Human foot space type magnetic field balance compensator

CN122537217APending Publication Date: 2026-08-11XIAN BAINIAN KANGHUI BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-09
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]现有磁疗技术多采用磁体在人体表面敷贴佩戴的方式,无法将人体局部器官完整置于磁场内部,磁场覆盖范围有限,效应利用率低,磁疗效果大打折扣

Benefits of technology

[0018](1)本发明通过构建的空间型磁场可完全覆盖足部穴位及神经,刺激强化神经系统功能,促进足部内外物质交换,加速代谢废物排出与有效物质吸收,辅助五脏正向健康发展,同时磁场提升5米内负氧离子浓度1-5倍,使水分子小分子化、偏碱性化,进一步优化人体吸收环境,对改善失眠、提升视力等效果显著;

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Abstract

This invention discloses a spatial magnetic field balancing compensator for the human foot, relating to the field of medical technology. It includes at least one permanent magnet component and auxiliary components. The permanent magnet component can construct a spatial magnetic field with an intensity of 50-2000G around the human foot. The spatial magnetic field has N poles and S poles, with a distance of 5-15cm between the N and S poles. This invention, through the constructed spatial magnetic field, can completely cover acupoints and nerves in the foot, stimulating and strengthening the nervous system, promoting the exchange of substances inside and outside the foot, accelerating the excretion of metabolic waste and the absorption of effective substances, and assisting in the healthy development of the five internal organs. Simultaneously, the magnetic field can increase the concentration of negative oxygen ions within a 5-meter radius of the human body by 1-5 times, and cause water molecules to tend towards smaller molecules and water quality to tend towards weak alkalinity, further optimizing the human body's absorption environment. It has significant effects on improving insomnia and enhancing vision.
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Description

Technical Field

[0001] This invention relates to the field of medical technology, and in particular to a spatial magnetic field balance compensator for the human foot. Background Technology

[0002] Magnetotherapy, also known as magnetic field therapy, is a physical therapy method that uses magnetic fields applied to specific parts or acupoints of the human body to prevent and treat diseases. It falls under the category of physical therapy. Human cells and tissues possess weak bio-electromagnetic fields. An external magnetic field can affect cell membrane potential, ion channel permeability, and biocurrents. Magnetic fields can dilate blood vessels, accelerate blood flow, and improve local tissue oxygen and nutrient supply. Magnetic fields can affect the excitability of nerve endings, regulate autonomic nerve function, and produce analgesic and sedative effects. Magnetic fields can also affect the activity of certain enzymes, such as superoxide dismutase (SOD), thereby exerting an antioxidant effect.

[0003] Current magnetic therapy technologies mostly involve applying magnets to the surface of the body, which cannot completely place local organs within the magnetic field. The coverage area is limited, the utilization rate of the effect is low, and the therapeutic effect is significantly reduced. Furthermore, due to the gradual weakening of the Earth's magnetic field and the continuous increase in the height of modern buildings, the amount of Earth's energy and magnetic field received by the human body is severely insufficient. This is considered a significant factor contributing to the high incidence of blood-related diseases and impacting human longevity. In addition, electromagnetic radiation pollution in the daily environment continuously interferes with the human nervous system, leading to nervous tension and metabolic disorders. Traditional magnetic therapy products have a narrow range of therapeutic applications and cannot meet the diverse health needs of chronic disease management and sub-health improvement. Summary of the Invention

[0004] The purpose of this invention is to provide a spatial magnetic field balance compensator for the human foot to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a spatial magnetic field balance compensator for the human foot, comprising:

[0006] The first component includes at least one permanent magnet assembly, the first component serving as the N pole;

[0007] The second and third components serve as the S pole, located on the sole of the foot. The first, second, and third components can create a spatial magnetic field with an intensity of 50-2000G around the human foot, and the distance between the N and S poles of the spatial magnetic field is approximately 5-15cm, so that the acupoints and some nerves of the human foot are completely within the magnetic field, thereby assisting the body in expelling waste and absorbing useful substances from the external environment.

[0008] Preferably, the spatial magnetic field increases the concentration of negative oxygen ions within a 5-meter range by 1-5 times, and the spatial magnetic field simultaneously reduces the size of water molecules and makes them more alkaline.

[0009] Preferably, the first component includes a magnetic therapy silicone ring and a counterweight magnetic therapy strap-on fitness sandbag. The first component is worn on the ankle of the human body to form the N pole of the magnetic field.

[0010] The second and third components are magnetic therapy metal plasters, which are connected to corresponding acupoints on the soles of the feet.

[0011] Preferably, the second component is located at the Yongquan acupoint on the foot, the third component is located at the heel, and the magnetic therapy metal plaster is made of magnetic alloy material and medical adhesive cloth.

[0012] Preferably, the magnetic therapy metal sheet in the middle of the magnetic therapy metal sheet plaster is circular, with a diameter of 6-16mm and a thickness of 0.1-0.3mm.

[0013] Preferably, the permanent magnet assembly is composed of multiple permanent magnet units, which are made of any one of neodymium iron boron permanent magnets, ferrite permanent magnets, and AlNiCo permanent magnets.

[0014] Preferably, the counterweight magnetic therapy binding fitness sandbag is made of elastic material, the permanent magnet unit is fixed inside the binding sandbag, and the binding sandbag is connected with Velcro and buckles to adjust the tightness.

[0015] Preferably, the N and S pole components further include a wearable component, which is worn on the foot in the form of sports shoes, travel shoes, and health shoes. The wearable component has N and S pole components hidden in the groove of the shoe body. The second and third components are respectively located inside the groove of the sole, so that the wearable component can restrain and limit the second and third components. Drugs that enhance the therapeutic effect can also be placed in the groove. Moreover, the number of S pole magnetic therapy metal plates can be expanded to 3-12, corresponding to different acupoints on the sole of the foot.

[0016] Preferably, the groove is used to store a drug carrier, which is any one of sponge, non-woven fabric, and silicone.

[0017] The technical effects and advantages of this invention are as follows:

[0018] (1) The present invention can completely cover the acupoints and nerves of the foot by constructing a spatial magnetic field, stimulate and strengthen the function of the nervous system, promote the exchange of substances inside and outside the foot, accelerate the excretion of metabolic waste and the absorption of effective substances, and assist the five internal organs to develop in a positive and healthy way. At the same time, the magnetic field increases the concentration of negative oxygen ions within 5 meters by 1-5 times, makes water molecules smaller and more alkaline, further optimizes the human body's absorption environment, and has significant effects on improving insomnia and improving eyesight.

[0019] (2) The present invention utilizes the setting method of compensator to effectively absorb and assimilate environmental electromagnetic radiation pollution, so that the nervous system tends to be calm and relaxed; it replenishes the earth's energy and geomagnetic field required by the human body, improves the health risks caused by insufficient geomagnetic reception, can accurately lock the acupoints on the feet, and can replace some oral medicines with external drug administration formula. It is convenient to wear and does not affect daily activities, and is suitable for chronic disease conditioning and long-term health maintenance. Attached Figure Description

[0020] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention, but do not constitute a limitation thereof. In the drawings:

[0021] Figure 1 This is a side view of the present invention;

[0022] Figure 2 This is a bottom-view structural diagram of the present invention.

[0023] In the attached diagram: 1. First component; 2. Second component; 3. Third component. Detailed Implementation

[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0025] This invention provides, for example Figures 1-2The illustration shows a spatial magnetic field balance compensator for the human foot, comprising a first component 1, a second component 2, and a third component 3. The first component 1 includes at least one permanent magnet assembly, with the first component 1 serving as the N pole and the second and third components 3 serving as the S poles. The second and third components 2 and 3 are located on the sole of the foot. The first, second, and third components 1 and 3 can generate a spatial magnetic field with an intensity of 50-2000G around the human foot. 50-100G is a weak magnetic field, comparable to a common refrigerator magnet, having virtually no impact on everyday electronic devices. 100-500G is a medium magnetic field, commonly found in magnetic accessories and magnetic door latches, capable of attracting small metal objects. 500-1000G is a relatively strong magnetic field, approaching the level of a common ferrite magnet, capable of attracting heavier metal objects. 1000-2000G is a strong magnetic field, equivalent to the surface magnetic field of a small rare-earth magnet, such as the surface magnetic field of a neodymium magnet. Within this range, a strong magnet can generate a significant attractive or repulsive force. The spatial magnetic field is divided into N and S poles, with the N pole located at the ankle ring and the S pole at the sole of the foot. The distance between the N and S poles of the spatial magnetic field is approximately 5-15 cm, ensuring that acupoints and some nerves in the feet are completely within the magnetic field. This stimulates and strengthens the human nervous system, increases the exchange of information and substances between the inside and outside of the feet, promotes the excretion of metabolic waste from the feet, and enhances the absorption of functional drug components. This assists in the excretion of waste from the body and the absorption of useful substances from the external environment, promoting the healthy development of the five internal organs. Simultaneously, it absorbs, assimilates, and eliminates various environmental electromagnetic radiation pollution, causing the human nervous system to tend towards a calm and relaxed state. Furthermore, it replenishes the body with earth energy and geomagnetic field, improving the situation where the earth's magnetic field is gradually weakening and modern housing is becoming increasingly tall, resulting in a severe deficiency of the earth energy and geomagnetic field received by humans.

[0026] Furthermore, the spatial magnetic field increases the concentration of negative oxygen ions within a 5-meter range by 1-5 times. At the same time, the spatial magnetic field also makes water molecules smaller and more alkaline. The increase in the concentration of negative oxygen ions can improve the surrounding air quality, which is beneficial to human health. The smaller and more alkaline water molecules are more easily absorbed by the human body, promoting the selective exchange of human qi with environmental substances, and further promoting human health.

[0027] In particular, the first component 1 includes a magnetic therapy silicone ring and a counterweight magnetic therapy strap-on fitness sandbag. The first component 1 is worn on the ankle, forming the north pole of the magnetic field. The second component 2 and the third component 3 are magnetic therapy metal plasters, which are connected to corresponding acupoints on the sole of the foot. The second component 2 is located at the Yongquan acupoint on the sole of the foot, and the third component 3 is located at the heel. The magnetic therapy metal plasters are made of magnetic alloy material and medical adhesive cloth. The first component 1, the second component 2, and the third component 3 construct a spatial magnetic field. The core is based on the inherent magnetic properties of permanent magnets and the principle of magnetic field interaction. That is, there are a large number of magnetic domains inside the permanent magnet unit in the magnetic therapy silicone ring 1. During the manufacturing process, the magnetic domains are oriented and aligned by a strong magnetic field, thus possessing lasting magnetism and continuously releasing magnetic lines of force to form a stable magnetic field. The first component 1 is worn on the ankle, forming a magnetic field. The first component forms the N pole, while the second component 2 and the third component 3 are placed on the sole of the foot to form the S pole. This polarity layout of N above and S below allows magnetic lines of force to originate from the N pole at the ankle, pass through the foot space, and return to the S pole at the sole of the foot, forming a closed magnetic field loop. This ensures that the acupoints and nerves of the foot are completely enveloped by the magnetic field. Clinical verification has been conducted, with the magnetic field strength controlled between 50-2000G. This parameter range ensures effective stimulation of the nerves and acupoints of the foot by the magnetic field while avoiding adverse effects on the human body from an excessively strong magnetic field. The magnetic therapy metal sheet in the middle of the magnetic therapy plaster is circular, with a diameter of 6-16mm and a thickness of 0.1-0.3mm. This size design ensures the magnetic therapy effect without causing obvious foreign body sensation to the user. The permanent magnet component consists of multiple permanent magnet units, which are made of any one of neodymium iron boron permanent magnets, ferrite permanent magnets, and AlNiCo permanent magnets.

[0028] Specifically, the weighted magnetic therapy binding fitness sandbag is made of elastic material, with permanent magnet units separately fixed inside the binding sandbag. The binding sandbag is connected with Velcro and buckles to adjust the tightness. Users can freely adjust the tightness of the binding straps according to their own comfort to ensure that the permanent magnet components can be stably worn on the feet and are not easy to fall off.

[0029] Furthermore, the N and S pole components also include wearable parts, which are worn on the feet in the form of sports shoes, hiking shoes, and health shoes, thus making the permanent magnet components into a shoe product for easy wear and use. The wearable parts have N and S pole components hidden in the grooves of the shoe body. The second component 2 and the third component 3 are located inside the grooves of the sole, so that the wearable parts can bind and limit the second component 2 and the third component 3, which can firmly fix the second component 2 and the third component 3 in the corresponding positions on the sole of the foot, preventing them from shifting during walking or exercise, and ensuring the stability and positional accuracy of the S pole magnetic field. The grooves can also be used to place drugs that enhance the therapeutic effect, and the number of S pole magnetic therapy metal plates can be expanded to 3-12, corresponding to different acupoints on the sole of the foot. The grooves are used to store drug carriers, which can be any of sponge, non-woven fabric, and silicone. The drug carriers can hold external drugs, so that drug treatment can be carried out at the same time as magnetic therapy, increasing the efficacy of the drug, and realizing precise magnetic therapy and external drug delivery to the painful area, which can replace some oral drugs.

[0030] The clinical and experimental evidence that magnetic field stimulation enhances the human nervous system is as follows:

[0031] Randomized controlled clinical trial of pulsed electromagnetic fields promoting peripheral nerve regeneration

[0032] Qin Yaxin et al. (Department of Rehabilitation, Yixing People's Hospital, 2017) published a randomized controlled clinical trial in the Journal of Brain and Nervous Diseases. The study selected 46 patients with peripheral nerve injury and randomly divided them into a study group (23 cases, treated with pulsed electromagnetic field using ZZ-300 computer bone trauma treatment instrument) and a control group (23 cases, treated with conventional treatment methods).

[0033] Research on the molecular mechanism by which pulsed electromagnetic fields promote neuronal maturation

[0034] The Department of Biomedical Engineering, College of Advanced Technology, Shenzhen University (2025) published a study in Stem Cell Research & Therapy (IF 7.1) that addressed the key issues of low neuronal survival rate and immature function in stem cell therapy by stimulating cortical neurons differentiated from human induced pluripotent stem cells (iPSCs) with a 1mT, 15Hz pulsed electromagnetic field (PEMF).

[0035] Clinical Cases of Transcranial Magnetic Stimulation (TMS) Promoting Neurological Rehabilitation After Stroke

[0036] Case 1: A 59-year-old male presented with right-sided hemiplegia and speech difficulties following a stroke, requiring long-term wheelchair use, and also suffered from post-stroke depression. Transcranial magnetic stimulation (TMS) precisely located the brain's motor and language functional areas, modulated cortical excitability, promoted the repair of damaged neural pathways and brain function remodeling, and was combined with systematic rehabilitation including exercise therapy and occupational therapy.

[0037] Case 2: A 62-year-old male presented with delayed encephalopathy due to carbon monoxide poisoning, exhibiting severe cognitive impairment and loss of motor function (inability to stand, dysphagia). Five months of routine rehabilitation treatment (hyperbaric oxygen therapy, acupuncture) yielded no significant improvement. High-frequency rTMS (10Hz) stimulation of the left dorsolateral prefrontal cortex (DLPFC) was administered once daily for 20 minutes each time for four consecutive weeks, concurrently with limb rehabilitation training and cognitive behavioral therapy.

[0038] Pulsed electromagnetic fields significantly inhibited the decrease in plantar blood perfusion in diabetic rats.

[0039] In a study published in Medical and Health Equipment in 2014, Su Yanping et al. (Fourth Military Medical University, 2014) randomly divided adult SD rats into three groups (n=8 per group): normal group (normal non-diabetic rats), model group (diabetic rats, without pulsed electromagnetic field irradiation), and experimental group (diabetic rats, irradiated with pulsed electromagnetic field for 8 hours / day for 6 weeks). The microcirculation of rats in each group was evaluated using the heel blood perfusion as the detection index.

[0040] Pulsed electromagnetic fields reduce oxidative stress and promote the removal of metabolic waste.

[0041] A review published in the Journal of Neurorestoratology in 2025 pointed out that low-frequency pulsed electromagnetic field (ELF-EMF) can significantly reduce the levels of pro-inflammatory factors such as TNF-α and IL-1β, upregulate superoxide dismutase (SOD) activity, and alleviate oxidative stress. Oxidative stress is one of the main mechanisms for the accumulation of cellular metabolic waste. The upregulation of SOD directly promotes the scavenging of free radicals and the excretion of metabolic waste. Transcranial magnetic stimulation (rTMS) inhibits the apoptosis protein caspase-3 through the PI3K / Akt pathway, reduces cell apoptosis, and promotes tissue repair.

[0042] Based on the aforementioned published papers and literature, magnetic fields can stimulate and strengthen the human nervous system, and there is evidence that they can promote the exchange of substances in the human feet, as well as promote the excretion of waste and the absorption of drugs.

[0043] Implementation example: In September 2005, in Huanghe Factory Community, 11 middle-aged and elderly people with cold feet and legs were given foot soaks and then treated with spatial magnetic field therapy, once a day for 15 days. A follow-up visit after the New Year showed that the effectiveness rate was 100%, and 9 people did not relapse.

[0044] In May 2006, at the Xi'an Workers' Sanatorium, four patients with foot and leg pain, which had affected their walking, underwent six days of treatment using spatial magnetic therapy and foot soaking. The pain relief was significant, and their walking condition improved markedly. The caregiver was changed, and the treatment was discontinued.

[0045] In December 2012, at the Dongda Hot Spring Sanatorium, seven patients with sub-health and insomnia underwent spatial magnetic field therapy, once a day for 15 days, with a 100% effectiveness rate. Four of them used the spatial magnetic therapy products again in 2014.

[0046] In 2015, five students from Dayanta Primary School and Kaitong Lane Primary School wore glasses for the first time, with prescriptions ranging from 100 to 200 degrees. They underwent a 30-day treatment using a combination of spatial magnetic field therapy and traditional Chinese medicine foot baths. All five students were able to remove their glasses, and a follow-up visit six months later showed that all five had regained normal vision and no longer needed glasses.

[0047] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that variations, modifications, substitutions and alterations may be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A spatial magnetic field balance compensator for the human foot, characterized in that: include: The first component (1) includes at least one permanent magnet assembly, wherein the first component (1) serves as the N pole; The second component (2) and the third component (3) serve as the S pole. The second component (2) and the third component (3) are located on the sole of the foot. The first component (1), the second component (2) and the third component (3) can construct a spatial magnetic field with an intensity of 50-2000G around the human foot. The distance between the N pole and the S pole of the spatial magnetic field is about 5-15cm, so that the acupoints and some nerves of the human foot are completely inside the magnetic field, in order to assist the human body in excreting waste and absorbing useful and effective substances from the external environment.

2. The spatial magnetic field balance compensator for the human foot according to claim 1, characterized in that: The spatial magnetic field increases the concentration of negative oxygen ions within a 5-meter range by 1-5 times, and simultaneously reduces the size of water molecules and makes them more alkaline.

3. A spatial magnetic field balance compensator for the human foot according to claim 2, characterized in that: The first component (1) includes a magnetic therapy silicone ring and a counterweight magnetic therapy binding fitness sandbag. The first component (1) is worn on the ankle of the human body to form the N pole of the magnetic field. The second component (2) and the third component (3) are magnetic therapy metal plasters, which are connected to the corresponding acupoints on the soles of the feet.

4. A spatial magnetic field balance compensator for the human foot according to claim 3, characterized in that: The second component (2) is located at the Yongquan acupoint on the foot of the human body, and the third component (3) is located at the heel of the foot of the human body. The magnetic therapy metal patch is made of magnetic alloy material and medical adhesive cloth.

5. A spatial magnetic field balance compensator for the human foot according to claim 4, characterized in that: The magnetic therapy metal sheet patches described above are all circular, with a diameter of 6-16 mm and a thickness of 0.1-0.3 mm.

6. A spatial magnetic field balance compensator for the human foot according to claim 5, characterized in that: The permanent magnet assembly consists of multiple permanent magnet units, which are made of any one of neodymium iron boron permanent magnets, ferrite permanent magnets, and AlNiCo permanent magnets.

7. A spatial magnetic field balance compensator for the human foot according to claim 6, characterized in that: The weighted magnetic therapy binding fitness sandbag is made of elastic material, and the permanent magnet unit is fixed inside the binding sandbag. The binding sandbag is connected with Velcro and buckles to adjust the tightness.

8. A spatial magnetic field balance compensator for the human foot according to claim 7, characterized in that: The N and S pole components also include wearable components, which are worn on the feet of the human body in the form of sports shoes, travel shoes and health shoes. The wearable components have N and S pole components hidden in the groove of the shoe body. The second component (2) and the third component (3) are respectively located inside the groove of the sole so that the wearable components can restrain and limit the second component (2) and the third component (3). Drugs that enhance the therapeutic effect can also be arranged in the groove. Moreover, the number of S pole magnetic therapy metal plates can be expanded to 3-12, corresponding to different acupoints on the sole of the foot.

9. A spatial magnetic field balance compensator for the human foot according to claim 8, characterized in that: The groove is used to store a drug carrier, which can be any one of sponge, non-woven fabric, and silicone.