking oil, when the water contained in the food becomes water vapor in the cooking oil, the water droplets separated from the food into the cooking oil are tiny water droplets. If the interface polarization sufficient to reduce the interfacial tension is generated in such tiny water droplets, a chain of tiny water droplets generated by the attraction between dipoles is formed. In the case of frying food in cooking oil using a deep fryer, if a pair of electrodes 13 and 14 of the liquid control device 1 of this embodiment is provided for the deep fryer, the interfacial tension of the oil / water interface can be reduced.

[0197] Interfacial tension is not limited to the interface between water and oil. For the interface between two liquids, between liquid and gas, and between liquid and solid, as long as at least one phase contains liquid, the interfacial tension can be controlled and reduced by the liquid control device of this embodiment for any interface.

[0198] Figure 5 and Figure 6 This is a graph showing that the interfacial tension between edible oil and water is reduced by the liquid control device 1 of the present embodiment. Figure 5This is a graph showing the interfacial tension between edible oil and water when the frequency and voltage value (0 to 75 V) of the applied voltage are changed. Figure 6 This is a graph showing the interfacial tension between edible oil and water when the frequency and voltage value (0 to 150 V) of the voltage applied to the electrodes are changed. Figure 5 and Figure 6 Different from the measuring device described in the above-mentioned item [Regarding the reduction of interfacial tension], water is placed in the lower layer and edible oil is placed in the upper layer in a cylindrical container, and the interfaces of the two are in contact. A pair of stainless steel electrodes is inserted into the container, and an alternating voltage of various frequencies and voltage values ​​is applied while measuring the interfacial tension between the edible oil and water. The interfacial tension is measured using a Face Automatic Surface Tensiometer (Kyowa Interface Science Co., Ltd.). In addition, as electrodes, a pair of flat electrodes are used, but it is not limited to this. For example, a curved electrode along the inner wall of the cylindrical container or a flexible electrode such as stainless steel foil can also be arranged along the inner surface of the container.

[0199] Figure 5 This is a graph showing the interfacial tension between edible oil and water when the AC voltage applied to the electrodes is varied between a frequency of 10kHz to 50kHz and a voltage of 0V to 75V. Figure 5 It can be seen that the interfacial tension between cooking oil and water is related to the frequency and voltage value of the AC voltage applied to the electrode. That is, the frequency decreases from 50kHz to 20kHz, and then to 10kHz, and the lower the frequency is, the less the interfacial tension is. In addition, the voltage value increases from 0V to 75V, and the more it increases, the less the interfacial tension is. Therefore, the liquid control device 1 uses the correlation between these interfacial tensions and the frequency and voltage value of the AC voltage applied to the electrode to adjust the applied voltage, thereby being able to control the interfacial tension. For example, in the case where the liquid control device 1 is applied to a deep fryer, as described above, if the interfacial tension is reduced, then when the water contained in the food is separated, it becomes small droplets with a small particle size in the cooking oil and is easily dispersed. Therefore, even if it becomes water vapor and gasifies in the heated cooking oil, the explosion that occurs will become smaller, but at this time, by controlling the interfacial tension using the liquid control device 1, the degree of explosion can be adjusted. Therefore, the voltage applied to the electrode can be set according to various cooking conditions using the deep fryer, the type or state or amount of food, etc. Thus, even when the cooking conditions using the deep fryer are different, the interfacial tension can be appropriately controlled by applying an appropriate voltage to the electrodes, so that the texture and taste of the cooked food become very excellent. This is also useful in the case of feedback control of the voltage applied to the electrodes. In addition, the interfacial tension can be measured or predicted, so the interfacial tension can also be used as one of the control parameters.

[0200] Figure 6This is a graph showing the interfacial tension between edible oil and water when the AC voltage applied to the electrodes is changed between a frequency of 10 kHz to 20 kHz and a voltage of 0 V to 160 V. Figure 6 This is a measurement example performed using a specific experimental device. Even if the measurement results cannot be extended to all measurement systems, it shows that the interfacial tension is correlated with the frequency and voltage value of the AC voltage applied to the electrodes. By adjusting the frequency and voltage value of the AC voltage applied to the electrodes using this correlation, the interfacial tension can be optimized. By clarifying the relationship between the effect of the liquid control device 1 of this embodiment and the interfacial tension, the effect can be optimized based on the relationship with the interfacial tension not only in the case of a fryer but also in other application objects, such as for cold storage or preservation. The measurement of the interfacial tension is relatively easy, so the optimization of the liquid control device 1 of this embodiment can be analyzed based on the relationship with the interfacial tension, thereby making it possible to more appropriately and easily control the voltage applied to the electrodes.

[0201] exist Figure 5 , 6 In the embodiment, the reduction of the interfacial tension between the water phase and the oil phase is described, but the interfacial tension between the liquid phase and a phase different from the liquid can also be controlled by controlling the applied electromagnetic field. The control of the interfacial tension of the liquid can be applied not only to the control of the interfacial tension between the liquid phase and other liquid phases, but also to the control of the interfacial tension between the liquid phase and the gas phase, and the control of the interfacial tension between the liquid and the solid phase. For example, the control of the interfacial tension, the control of the contact angle, etc. can also be performed by applying an electromagnetic field using the liquid control device of this embodiment.

[0202] Figure 7 This is a photo of water droplets dripping into oil. It shows the situation when physiological saline solution is dripped into edible oil from a capillary tube (metal straw with a diameter of 1.0 mm), a ring electrode is set to surround the front end of the capillary tube, and a voltage of 100 V is applied between the capillary tube and the ring electrode. When no voltage is applied, the water droplets will not drip into the oil. If a voltage is applied, the interfacial tension between the edible oil and the physiological saline solution decreases, and the water droplets will drip into the oil. Figure 7 In the embodiment of the present invention, it can be confirmed that micro bubbles are dispersed around the dripping water droplets. When a voltage is applied, the interfacial tension is reduced, so the particle size of the water droplets is reduced, and micro bubbles are generated along with the dripping of the water droplets.

[0203] When voltage was applied, a drop of saline solution dripped into the cooking oil, and the moment of the drop was observed with a high-speed camera. Figure 8 A represents the situation before voltage is applied, Figure 8 B represents the situation when voltage is first applied. Figure 8 C represents the situation after voltage is applied, and the time series is Figure 8 A. Figure 8 B. Figure 8 C. If a voltage is applied, then Figure 8 B and Figure 8 As shown in C, fine bubbles can be confirmed. In addition, there are also portions that are not clearly distinguishable from the gas generated by the electrode due to electrolysis.

[0204] The liquid control device of the present embodiment controls in a manner to reduce the interfacial tension, thereby being able to control in the following manner: for example, by utilizing the function of being able to control the formation of water droplets and microbubbles in the oil, for example, an oil-in-water (W / O) type or water-in-oil (O / W) type emulsion is generated, and in addition, the stability and other qualities of the emulsion are improved. In addition, the emulsion is not limited to two phases, and the control of emulsions with more than three phases can also be performed. In addition, here, as an emulsion, a two-phase mixture of an aqueous phase and an oil phase is exemplified, but the liquid control device of the present embodiment can be used for the control of mixing, stirring, or kneading of any two or more phases, such as two liquids, a liquid and a solid, as long as one of the phases contains a liquid. In the following, the expression of the control of the emulsion is simply used, but the control also includes the control of the mixing of any two or more phases.

[0205] By utilizing the liquid control device of this embodiment to control the electromagnetic field applied to a substance, it is possible to act on the moisture inside or on the surface of the substance, thereby preventing, inhibiting or controlling moisture deterioration, moisture turbidity, color turbidity, algae growth, slipperiness, rust, or mold.

[0206] [Variation 1]

[0207] Reference Fig. 9 , the liquid control device of variation example 1 is described. Fig. 9 is a conceptual diagram of the electrode of Variation 1. Figures 1 to 8 The same components are denoted by the same reference numerals and their descriptions are omitted. The liquid control device of Modification 1 is different from the liquid control device of Embodiment 1 in that the number of electrodes is two pairs.

[0208] The liquid control device 1A includes controllers 10A and 10B, and first electrodes 13 and 14 and second electrodes 15 and 16 as two pairs of electrodes. The controllers 10A and 10B include an AC component voltage generating unit and a DC component voltage generating unit, respectively. In the actual circuit configuration of the controller 10, it is not necessary to separately set the AC component voltage generating unit and the DC component voltage generating unit, and a circuit configuration having the functions of both can also be provided. In addition, the two controllers 10A and 10B can also be configured as one controller. Furthermore, as long as the same electromagnetic wave is generated from the first electrodes 13 and 14 and the second electrodes 15 and 16, voltage can also be applied to both the first electrodes 13 and 14 and the second electrodes 15 and 16 from one controller.

[0209] The liquid control device 1A is driven by the controllers 10A and 10B to generate an electric field between a pair of electrodes 13 and 14 of the first electrode and between a pair of electrodes 15 and 16 of the second electrode. At this time, the electrodes 13 to 16 function as antennas, respectively, and generate electromagnetic fields by radiating electromagnetic waves between the two electrodes 13 and 14 of the first electrode and between the two electrodes 15 and 16 of the second electrode. Therefore, at least one of an electric field, a magnetic field, an electromagnetic field, and an electromagnetic wave is generated between the two electrodes 13 to 14 and 15 to 16. In addition, similarly to the first embodiment, by applying vibration to the electrodes 13 and 14 using electrical, magnetic or mechanical mechanisms, sound waves and / or ultrasonic waves can be generated between the electrodes, and further, when the water molecules are vibrated by the prescribed sound waves and / or ultrasonic waves, the water molecules can be arranged even if no voltage is applied between the electrodes.

[0210] A substance to be processed is disposed between the first electrodes 13 and 14 and between the second electrodes 15 and 16. The substance to be processed is not particularly limited as in the first embodiment, as long as it is at least one of an individual, a liquid, and a gas. When the liquid control device 1A of this embodiment is disposed in a refrigerator, for example, the first electrodes 13 and 14 can be disposed on the side surface of the refrigerator, and the second electrodes 15 and 16 can be disposed on the top surface, the bottom surface, or the shelf of the refrigerator. Fig. 9 In the figure, an example is shown in which the first electrodes 13, 14 and the second electrodes 15, 16 are arranged in an orthogonal manner, but the present invention is not specific to this. As long as the electromagnetic field generated by the first electrodes 13, 14 and at least a part of the electromagnetic field generated by the second electrodes 15, 16 act on the substance to be processed, the first electrodes 13, 14 and the second electrodes 15, 16 may be arranged in any manner.

[0211] The controllers 10A and 10B perform feedback control on at least one of the current value, voltage value, frequency and phase applied to the electrodes based on a detection signal from a detection unit (not shown). The detection unit includes at least one of the following: a voltage sensor for detecting the voltage applied to the electrode, a current sensor for detecting the current applied to the electrode, a frequency sensor for detecting the frequency of the voltage and / or current applied to the electrode, a magnetic field sensor for detecting the magnetic field between the two electrodes 13 to 14, 15 to 16, and an electric field sensor for detecting the electric field between the two electrodes 13 to 14, 15 to 16, a voltage phase detection sensor, a current phase detection sensor, and a voltage and current phase detection sensor.

[0212] The control target value of at least one of the current value, voltage value, frequency and phase in the controllers 10A and 10B is set according to the type or state of the substance to be processed. In addition, the current, voltage, frequency and phase applied from the controller 10A to the first electrodes 13 and 14 may be the same as or different from the current, voltage, frequency and phase applied from the controller 10B to the second electrodes 15 and 16. For example, the voltage and frequency of the two electrodes may be different, only the frequency of the two electrodes may be different, the frequency and phase of the two electrodes may be different, and various combinations may be made.

[0213] The setting of the control target value can be remotely set via a communicator (not shown). In addition, the control parameters or control amounts of the controllers 10A and 10B can also be remotely controlled. Thus, the controllers 10A and 10B of the plurality of liquid control devices 1A can be centrally managed by the management server 40 located at a remote location, and each controller 10A and 10B can be appropriately controlled. However, the form of control of the controllers 10A and 10B is not limited to remote control from the management server 40. For example, the controllers 10A and 10B of each liquid control device 1A can be individually controlled by directly setting the control target value or setting the control parameter for each controller 10A and 10B.

[0214] The management server 40 can also be set as a cloud server set on the cloud. More than one liquid control device is connected to the cloud server via a network, and the control information in each liquid control device is managed by the cloud server, and the cloud server sets the optimal control parameters corresponding to the object part and state according to the information. In addition, each control result data is also collected by the cloud server. For example, in the cloud server, data related to voltage, current, frequency, and interfacial tension for the object, the object part, and the state of the object are stored. In the cloud server, the control parameters of the controller of each liquid control device are set according to these data. In the cloud server, as a control parameter, the target value of the voltage and frequency applied to the electrode can be directly sent to the controller, or the data such as the interfacial tension corresponding to the object and its state required for calculating the voltage and frequency applied to the electrode can be sent to the controller, and the controller calculates the target value. In the former case, the target value can be set by the cloud server, so the setting work of the on-site operator can be saved. In the liquid control device of this embodiment, a plurality of types of controllers may be prepared according to the object, the object part, the type or state of the object or the object part, the control target, etc. However, by using the same controller to set various target values, it can be applied to the control of various objects. By using various historical data collected in the cloud server, machine learning can be performed as described below to determine the optimal control parameters. In addition, as described below, when setting the control parameters, a dummy measuring device for parameter measurement that can sense the electric field applied from the electrode of the liquid control device can be used.

[0215] exist Fig. 9 In the embodiment, an electromagnetic field is applied from two pairs of orthogonal electrodes (X-direction electrodes 13, 14 and Y-direction electrodes 15, 16), so by controlling the current or voltage applied to each electrode, the strength of the electromagnetic field generated between the electrodes can be adjusted, and in addition, the direction of the electromagnetic field can also be adjusted, so the arrangement direction of water molecules or water particles can be controlled. The current or voltage applied to the X-direction electrodes 13, 14 is controlled by the controller 10A, and the current or voltage applied to the Y-direction electrodes 15, 16 is controlled by the controller 10B. As a result, for example, by adjusting the ratio of the voltage value applied to the X-direction electrodes 13, 14 to the voltage value applied to the Y-direction electrodes 15, 16, the strength and direction of the electromagnetic field generated by each electrode can be adjusted, so that the water inside or on the surface of the material arranged in the electromagnetic field can be micronized, and the arrangement state of the micronized water can be controlled in a desired direction. Not only AC voltage but also DC voltage can be applied to each electrode, so by adjusting the DC voltage component, the arrangement of water inside or on the surface of the material arranged in the electromagnetic field generated by each electrode can be controlled in any direction in the two-dimensional XY coordinates. Fig. 9 In addition to the two pairs of electrodes, X-direction electrodes 13, 14, and Y-direction electrodes 15, 16, another pair of Z-direction electrodes (not shown) and a controller 10C may be further added to generate electromagnetic waves of a desired direction and intensity in three-dimensional space, thereby being able to control the arrangement of water inside or on the surface of a substance arranged in the electromagnetic field generated by each electrode in any three-dimensional direction. As described below, by using the liquid control device of this embodiment to control the micronization of water molecules inside or on the surface of a substance, the state of the linked arrangement along a specific direction, and the direction of the arrangement, the properties of the substance can be improved.

[0216] Fig.10 This is a conceptual diagram of different electrodes of Variation 1. Fig.10 A is an example using 1 electrode. Fig.10 B is an example of using one electrode and two electrodes facing the electrode. In Embodiment 1, an example of using a pair of electrodes is described, and in Embodiment 2, an example of using two pairs of electrodes is described, but the present invention is not limited thereto, and for example, one electrode may be used, or an odd number of electrodes such as three electrodes may be used. For example, Fig.10 As shown in A, electromagnetic waves can also be generated by one electrode 17. In addition, when three electrodes are used, for example, Fig.10 As shown in B, two electrodes 19 and 20 may face one electrode 18, or different electromagnetic waves may be generated by three electrodes. Therefore, the number and arrangement of electrodes may be set arbitrarily and are not limited.

[0217] [Variation 2]

[0218] Reference Fig.11 and Fig.12 , the liquid control device of variation 2 of the present invention is described. Fig.11 This is a waveform diagram when using voltages of different frequencies in Variation 2. Fig.12 This is a waveform diagram when using voltages of different phases in Variation 2. Figure 11-12 The same components are denoted by the same reference numerals and their descriptions are omitted. The liquid control device of Modification 2 is different from Embodiment 1 and Modification 1 in that a pair of electrodes generates different electromagnetic waves.

[0219] exist Fig.11 In the embodiment, an electromagnetic wave (P wave) with a frequency of 50kHz is generated from one electrode 21A of a pair of electrodes 21A and 21B, and an electromagnetic wave (Q wave) with a frequency of 47kHz is generated from the other electrode 21B. Here, if the amplitude of the electromagnetic wave is set to A, the P wave and the Q wave are respectively expressed by the following equations. In addition, at time t = 0, both are expressed by the equation at the position where V(t) = 0 (for example, the position exactly in the middle of the two electrodes 21A and 21B).

[0220] P wave: V(t) = Asin(2πf1t), f1 = 50kHz

[0221] Q wave: V(t) = Asin(2πf2t), f2 = 47kHz

[0222] Therefore, if Fig.11 As shown in C, electromagnetic waves of P wave + Q wave are applied between the pair of electrodes 21A and 21B.

[0223] exist Fig.12 In the embodiment, an electromagnetic wave (P wave) with a frequency of 50kHz is generated from one electrode 22A of a pair of electrodes 22A and 22B, and an electromagnetic wave (Q wave) with a frequency of 30kHz is generated from the other electrode 22B. With respect to the phase α of the two waveforms, both are consistent at α=0. Here, if the amplitude of the electromagnetic wave is set to A, the P wave and the Q wave are respectively expressed by the following equations. In addition, at time t=0, both are expressed by the equation at the position where V(t)=0 (for example, the position exactly in the middle of the two electrodes 21A and 21B).

[0224] P wave: V(t) = Asin(2πf1t), f1 = 50kHz

[0225] Q wave: V(t) = Asin(2πf2t), f2 = 30kHz

[0226] Therefore, if Fig.12 As shown in B, electromagnetic waves of P wave + Q wave are applied between a pair of electrodes 22A and 22B.

[0227] exist Fig.12 In C, an electromagnetic wave (P wave) with a frequency of 50kHz and a phase α=0 is generated from one electrode 23A of a pair of electrodes 23A and 23B, and an electromagnetic wave (Q wave) with a frequency of 30kHz and a phase α=π / 2 is generated from the other electrode 23B. That is, the phase of the two waveforms is set to π / 2. Here, if the amplitude of the electromagnetic wave is set to A, the P wave and the Q wave are respectively expressed by the following equations. In addition, at time t=0, it is expressed by the equation at the position where the P wave V(t)=0 and the Q wave V(t)=A (for example, the position exactly in the middle of the two electrodes 21A and 21B).

[0228] P wave: V(t) = Asin(2πf1t), f1 = 50kHz

[0229] Q wave: V(t)=Asin(2πf2t+π / 2), f2=30kHz

[0230] Therefore, if Fig.12 As shown in D, electromagnetic waves of P wave + Q wave are applied between the pair of electrodes 23A and 23B.

[0231] exist Figures 11-12 In the process, electromagnetic waves with different frequencies and / or phases are generated from the two electrodes respectively, but the present invention is not limited to this. For example, the AC component voltage applied to the two electrodes can be adjusted to control the peak-to-peak voltage of the electromagnetic wave, or the DC component voltage applied to the two electrodes can be adjusted to apply a DC component voltage to the AC component voltage as an offset voltage, or the DC component voltage applied to the two electrodes can be made different, or the peak-to-peak voltage value, frequency and phase of the AC component voltage applied to the two electrodes can be made different.

[0232] [Variation 3]

[0233] Reference Fig.13 , a liquid control device according to a third variation of embodiment 1 of the present invention is described. Fig.13 is a block diagram of the liquid control device 1. Figures 1 to 12 The same components are given the same reference numerals and their descriptions are omitted.

[0234] Fig.13 is with Figure 1 The communication unit 35, the storage unit 37, and the external power supply 39 are omitted. That is, in reality, the control unit 36 ​​communicates with the management server 40 via the communication unit 35, inputs and outputs data with the storage unit 37, is supplied with power from the external power supply 39, and controls the current and voltage applying unit 11 via the current and voltage control unit 33, but these operations are not described in detail. Fig.13 In addition, Fig.13In the figure, the controller 10 is shown outside the housing 50 (such as a refrigerator, etc.), but is not limited to this. For example, the controller 10 may also be set inside the housing 50.

[0235] right Fig.13 The processes (a) to (h) in the process are described in sequence. In process (a), the settings of the controller 10 such as the on / off of the controller 10, the action mode, the type or state of the substance, the setting of the output voltage and / or the output current of the current and voltage applying unit 11 are input through the input from the human-machine interface 31. As the action mode, there are, for example, an automatic mode, a substance input mode, and a manual setting mode. In the automatic mode, for example, as described below, the controller 10 is automatically controlled to make the substance in an appropriate state according to the detection signal from the substance detection unit 32, the detection signal from the detection unit 38, and the control parameter or control value from the management server 40. In the substance input mode, for example, by inputting the type or state of the substance from the human-machine interface 31, the controller 10 is appropriately controlled according to the substance. In the manual setting mode, for example, the output voltage and / or the output current of the current and voltage applying unit 11 are manually set. In the following, unless otherwise specified, the automatic mode is used as an example for description. In the process (a), when the housing 50 further has an automatic adjustment function, the setting value for the housing 50 may be input from the man-machine interface 31 .

[0236] In process (b), information related to the substance is collected from the substance detection unit 32 by instructions from the control unit 36. For example, when the housing 50 is a refrigerator, the information related to the substance collected by the substance detection unit 32 includes an image of a camera in the refrigerator, a detection signal related to the moisture of the food obtained by a moisture sensor, and a detection signal of a temperature sensor or a humidity sensor (including a detection signal from a sensor built into the refrigerator). In addition, when the housing 50 is a container, the information related to the substance collected by the substance detection unit 32 includes an image of a camera in the container, a detection signal of a temperature sensor or a humidity sensor in the container, and a signal from a GPS installed in the container (in addition, the GPS may also be installed in the controller 10). Here, the housing 50 is described as an example of a refrigerator, but the present embodiment is not limited thereto, and the housing 50 includes, for example, the following appliances, machines, devices or equipment: a treatment table, a treatment table, a simple bed, an electromagnetic therapy device, an electric potential therapy device, a low-frequency therapy device, EMS, a massage machine, a beauty machine, a vibration machine, a cavitation machine, a microbubble machine, a nano-microbubble machine, a nanobubble machine, a microbubble machine, a megahertz machine, a high-frequency machine, a quantum therapy device, a hair growth machine, a cellulite firming machine, a muscle relaxation machine, an ultrasonic therapy machine, an ozone generating machine, a hydrogen generating machine, an LED machine, a beauty machine, a slimming machine or a storage container. The relevant information of the substance collected by the substance detection unit 32 includes information from a treatment or treatment camera or sensor, information collected or processed by the various machines, and information from a storage container or a storage device.

[0237] In process (c), the information about the substance collected by the substance detection unit 32 according to the instruction from the CPU 36 is sent to the management server 40 via the communication unit 35. In addition, when the setting in process (a) is the substance input mode, for example, information on the type or state of the substance input from the human-machine interface 31 is sent to the management server 40.

[0238] In addition, when the setting in the process (a) is the manual setting mode, for example, the information on the output voltage and / or output current of the current and voltage applying unit 11 may be sent to the management server 40, and after the specified correction is made in the management server 40, the specified control parameter or control value is sent from the management server 40 to the control unit 36. In addition, for example, in order to collect information in the management server 40, the output voltage and / or output current of the current and voltage applying unit 11 that is manually set may be sent to the management server 40, and the control value may be calculated in the control unit 36. In addition, for example, when the correction of the control value or the collection of information is not required in the management server 40, in the process (c), the information on the output voltage and / or output current does not need to be sent to the management server 40.

[0239] In the management server 40, appropriate control parameters or control values ​​are calculated for the type and state of the substance. Furthermore, in addition to referring to the type and state of the substance, the management server 40 may refer to information such as season, weather, weather forecast, date and time, location, supply and demand forecast, storage status of refrigerators, container transportation routes and traffic conditions, status of a group of containers related to the container, inventory management information, supply and demand conditions, economic indicators, and information on the network when calculating the control parameters or control values ​​by communicating with the database 43 or the like. Furthermore, in the management server 40, treatment or treatment information about each liquid control device, that is, reservation information, treatment content, treatment content, response object, response object, target site, treatment purpose, treatment purpose, and the like is collected.

[0240] The type or state of the substance can be determined by image recognition in the management server 40 based on the image of the camera in the relevant information of the substance collected by the substance detection unit 32. When performing this image recognition, for example, the type or state of the substance can be accurately identified by using AI trained by deep learning. That is, a neural network trained by the image of the camera of the food and the data of the actual type or state of the food can be used to accurately identify the type or state of the substance based on the image of the camera. The server can store a lot of image recognition data by communicating with other controllers 10, thereby further improving the accuracy of image recognition for various substances. In addition, in the case where the controller 10 has an AI program, a pre-trained learning model can also be used in the management server 40, image recognition is performed in the control unit 36, and the result of image recognition is sent to the server 40 in process (c). In the case of performing image recognition in the controller 10 in this way, the communication volume of data transmission in process (c) can be reduced.

[0241] In the process (d), the control parameter or control value calculated in the management server 40 is sent to the control unit 36 ​​of the controller 10 .

[0242] The management server can also be set as a cloud server set on the cloud. One or more liquid control devices are connected to the cloud server via a network, and the control information in each liquid control device is managed by the cloud server, and the appropriate control parameters corresponding to the object part and state are set by the cloud server based on the information. In addition, each control result data is also collected by the cloud server. For example, in the cloud server, data related to voltage, current, frequency, and interfacial tension for the object, object part, and state of the object are stored. In the cloud server, the control parameters of the controller of each liquid control device are set based on these data. In the cloud server, as control parameters, the target value of the voltage and frequency applied to the electrode can be directly sent to the controller, or the data such as the interfacial tension corresponding to the object and its state required for calculating the voltage and frequency applied to the electrode can be sent to the controller, and the controller calculates the target value. In the former case, the target value can be set by the cloud server, so the setting work of the on-site operator can be saved. In the liquid control device of this embodiment, multiple types of controllers can also be prepared according to the object, object part, type or state of the object or object part, control target, etc., but by using the same controller to set various target values, it can be applied to the control of various objects.

[0243] In order to set various target values ​​using the same controller, it is preferred to use AI for setting control parameters. The best control parameters can be determined by machine learning using various historical data collected in the cloud server. The type of machine learning is not particularly limited, for example, deep learning can be used. As training data, data of each control parameter and the control result corresponding thereto can be used. The control result data of other liquid control devices connected to the network are also collected by the cloud server. Thus, in addition to the data of each control parameter and the control result corresponding thereto, various environmental data, mechanism data, object part data, condition data and other big data can also be obtained. Therefore, these big data can be used as training data to train the learning model through machine learning. The trained learning model can be used to set appropriate control parameters corresponding to the object, object part and the condition of the object. The data detected by the material detection unit 32 and the detection unit 38 of the later-described variation 3 can also be collected by the cloud server, and these data can also be used as training data for machine learning. In addition, the machine learning of image recognition in the later-described material detection unit 32 can be performed in the cloud server together with the calculation of the control parameters.

[0244] As described above, the settings of the controller 10 such as the on / off of the controller 10, the operation mode, the type or state of the substance, the setting of the output voltage and / or the output current of the current and voltage applying section 11 are inputted through the input from the man-machine interface 31, such as a PC, a tablet terminal, a smart phone, a mobile phone, etc. In the liquid control device of the present embodiment, various objects can be controlled, so when inputting the setting value of the controller 10, it is preferable to enable the setting value to be inputted in a dialog-like manner from the man-machine interface 31 in advance. In addition, it is possible to connect to a reservation system or a management system installed in a facility, a hospital, a clinic, etc. where the liquid control device of the present embodiment is installed, and a plan, date and time, object, object part, state of the object and object part, control target, etc. for using the liquid control device of the present embodiment can be inputted into the liquid control device based on reservation information, schedule information, management information, etc. The information to be input is not particularly limited. For example, information on the physical condition or symptoms including the height, weight, temperature, blood pressure, blood sugar level, etc. of the subject, information on medical questionnaires, medical records, and historical information are input as the state of the object and the object part. For example, information on treatment goals, treatment guidelines, and treatment plans are input as the control target. When the input of the set value is related to the treatment content, the following input methods are adopted: the physician or medical staff checks and confirms the input of the subject; the physician or medical staff inputs the results of the medical consultation with the subject. As the input information, it is preferably the input of treatment process information, and therefore, information such as medical records or treatment history is also included. The machine learning for setting the above-mentioned control parameters can use these various input information, information detected by the material detection unit 32 and the detection unit 38 of the modified example 3 described later, information or image information from the treatment or surgical machine used with the liquid control device installed in the facility, hospital, clinic, etc., control result data of the liquid control device, diagnosis and treatment information or process information of the subject after surgery, examination and diagnosis information or historical information of the subject, calibration information obtained by the virtual measuring device described later, etc. The machine learning related to the image recognition from the image information input from the material detection unit 32 can be performed separately for image recognition only, but can also be performed all at once as machine learning for setting control parameters in the cloud server for the image information.

[0245] When setting control parameters, a dummy measuring device for parameter measurement that can sense the electric field applied from the electrodes of the liquid control device can be used. The dummy measuring device is equipped with an electric field measuring device that can measure the electric field applied from the electrodes of the liquid control device. In the controller or cloud server of the liquid control device, data such as the optimal electric field of the object corresponding to the characteristics of the object, the target voltage and frequency of the electrode, and the relationship between the electric field and the interfacial tension of the liquid are stored. Based on the stored data, the voltage value and frequency of the voltage applied to the electrodes of the liquid control device can be corrected using the feedback data of the electric field detected by the dummy measuring device in a manner that can appropriately apply the electric field to the object according to the type and configuration of the electrodes of the current liquid control device. Information about the appropriate electric field correction corresponding to the type or configuration of the electrode is also collected in advance in the cloud server, and thus, it can also be used for machine learning of the previous optimal control parameters. As control parameters, at least data such as the voltage, current, frequency, and electric field applied to the electrode from the electrode to the object are included. In addition, instead of using a dummy measuring device, an electric field measurement function can be set on the electrode itself. For example, the value of the electric field applied from the electrode may be obtained by calculation based on the inductance and capacitance of the electrode, the current flowing in the electrode, and the like.

[0246] When setting control parameters, various control objects and control targets can be set without special limitation, and include, for example, the following. The control parameters are related to the following: infarction, necrosis, bedsore, burn, active oxygen removal, lactic acid removal, blood flow improvement, lymph flow improvement, cerebral infarction, myocardial infarction, thrombosis, embolism, arteriosclerosis, improvement or prevention of blockage of body fluids, drug solutions, cosmetics, or liquids, improvement of fluidity of body fluids, drug solutions, cosmetics, or liquids, improvement or prevention of induration or hardening, improvement or prevention of dehydration of cells or tissues, cell edema, neuronal edema, edema, pulmonary edema, joint edema, abdominal edema, insulin secretion disorder, excretion disorder, excretion difficulty, constipation, urination disorder, congestion, blisters, improvement of drug delivery, reduction of viscosity of drug solutions or body fluids, cell culture, regenerative medicine, shortening of culture time in regenerative medicine, Improved culture quality or culture efficiency, cell tissue regeneration, lactic acid reduction, swelling, enlargement, edema, fluid retention, dehydration of extracellular fluid or intracellular fluid, skin diseases, pigmentation, liver spots, freckles, epidermal wrinkles, dermal wrinkles, expression wrinkles, dry skin, physical condition improvement, induration, muscle induration, fascia relaxation, fascia potential improvement, neurodegenerative disease, fascia electromagnetic treatment, muscle imbalance, fascia potential balance improvement, body balance improvement, fascia balance improvement, bite improvement, osteopathic improvement, chiropractic improvement, fracture or joint disease improvement or prevention, endocrine, lymphatic, or meridian balance improvement, fracture, joint disease, skin care, moisturizing, fertility improvement, infertility, sperm motility improvement, sperm activity, egg activity, mitochondrial activity, autophagy activity, PMS, pain, itching, abnormal sensation, coldness, sexual indifference, cramps, anti-aging, hair follicle care, improvement of menopausal disorders, improvement of cleanliness, hair loss, AGA, ED, promotion of fat decomposition, improvement of contact lens wearing feeling, dry eyes, vision improvement, dynamic vision improvement, sleep disorder, sleep improvement, sleep apnea syndrome, preventive medicine improvement, nerve cell improvement, cell edema improvement, virus, bacteria, or fungus countermeasures, cancer, glaucoma, cataract, age-related macular degeneration, ophthalmic diseases, hearing loss, hearing impairment, visual impairment, dementia, Alzheimer's disease, Parkinson's disease, sleep improvement, beauty improvement, health promotion, motor function improvement Improvement, water balance, digestive system medical diseases, respiratory system medical diseases, circulatory system medical diseases, neurological diseases, hematological diseases, kidney medical diseases, endocrine medical diseases, medical diseases, improvement or normalization of blood pressure, improvement or increase of pulse or heartbeat, improvement or increase of respiratory function or lung function, improvement or increase of dialysis function, osteopathy, improvement of rigor mortis, preservation, freezing, thawing, cultivation, or logistics of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids, improvement of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA,Improvement of electrodes or containers for the preservation, freezing, thawing, culture, or logistics of stem cells, sperm, eggs, drugs, cosmetics, or liquids; improvement or enhancement of the efficacy or quality of drugs, cosmetics, or liquids; improvement or enhancement of the extraction of body fluids, drugs, cosmetics, or liquids; improvement or enhancement of the production of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs; improvement or enhancement of emulsification; improvement or enhancement of drug delivery; improvement or enhancement of the efficacy or performance of drugs; prevention or countermeasures for the proliferation of microorganisms, bacteria, fungi, or viruses; prevention of transfer; reduction of the viscosity of drug solutions; control of the fluctuation of liquids; control of ectoplasm.

[0247] In the process (e), the control unit 36 ​​controls the output voltage and / or output current of the current / voltage applying unit 11 using the control parameter or control value transmitted from the management server 40 .

[0248] In process (f), the control unit 36 ​​performs feedback control on at least one of the current value, voltage value, frequency and phase applied to each electrode 13, 14 based on the detection signal detected by the detection unit 38. In addition, the detection signal detected by the detection unit 38 includes at least one of the following: the voltage applied to the electrode, the current applied to the electrode, the frequency and / or phase of the voltage and / or current applied to the electrode, the magnetic field between the two electrodes 13, 14, the electric field between the two electrodes 13, 14, and the sound wave and / or ultrasonic wave between the two electrodes 13, 14. At this time, the control value fed back may be the control value calculated in the control unit 36, or the control value calculated in the management server 40.

[0249] Here, in the case where the fed-back control value is the control value calculated in the control unit 36, the control target value is sent from the management server 40 to the control unit 36 ​​in process (d). Alternatively, in the case of manual mode, in process (a), a set value is input as the control target value. In addition, the control target value can be set variably with respect to time based on the relevant information of the substance collected by the substance detection unit 32. In addition, in the case where the fed-back control value is the control value calculated in the management server 40, in order to calculate the fed-back control value in the management server 40, the detection signal detected by the detection unit 38 is sent to the management server 40 in process (c), the fed-back control value is calculated in the management server 40, and the control value is sent from the management server 40 to the control unit 36 ​​through process (d).

[0250] In this embodiment, an example using the detection unit 38 is described, but control without using the detection unit 38 is also possible. In this case, process (f) is omitted, and the output voltage and / or output current of the current and voltage applying unit 11 is controlled by process (e). In addition, various controls such as sensorless control and open loop control can be applied to the control at this time.

[0251] In the process (g), when the housing 50 has an automatic adjustment function, a control instruction from the control unit 36 ​​can be sent to the housing 50. When the housing 50 is a refrigerator, the control instruction is, for example, a set value of the temperature or humidity in the refrigerator. In addition, when the housing 50 is a container and the container has a function of adjusting the temperature or humidity, the control instruction is, for example, a set value of the temperature or humidity of the container. In addition, when the housing 50 is a container and the container is stored in a warehouse where the temperature or humidity can be adjusted, as described below, through the process (i), information related to the adjustment of the temperature or humidity of the container is sent to the external server and the management server of the warehouse as the database 43, so as to appropriately adjust the temperature or humidity state of all containers including other containers. In addition, when the housing 50 does not have an automatic adjustment function, the process (g) is not a necessary configuration. In this case, for example, in the process (h) described later, the relevant information of the control instruction from the control unit 36 ​​is displayed on the human-machine interface 31.

[0252] In the process (h), as the control status in the control unit 36, for example, the control status of the output voltage and / or output current of the current and voltage applying unit 11, the information on the type and state of the substance currently being processed, the status of the housing 50 (detection information of the substance detection unit 32), and the related information of the control instruction to the housing 50 from the CPU 36 when the housing 50 does not have the automatic adjustment function are displayed on the human-machine interface 31. In addition to this information, as necessary or according to the operation from the human-machine interface 31, information such as season, weather, weather forecast, date and time, place, supply and demand forecast, storage status of refrigerators, transportation route and traffic status of containers, status of a group of containers related to the container, inventory management information, supply and demand status, economic indicators, and information on the network can be displayed on the human-machine interface 31 as information sent from the management server 40 in addition to the control parameters or control values ​​in the process (d). By referring to this information, the operator can appropriately manage the treatment or treatment.

[0253] The human-machine interface 31 can be integrated with the controller 10. Alternatively, the human-machine interface 31 can also be set as a different body from the controller 10, or an independent entity together with a part of the functions of the controller 10. In this case, the human-machine interface 31 can be configured as a mobile terminal with communication function, such as a smart phone, a mobile phone, a tablet terminal, or a PC. In the case of making the human-machine interface 31 and a part of the functions of the controller 10 an independent entity, at least any one of the functions of the communication unit 35, the storage unit 37, and the computing function of the control unit 36 ​​in the controller 10, or a part of the functions thereof, can be made an independent entity together with the human-machine interface 31. Furthermore, the function of the material detection sensor 32 or the function of the detection unit 38 or a part of these functions can also be integrated with the human-machine interface 31. For example, the camera function built into a smart phone, a mobile phone, a tablet terminal, or a PC can be used as the material detection unit 32.

[0254] In process (i), the management server 40 sends and receives information or collects data required for the management of the substance by communicating with the database 43. The management server 40 can communicate with a required external server via the Internet. Therefore, when the housing 50 is a container, for example, the management database or management server of the warehouse that manages the container can be accessed.

[0255] In addition, the controller may also adjust at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged opposite to the object part, control at least one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, and control at least one of the frequency, voltage, and radiation angle of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode to change with time according to the object part facing the electrode, or control the time for which the voltage is applied to the electrode. When information about the object is input based on the detection signal from the material detection unit 32, the detection signal from the detection unit 38, or the setting signal from the human-machine interface, the controller controls at least one of the following based on the type or state of the object and the prescribed setting of the control parameter or control value from the management server 40: control the frequency and voltage applied to the electrode to change with time, control the radiation angle of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, that is, the angle of the electrode to change with time, or control the time for which the voltage is applied to the electrode. The predetermined setting of the temporal change of the voltage and / or frequency is not particularly limited, and a sweep characteristic as in Modification Example 4 described later may be adopted.

[0256] [Variation 4]

[0257] use Fig.14, the liquid control device, quality control method, program, and storage medium of the fourth variation of the present invention are described. Figures 1 to 13 The same components are denoted by the same reference numerals and their description is omitted. In the liquid control device 1 of the first embodiment and the first to third embodiments, the current value or voltage value and the frequency of the current or voltage are set to predetermined values, but in the fourth embodiment, the current value or voltage value and / or the frequency are changed according to a predetermined rule and within a predetermined range, i.e., scanned. Fig.14 A shows an example in which the voltage value, the current value, or the frequency is continuously swept in a linear form. Fig.14 B shows an example of changing the voltage value, current value or frequency in a linear or step-like manner. Fig.14 C is, for example, a device that changes the voltage value in steps and sweeps the frequency in a straight line continuously. In addition, for example, a device that changes the frequency in steps and sweeps the voltage value in a straight line continuously. Thus, an appropriate current value or voltage value, and / or an electromagnetic wave of an appropriate frequency can be automatically generated for any object. That is, an appropriate current value, voltage value or frequency will be generated at a specified time point within the scanning range. In addition, Fig.14 C is just an example and is not limited to this. Fig.14 In C, one value is fixed for a period of time, and the other value goes back and forth between 0 and the peak value, but it is not limited to this. For example, it is also possible to repeatedly change as follows: one value is fixed for a period of time, and the other value increases from 0 to the peak value, and then one value changes in a step-like manner, and when the value becomes fixed, the other value decreases from the peak value to 0. Furthermore, in Fig.14 In C, one value changes stepwise, and the other value changes continuously and frequently between 0 and the peak value, but the present invention is not limited thereto. For example, one value may change slowly and continuously, and the other value may change continuously and frequently between 0 and the peak value.

[0258] Scanning rules are not limited to Fig.14 In addition to linear or step-shaped changes, for example, curve-shaped changes, sinusoidal changes, analog smooth changes, discrete changes, random changes, etc. can also be used. The AC voltage value, DC voltage value, AC current value, DC current value, frequency, etc. can be changed. In this case, each value can be changed one by one, or multiple values ​​can be changed in association (for example, refer to Fig.14 C), a plurality of values ​​may be changed simultaneously, etc. The scanning range may be performed within the range specified in the variations 1 to 3, or may be expanded to a wider range than the range.

[0259] For any object, at a specified time point within the scanning range, an appropriate current value, voltage value or frequency is generated, but the controller 10 can also grasp the state of the object based on the feedback obtained by the material detection sensor 32, etc., and analyze it in accordance with the scanning change mode, or analyze it on the server side, and automatically detect the appropriate (or optimal) current value, voltage value or frequency. The detected appropriate value can also be used for the control of the subsequent controller 10, and is also shared in other controllers 10 via the server.

[0260] Hereinafter, an example of improving blood flow will be described with respect to the liquid control device of embodiment 1. In the liquid control device of this embodiment, for example, when the subject places both feet on the square plate-shaped electrodes placed on the floor, the electrodes generate electromagnetic waves, and the electromagnetic waves acting on the subject are adjusted, thereby controlling the blood flow of the subject to improve it. The electrode may be monopolar or bipolar. In the case where the electrode is bipolar, it has a positive electrode and a cathode. The cathode may be set to ground potential, but is not particularly limited. The positive electrode and the cathode may be configured to be divided in the front-to-back direction or the width direction of the square electrode.

[0261] As a preferred bipolar configuration, the following electrode arrangement can be used: each electrode is in the shape of a comb tooth, and the two electrodes are arranged opposite to each other in such a way that the comb teeth of the two electrodes are arranged alternately, but there is no special limitation. Although the expression "comb teeth" is used, the shape of the comb teeth is not limited to the shape of a plurality of longitudinal rectangles, and its geometric shape is arbitrary, and various shapes formed by appropriate concave-convex or spatial combinations can be adopted. As long as the conductivity of the electrode and the insulation between the two electrodes can be ensured, the size of each comb-tooth electrode can be arbitrary, for example, the gap between the two electrodes can be set to about 0.5mm to 50mm, and the width of the conductive part can be set to about 0.5mm to 50mm.

[0262] Fig.15 The results of blood flow improvement after 30 minutes are shown in Figure 1. The results of blood flow improvement in the capillaries of the fingertips when electromagnetic waves of 50kHz, 100V were applied to the electrodes from the controller and applied to the subjects for 30 minutes are shown in Figure 1. Fig.15 The left side shows the data without electromagnetic wave application, and the right side shows the data after 30 minutes of electromagnetic wave application. The average values ​​of blood flow velocity at each site (1) to (4) were improved by the fluid control device of this embodiment after 30 minutes of electromagnetic wave application.

[0263] In the present embodiment, regarding the measurement of the blood flow velocity, the movement of blood is captured by image analysis and the blood flow velocity is calculated, but the present invention is not particularly limited.

[0264] Fig.16 This is the result of improved blood flow during the 4-week period. Fig.16It was confirmed that blood flow was improved when the subject was treated with electromagnetic waves at 50 kHz and 100 V applied from the controller to the electrodes for 30 minutes every day. Fig.16 The four bar graphs from top to bottom represent the blood flow velocity during a 5-second period, and the data from top to bottom are the data of the 3rd day, the 1st week, the 2nd week, and the 4th week. The bottom graph shows the change in the average blood flow velocity during the 4-week period, confirming that the blood flow improves over time by continuously treating the subject with electromagnetic waves for 30 minutes every day by the liquid control device of this embodiment.

[0265] Depend on Fig.15 , 16 The experimental results of blood flow improvement show that the liquid control device of this embodiment can improve or enhance the control of heartbeat or pulse, improve or normalize blood pressure, improve or enhance dialysis function, improve drug delivery system, or control the permeability of cosmetics. It is further shown that the effect of blood flow improvement is not only for blood, but also helps to improve the fluidity of body fluids such as plasma or lymph, improve body fluid metabolism, and stabilize water balance. Therefore, the liquid control device of this embodiment can improve or enhance vision, dynamic vision control, improve or prevent ophthalmic diseases, improve or prevent internal diseases, and improve or enhance immune function.

[0266] Fig.17 The result is the resurrection of ghost blood vessels. A subject (a woman in her 40s) was exposed to electromagnetic waves by the liquid control device of this embodiment for 30 minutes. Fig.17 As shown in the upper right photo of the figure, the ghost blood vessels at the fingertips were revived. In addition, another subject (a male in his 70s) was subjected to electromagnetic waves for 10 minutes by the liquid control device of this embodiment, and as shown in the lower right photo, the blood flow of the capillaries at the fingertips was improved.

[0267] exist Figure 15 to Figure 17In the embodiment of the present invention, when the subject places both feet on the square plate-shaped electrodes placed on the floor, the electrodes generate electromagnetic waves, and the electromagnetic waves acting on the subject are adjusted, thereby controlling the blood flow of the subject to improve it. The voltage applied to the electrodes is set to 50kHz and 100V, but the conditions for generating the voltage for the electromagnetic waves acting on the subject are not limited thereto. The frequency and voltage value of the voltage applied to the electrodes can be appropriately adjusted according to each subject or according to the state of the subject. In addition, the frequency and voltage value can also be controlled to change over time. The lower limit of the frequency is 1Hz, which is roughly the same as the heart rate, and the upper limit is not particularly limited. For example, the setting condition can be set as high as 1MHz, but it is not limited thereto, and the upper limit of the frequency can also be set in the megahertz wave region (0.1THz~100THz). Regarding the range of voltage values, except for the constraints of the power supply unit of the liquid control device, there is no special limitation. For example, the lower limit can be set to about 5V and the upper limit can be set to about 2000V.

[0268] Fig.18 This is the result of blood flow improvement in the mouse hind limb ischemia model. For the mouse hind limb ischemia model (N=7), the liquid control device of this embodiment applied 50KHz, 100V voltage to the electrodes to act on the mice with electromagnetic waves, and the blood flow ratio was significantly improved after 14 days.

[0269] Depend on Figures 15 to 18 The experiment showed that by applying an electric field using the liquid control device of this embodiment, the blockage of body fluids, medicines, cosmetics, or liquids can be improved or prevented, the fluidity of body fluids, medicines, cosmetics, or liquids can be improved or increased, the induration or hardening can be improved or prevented, the dehydration of cells or tissues can be improved or prevented, and active oxygen or lactic acid can be removed. It was further shown that by improving the body fluid metabolism in the brain and applying an electric field using the liquid control device of this embodiment, dementia, Alzheimer's disease, and Parkinson's disease can be improved or prevented, and it was further shown that by improving the body fluid metabolism and improving the immune function, metastasis can be prevented.

[0270] [Implementation Method 2]

[0271] Reference Fig.19 , the liquid control device of embodiment 2 is described. Fig.19 This is the result of a decrease in the viscosity of the contrast agent. Fig.19 In the case of contrast agents administered by intravenous drip, before intravenous drip, a voltage of 50kHz and 100V was applied to the electrodes by the liquid control device of this embodiment, and electromagnetic waves were applied to the contrast agents for 5 minutes. The results confirmed that Fig.19 As shown, the viscosity of the contrast agent decreases. Fig.19The horizontal axis is shear rate, and the vertical axis is viscosity. For each shear rate, the bar graph on the right is the data after the contrast agent was subjected to electromagnetic waves for 5 minutes by the liquid control device of this embodiment, and the bar graph on the left is the data of the control group. Fig.19 It can be seen from the data after the contrast medium was acted with electromagnetic waves for 5 minutes by the liquid control device of this embodiment that the viscosity of the contrast medium was reduced.

[0272] exist Fig.19 In the present embodiment, even when the shear rate is about 100 to 1000, the viscosity of the contrast agent is lower than that of the control group, as shown in Table 1. Fig.19 From the data, it can be seen that even in the range of shear rate of 100 to 1000, the viscosity of the contrast agent of the present embodiment is lower than that of the control group.

[0273] [Table 1]

[0274]

[0275] In this embodiment, the voltage applied from the controller to the electrode is set to 50kHz and 100V, but this embodiment is not limited to this. The electromagnetic waves acting on the contrast agent can be controlled by adjusting the frequency and voltage value of the voltage applied from the controller to the electrode according to the type or state of the contrast agent.

[0276] [Implementation method 3]

[0277] The liquid control device of embodiment 3 is described. In embodiment 3, the improvement of cell edema in the fine part of nerves is described. The liquid control device of this embodiment can make the water in the cell fine by making electromagnetic waves act on the object part. If the liquid control device of this embodiment is used to apply a voltage of, for example, 50kHz, 100V to the electrode from the controller, and the electromagnetic wave is applied to the object part, the particles of water in the cell are finely divided to less than 8μm, and the finely divided water can easily pass through the cell membrane. The reason for the cell edema of nerve cells is that the disorder of the ion balance separating the cell membrane causes the water to be stored in the cell, but by using the control device of this embodiment to make the water molecules in the cell fine, it is easy to discharge the water from the cell through the cell membrane, thereby improving the cell edema. The above shows that by using the liquid control device of this embodiment to perform body fluid minimization control, it is possible to improve or prevent edema, cell edema, or nerve cell edema. It is further shown that by utilizing the liquid control device of this embodiment to perform body fluid minimization control, in addition to the effect of improving edema, it is also possible to improve body fluid metabolism, improve body fluid fluidity, stabilize water balance, control the balance of hormones, endocrine, lymph, or meridians, control mitochondrial activity, autophagy activity, egg activity, or sperm activity, and improve or prevent burns, necrosis, or bedsores.

[0278] [Implementation Method 4]

[0279] The liquid control device of embodiment 4 is described. In embodiment 4, the situation in which the liquid control device of this embodiment inhibits the proliferation of viruses, bacteria, molds, or cancer cells is described. When the body's immunity is high, the body's potential is stable, and the interstitial fluids are combined with each other to form a quasi-combined liquefaction, so viruses, bacteria, molds, or cancer cells are not easy to proliferate. In contrast, when the body's potential is disordered and the body's immunity is reduced, the potential between the interstitial fluids is disordered and becomes a separate nutrient-rich water droplet (sometimes referred to as "extracellular free fluid"), and viruses, cells, molds, or cancer cells are combined with the extracellular free fluid to proliferate. Therefore, by using the liquid control device of this embodiment, a voltage of, for example, 50kHz, 100V is applied from the controller to the electrode to allow electromagnetic waves to act on the target part, thereby making the interstitial fluid beaded structured, thereby being able to inhibit the proliferation of viruses, bacteria, molds, or cancer cells.

[0280] [Implementation method 5]

[0281] A liquid control device according to Embodiment 5 will be described. In Embodiment 5, the antibacterial action and infection prevention action of the liquid control device according to this embodiment against bacteria or viruses will be described.

[0282] First, the antibacterial effect on enveloped viruses, such as influenza virus (H1N1) and coronavirus, is described. If a voltage of, for example, 50kHz and 100V is applied to the electrodes from the controller by using the liquid control device of this embodiment, and electromagnetic waves are applied to the target part, the interfacial tension of the water is reduced, so that the envelope of the enveloped virus is destroyed, and thus the liquid control device of this embodiment obtains an antibacterial effect on the enveloped virus. As shown in Table 2, the antibacterial activity of the liquid control device of this embodiment against the H1N1 virus obtained a result of 1.12 (antibacterial activity rate 92.45%).

[0283] [Table 2]

[0284]

[0285] Next, when electromagnetic waves are applied to the corresponding part of the body by the fluid control device of this embodiment, as described above, the transportability of immune cells is improved due to the improvement of blood flow, thereby improving the immune function, which is effective in preventing infection.

[0286] Furthermore, when electromagnetic waves are applied to the response part by the liquid control device of this embodiment, free water in the cells is bound to each other to form a chain arrangement, and becomes a stable state like bound water, thereby hindering the water supply to bacteria or viruses. Fig. 20 FIG. 2 shows the antibacterial effect of the liquid control device of this embodiment on anthrax bacteria. When the liquid control device of this embodiment is used for one day, as shown in FIG. Fig. 20 As shown in the upper curve of , the antibacterial effect on FI anthrax bacteria is obvious. In addition, when the liquid control device of this embodiment is used for 2 days, as shown in Fig. 20 As shown in the curve graph below, the antibacterial effect on both FI anthrax and FK anthrax is obvious.

[0287] [Implementation Method 6]

[0288] The liquid control device of the sixth embodiment is described. In the sixth embodiment, the purpose of the liquid control device of the present embodiment is described. In the present embodiment, the voltage and frequency applied to the electrodes in each embodiment are set to 50 kHz and 100 V unless otherwise specified, but the present embodiment is not limited to these values, and the target values ​​are appropriately set, for example, within the range of 0 to 1 MHz and 0 to 7000 V, by the cloud server and the controller according to the object, the object part, the condition of the object part, the treatment or the treatment content.

[0289] By using the liquid control device of this embodiment to apply an electric field from an electrode to the target part, the interfacial polarization of the liquid is increased and the interfacial tension is reduced, thereby making the particles of the liquid micronized, and the particles of the micronized liquid are controlled to be arranged in a chain-like manner. Furthermore, the emulsification state of the micronized liquid is controlled to be improved. That is, while the two liquids are micronized, the mixing degree of the two liquids is improved, thereby achieving a state where, for example, oil is well dispersed in water, or water is well dispersed in oil. In addition, it is possible to control the mixing of more than three phases to be good. According to the liquid control device of this embodiment, for example, the body condition can be controlled to be good by minimizing the body fluid, improving the fluidity of the body fluid, improving the metabolism of the body fluid, stabilizing the water balance, etc. In addition, by arranging the particles of the liquid in a chain, the proliferation of microorganisms, bacteria, fungi, or viruses can be prevented. Furthermore, by performing good mixing, such as improving the quality of emulsification, it is possible to improve or enhance the control of the formation of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs. The wide range of applications of the liquid control device of this embodiment and its functions, effects, and effects are described below together with various experimental examples.

[0290] By applying an electric field using the liquid control device of this embodiment, the interfacial tension of the liquid is reduced, and the particles of the liquid are micronized, thereby enabling the following control.

[0291] ■Improve blockage, edema, stagnation, edema, swelling, congestion, infarction

[0292] ■ Promote growth, increase germination rate and catch

[0293] ■Maintain freshness and improve taste and aroma

[0294] ■Inhibit oxidation and aging

[0295] ■Maintain quality, prevent deterioration, increase strength, improve fluidity, and prevent clogging

[0296] ■Reduce oil penetration and steam explosion

[0297] ■Remove active oxygen and improve redox

[0298] Furthermore, by applying an electric field using the liquid control device of this embodiment, the liquid particles that have been micronized are controlled to be arranged in beads, thereby enabling the following control.

[0299] Dry skin, keep the skin moisturized at all times

[0300] ■Inhibit the proliferation of viruses or microorganisms, inhibit decay, inhibit necrosis and pressure sores

[0301] ■Inhibit bacteria, mold, algae, and odor

[0302] ■Reduce water separation, maintain fragrance, freshness, quality, inhibit oxidation, and extend shelf life

[0303] ■ Improve strength, maintain quality, and prevent deterioration

[0304] ■Inhibit separation and water separation

[0305] Furthermore, by applying an electric field using the liquid control device of this embodiment, the emulsification property of the micronized liquid particles is improved, thereby enabling the following control.

[0306] Improve quality, performance and results

[0307] ■Maintain quality, prevent deterioration, and improve strength

[0308] ■Inhibit separation and water separation

[0309] The liquid control device of this embodiment performs body fluid minimization control, which utilizes the following technology: by applying an electric field, the interfacial tension of the liquid is reduced and the particles of the liquid are micronized. The body fluid minimization control can be performed to improve the following symptoms.

[0310] Improved water metabolism in the body

[0311] ■ Blockage of blood vessels and organs, cell edema are one of the causes

[0312] ■Cerebral infarction, myocardial infarction, blood vessel blockage

[0313] ■Effusion in the lungs and knees, ascites, and lactic acid accumulation

[0314] ■Insulin, urine, and feces cannot be excreted

[0315] ■Swelling, edema, and congestion of cells and nerve cells

[0316] Swelling after sprain or surgery

[0317] ■Pressure sores, bedsores, necrosis

[0318] ■Itching, pain, numbness, chills, stiffness

[0319] Facial swelling, wrinkles, dry skin

[0320] ■Insomnia, sleep apnea

[0321] By controlling the body fluid to minimize it using the fluid control device of this embodiment, it is possible to perform control to improve the following symptoms (since the body fluid is minimized, it is called "body fluid minimization therapy (BFM (Body Fluids Micronization) therapy)").

[0322] ■Improve blood vessel and organ blockage and cell edema

[0323] ■Improve circulation disorders

[0324] ■Suppress water convection

[0325] ■Improvement of blood sugar level, urine and stool

[0326] ■Suppressing the early stages of disease

[0327] ■ Early suppression of swelling

[0328] ■Inhibit pressure sores, bedsores, and necrosis

[0329] ■Suppress itching, pain, numbness, chills, and stiffness

[0330] ■Inhibit swelling, wrinkles, and dry skin

[0331] ■High-quality sleep and sleep apnea suppression

[0332] Regarding the control for minimizing body fluid using the fluid control device of this embodiment, the following five types of symptom improvement control can be performed.

[0333] (1) Health Tech: Solutions to maintain health

[0334] ■It does not rely on scalpels, injections, or drugs, but instead minimizes the interstitial fluid, lymph fluid, and cellular fluid in the body to improve the blockage of blood vessels and organs.

[0335] ■Improve circulatory system disorders

[0336] ■Maintaining health

[0337] ■Anti-aging, beautiful skin

[0338] (2) Sleep Tech: High-quality sleep solutions

[0339] ■Improve sleep apnea syndrome by relaxing throat muscles and improving blood flow, and achieve high-quality sleep by minimizing water in the brain and improving blood flow.

[0340] ■High-quality sleep

[0341] Improve sleep apnea

[0342] ■Improving depression

[0343] (3) PMS and menstrual pain (Fem Tech): Solutions to PMS and menstrual pain problems

[0344] ■Improve menstrual pain

[0345] ■Mental stability before menstruation

[0346] ■Shorten the menstrual period

[0347] ■ Reduce the use of pills or pain medication

[0348] (4) Anti-aging, rejuvenation, and beauty (Beauty Tech) solutions

[0349] ■For facial nodules or fascia relaxation, radio wave vibration is used to minimize the internal moisture and moisturize the cells, achieving muscle relaxation in a short period of time, thereby improving wrinkles, creating delicate skin, and improving pores.

[0350] ■Smaller face

[0351] ■Beautiful skin, fair skin

[0352] ■Rejuvenation

[0353] ■ Anti-aging

[0354] (5) Athletes (Sport Tech) solutions for improving athletic performance and fatigue recovery

[0355] ■It improves the blockage of blood vessels and organs by minimizing the interstitial fluid, lymph fluid and cell fluid in the body. It prevents the accumulation of lactic acid and improves the problem of active oxygen in the body. It keeps the muscles in the best condition.

[0356] ■Improve muscle fatigue

[0357] ■Best condition

[0358] ■Shortening the recovery time

[0359] 60-70% of the human body is water, for example, 76% of muscles are composed of water. The liquid control device of this embodiment controls in the following manner: by improving the circulation, metabolism, and balance of this water, health is maintained and physical condition is improved. By performing minimal control of body fluids, symptoms such as edema and stagnation of cells and nerve cells, blockage of blood vessels and organs, circulation, prevention of virus proliferation, and reduction of viscosity are controlled and improved. In previous treatments, the following problems were aimed at solving. As a result, according to the liquid control device of this embodiment, all these problems can be solved by performing minimal control of body fluids.

[0360] ■Solve the problem of harmful bacteria

[0361] ■Solve the problem of not being able to deliver oxygen and nutrients to every corner of the cell

[0362] ■Solve the problem of carbon dioxide and metabolic waste being unable to be discharged from the body

[0363] ■Solve the problems of aging and oxidation

[0364] ■Solve the problem of blockage of organs and blood vessels

[0365] ■Solve the problem of disappearance, decay and irreparable damage

[0366] ■Solve the problem of body temperature and energy

[0367] ■Solve problems of heart, qi, stress and hormones

[0368] According to the body fluid minimization control performed by the fluid control device of this embodiment, the following control can be performed.

[0369] ■Prevents the proliferation of coronavirus by binding water beads.

[0370] ■By minimizing the size of blood and preventing it from clotting, blockages such as blood clots are eliminated.

[0371] ■ Organ transplantation becomes easier by creating cells that maintain their freshness.

[0372] ■Improve the flow of body fluids, interstitial fluid, and blood, and improve bedsores or necrosis.

[0373] ■By minimizing body fluids to facilitate circulation, improving body fluid metabolism, maintaining water balance, and excreting metabolic waste, it prevents the proliferation of bacteria or viruses. In addition, by eliminating blockages in organs or blood vessels, it continuously maintains and improves health.

[0374] ■The scope of application is general surgery, general internal medicine, general dentistry, general cosmetology / plastic surgery, general dermatology, gynecology, health care, sports science, chiropractic, massage, whole body beauty, basic medicine, Oriental medicine, and veterinary medicine.

[0375] Fig.21 The measurement result of the particle size of the water droplets. If the electric field off state of image A is changed to the electric field on state of image B by the liquid control device of this embodiment, the water is split into small water droplets by applying an electric field. The particle size of a droplet of water held on the platinum electrode in image A is about 4.5 mm in diameter and its volume is about 0.05 cm 3In the state of image C, the average particle size of the split water droplet particles is 8 μm. In this case, one drop of water droplet particles held on the platinum electrode is split into about 180 million water droplet particles. Furthermore, in image D, the particle size of the water droplet particle group with the smallest particle size is smaller than the average particle size of image C, with a diameter of 2.5 μm. In this case, one drop of water droplet particles held on the platinum electrode is split into about 6.1 billion water droplet particles.

[0376] Previously, as a technology for vibrating water droplets, there are known technologies that utilize EMS, radio frequency waves, ultrasound, beauty devices, INDIBA, potential therapy devices, magnets, minerals, megahertz waves, etc. The particle size of water droplets vibrated by these technologies is 4500μm. The particle size of raindrops is 1000μm. The particle size of fog rain is 100-300μm. The particle size of mist (smoke) is 10μm. The particle size of steam is 8μm. In this embodiment, the size of water droplet particles obtained by applying an electric field is 2.5-8μm. The spacing between cells of a living body is less than 12μm, so the water droplets with a particle size of less than 12μm obtained in this embodiment have the property of easily penetrating between cells of a living body. In this embodiment, the water particles that are micronized by applying an electric field penetrate into the cells of an animal or plant organism, thereby producing various effects.

[0377] Fig. 22 This is the result of the improvement of the hydroponic cultivation of green leaf lettuce. In particular, the comparison photos on the 7th day, the 11th day, and the 13th day show that the liquid control device of this embodiment helps to promote the growth of green leaf lettuce.

[0378] Fig.23 This is the result of the improvement of the preservation of shiso. Fig.23 The figure shows the comparison of water turbidity and the growth degree of perilla when the same size and amount of perilla were stored at room temperature for 2 months with the same amount of water supply, one of which was stored in a state where an electric field was applied using the liquid control device of this embodiment, and the other was stored in a state where an electric field was not applied. It can be seen that the tension of the perilla root is better when the electric field is applied. In addition, it can be seen that the water turbidity is lower when the electric field is applied. Fig.23 It is shown that the liquid control device of this embodiment is helpful to preserve Perilla and improve the turbidity of water.

[0379] Depend on Fig. 22 and Fig.23 It can be seen that the liquid control device of this embodiment can control the growth promotion of not only animals but also plants by reforming and atomizing water. The liquid control device of this embodiment is suitable for improving the control of all organisms and cells.

[0380] Fig.24The improvement of rheumatic edema rate. The radio wave vibration of the fluid control device of this embodiment was applied to the chronic joint rheumatism model mice. As a result, the edema rate was reduced by about 15-20% on the 38th to 49th day, and the chronic joint rheumatism was improved. Fig.24 A greater edema-improving effect than administration of the antirheumatic drug methotrexate was observed.

[0381] Fig.25 It is the effect of improving the blood flow of limb ischemia model mice. The liquid control device of this embodiment was used to apply radio wave vibration to the limb ischemia model mice, and as a result, an improvement in blood flow was observed on the 14th day. Regarding the limb ischemia model mice used in the experiment (exp.no.P180110, N=7), the limb ischemia model mice were made from 8-week-old BALB / c male mice. As a blood flow measurement, the blood flow of both limbs was measured using the blood flow imaging device moorFLPI (Moor Instruments Ltd.). By using the liquid control device of this embodiment to make the flow of interstitial fluid smooth, cell metabolism is promoted and cell vitality is maintained. Along with the improvement of the flow of interstitial fluid, it takes about 2 weeks until the blood flow improvement effect is detected in the form of data.

[0382] Fig.26 This is the effect of reducing the viscosity of high-viscosity drugs. MRI / X-ray contrast agents such as Iomeprol are viscous and difficult to inject into patients. In addition, due to their low fluidity, they are observed to be strongly irritating in patients. Improving the fluidity of high-viscosity drugs helps to reduce the burden on medical practitioners or patients. By applying an electric field using the liquid control device of this embodiment, such as Fig.26 As shown, a change in viscosity was observed. A decrease in viscosity was observed when applied for 1 minute to 30 minutes. A significant decrease was observed when applied for 5 minutes. By applying an electric field using the liquid control device of this embodiment, the viscosity of iomeprol was reduced to about 60%, that is, the viscosity was reduced by about 40% at most. By applying an electric field using the liquid control device of this embodiment, the fluid resistance was reduced, and a change in the high-speed shear state was observed. The electrodes of the liquid control device of this embodiment can apply an electric field in a non-contact manner, so there is no need for the metal electrodes to directly contact the drug solution, which is more hygienic.

[0383] Fig. 27 This is the effect of improving CPK in the blood of heart transplanted mice. When the liquid control device of this embodiment was used to irradiate radio wave vibrations on heart transplanted mice, improvements in blood CPK, an indicator of damage to muscle and other tissue cells, were observed. Fig. 27In the central graph, the average value of CPK in the blood is 1400 when no electric field is applied, while the average value when an electric field is applied is reduced to 200. CPK is an enzyme required for energy metabolism in muscle cells and is present in large quantities in muscles such as skeletal muscle, cardiac muscle, smooth muscle, or the brain. When muscles are damaged, CPK in the blood increases, for example, it increases significantly in acute myocardial infarction or muscular dystrophy. Fig. 27 The upper graph is the measurement result of LDH in the blood. The average value when no electric field is applied is 2200. In contrast, the average value when an electric field is applied is about 1400. After the electric field is applied by the liquid control device of this embodiment, the LDH in the blood will also be reduced. Fig. 27 The figure below measures the restart time of the transplanted heart, and it can be seen that the liquid control device of this embodiment has no effect on it. Through the liquid control device of this embodiment, it is confirmed that radio wave vibration has the effect of improving the energy metabolism of muscle cells and having a positive effect on the repair of muscle tissue damage, and can also be used to treat myocardial infarction angina pectoris.

[0384] Depend on Fig.26 and Fig. 27 The experimental results show that the liquid control device of this embodiment can improve or enhance the control of heartbeat or pulse, and improve or prevent heart disease.

[0385] Fig.28 This is the verification result of the side effects caused by the electrical stimulation of radio wave vibration. Fig.29 yes Fig.28 Experimental conditions. The treatment group with electric field application and the control group without electric field application were separated by about 2 m, and the measurement was performed in a manner that would not produce the influence of electric field application. When normal mice were irradiated with radio wave vibrations by the liquid control device of this embodiment, there was no effect on the physical condition, and the changes in body weight and food intake remained unchanged, confirming safety. The mice (Scl: ddY) used in the experiment were 9 weeks old (8 weeks old when they arrived), weighing 32.66±1.09g in the control group and 33.16±1.02g in the stimulation group. They were male, and the breeder was Japan SLC. The stimulation time was 8:30-15:30, and it was implemented for 7 consecutive days. Fig.28 As shown, it was confirmed that the changes in body weight and food intake did not change, and the electrical stimulation of the radio wave vibration generated by the liquid control device of this embodiment had no effect on the body weight and food intake of mice.

[0386] Fig.30 It is the result of improvement of fish's rigor mortis and blood coagulation. Fig.31 It is a device for preserving the body. Fig.30As shown, a pair of flat electrodes are horizontally set on a box containing dead fish, and the liquid control device of this embodiment is used to apply radio wave vibration to the fish immediately after the fish dies, and the result is that rigor mortis, blood coagulation, and corpse odor can be prevented (verification location: Guping Town, Hokkaido). In addition, for fish purchased 2 days ago, radio wave vibration is applied for 5 minutes by the liquid control device of this embodiment, and it is confirmed that the fishy smell is reduced, the chewy taste is improved, and the freshness is restored. Immediately after purchase, an incision is made only at the base of the fish tail to cut off the artery, and the fish is placed obliquely on a plastic box with ice in an inclined position, and radio wave vibration is applied by the liquid control device of this embodiment. For the comparison object, even if the fish is arranged in the same way, the blood will coagulate immediately and the blood cannot be discharged. Therefore, the comparison object needs to remove the internal organs from the gills and use water pressure to discharge the blood. On the other hand, when radio wave vibration is applied by the liquid control device of this embodiment, the viscosity of the fish blood decreases, and the blood can be discharged from the incision at the base of the tail.

[0387] about Fig.30 The effects of preventing rigor mortis, blood coagulation, and corpse odor in fish, restoring freshness, and reducing blood viscosity during bleeding confirmed in experiments can also be applied to meat other than fish, and can also be used as a method for preserving corpses. Fig.31 As shown, by setting the electrodes of the liquid control device of the present invention, radio wave vibrations are applied to the body, which has the effect of anti-corrosion and anti-odor, can inhibit the proliferation of bacteria and the progress of decay in the body bag, and further, can also extend the storage period until cremation.

[0388] Fig.32 It is a blood coagulation inhibition device. Fig.30 The effects of preventing rigor mortis, blood coagulation, and corpse odor in fish, restoring freshness, and reducing blood viscosity during bleeding confirmed in the experiment can also be applied to meat other than fish, and can also be applied to blood coagulation prevention devices. Fig.32 As shown, when using an extracorporeal membrane oxygenator (ECMO), by setting the electrodes of the liquid control device of the present invention and applying radio wave vibrations, blood coagulation can be suppressed and the risk of blood coagulation can be reduced. As a result, the monitoring burden of medical practitioners such as regular blood coagulation tests when using ECMO can be reduced. Furthermore, by setting the electrodes of the liquid control device of the present invention in an artificial dialysis machine and applying radio wave vibrations, blood coagulation in the dialysis machine can be suppressed and the risk of blood coagulation can be reduced. Furthermore, it complements the blood flow improvement effect and also helps to shorten the dialysis time and improve the safety during dialysis.

[0389] Fig.33The strawberry has an anti-mold effect. The electrodes of the liquid control device of the present invention were set, and radio vibration was applied for 1 hour, and then stored in a refrigerator for 1 month. The comparison object was not applied with radio vibration, but was directly stored in a refrigerator for 1 month. Fig.33 As shown, strawberries ( Fig.33 The free water in the strawberry is linked together by the electric wave vibration, so there is no free water for mold, microorganisms, bacteria, etc. to bind with moisture. Therefore, even if there are mold, microorganisms, and bacteria on the surface of the strawberry, they will not proliferate, the strawberry will not mold, and corrosion will not occur. On the other hand, the strawberry of the comparative example ( Fig.33 In the strawberry on the left), mold proliferated and the strawberry became moldy.

[0390] Fig.34 The effect of inhibiting the growth of anthrax bacteria was shown in Figure 1. The electrodes of the liquid control device of the present invention were set, and anthrax bacteria were cultured for 2 days under the condition of applying radio wave vibration. In the comparative example, anthrax bacteria were cultured for 2 days without applying radio wave vibration. Compared with the comparative example, the growth of anthrax bacteria was inhibited in the case where radio wave vibration was applied by the liquid control device of the present invention.

[0391] Depend on Figure 30 to Figure 34 The experimental results show that the liquid control device of this embodiment improves the control of the preservation, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids by applying an electric field from electrodes, or improves electrodes or containers used for the preservation, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids.

[0392] In addition, by Fig.33 and Fig.34 It is shown that by applying radio wave vibration using the liquid control device of the present invention, the reproduction of mold or anthrax can be suppressed, and the following effect is confirmed: even in the presence of mold, microorganisms, bacteria, bacteria, bacteria, and viruses, the proliferation of mold, microorganisms, bacteria, bacteria, and viruses can be suppressed. When the liquid control device of the present invention applies radio wave vibration to the human body, the radio wave vibration acts on the free water in the body and cells, causing the free water to be in a state of linked beads, thereby expecting the effect of suppressing the proliferation of bacteria or viruses in the body. Therefore, even in the presence of bacteria or viruses, their proliferation is suppressed, thereby obtaining the effect of preventing infection by bacteria or viruses.

[0393] As a countermeasure to prevent infection with previous viruses, for example, the existing coronavirus vaccine was used to reduce the risk of infection. However, as the coronavirus continues to mutate, it is necessary to develop an effective vaccine for each mutant. Fig.33 , 34 The technology of applying radio wave vibration to the liquid control device of the present embodiment shown to suppress the reproduction of mold or anthrax bacteria is expected to help suppress the early symptoms caused by the coronavirus or prevent the symptoms from becoming more severe, even in the case of infection with various mutant coronaviruses, as long as the coronavirus does not proliferate in the lungs and other parts of the body.

[0394] Fig.35 This is the effect of improving chewing balance brought about by easing the tension of the masticatory muscles. By applying an electric field to the masseter muscles (massage muscles) of the jaw for 5 minutes using the liquid control device of this embodiment, the value of the EMG electromyograph (Electromyograph) was reduced, confirming muscle relaxation. Fig.35 It can be seen that the values ​​of both the cervical spine and the upper thoracic spine in the EMG electromyograph are reduced.

[0395] Figures 36-40 The effect of improving the left-right balance of the body is shown. Channel 1 of the EMG electromyograph is installed on the left side of each body part, and channel 2 is installed on the right side to measure the balance of muscle strength on the left and right sides. Fig.36 It is the measurement result of Sacrum No. 1, the acupuncture point at this location is related to the bladder / ovary or prostate. Fig.36 In the curve graph on the left before use, there is a deviation in the muscle strength of the left and right sides, but after applying an electric field to the masseter muscle of the jaw for 5 minutes by the liquid control device of this embodiment, in the case of Mr. Kamata and Mr. Tanaka, as shown in the curve graph on the right, the difference in muscle strength of the left and right sides is reduced, and the balance of muscle strength of the left and right sides is improved. In particular, in the curve graph of Mr. Tanaka, the value of the curve graph on the right side is greatly reduced compared with the curve graph on the left side, which shows that the balance of muscle strength of the left and right sides and muscle relaxation are improved. In addition, the same is true for Mr. Kamata. After applying the electric field, the muscle strength reaches a balance at a relatively lower value.

[0396] Fig.37 This is the measurement result of thoracic vertebra No. 12. The acupuncture point at this position is related to the kidneys. Fig.37In the curve graph on the left before use, there is a deviation in the muscle strength of the left and right sides, and the value of the EMG electromyograph is higher than the curve graph on the right after the electric field is applied. After the electric field is applied to the masseter muscle of the jaw for 5 minutes by the liquid control device of this embodiment, in the case of Mr. Kamata and Mr. Tanaka, as shown in the curve graph on the right, the value is reduced, and the difference in muscle strength of the left and right sides is also reduced, and the balance of muscle strength and muscle relaxation of the left and right sides are improved.

[0397] Fig.38 This is the measurement result of thoracic vertebra No. 8. The acupuncture point at this position is related to the liver. Fig.38 In the curve graph before use on the left side, especially in the case of Mr. Tanaka, there is a deviation in the muscle strength of the left and right sides, and the values ​​of the EMG electromyograph are both higher than the curve graph on the right side after the electric field is applied. After the electric field is applied to the masseter muscle of the jaw for 5 minutes by the liquid control device of this embodiment, in the case of Mr. Kamata and Mr. Tanaka, as shown in the curve graph on the right side, the values ​​are reduced, and especially in the case of Mr. Tanaka, the difference in muscle strength of the left and right sides is reduced, and the balance of muscle strength and muscle relaxation of the left and right sides are improved.

[0398] Fig.39 This is the measurement result of thoracic vertebra No. 1. The acupuncture points at this position are related to the heart and lungs. Fig.39 In the left graph before use, the values ​​of the EMG electromyography are compared with the right graph after the electric field is applied, and both are in a state where the values ​​have a large deviation. After the liquid control device of this embodiment applies an electric field to the masseter muscle of the jaw for 5 minutes, the difference in muscle strength between the left and right muscles is reduced, and the values ​​themselves are also stabilized at a low value.

[0399] Fig.40 This is the measurement result of cervical vertebra No. 3, the acupuncture point at this location is related to the throat and sinuses. Fig.40 In the left graph before use, the values ​​of the EMG electromyography are compared with the right graph after the electric field is applied, especially in the case of Mr. Tanaka, the values ​​on the left and right are in a state of greater deviation. After the electric field is applied to the masseter muscle of the jaw for 5 minutes by the liquid control device of this embodiment, the difference in muscle strength between the left and right muscles is reduced in both cases, and the values ​​themselves are also stabilized at a low value.

[0400] Depend on Figures 35 to 40 The measurement results of the EMG electromyograph show that by applying an electric field to the masseter muscle of the jaw for 5 minutes using the fluid control device of this embodiment, the tension of the entire masticatory muscle is relieved, thereby adjusting the left-right balance of the entire body. Figures 35-40It is shown that by applying an electric field using the liquid control device of this embodiment, the chewing balance, muscle balance, and skeletal balance are adjusted, thereby improving or preventing muscle imbalance control, and improving or enhancing body balance, fascia balance, occlusion, osteopathy, and chiropractic control.

[0401] The following are examples of the evaluation opinions of the subjects regarding the control performed by applying an electric field from the electrodes by the liquid control device of this embodiment. The "Bodystation" in the evaluation opinions refers to the liquid control device of this embodiment.

[0402] ■The range of motion of the deep fascia is increased, reducing muscle tension.

[0403] ■There is a nodule at the site where insulin was injected subcutaneously, but the skin in that area becomes soft.

[0404] ■I have had diabetes for 20 years, and three pancreatic scans are considered normal.

[0405] ■I lost a lot of weight due to severe heartburn, and thought it was cachexia caused by uterine cancer. I tried everything but it didn't improve. After using the Bodystation only once an hour, the heartburn completely disappeared and I can enjoy my meals.

[0406] ■The pain in the left ovary is gone.

[0407] ■Due to Basedow's disease, I originally planned to take methimazole orally for 1 year, but after using the Bodystation only once every 1.5 hours, the values ​​returned to normal. The doctor said he couldn't understand it.

[0408] ■I have Parkinson's disease and have involuntary movements (my legs jump up and down on their own), but after using the Bodystation just once an hour, these went away.

[0409] ■Pain relief for patients with bone pain.

[0410] · Reduce swelling in hands and feet.

[0411] ■People who have suffered a cerebral infarction will feel much more relaxed in the head.

[0412] ■Improvement of semicircular canal drainage in patients with Meniere's disease.

[0413] ■Pain is eliminated for patients with long-term rheumatism, and hands can grasp easily.

[0414] ■After using the Bodystation for only 1 hour and 3 times, there is no need to use the machine carrying oxygen.

[0415] ■My right ankle was severely sprained, with internal bleeding the size of a card. I bandaged it 2 hours later, but couldn’t sleep that night due to severe pain. The next day, my foot was lame, but I was able to walk normally two days later, even walking up the stairs normally. There was no swelling at all.

[0416] ■I have been suffering from diabetes for 2 years, but after using BodyStation for only 1 hour, my blood sugar level dropped significantly from 252 to 113 the next day, and to 102 after 1 month.

[0417] A patient who suffered left-side hemiplegia due to a stroke simply placed the BodyStation under his pillow and recovered to the point where he could travel alone six months later.

[0418] Due to rheumatism, I couldn't bend my right middle finger, but after using the BodyStation for an hour, I was able to bend it to a right angle.

[0419] I have been suffering from rheumatism for many years and could only walk up the stairs one step at a time. However, after using the BodyStation for one hour for the first time, I was able to walk down the stairs continuously. I am very grateful.

[0420] I have been suffering from diabetes for 10 years and have also received insulin injections and artificial dialysis. Thanks to BodyStation, my blood sugar level dropped sharply from 650 to 150 in half a year.

[0421] I have early-onset Parkinson's and medication is essential. After using the BodyStation for only 1 hour, the spasms subsided.

[0422] ■After using BodVStation for only 1 hour, the pain in my lower left inversion foot caused by shingles was gone.

[0423] ■12 years ago, due to the sequelae of varicose vein surgery on my right thigh, I felt pressure and pain from the inside to the outside of my legs, which looked like elephant legs. After using BodyStation for only 1 hour, the swelling and pain disappeared, and my legs became light.

[0424] ■After only 1 hour of using the BodyStation, my frozen shoulder's range of motion increased.

[0425] ■For patients with lumbar spinal stenosis and stenosis of all five spinal canals, a needle is inserted next to the spine and the needle is electrified for 1 hour. Then, they can jog or play a round of golf, and will be back to normal the next day.

[0426] · Left thyroid gland was enlarged, and blood test diagnosed it as Basedow's disease. BodyStation was applied to the left side of the neck, thyroid gland, swelling, and lymphatic congestion. The swelling was reduced, and when I went to the county hospital for a checkup 2 days later, the attending doctor was surprised and said, "Huh?"

[0427] ·I had right wrist pain from chain sawing during farm work, and the pain was gone after using the BodyStation for 1 hour. For the previous two weeks, my elbow was in pain all night, which kept me awake.

[0428] ■My entire right wrist was in pain from weeding and I couldn't bend and straighten my elbow, but it doesn't hurt anymore.

[0429] ■The whole body becomes lighter.

[0430] ■My legs used to be so heavy and thick that I couldn’t see my ankles. Now they are thinner and lighter.

[0431] ■I have a stiff neck due to stiff shoulders. I have stiff shoulders and a slight headache at the back of my head.

[0432] ■I started sleeping with the BodyStation on my shoulders and back at 1am. When I woke up in the morning, I could breathe easily. It felt like I was taking in a lot of air. My neck and shoulders were soft and relaxed. The pain was completely gone.

[0433] ■When I started using the BodyStation, my personal trainer was amazed at how much relaxation I felt in my thigh fascia.

[0434] ■I used to urinate once a day, but after using BodyStation for only 1 hour, I was able to urinate more than 3 times a day within 1 week. The swelling and weakness in my legs disappeared, and my legs felt lighter.

[0435] ■My knees would periodically accumulate fluid. Every time I went to the hospital to have the fluid drained, it would become painful and fluid would accumulate again. I used the BodyStation before going to the hospital, and the doctor told me that the fluid had been drained.

[0436] ■My gums have shrunk due to age, and I was about to undergo surgery to transplant the mucosa of the upper jaw or do an implant surgery. After using it for 1 month, my gums returned to their normal position. This is impossible for modern medicine to do.

[0437] ■I was originally scheduled to have surgery because my knees were unable to bend due to rheumatoid arthritis, but now they can bend 90 degrees.

[0438] ■The serum lipid TG value has been 380 for many years (the most recent data is from November last year). After 2 weeks of continuous use, 7 / 8 dropped to 130. The doctor told me that this is usually impossible.

[0439] ■My right leg became as big as an elephant due to cellulitis. The swelling went down within two weeks, but it usually takes more than a month.

[0440] Fig.41 It is an effect of improving the survival rate of human cultured cells. Peripheral blood mononuclear cells are expected to play an important role in regenerative medicine, but it is difficult to preserve them for more than 48 hours in an active state. There are also cases where they are frozen and preserved using a preservation solution such as DMSO, but they need to be washed when injected. By applying an electric field, the storage period can be extended. An example of improving the survival rate of CD206 by applying radio wave vibrations has been observed. The upper left curve is the target value, and the survival rate of CD206 is targeted at 14.9%. In contrast, the upper right one without electric field application is 8.0%, and when the electric field is applied for 30 seconds on the lower left, the survival rate of CD206 improves to 11.1%. Furthermore, when the electric field is applied for 1 minute on the lower right, the survival rate of CD206 improves to 13.3%. CD206 is a type of macrophage that plays a significant role in angiogenesis, which is very important in tissue regeneration. About Fig.41 (1) It was observed that the number of CD206 cells in the sample after 1 minute of radio wave vibration was about 1.7 times that of the sample without radio wave vibration. Fig.41 (2) The sample before adjustment, that is, the fresh sample before storage, was compared with the sample after 1 minute of radio wave vibration. The decrease in cell count was limited to 1.6%. Fig.41 It was confirmed that the liquid control device of this embodiment can improve the survival rate of human cultured cells by applying an electric field. This shows that the liquid control device of this embodiment can improve or enhance the generation of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, improve the storage, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids, or improve the storage, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids. The electrode or container used.

[0441] Fig.42 This is the observation result of peripheral blood mononuclear cells. When the electric wave vibration is applied, the phenomenon of cell aggregation on the culture dish is observed. By applying the electric field using the liquid control device of this embodiment, the cells are controlled to be arranged in beads. Fig.41 As shown in Figure 2, the survival rate of macrophage CD206, which is important for angiogenesis, was increased. The effect varied depending on the subject, but a significant effect was confirmed. Fig.41 and Fig.42The function of controlling cells to be aligned in a chain by applying an electric field using the liquid control device of this embodiment is shown, thereby aligning the cells to generate an organ or tissue.

[0442] Fig.43 This is sleep improvement example 1. Fig.44 This is sleep improvement example 2, which shows the improvement effect of the apnea-hypopnea index. By wearing CPAP (Continuous Positive Airway Pressure) during sleep, a decrease in the number of apneas and AHI (apnea-hypopnea index, i.e., the total number of apneas and hypopneas per hour) was observed. However, after stopping the use of CPAP, the number of apneas and AHI increased again. Therefore, by using the liquid control device of this embodiment to apply an electric field from the electrode instead of CPAP, the number of apneas and AHI were measured, and as a result, a decrease in the number of apneas and AHI close to that when CPAP was used was observed. Fig.43 After September 2021, the application of the electric field by the liquid control device of this embodiment was started, and the number of apneas and AHI were significantly reduced. Furthermore, by applying the electric field from the electrode using the liquid control device of this embodiment and also using CPAP, it was observed that the number of apneas and AHI were suppressed compared with when CPAP was used alone. Fig.44 About Fig.43 According to the data of another subject, after October 2021, after the electric field was applied by the liquid control device of this embodiment, the number of apnea and AHI decreased significantly.

[0443] In this embodiment, the aim is to promote the improvement of apnea syndrome. The mechanism of the effect is that the water content of the blood in the carotid artery and vein and the spinal artery and vein is minimized by applying an electric field from the electrode using the liquid control device of this embodiment, thereby improving the blood flow around the neck, eliminating the tension of the muscles around the trachea, and restoring the position of the cervical spine to normal, thereby preventing the lower jaw from being lifted too high, inhibiting the tongue from sinking, easing tracheal contraction, and making breathing smooth. As a result, the symptoms of apnea are alleviated. There is no particular limitation on the part that touches the electrode of this embodiment, and for example, it can be set to 5 cm on both sides of the most prominent center of the Adam's apple.

[0444] Depend on Fig.43 and Fig.44 The experimental results show that the liquid control device of this embodiment can improve breathing, improve or enhance respiratory function or lung function, and improve sleep by applying an electric field from the electrodes.

[0445] Fig.45 An experiment showing improvement of physiological pain is shown. Fig.4514 women (aged 25 to 53) who were taking painkillers for menstrual pain were asked to use the Fig.45 A questionnaire survey was conducted on the physiological changes before and after using the fluid control device, and the results are shown in Fig.46 In. Fig.46 As shown, significant improvements were achieved by applying an electric field from electrodes using the liquid control device of this embodiment for the frequency of taking painkillers, abdominal bloating, back pain, edema, abdominal pain, headache, fatigue, sleepiness, irritability, emotional instability, and constipation / diarrhea.

[0446] In the previous methods for relieving pain, methods such as body warming, bathing, exercise, local ice pack, massage, stretching, relaxation, counseling, acupressure, pelvic care, use of analgesics, anesthesia, and endurance are adopted, but the fluid control device of this embodiment improves the fluidity of water and improves the metabolism of body fluids by performing minimal control of body fluids, thereby controlling and improving symptoms such as menstruation, PMS, infertility / fertility, menopause / amenorrhea, pregnancy, postpartum care, general women's health, stress or anxiety. In addition, by performing minimal control of body fluids using the fluid control device of this embodiment, the following evaluation is obtained from the subjects regarding the improvement effect of the female physical condition.

[0447] ■My daughter’s menstrual pain disappeared.

[0448] ■The pain in the left ovary has disappeared.

[0449] ■The monthly ovulation pain disappeared.

[0450] ■It seems like your sensitivity to cold has improved?

[0451] ■I was skeptical before trying it, but after using it on my lower abdomen for 1 hour every day, the menstrual pain that had troubled me for more than 20 years completely disappeared. I used to take painkillers every month, but now I don't need to, and my menstrual period has been shortened from 6 to 7 days to 4 days.

[0452] - Tried it only once, thought it was just a coincidence, tried it again for 3 months, the effect lasted. The dull feeling caused by menstrual pain has improved.

[0453] ■The menstrual period of 7 days per month ends in 4 days.

[0454] The menstrual period is reduced from 5 days to 3 days.

[0455] ■After using it 2 days before my period, I no longer need to take painkillers every month.

[0456] ■After only a few days of testing, the pain after using WOW200 was about 30%, with the normal pain being 100%.

[0457] ■Previously, even when my period was about to end, it would drag on, but now it ends quickly.

[0458] ■It seems like makeup is fitting better?

[0459] ■Does the swelling in your legs and face seem to have lessened?

[0460] ·Although I can't use it every day, I still feel a significant change. The first month, my period stopped after 3 days, and the bleeding started again on the 5th day, but it was over in 3 days. A total of 6 days. The second month, my period came on the 20th day. It was clean in 3 days. Usually, my period drags on and on, and I have to use sanitary napkins for 1 week, but I was surprised that my period ended so cleanly. I don't have menstrual pain (I hardly have it normally), and the first day's blood flow is more than usual, and it's clean. I was constipated before my period, but in the second month, I was able to have smooth bowel movements during my period, which I am very grateful for.

[0461] Fig.47 This is the improvement effect of the contrast agent. After applying an electric field to the contrast agent from the electrode for 24 hours by the liquid control device of this embodiment, the contrast agent was injected from the cerebellar medullary cistern of the mouse, and the penetration degree of the contrast agent into the cerebral cortex was confirmed by shooting 30 minutes after the injection. In the comparative example, a contrast agent without an electric field was used. The average brightness was measured for 3 mice, and the result was that the average brightness of the contrast agent injected after the electric field was applied by the liquid control device of this embodiment was 19.7, while the average brightness of the contrast agent injected without the electric field was 8.8, confirming the following effect: by applying an electric field to the contrast agent using the liquid control device of this embodiment, the contrast agent easily penetrates into the mouse cerebral cortex. This effect of the present embodiment is not limited to the cerebral cortex of mice, and it is expected to produce an improvement effect of contrast agent penetration in other cells, tissues, and organs.

[0462] Fig.48 It has an anti-mildew and anti-corrosion effect. It is a comparison diagram of photos of strawberries stored in a refrigerator for 30 days after an electric field was applied from the electrodes of the liquid control device of this embodiment for 1 hour. The photo on the right is a photo after the electric field was applied. It can be seen that the strawberries are moisturized and have neither corrosion nor mold. On the other hand, the comparison example of the photo on the left is strawberries stored in a refrigerator for 30 days without applying an electric field. In the comparison example, corrosion occurred and mold was also observed. It can be seen that applying an electric field using the liquid control device of this embodiment has an anti-corrosion and anti-mildew effect.

[0463] Fig.49This is the antiseptic effect on fish. This is a comparison of photos of sea bream stored in a refrigerator for 5 days after applying an electric field for 1 hour from the electrodes of the liquid control device of this embodiment. The photo on the right is a photo after the electric field is applied. The sea bream meat is moist, the internal organs are not corroded, and the fresh state is maintained. In contrast, the comparative example of the photo on the left is a sea bream stored in a refrigerator for 5 days without applying an electric field. In the comparative example, the internal organs corroded and the freshness decreased in the state where the water in the fish meat was removed. In the comparative example, the internal organs of the sea bream rotted because bacteria, viruses, and active oxygen combined with free water (hydrogen bonds) caused the proliferation of bacteria and viruses, and the active oxygen played a role. In contrast, after the electric field was applied by the liquid control device of this embodiment, the free water inside the sea bream was controlled to form a bead arrangement and became bound water, thereby separating bacteria, viruses, and active oxygen from the free water, preventing the proliferation of bacteria and viruses, and reducing active oxygen. This shows that the application of an electric field using the liquid control device of this embodiment has the effect of inhibiting the growth of microorganisms, bacteria, fungi, and viruses, the effect of preventing corrosion, and the effect of reducing active oxygen.

[0464] Fig.50 It is a freshness maintenance effect. Fig.50 The leftmost side of the figure shows sardines after an electric field was applied for 1 hour by the liquid control device of this embodiment and then stored in a refrigerator for 3 days. Fig.50 The second one from the left is a sea urchin after the electric field was applied by the liquid control device of this embodiment for 1 hour and then stored in a refrigerator for 7 days. Fig.50 The rightmost and second from the right is a largefin scorpionfish stored in a refrigerator for 7 days after an electric field was applied for 1 hour by the liquid control device of this embodiment. In a comparative example not shown in the figure, the fish was stored in a refrigerator for the same number of days without applying an electric field. The results showed that after the electric field was applied by the liquid control device of this embodiment, the fish meat was more moist, the internal organs were not corroded, and the freshness was better maintained. After the electric field was applied by the liquid control device of this embodiment, the free water inside the tissues and cells was controlled to form a bead arrangement and become bound water. As a result, bacteria, viruses, and active oxygen were separated from the free water, and the proliferation of bacteria and viruses was prevented, and the active oxygen was also reduced. It can be seen that by applying an electric field using the liquid control device of this embodiment, the proliferation inhibition effect of microorganisms, bacteria, fungi, and viruses, the antiseptic effect, and the active oxygen reduction effect are achieved.

[0465] Fig.51 It is the anti-mold effect of bread. Fig.51On the right side is a photo of rye bread stored at room temperature for 13 days after an electric field was applied for 1 hour by the liquid control device of this embodiment. In the photo on the right, the rye bread did not mold. In contrast, the comparative example of the photo on the left is a photo of rye bread stored at room temperature for 13 days without applying an electric field. In the comparative example, mold was produced. In the comparative example, the rye bread molded because the mold combined with the free water (hydrogen bond) in the rye bread and caused the mold to proliferate. After the electric field is applied by the liquid control device of this embodiment, the free water in the rye bread is controlled to form a bead arrangement and become bound water, thereby separating the mold from the free water and preventing the proliferation of the mold. It can be seen that by applying an electric field using the liquid control device of this embodiment, the proliferation inhibition effect of microorganisms, bacteria, fungi, and viruses, the antiseptic effect, and the active oxygen reduction effect are achieved.

[0466] Depend on Figures 48 to 51 Experiments have shown that by applying an electric field using the liquid control device of this embodiment, control is performed to prevent the proliferation of microorganisms, bacteria, fungi, or viruses, and control is performed to improve the preservation, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids; electrodes or containers for improving the preservation, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids are used to remove active oxygen.

[0467] Fig.52 It is a device for improving melasma and wrinkles. Fig.53 , Fig.54 ,and Fig.55 These are comparative photographs taken before and after an electric field was applied for 20 minutes using the electrodes of the liquid control device according to this embodiment. Fig.52 The left picture shows the device in use. Fig.52 The middle figure shows the electrode arrangement in the case of nasolabial fold care. Fig.52 The right side of the diagram shows the electrode arrangement when the outer canthus is lifted. Fig.53 , Fig.54 ,and Fig.55 As can be seen from the comparison photos, after applying an electric field using the electrodes of the liquid control device of this embodiment, wrinkles are improved, and the outer corners of the eyes are lifted. In addition, it not only has the effect of improving wrinkles, but also has the effect of removing chloasma. At the same time, it is shown that the liquid control device of this embodiment improves the metabolism of body fluids, thereby eliminating edema, improving blood flow and thus improving skin luster, and thus has an improvement effect in terms of beauty.

[0468] Fig.56 This is an example 1 of the electrode structure. Fig.57 This is an example 2 of the electrode structure. Fig.58 This is an example 3 of the electrode structure. Fig.59 This is an example 4 of the electrode structure. Fig.60 This is an example of electrode structure 5, Fig.61 This is an example of electrode structure 6, Fig.62 This is an example of electrode structure 7, Fig.63 This is an example of electrode structure 8, Fig.64 This is an example of electrode construction 9. Fig.56 In the construction example 1 of the electrode, the upper left side is a cylindrical electrode, which is suitable for applying an electric field to a cylindrical liquid container, such as a bottle-shaped container. The upper right side is a pair of plate electrodes. For example, a part of the body, such as a foot, can be placed on the electrode. In addition, for example, one can lie on the electrode. The lower left side is 2 or 4 plate-shaped or flexible sheet electrodes. The plate electrodes can be placed or attached to the target part, or a part of the body can be placed on the plate electrodes. In addition, the shape of the flexible sheet electrode is not particularly limited, and it can be made into a glove shape or a pad shape. Therefore, the shape can be selected according to the target part. The lower right side is an example of 2 plate electrodes, and the plate electrodes can be placed or attached to the target part. The method of fixing the electrode to the treatment part is not particularly limited, and it can be fixed by, for example, a belt, a bag, a net, a support, etc. Fig.57 In the example 2 of the electrode structure, there are two electrode plates, the electrode plates are plate-shaped, and the electrode plates can be set in any direction. For example, the electrode surface can be placed vertically, or in a horizontal state, or tilted at any angle. In addition, the electrode plate can be placed on the target part, and the target part can be placed on the electrode. Fig.58 In Example 3 of the electrode structure, it is shown Fig.57 Another example of using the electrode plate. In the upper right figure, the electrode plate can be laid out on the part of the bed that touches the head, such as a pillow, with the electrode surface horizontally placed, and the target part, i.e., the head, can be placed thereon. In the lower left figure, the electrode plate can be laid out on the part of the bed that touches the waist, back, legs, etc., with the electrode surface horizontally placed, and the target part, i.e., the waist, back, legs, etc., can be placed thereon. In the lower middle figure, the electrode plate can be laid out on the bed with the electrode surface horizontally placed, and the target part, i.e., the feet, can be placed thereon, and it can be used in a way that the soles of the feet touch the electrode surface. In the lower right figure, one electrode plate is laid out on the bed along the back with the electrode surface horizontally placed, and the target part, i.e., the back, is placed thereon, and then another electrode plate is used on the ventral side with the electrode surface horizontally placed. In this way, the setting position or direction of the electrode plate and the way it touches the target part are arbitrary, as long as the electric field generated by the electrode plate can be applied, and the number of electrode plates is not limited to 2, and can be 1, 3, or more than 4. Fig.59The electrode construction example 4 is an example of configuring a sheet electrode on a bed. The sheet electrode is made of a flexible raw material, and can be configured as a pair of comb-shaped electrodes inserted into each other's comb teeth and arranged in a close manner, but there is no particular limitation. Therefore, multiple electrodes can be integrated by a single sheet electrode. Fig.60 In example 5 of the electrode structure, a sheet-shaped or plate-shaped electrode is arranged on the upper surface of a treatment bed, a therapeutic bed, a simple bed, or the like.

[0469] Fig.61 Example 6 of the electrode construction is an example of configuring a sheet or plate-shaped electrode on the driver's seat of a car. By configuring the electrode on the seat of a vehicle and applying an electric field to improve the fluidity and metabolism of body fluids, economy class syndrome can be effectively prevented. Fig.62 The structure of the electrode in Example 7 is Fig.57 Another example of using the electrode plate is to place two electrodes parallel to the back on a bed and place the target part, i.e., the back, on them. Fig.63 In the example 8 of the structure of the electrode, two adhesive terminals are provided. The electrode surface of the adhesive terminal has adhesiveness, so the electrode can be attached to the target part without using a tape or the like separately. Fig.64 In the example 9 of the electrode structure, a needle electrode is used. The electrode is needle-shaped, and a voltage is applied to the needle that is punctured into the target site in the method of needle treatment, so that an electric field is applied from the needle to the target site. In this way, the shape of the electrode can be, for example, a plate, a rod, a sheet, a needle, a comb, or a shape formed by combining two or more electrodes.

[0470] Fig.65 This is a diagram illustrating the extraction of green tea. Green tea was extracted for 3 hours while applying an electric field using the electrodes of the liquid control device of this embodiment. The left diagram shows the case where no electric field was applied, the middle diagram shows the case where the electric field was applied for only 1 hour, and the right diagram shows the case where the electric field was applied for 3 hours. The diagram shows that when the electric field was applied for 3 hours, the degree of extraction of green tea was the highest and the concentration was the highest. When the electric field was applied for only 1 hour, the degree of extraction was the second highest. When no electric field was applied, the degree of extraction was the lowest. Fig.65 It was shown that the degree of extraction of green tea can be improved by applying an electric field using the liquid control device of this embodiment.

[0471] Fig.66 : is a drawing for explaining the extraction of kelp. The kelp was extracted for 3 hours while applying an electric field using the electrodes of the liquid control device of this embodiment. The left figure shows the case where no electric field was applied, and the right figure shows the case where the electric field was applied for 3 hours. It is clear from the drawing that after applying the electric field for 3 hours, the extraction degree of the kelp was higher, the kelp expanded more, and the amount of water absorbed was also greater. Fig.66 It was shown that the degree of extraction of kelp can be improved by applying an electric field using the liquid control device of this embodiment.

[0472] Fig.67 This is a diagram for explaining the extraction of soup stock. The soup stock of ramen soup was extracted for 4 hours while applying an electric field using the electrodes of the liquid control device of this embodiment. The left figure shows the case where no electric field was applied, and the right figure shows the case where the electric field was applied for 4 hours. It is clear from the figure that after applying the electric field for 4 hours, the degree of extraction of soup stock is higher and the concentration of soup stock is higher. The concentration of soup stock was measured, and the result was that the concentration was 15% higher after applying the electric field for 4 hours. Fig.67 This is an experiment using pork bone-based broth, but the type of broth is not particularly limited, and any broth, whether it is fish, shellfish, or vegetables, can be used to improve the degree of broth extraction by the fluid control device of this embodiment. Fig.67 It was shown that the degree of extraction of the soup stock can be improved by applying an electric field using the liquid control device of this embodiment.

[0473] Fig.68 : is a drawing for explaining the ripening of noodles. The noodles were ripened for 2 days while applying an electric field using the electrodes of the liquid control device of this embodiment, and the noodles were cooked, and the water absorption, mouthfeel, and taste of the noodles were checked. The left figure shows noodles ripened while applying an electric field for 2 days, the middle figure shows noodles cooked using water fed after applying an electric field for 1 hour, and the right figure shows noodles without applying an electric field. Amylase contained in wheat flour is an enzyme that decomposes starch, and protease is an enzyme that decomposes protein. As a result of these enzymes being activated by water and moderate temperature, the formation of gluten is promoted, becoming chewy, and improving the taste such as sweetness and umami. In addition, the noodles of ramen noodles need moderate water absorption. Therefore, when the degree of ripening is not enough, it will absorb a large amount of water and swell immediately, which will damage the taste and taste. The noodles with the most appropriate degree of ripening and not easy to swell are the noodles in the left figure that are ripened while applying an electric field for 2 days. Not only are the noodles not easy to swell, but the water absorption is also moderate, so both the mouthfeel and taste are the best. Although it usually takes 5 to 7 days to mature, by applying an electric field using the liquid control device of this embodiment, the appropriate degree of maturity can be achieved in just 2 days of maturation time. The second most suitable degree of maturity and the noodles that are not easy to swell are the noodles cooked with the feed water after applying the electric field for 1 hour. Since the maturation time is 2 days, the degree of maturation is not enough, but compared with the one without applying the electric field in the right figure, it can be seen from the accompanying figure that the swelling of the noodles is suppressed due to the expansion of the noodles, and regarding the taste or flavor, considering that it is matured for 2 days, it can be seen that by using the feed water treated with the electric field of the liquid control device of this embodiment, the quality of the noodles can be improved. If the noodles of ramen are matured while applying an electric field using the electrodes of the liquid control device of this embodiment, the interfacial tension of the water contained in the noodles of the ramen is reduced, the water is micronized, and the enzyme is activated, thereby promoting the formation of gluten and other maturation.

[0474] Depend on Figure 65 to Figure 68The experiment shows that by applying an electric field using the electrodes of the liquid control device of this embodiment, the degree of extraction or ripening can be improved, which shows that by applying an electric field using the liquid control device of this embodiment, the extraction of body fluids, medicines, cosmetics, or liquids can be improved or enhanced, and the efficacy or quality of medicines, cosmetics, or liquids can be improved or enhanced. In addition, it is shown that by improving the emulsification, the liquid is micronized and arranged in beads, and the generation of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs can be improved or enhanced by applying an electric field using the electrodes of the liquid control device of this embodiment.

[0475] Figures 69 to 72 It is the result of measuring the fluctuation of water. Not limited to living organisms, all substances have weak energy that contributes to the health of living organisms. Water also has fluctuation energy that contributes to human health. By measuring the fluctuation energy of water in the form of relative values ​​of contribution to the human body (fluctuation measurement value), the health status of the human body and the quality of water can be understood. The fluctuation energy of water is relatively quantified as the contribution to human health according to the state of water, the energy state of water, the quality of water, etc. It can be said that the larger the positive value, the greater the fluctuation energy, and the higher the total score, the higher the quality of water. If it is a negative value, there is a risk of harming human health, so it is not good. Each score is a quantification of the effectiveness of the water on the human body when it is ingested, and it is quantified relatively by positive and negative values ​​for the items of comprehensive, kidney, liver, intestine, immune function, allergy, blood circulation, and hormone balance. In Figures 69 to 72 The upper table shows the fluctuation measurement values ​​at each time when the electric field is applied to water by the electrodes of the liquid control device of the present invention, and the lower table shows the fluctuation measurement values ​​at each time after the electric field is turned off after the electric field is applied to water by the electrodes of the liquid control device of the present invention for 24 hours, and also records the retention rate when the total score at the time of applying the electric field for 24 hours is set to 100%. Figures 69 to 72 The measurement results show that the liquid control device of this embodiment can control in the following manner by applying an electric field from the electrodes: increasing the fluctuation energy of the liquid, that is, increasing the contribution of the liquid to human health. The liquid control device of this embodiment can improve not only the quality of the liquid for beverages, but also the quality of the body fluids present in the cells, organs, and tissues in the body by applying an electric field from the electrodes, thereby contributing to the improvement of the fluidity of the body fluids, the improvement of body fluid metabolism, the stabilization of water balance, and the improvement of the quality of the body fluids themselves. In addition, it is shown that since the liquid control device of this embodiment controls in a manner that increases the fluctuation energy of water, it can also control energy such as ectoplasm in the same way as energy present in nature including water fluctuations.

[0476] The embodiments described above do not limit the present invention to these embodiments, and the present invention can be equally applied to other embodiments included in the claims. In addition, the embodiments can be appropriately changed or appropriately combined.

[0477] In the explanation of the principle of interfacial tension reduction control in embodiment 1, the interfacial tension between the aqueous phase and the oil phase was explained, but the interfacial tension in this embodiment is not limited to the interfacial tension between the aqueous phase and the oil phase, but also includes the interfacial tension between any two phases containing liquids, the interfacial tension between two liquids, the interfacial tension between a liquid and a solid, the interfacial tension between a liquid and a gas, etc. The liquid control device of this embodiment can control any interfacial tension.

[0478] exist Fig.13 In the figure, the structure of the housing 50 is not a specific box shape, but means any device. Therefore, it includes not only a refrigerator or a storage container, but also various machines or devices using the electrodes of the liquid control device of this embodiment, such as the following appliances, machines, devices or equipment: a treatment table, a treatment table, a simple bed, an electromagnetic therapy device, a potential therapy device, a low-frequency therapy device, EMS, a massage machine, a beauty machine, a vibration machine, a cavitation machine, a microbubble machine, a nano-microbubble machine, a nanobubble machine, a microbubble machine, a megahertz machine, a high-frequency machine, a quantum therapy device, a hair growth machine, a cellulite firming machine, a muscle relaxant, an ultrasonic therapy machine, an ozone generator, a hydrogen generator, an LED machine, a beauty machine, a slimming machine or a storage container.

[0479] In each experimental example or each measurement example of the embodiment, the voltage and frequency applied to the electrode are set to 100V and 50KHz for the convenience of comparative study, but this is an example of the target value of the liquid control device of this embodiment, and does not limit the target value of this embodiment. For example, in the range of voltage value 0 to 7000V and frequency range 0 to 100THz described in this embodiment, as described in the first embodiment, the cloud server (management server 40) and the controller 10 can be appropriately set according to various calculations such as machine learning, control parameters stored in advance, control parameters input or set in advance, etc. Because there are various control targets and control objects, the optimal control parameters are also various, but in the steps shown in the first embodiment, appropriate control parameters are set according to the object, the object part, the type or state of the object and the object part, the target of liquid control, the shape of the electrode, etc. For example, for the control of brain waves, nerves, and sleep, for example, a frequency band of 1Hz to 50Hz is used, but on the other hand, a megahertz machine uses a frequency in the megahertz region, but it is not particularly limited. As the voltage range, the voltage range is described as being 7000V or less in consideration of safety, but if safety measures such as insulation can be adopted, a particularly high voltage exceeding 7000V may be adopted as a target value. However, in the liquid control device of this embodiment, as shown in the experimental example, even in the voltage value and frequency range of about 50KHz and 100V, sufficient performance is exerted in actual use, so it can also be implemented in the low voltage range of power division, that is, the range of less than 600V AC and less than 750V DC.

[0480] [Explanation of Symbols]

[0481] 1: Liquid control device

[0482] 10: Controller

[0483] 11: Current and voltage application unit

[0484] 13-29: Electrode

[0485] 30: Active oxygen

[0486] 31: Human-machine interface (PC)

[0487] 32: Material detection sensor

[0488] 33: Current and voltage control unit

[0489] 35: Ministry of Communications

[0490] 36: Control Department

[0491] 37: Storage

[0492] 38: Inspection Department

[0493] 40: Management Server

[0494] 41: Connector

[0495] 43: Database

[0496] 45: Communication Network

[0497] 50: Shell.

Claims

1. A liquid control device, It is characterized in that having at least one electrode, and a controller for controlling at least one of a voltage value, a current value, a frequency or a phase of a voltage or a current applied to the electrode, The controller By adjusting at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged opposite to the object, and controlling at least any one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, the state of the liquid in the object facing the electrode is controlled, To improve or prevent edema, cell edema, or control of nerve cell edema, Control the balance of hormones, endocrine, lymphatic, or meridians, or Control mitochondrial activity, autophagy activity, egg activity, or sperm activity.

2. A liquid control device, It is characterized in that having at least one electrode, and a controller for controlling at least one of a voltage value, a current value, a frequency or a phase of a voltage or a current applied to the electrode, The controller By adjusting at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged opposite to the object, and controlling at least any one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, the state of the liquid in the object facing the electrode is controlled, To improve or prevent the blockage of body fluids, liquid medicines, cosmetics, or liquids, Improve or enhance the fluidity of body fluids, liquid medicines, cosmetics, or liquids. Control to improve or prevent induration or sclerosis, Controls to improve or prevent dehydration of cells or tissues, Control the removal of active oxygen or lactic acid, Perform controls to improve or prevent muscle imbalances, Improve or enhance body balance, fascia balance, occlusion, osteopathy, and chiropractic control. Improve or prevent fractures or joint diseases. Improve or increase the control of the heartbeat or pulse, Control to improve or normalize blood pressure, Improve or enhance respiratory function or lung function control, Improve or enhance the control of dialysis function, Improve or enhance vision, dynamic vision control, To improve or prevent eye diseases. To improve or prevent medical diseases. Improve or enhance immune function control, Improve the drug delivery system or control the permeability of cosmetics. Conducting controls to improve or enhance the efficacy or quality of medicines, cosmetics, or liquids, To improve or enhance the extraction of body fluids, drugs, cosmetics, or liquids; or Control the fluctuations of liquid, or ectoplasm.

3. A liquid control device, It is characterized in that having at least one electrode, and a controller for controlling at least one of a voltage value, a current value, a frequency or a phase of a voltage or a current applied to the electrode, The controller By adjusting at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode in a state where the electrode is arranged opposite to the object, and controlling at least any one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode, the state of the liquid in the object facing the electrode is controlled, To prevent the proliferation of microorganisms, bacteria, fungi, or viruses. Controls to improve or prevent burns, necrosis, or bedsores, Controls to prevent transfer, Improve or prevent dementia, Alzheimer's disease, Parkinson's disease, Improve sleep, improve beauty, control PMS, menstrual pain, pain, itching, improve health, improve motor function, or anti-aging. Improve or enhance the control of the formation of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, Improve the preservation, freezing, thawing, cultivation, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, pharmaceuticals, cosmetics, or liquids; or Electrodes or containers for improving the preservation, freezing, thawing, culture, or logistics of organs, body fluids, blood, cells, tissues, skin, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids.

4. The liquid control device according to any one of claims 1 to 3, wherein the voltage value of the voltage applied to the electrode is controlled within the range of 0V to 7000V, or the frequency of the AC component of the voltage is controlled within the range of 0Hz to 1MHz. 5 . The liquid control device according to claim 1 , wherein a voltage value and / or a frequency of the voltage varies with time smoothly or in a stepwise manner within a predetermined range.

6. The liquid control device according to any one of claims 1 to 3, which performs any of the following controls: Controlling the alignment, orientation, binding, or activity of water in the substance; Controlling the interface polarization, interfacial tension, or emulsification state between the water phase and other phases in the substance; or The state of active oxygen in the substance is controlled.

7. A liquid control device according to any one of claims 1 to 3, wherein after the electric field, magnetic field, electromagnetic field, or electromagnetic wave is generated by the electrode for a specified time, the control effect continues for a specified time even after the electric field, magnetic field, electromagnetic field, or electromagnetic wave is released. 8 . The liquid control device according to claim 1 , wherein the voltage applied to the electrode includes the AC component in addition to the DC component. 9 . The liquid control device according to claim 1 , wherein the electrode is in a plate shape, a rod shape, a sheet shape, a needle shape, a comb shape, or a shape in which two or more electrodes are combined.

10. The liquid control device according to any one of claims 1 to 3, wherein the controller is managed through the cloud, a server, or a network.

11. The liquid control device according to any one of claims 1 to 3, wherein the controller sets control parameters by machine learning.

12. The liquid control device according to any one of claims 1 to 3, which controls in a manner having at least any one of the following effects: infarction, necrosis, bedsores, burns, removal of active oxygen, removal of lactic acid, improvement of blood flow, improvement of lymph flow, cerebral infarction, myocardial infarction, thrombosis, embolism, arteriosclerosis, improvement or prevention of blockage of body fluids, liquid medicines, cosmetics, or liquids, improvement of the fluidity of body fluids, liquid medicines, cosmetics, or liquids, improvement or prevention of induration or hardening, improvement or prevention of dehydration of cells or tissues, cell edema, nerve cell edema, edema, pulmonary edema, joint edema, abdominal edema, insulin secretion disorder, excretion disorder, difficulty in excretion, constipation, excretion Urinary disorders, stasis, blisters, improved drug delivery, reduced viscosity of drug solutions or body fluids, cell culture, regenerative medicine, shortened culture time in regenerative medicine, improved culture quality, or improved culture efficiency, cell tissue regeneration, reduced lactic acid, swelling, enlargement, edema, fluid retention, dehydration of extracellular fluid or intracellular fluid, skin diseases, pigmentation disorders, liver spots, freckles, epidermal wrinkles, dermal wrinkles, expression wrinkles, dry skin, physical condition improvement, induration, muscle induration, fascia relaxation, fascia potential improvement, neurodegenerative diseases, fascia electromagnetic therapy, muscle imbalance, fascia potential balance improvement, body balance improvement, fascia balance improvement, bite improvement, osteopathic improvement, Improvement of spine, improvement or prevention of fractures or joint diseases, improvement of balance of endocrine, lymphatic or meridian, fractures, joint diseases, skin care, moisturizing, improvement of fertility, infertility, improvement of sperm motility, sperm activity, egg activity, mitochondrial activity, autophagy activity, PMS, pain, itching, abnormal sensation, cold-sensitive constitution, sexual indifference, cramps, anti-aging, hair follicle care, improvement of menopausal disorders, improvement of cleanliness, hair loss, AGA, ED, promotion of fat decomposition, improvement of contact lens wearing feeling, dry eyes, vision improvement, dynamic vision improvement, sleep disorder, sleep improvement, sleep apnea syndrome, preventive medicine improvement, improvement of nerve cells, improvement of cell edema, disease Toxin, bacteria, or fungus countermeasures, cancer, glaucoma, cataracts, age-related macular degeneration, eye diseases, hearing loss, hearing impairment, visual impairment, dementia, Alzheimer's disease, Parkinson's disease, sleep improvement, beauty improvement, health promotion, motor function improvement, water balance, digestive system internal medicine diseases, respiratory system internal medicine diseases, circulatory system internal medicine diseases, neurological diseases, blood internal medicine diseases, kidney internal medicine diseases, endocrine internal medicine diseases, internal medicine diseases, blood pressure improvement or normalization, pulse or heart rate improvement or increase, respiratory function or lung function improvement or increase, dialysis function improvement or increase, osteopathy, rigor mortis improvement, or rehabilitation medical improvement treatment.

13. The liquid control device according to any one of claims 1 to 3, which controls in a manner having at least one of the following effects: preservation, freezing, thawing, cultivation, or improvement of logistics of organs, body fluids, blood, cells, tissues, skin, teeth, bones, joints, hair, corpses, DNA, stem cells, sperm, eggs, medicines, cosmetics, or liquids; Improvement of electrodes or containers for nutrition or logistics, improvement or enhancement of the efficacy or quality of drugs, cosmetics, or liquids, improvement or enhancement of the extraction of body fluids, drugs, cosmetics, or liquids, improvement or enhancement of the production of teeth, bones, joints, blood vessels, lymphatic vessels, nerves, cells, skin, hair, or organs, improvement or enhancement of emulsification, improvement or enhancement of drug delivery, improvement or enhancement of the efficacy or performance of drugs, prevention or countermeasures for the proliferation of microorganisms, bacteria, fungi, or viruses, prevention of migration, reduction of the viscosity of drug solutions, or control of liquid fluctuations, control of exoplasm.

14. The liquid control device according to any one of claims 1 to 3 is controlled in a manner to improve the performance of at least one of the following machines: an electromagnetic therapy device, a potential therapy device, a low-frequency therapy device, an EMS, a massage machine, a beauty machine, a vibration machine, a cavitation machine, a microbubble machine, a nano-microbubble machine, a nanobubble machine, a microbubble machine, a megahertz machine, a high-frequency machine, a quantum therapy device, a hair growth machine, a cellulite firming machine, a muscle relaxation machine, an ultrasonic therapy machine, an ozone generating machine, a hydrogen generating machine, an LED machine, a beauty machine, and a slimming machine.

15. A liquid control device, It is characterized in that Having at least one electrode, and a controller for controlling at least one of a voltage value, a current value, a frequency or a phase of a voltage or a current applied to the electrode, The controller In a state where the electrode and the object are arranged opposite to each other, at least one of the voltage value, current value, frequency or phase of the voltage or current having a DC component and / or an AC component applied to the electrode is adjusted, and at least one of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode is controlled, Depending on the object facing the electrode, the frequency, voltage applied to the electrode, and at least one of the emission directions of the electric field, magnetic field, electromagnetic field or electromagnetic wave generated by the electrode are controlled to change over time, or the time for applying the voltage to the electrode is controlled.

Citation Information

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