Device for health care
The healthcare device amplifies low-frequency waves and incorporates negative ions to increase EPCs and decrease CECs, effectively addressing the intensity limitations of existing devices and mitigating cardiovascular risks.
Patent Information
- Application Number
- DE202025106674
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-02-03
- Publication Date
- 2026-01-15
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing healthcare devices that utilize low-frequency wave transmitters for therapeutic purposes lack sufficient intensity to effectively increase endothelial precursor cells (EPCs) and decrease circulating endothelial cells (CECs), which are crucial for preventing cardiovascular diseases.
A healthcare device comprising a box body with a resonant cavity structure, a power supply, a speed controller, a rotation mechanism, a coupling mechanism, a tapper, and a conical table, which generates and amplifies low-frequency waves within the range of 1.18 to 1.81 Hz, combined with negative ion generators to enhance resonance effects and promote blood purification and self-healing.
The device significantly increases the number of EPCs and decreases the number of CECs, thereby reducing the risk of cardiovascular diseases by enhancing the intensity of low-frequency waves and incorporating negative ions for blood purification and cell regeneration.
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Abstract
Description
BACKGROUND OF THE INVENTION a) ENVIRONMENT OF THE INVENTION
[0001] The present invention relates to a health care device and its commissioning, in particular a health care device and its commissioning which can increase the number of endothelial precursor cells (EPCs) and decrease the number of circulating endothelial cells (CECs) and can be a percussion device that generates a low frequency wave. b) DESCRIPTION OF THE KNOWN TYPE OF EXECUTION
[0002] It is known from the literature that endothelial progenitor cells (EPCs) are the precursor cells of vascular endothelial cells and play an important role in angiogenesis and the repair of vascular endothelial cells. Therefore, an increase in the number of EPCs can prevent or mitigate the occurrence of cardiovascular diseases. In contrast, circulating endothelial cells (CECs) can be an indicator of vascular damage, which can lead to platelets and white blood cells easily adhering to the vessel wall. This can result in inflammation and fatty deposits, and the blood vessels may gradually harden. The inner diameter of the blood vessels can gradually decrease. Ultimately, thrombosis, arteriosclerosis, and other diseases can develop. Therefore, a reduction in the number of CECs can decrease the risk of cardiovascular diseases.
[0003] According to Traditional Chinese Medicine, the navel is the Shenque point, the point through which the Ren, Du, Dai, and Chong meridians pass. Therefore, stimulating the navel can regulate the entire body, as the internal organs are connected via meridians. Furthermore, according to Western medicine, the navel is the thinnest part of the epidermal cuticle in the abdominal cavity, and there is no fat beneath it, making its barrier function weakest. The navel skin contains microcirculating blood vessels, a network of veins, and branches of the hypogastric artery. Thus, any effect or change exerted on the blood in the microcirculatory vessels of the navel skin can introduce this effect or change into the human circulatory system. Similarly, the spine is covered by a thin epidermis, and the spinal column contains blood vessels and capillaries.Therefore, as long as a certain effect or change is exerted on the blood in the blood vessels or capillaries of the spine, this effect or change can also be introduced into the human circulatory system.
[0004] It is further known from the literature that the organs of the human body exhibit natural resonant frequencies, such as 8-12 Hz for the head, 4-6 Hz for the chest, 5 Hz for the heart, 6-9 Hz for the abdominal cavity, 1.2 Hz for blood flow frequency, and 1.8 Hz for the bones. When a part of the human body is exposed to a low-frequency wave in the range of 0 to 20 Hz (such as a bass wave or an infrasound wave (as opposed to an ultrasound wave with frequencies above 20 kHz)) and the sound pressure level reaches a certain threshold, the elastic wall of the outer layer of the organ corresponding to that part of the body is set into a state of vibration, and this vibration is transmitted to the interior of the organ. In particular, if the frequency of the bass wave is synchronized with the aforementioned resonant frequency of the organs, they will be in resonance.At this point, the organs receive the strongest stimulation. The resonance created in the organs by the bass wave also affects their cellular structure, for example, the mitochondria. Mitochondria are responsible for intracellular oxidative phosphorylation and the synthesis of adenosine triphosphate (ATP), providing chemical energy for cellular activities, which is why they are also referred to as the "powerhouses of the cell." Furthermore, the resonance in the mitochondria caused by the bass waves can influence the binding state of some enzymes to the cell membranes and their activity. Simultaneously, the energy of the bass wave can be converted into thermal, biochemical, and bioelectrical energy when played at a certain intensity, thus directly affecting the organs.In this way, damaged organs can be repaired and restored through stimulation by the bass wave. Using this device for preventative healthcare, which generates the bass wave, can avoid the risk of injury from excessive energy produced by high-frequency microwave oscillators.
[0005] Based on the aforementioned statement, a healthcare device with a low-frequency wave transmitter is currently known. This device is configured to emit a low-frequency wave at a specific frequency at a predetermined location away from the navel of the human body to achieve health effects. For example, patent applications TW202339822A, TW202415360A, and TW202442266A from Taiwan describe a healthcare device that uses a low-frequency wave transmitter to emit a low-frequency wave at a specific frequency in the direction of the navel. These applications are configured to increase the number of activated T cells in the blood, the number of activated T cells and B cells in the blood, and the ability of NK cell lines to kill cancer cell lines (K562).Furthermore, patent applications TWM657715U and TWM657714U from Taiwan describe, for example, that negative ions have a blood-purifying effect, restore cells, strengthen resistance and self-healing powers, and regulate the autonomic nerves in the human body.
[0006] However, the aforementioned health care devices that use a low-frequency wave transmitter to emit the low-frequency wave still need further improvement in terms of the intensity of the low-frequency wave.
[0007] Therefore, researchers may want a healthcare device that can emit low-frequency waves at a higher intensity to increase the number of EPCs and decrease the number of CECs. SUMMARY OF THE INVENTION
[0008] One aspect of the present invention is a health care device consisting of a box body and a group of components within the box body that generate the low-frequency wave. The resonant cavity structure created by the box body can cause the low-frequency wave generated by the group of components to oscillate, thereby increasing the intensity of the low-frequency wave.
[0009] According to one embodiment of the present invention, a healthcare device comprises a housing, a power supply, a speed controller, a rotation mechanism, a coupling mechanism, a tapper, and a conical table. The power supply, speed controller, rotation mechanism, coupling mechanism, tapper, and conical table are arranged within the housing. The power supply is electrically connected to the speed controller to supply current to the speed controller. The speed controller is electrically connected to the rotation mechanism and controls the rotation mechanism to rotate at a predetermined speed. The predetermined speed causes the tapper to tap the conical table at a tapping frequency. The tapping frequency is in the range of 24 to 64 times per minute.The tapper generates a low-frequency wave with a predetermined frequency. This predetermined frequency lies within a range of 1.18 Hz to 1.81 Hz. The low-frequency wave is a bass wave. The rotation mechanism is connected to the tapper via the coupling mechanism to drive the tapper to strike a flat surface of the conical table, thus transmitting the low-frequency wave with the predetermined frequency.
[0010] In one embodiment of the present invention, the health care device further comprises a block body and at least one negative ion generator. The block body is arranged on the at least one negative ion generator. The negative ion generator is electrically connected to the power supply. One side surface of the block body is attached to a metal back plate of the box body, with the block body facing a tip of the conical table.
[0011] In one embodiment of the present invention, the conical table is a wooden cone.
[0012] In one embodiment of the present invention, the rotational mechanism comprises a motor and a cam. The cam is arranged on one side of the motor. The cam is attached to the coupling mechanism. The coupling mechanism includes a connecting rod. The knocker consists of a cylinder and a cone. One end of the cylinder is attached to the connecting rod, the other end of the cylinder is attached to the cone; the cylinder is a wooden cylinder, the cone is a wooden cone, and the cylinder and cone are formed in one piece.
[0013] In one embodiment of the present invention, the knocker further comprises a vibrating element, wherein the vibrating element is arranged on a surface of the cylinder or cone, the vibrating element is electrically connected to the power supply and the vibrating element vibrates in a thickness direction to generate the bass wave with the predetermined frequency.
[0014] In one embodiment of the present invention, the block body is a wooden block.
[0015] In one embodiment of the present invention, at least one surface of the at least one negative ion generator is accessible from the box body.
[0016] In one embodiment of the present invention, the specified frequency is 1.45 Hz.
[0017] In one embodiment of the present invention, the device is configured for use in healthcare such that the low-frequency wave is transmitted to a spine or navel.
[0018] In the embodiments of the present invention, the health-promoting device uses the block body to oscillate and resonate with the low-frequency wave transmitted from the tip of the conical table, thereby enhancing the resonance effect of the box body. Furthermore, the negative ion generator exposed to the box body produces negative ions and has the effect of blood purification, cell regeneration, and improving the resistance and self-healing capacity of the human body.
[0019] The above description of the present invention and the following description of the exemplary embodiments illustrate the principles of the present invention and provide a further explanation of the scope of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS The Fig. Figure 1 shows a stereoscopic view of a health care device according to the first embodiment of the present invention. The Fig. Figure 2 shows a stereoscopic view of a health care device according to the second embodiment of the present invention. The Fig. Figure 3 shows a schematic view of the device for healthcare in Fig. 2 according to an embodiment of the present invention. The Fig. Figure 4 shows a schematic view of the device for healthcare in Fig.2 is arranged on a frame which is to be constructed according to an embodiment of the present invention. DETAILED DESCRIPTION OF PREFERRED EXECUTION EXAMPLES
[0020] The Fig. Figure 1 shows a stereoscopic view of a health care device according to the first embodiment of the present invention. A health care device 2 in the first embodiment of the present invention comprises a box body 21, a power supply 22, a speed controller 23, a rotation mechanism 24, a coupling mechanism 25, a knocker 26, and a conical table 27. The box body 21, the power supply 22, the speed controller 23, the rotation mechanism 24, the coupling mechanism 25, the knocker 26, and the conical table 27 are arranged in the box body 21.
[0021] In this embodiment, the power supply 22 is electrically connected to the speed controller 23 to supply current to the speed controller 23. The speed controller 23 is electrically connected to the rotation mechanism 24 and controls the rotation mechanism 24 so that it rotates at a predetermined speed. The rotation mechanism 24 is connected to the tapper 26 via the coupling mechanism 25. The tapper 26 generates a low-frequency wave W at a predetermined frequency and thereby drives the tapper 26 to tap on a flat surface 271 of the conical table 27. The conical table 27 can transmit the low-frequency wave W at the predetermined frequency. The predetermined speed causes the tapper 26 to tap on the conical table 27 at a tapping frequency. The tapping frequency is in the range of 24 times per minute to 64 times per minute.
[0022] In this embodiment, the power supply 22 can be a lithium iron phosphate battery. The speed controller 23 can be a device that regulates the output speed of a motor 241 by adjusting the voltage or current. The housing 21 can consist of at least one metal backplate 211.
[0023] In this embodiment, the rotation mechanism 24 comprises the motor 241 and a cam 242. The cam 242 is arranged on one side of the motor 241 and attached to the coupling mechanism 25. For example, in this embodiment, the motor 241 can be a reciprocating motor mechanism.
[0024] In this embodiment, the reciprocating motor mechanism rotates in opposite directions, thus driving the coupling mechanism 25 to move up and down. The knocker 26 strikes alternately the flat surface 271 of the conical table 27.
[0025] In this embodiment, the coupling mechanism 25 comprises a connecting rod 251. The knocker 26 consists of a cylinder 261 and a cone 262. One end of the cylinder 261 is attached to the connecting rod 251, while the other end of the cylinder 261 is attached to the cone 262. The knocker 26 also includes a vibrating element 263. The vibrating element 263 is arranged on the surface of the cylinder 261 or the cone 262. The vibrating element 263 is electrically connected to the power supply 22. The vibrating element 263 is a disk-shaped piezoelectric ceramic transducer. The piezoelectric ceramic transducer consists of a material containing piezoelectric material that is polarized in one direction of thickness. The power supply 22 provides current to the vibrating element 263 to cause it to vibrate in the thickness direction. In addition, a bass wave with the specified frequency is generated.The specified frequency is no higher than 1.81 Hz or no lower than 1.18 Hz, or lies within a range of 1.18 Hz to 1.81 Hz. Ideally, the specified frequency is 1.45 Hz.
[0026] In other words, the low-frequency wave W in this embodiment is the bass wave. The predetermined frequency of the low-frequency wave W, which is transmitted when the knocker 26 strikes the conical table 27, lies in the range of 1.18 Hz to 1.81 Hz. Preferably, the predetermined frequency of the low-frequency wave W emitted when the knocker 26 strikes the conical table 27 is 1.45 Hz.
[0027] In this embodiment, the cone 262 is a wooden cone. The cylinder 261 is a wooden cylinder, and the cylinder 261 and the cone 262 are made from a single piece. Furthermore, the conical table 27 is also a wooden cone.
[0028] Since wood is an elastic material, it can vibrate and resonate with the low-frequency wave. When the conical wooden table 27 is struck with the knocker 26, the low-frequency wave W is transmitted. The conical table 27 vibrates at its own resonance or natural frequency. This resonance can radiate the bass wave into the air, which can generate a series of low-frequency sound waves. Therefore, the box body 21 is a resonant cavity structure that can cause the low-frequency wave W to vibrate, thereby amplifying the intensity of the low-frequency wave W. Preferably, the box body 21 is a wooden box.
[0029] In this embodiment, the low-frequency wave W is generated by a series of actions of the power supply 22, the speed controller 23, the rotation mechanism 24, the coupling mechanism 25, the knocker 26, and the conical table 27 within the box body 21. Furthermore, the resonance effect generated by the resonant cavity structure of the box body 21 can amplify the intensity of the low-frequency wave W, thereby enhancing its positive effect on the human body.
[0030] The Fig.Figure 2 shows a stereoscopic view of a health care device 2' according to the second embodiment of the present invention. The health care device 2' in the second embodiment of the present invention comprises a box body 21', a power supply unit 22', a speed controller 23', a rotation mechanism 24', a coupling mechanism 25', a knocker 26', a conical table 27', a block body 29 and two negative ion generators 30 arranged in the box body 21'.
[0031] In this embodiment, the power supply 22' is electrically connected to the speed controller 23' to supply current to the speed controller 23'. The speed controller 23' is electrically connected to the rotation mechanism 24' and controls the rotation mechanism 24' so that it rotates at a predetermined speed. The rotation mechanism 24' is connected to the knocker 26' via the coupling mechanism 25' to drive the knocker 26' to strike a flat surface 271' of the conical table 27'. Since the low-frequency wave W with the predetermined frequency is generated by the knocker 26', the conical table 27' can transmit the low-frequency wave W with the predetermined frequency.
[0032] In this embodiment, the health care device 2' also comprises the block body 29 and the two negative ion generators 30. The negative ion generators 30 are electrically connected to the power supply unit 22'. The block body 29 is arranged on the two negative ion generators 30. One side surface of the block body 29 is connected to a metal backplate 211', with the block body 29 facing a tip 272' of the conical table 27'.
[0033] In this embodiment, the number of negative ion generators is two, but this is not a limit. The number of negative ion generators can be one, three, or more than three.
[0034] In this embodiment, the power supply 22' can be a lithium iron phosphate battery. The speed controller 23' can be a device that regulates the output speed of a motor 241' by adjusting the voltage or current. The box body 21' can contain the metal backplate 211', and the block body 29 can be a wooden block.
[0035] In this embodiment, at least one surface V of each of the two negative ion generators 30 is exposed from the box body 21'.
[0036] In this embodiment, the rotation mechanism 24' comprises the motor 241' and a cam 242'. The cam 242' is arranged on one side of the motor 241', and the cam 242' is attached to the coupling mechanism 25'.
[0037] In this embodiment, the motor 241' can be a reciprocating motor mechanism. The reciprocating motor mechanism rotates in opposite directions and thereby drives the coupling mechanism 25' to move up and down. The knocker 26' strikes alternately the flat surface 271' of the conical table 27'.
[0038] In this embodiment, the coupling mechanism 25' comprises a connecting rod 251'. The knocker 26' consists of a cylinder 261' and a cone 262'. One end of the cylinder 261' is attached to the connecting rod 251', while the other end of the cylinder 261' is attached to the cone 262'. The knocker 26' includes a vibrating element 263', which is arranged on the surface of the cylinder 261' or the cone 262'. The vibrating element 263' is electrically connected to the power supply 22'. The vibrating element 263' is a disk-shaped piezoelectric ceramic transducer. The piezoelectric ceramic transducer consists of a material containing a piezoelectric material polarized in the direction of its thickness. The power supply 22' provides current to the vibrating element 263'. The oscillating element 263' oscillates in the direction of the thickness to generate the bass wave with the specified frequency.The specified frequency is no greater than 1.81 Hz, no less than 1.18 Hz, or lies within a range of 1.18 Hz to 1.81 Hz. Ideally, the specified frequency is 1.45 Hz.
[0039] In other words, the low-frequency wave in this embodiment is the bass wave. The predetermined frequency of the low-frequency wave W, which is transmitted when the knocker 26' strikes the conical table 27', lies in a range of 1.18 Hz to 1.81 Hz. Preferably, the predetermined frequency of the low-frequency wave W, which is transmitted when the knocker 26' strikes the conical table 27', is 1.45 Hz.
[0040] In this embodiment, the cone 262' is a wooden cone. The cylinder 261' is a wooden cylinder, with the cylinder 261' and the cone 262' being made from a single piece. Furthermore, the conical table 27' is also a wooden cone. Since wood is an elastic body, it can vibrate and resonate with the low-frequency wave. When the conical wooden table 27' is struck with the knocker 26', the low-frequency wave W is transmitted. The conical table 27' vibrates at its own resonance or natural frequency. The resonance can radiate the bass wave into the air, which can generate a series of low-frequency sound waves. Therefore, the box body 21' is a resonant cavity structure that can cause the low-frequency wave W to vibrate, thereby amplifying the intensity of the low-frequency wave W. Preferably, the box body 21' is a wooden box.
[0041] In this embodiment, the flat surface 271' of the conical table 27' is wider and the apex 272' of the conical table 27' is narrower, so that the conical table 27' is shaped like a cone. As the low-frequency wave W propagates towards the apex 272', the energy of the low-frequency wave W becomes more concentrated. When the low-frequency wave W is transmitted to the apex 272' of the conical table 27', the energy of the low-frequency wave W is concentrated to its maximum. The energy of the low-frequency wave W can be concentrated at the apex (similar to the principle of "peak discharge" in electricity) and then transmitted to the wooden block 29. The low-frequency wave W emanating from the apex 272' of the conical table 27' can generate vibrations and resonances on the wooden block 29.The side surface of the wooden block body 29 is attached to the metal back plate 211', thereby achieving better resonance of the box body 21'. Therefore, the tapping frequency can form the low-frequency wave W, which is intermittent, to generate vibrations and resonances on the wooden block body 29. The intermittent wave can prevent users from being harmed by constant vibrations and resonances.
[0042] Furthermore, the negative ions N, which are generated by the negative ion generator 30 exposed to the box body 21', have the effect of blood purification, cell restoration, improvement of resistance and self-healing ability, and adaptation of the autonomic nerves in the human body.
[0043] The Fig. Figure 3 shows a schematic view in which the [unclear text] is located. Fig.The device shown in Figure 2 is designed for health care according to an embodiment of the present invention. The device for health care 2' moves above the spine 11 on the back of the user 1, being in a predetermined position U at a predetermined distance D from the spine 11. One end of the negative ion generator 30 of the device for health care 2' is directed towards the spine 11 on the back of the user 1. By operating the device for health care 2, the device for health care 2' transmits the low-frequency wave W and the negative ions N at the predetermined frequency to the spine 11. The predetermined distance D can be in a range from 0 cm to 8 cm, whereby the predetermined distance D can be less than or equal to 5 cm, but is not limited in this respect.The specified frequency is no greater than 1.81 Hz, no less than 1.18 Hz, or lies within a range of 1.18 to 1.81 Hz. Ideally, the specified frequency is 1.45 Hz.
[0044] In this embodiment, the health care device 2' is configured to perform a health program to transmit the low-frequency wave W and the negative ions N to the spinal columns of Person P, Person Q, and Person Q'. The predetermined distance D is 0 cm, meaning the health care device 2' is in direct contact with the spinal column. The predetermined frequency is 1.45 Hz. The low-frequency wave is a bass wave. The negative ion concentration N is 35,000 negative ions per milliliter. The tapping frequency is 24 times per minute, and this program is executed over 2 hours. Person P is 75 years old and female. Person Q is 72 years old and female. Person Q' is 76 years old and male. Blood samples are taken from Person P, Person Q, and Person Q' before the health program is performed.Blood samples are analyzed to determine the number of endothelial precursor cells (EPCs) per 2 ml in each sample. Within 48 hours of completing the 80-hour health program, blood samples are also taken from Person P, Person Q, and Person Q' to determine the number of EPCs per 2 ml in each sample. Table 1 shows the results. Table 1 Test position Number of endothelial precursor cells Before the execution After the execution Difference Relationship Person P 3 5 2 added Increase 66 Person Q 3 10 7 added Increase 233% Person Q' 3 6 3 added Increase 100%
[0045] Table 1 shows that the number of endothelial progenitor cells (EPCs) in person P was 3 cells per 2 ml of blood sample before the health program (corresponding to a vascular age of 70 years). After 80 hours of the health program, the number of EPCs increased to 5 cells per 2 ml of blood sample (corresponding to a vascular age of 60 years). This represents a 66% increase in the number of EPCs. Person Q's number of EPCs before the health program was 3 cells per 2 ml of blood sample (corresponding to a vascular age of 70 years). After 80 hours of the health program, the number of EPCs increased to 10 cells per 2 ml of blood sample (corresponding to a vascular age of 50 years). This represents a 233% increase in the number of EPCs.The number of endothelial progenitor cells (EPCs) in person Q' before the health program was 3 cells per 2 ml of blood sample (corresponding to a vascular age of 70 years). After 80 hours of the health program, the EPC count increased to 6 cells per 2 ml of blood sample (corresponding to a vascular age of 60 years). This represents a 100% increase in the number of EPCs. Therefore, the health program device can increase the number of EPCs. The health program device can significantly increase the number of EPCs after a two-hour health program administered within 80 hours.
[0046] In this embodiment, the health care device 2' is configured to perform a health program to apply the low-frequency wave W and the negative ions N to the navel 12 (see Fig.4) to be transmitted from Person R, Person S, and Person T. The specified distance D is 0 cm. This means that the health check device 2' is in direct contact with the navel 12. The specified frequency is 1.45 Hz. The low-frequency wave is a bass wave. The negative ion N is 35,000 negative ions per milliliter. The tapping frequency is 24 times per minute, with this program being executed in 2 hours. Person R is 76 years old and male. Person S is 72 years old and female. Person T is 44 years old and male. Before the health check program is performed, blood samples are taken from Person R, Person S, and Person T. The blood samples are analyzed to determine the number of circulating endothelial cells (CECs) per 2 ml in each blood sample.Within 48 hours of completing the 80-hour health program, blood samples are also taken from Person R, Person S, and Person T to determine the number of CECs per 2 ml in each blood sample. Table 2 shows the results. Table 2 Test position Number of circulating endothelial cells Before the execution After the execution Difference Relationship Person R 24 7 reduced by 17 Reduced by 71% Person S 41 26 Reduced by 15 Reduced by 37% Person T 34 4 Reduced by 30 Reduced by 88%
[0047] Table 2 shows that the circulating endothelial cell (CEC) count of person R was 24 cells per 4 ml of blood before the health program, and decreased to 7 cells per 4 ml of blood after 60 hours of the program. This represents a 71% reduction in CEC. Person S had 41 cells per 4 ml of blood before the health program, and decreased to 26 cells per 4 ml of blood after 60 hours. This represents a 37% reduction in CEC. Person T had 34 cells per 4 ml of blood before the health program, and decreased to 4 cells per 4 ml of blood after 60 hours. This represents an 88% reduction in CEC.
[0048] As shown in Tables 1 and 2, the health-care device of the present invention can increase the number of endothelial progenitor cells and decrease the number of circulating endothelial cells when applied to the human body. The aforementioned effects can be achieved when a two-hour program is performed within 80 or 60 hours. Endothelial progenitor cells (EPCs) are the precursor cells of vascular endothelial cells and play an important role in angiogenesis and the repair of the vascular endothelium. Therefore, an increase in the number of EPCs can prevent or mitigate the occurrence of cardiovascular diseases. In contrast, circulating endothelial cells (CECs) can be an indicator of vascular damage, which can lead to platelets and white blood cells readily adhering to the vessel wall.Inflammation and fatty deposits can occur, which can gradually harden the blood vessels. The inner diameter of the blood vessels can gradually decrease. Eventually, thrombosis, arteriosclerosis, and other diseases can develop. Therefore, reducing the number of cerebrospinal fluid cells (CECs) can lower the risk of cardiovascular disease.
[0049] The Fig. Figure 4 shows a schematic view in which the device for health care 2' is in Fig.2 is arranged on a frame 20, which is to be used according to one embodiment of the present invention. In another embodiment, the health care device 2' is arranged on a frame 20. The user 1 can lie flat on the platform (not shown). The frame 20 can be arranged above the platform. The health care device 2' can be positioned above the spine 11 or the navel 12 of the user 1. In this way, the user 1 can recover well during the health program.
[0050] A health prevention device 2 and its commissioning are thus configured to transmit a low-frequency wave to a spine 11 or an umbilicus 12 to increase the number of endothelial progenitor cells (EPCs) and reduce the number of circulating endothelial cells (CECs), which can decrease the risk of cardiovascular disease. The training device 2 comprises a box body 21, a power supply 22, a speed controller 23, a rotation mechanism 24, a coupling mechanism 25, a tapper 26, and a conical table 27. The power supply 22 is electrically connected to the speed controller 23 to supply power to the speed controller 23. The speed controller 23 is electrically connected to the rotation mechanism 24 and controls the rotation mechanism 24 to rotate at a predetermined speed.The rotation mechanism 24 is connected to the knocker 26 to drive the knocker 26 to strike a flat surface 271 of the conical table 27. The knocker 26 generates the low-frequency wave with a predetermined frequency.
[0051] It should be particularly noted that the bass wave described above is only one example of a low-frequency wave, and the present invention is not intended to be limited in this respect. The low-frequency wave can be an electromagnetic wave, such as an electric wave, or a light wave.
[0052] The above statements are only a detailed description of the present invention with reference to preferred embodiments. Simple modifications and changes made to these embodiments fall within the spirit and scope of the present invention.
[0053] It is understood that the embodiments described here merely represent an illustration of the principles of the present invention and that various modifications can be made by a person skilled in the art without deviating from the spirit and scope of the present invention as explained in the attached claims. QUOTES INCLUDED IN THE DESCRIPTION
[0000] This list of documents cited by the applicant was automatically generated and is included solely for the reader's convenience. The list is not part of the German patent or utility model application. The DPMA accepts no liability for any errors or omissions. Cited patent literature
[0000] TW 202339822A
[0005] TW 202415360A
[0005] TW 202442266A
[0005] TWM657715U
[0005] TWM657714U
[0005]
Claims
[1] Health care device (2), comprising: a box body (21); a power supply unit (22); a speed controller (23); a rotation mechanism (24); a coupling mechanism (25); a knocker (26); and a conical table (27), comprising the power supply (22), the speed controller (23), the rotation mechanism (24), the coupling mechanism (25), the knocker (26) and the conical table (27) are arranged in the box body (21); wherein the power supply (22) is electrically connected to the speed controller (23) to supply current to the speed controller (23), the speed controller (23) is electrically connected to the rotation mechanism (24) and controls the rotation mechanism (24) to rotate at a predetermined speed, the predetermined speed causing the knocker (26) to knock on the conical table (27) at a knocking frequency, the knocking frequency being in the range of 24 times per minute to 64 times per minute, the knocker (26) generating a low-frequency wave at a predetermined frequency, the predetermined frequency being in the range of 1.18 Hz to 1.81 Hz, the low-frequency wave being a bass wave, the rotation mechanism (24) being connected to the knocker (26) via the coupling mechanism (25) to drive the knocker (26) to strike a flat surface (271) of the conical table (27) to knock,so that the conical table (27) transmits the low-frequency wave with the specified frequency. [2] Health care device (2) according to claim 1, further comprising: a block body (29); and at least one negative ion generator (30), wherein the block body (29) is arranged on the at least one negative ion generator (30), the negative ion generator (30) is electrically connected to the power supply unit (22), a side surface of the block body (29) is attached to a metal back plate (211) of the box body (21), the block body (29) points to a tip (272) of the conical table (27). [3] Device for health care (2) according to claim 2, wherein the conical table (27) is a wooden cone. [4] Health care device (2) according to claim 3, wherein the rotation mechanism (24) comprises a motor (241) and a cam (242), the cam (242) is arranged on one side of the motor (241), the cam (242) is attached to the coupling mechanism (25), the coupling mechanism (25) comprises a connecting rod (251), the knocker (26) consists of a cylinder (261) and a cone (262), one end of the cylinder (261) is attached to the connecting rod (251), the other end of the cylinder (261) is attached to the cone (262), the cylinder (261) is a wooden cylinder, the cone (262) is a wooden cone, the cylinder (261) and the cone (262) are formed in one piece. [5] Health care device (2) according to claim 4, wherein the knocker (26) further comprises a vibrating element (263), the vibrating element (263) being arranged on a surface of the cylinder (261) or the cone (262), the vibrating element (263) being electrically connected to the power supply (22) and the vibrating element (263) vibrating in a thickness direction to generate the bass wave with the predetermined frequency. [6] Device for health care (2) according to claim 5, wherein the block body (29) is a wooden block. [7] Health care device (2) according to claim 6, wherein at least one surface of the at least one negative ion generator (30) is exposed from the box body (21). [8] Device for health care (2) according to claim 7, wherein the predetermined frequency is 1.45 Hz. [9] Health care device (2) according to claim 1 for transmitting the low frequency wave to a spine (11) or an umbilicus (12).
Citation Information
Patent Citations
Health care device and health care method
TW202339822A
Health care device and health care method
TW202415360A
Health care device
TW202442266A
Negative potential derivation device
TWM657714U
Negative potential generating device
TWM657715U