WO2011016627A2 - Semelle intérieure renfermant un dispositif de stimulation par micro-‌courants - Google Patents

Semelle intérieure renfermant un dispositif de stimulation par micro-‌courants Download PDF

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Publication number
WO2011016627A2
WO2011016627A2 PCT/KR2010/004726 KR2010004726W WO2011016627A2 WO 2011016627 A2 WO2011016627 A2 WO 2011016627A2 KR 2010004726 W KR2010004726 W KR 2010004726W WO 2011016627 A2 WO2011016627 A2 WO 2011016627A2
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WIPO (PCT)
Prior art keywords
microcurrent
stimulation device
coil
magnet
microcurrent stimulation
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PCT/KR2010/004726
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English (en)
Korean (ko)
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WO2011016627A3 (fr
Inventor
김진우
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(주)지원에프알에스
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Publication of WO2011016627A2 publication Critical patent/WO2011016627A2/fr
Publication of WO2011016627A3 publication Critical patent/WO2011016627A3/fr

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    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B1/00Footwear characterised by the material
    • A43B1/0054Footwear characterised by the material provided with magnets, magnetic parts or magnetic substances
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B17/00Insoles for insertion, e.g. footbeds or inlays, for attachment to the shoe after the upper has been joined
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B3/00Footwear characterised by the shape or the use
    • A43B3/34Footwear characterised by the shape or the use with electrical or electronic arrangements
    • A43B3/38Footwear characterised by the shape or the use with electrical or electronic arrangements with power sources
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B7/00Footwear with health or hygienic arrangements
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B7/00Footwear with health or hygienic arrangements
    • A43B7/36Footwear with health or hygienic arrangements with earthing or grounding means

Definitions

  • the present invention relates to a shoe insole with a built-in microcurrent stimulation device, and more particularly, by the interaction of a magnet and a fixed coil flowing when a person shakes due to movement or walking while wearing shoes.
  • the micro-current stimulator that generates electric current and magnetic field semi-permanently is built into the insole of the shoe to provide the exercise effect by repeating the contraction and relaxation of the plantar muscles, and to reduce the lactic acid of the muscles to feel less fatigue Enzyme changes not only prevent oxidase activity, but also increase the distribution of capillaries in the muscles, which helps peripheral blood vessels to increase blood flow and stimulates growth plate by stimulating growth plate by microcurrent stimulation.
  • it relates to a shoe insole with a microcurrent stimulation device that can contribute to the activation.
  • the main technical contents developed for shoes are to maximize the shock and load applied to the human knee and sole when walking or running, or to minimize the weight of the shoes using special materials, or to ventilate the inside of the shoes. It focuses on technical matters such as suppressing the production of sweat by smoothing the sweat.
  • insoles which are manufactured and used as a part of shoes, have been developed with a focus on technology that can absorb shocks in direct contact with the soles of the human body.
  • a microcurrent stimulator is built into the insole as various beneficial effects are known when applying a microcurrent stimulus to the human body in recent years.
  • microcurrent a weak (micro) current, called a biocurrent
  • a biocurrent flows through the human body, and the cerebral and organ organs transmit information to each other to maintain health, and when the health is not good, the biocurrent becomes weak and unstable.
  • microcurrent is known to have a function of actively supporting metabolism and blood circulation and eventually increasing natural healing power.
  • the appropriate microcurrent (about 0.06mA) is the weak alkaline of the blood, the expansion of blood vessels, the normalization of blood pressure, the diuretic action, the normalization of the pulse, the strengthening of the heart, the increase of collagen synthesis rate, the promotion of leukocytes, the bactericidal effect, the bacterial growth inhibition. It has been shown medically to be effective in inhibiting E. coli growth, improving microvascular blood circulation, promoting protein synthesis capacity, doubling treatment speed, promoting fatigue recovery, correcting autonomic nerves, promoting growth, purifying water, and removing odors.
  • the effects of the microcurrent stimulation have the effects of pain relief (direct pain reduction by directly blocking the propagation of the action potential), edema reduction (reduction of edema due to the movement of body fluid), and the effect and metabolism of the electrical stimulation on muscles It is divided into changes in action and changes in blood vessels.
  • the muscles are moved by electrical stimulation through the nerve cells, stimulating the surface of the muscles with an electrotherapy device, when a certain amount of electricity enters, namely muscle atrophy It can delay the progression of the reduced state, and it has a motor effect by the repetitive action of contraction and relaxation, and the cooperative muscle is also activated.
  • Korean Patent No. 669125 (Registration Date: 2007.01.09) proposes a method of promoting elongation growth by stimulating the growth plate by installing an electric stimulation member that generates a microcurrent or low frequency of tens to hundreds of microwatts in a shoe.
  • the current generator for generating the microcurrent or low frequency used in the Korean Patent No. 669125 can be classified into three types.
  • a battery for power supply and an electric circuit by electronic components such as capacitors, resistors, transistors, variable resistors, switches, and the like, and converts electricity supplied from the battery into microcurrents of several hundreds to hundreds of microamps.
  • It consists of a microcurrent generator, and secondly, the microcurrent is generated by the internal resistance of the power generation point itself formed at the end of the heel stimulus of the ankle, and thirdly, the voltage and the microcurrent according to the applied pressure.
  • the piezoelectric element is generated.
  • the first current generating device described above is composed of a microcurrent generating source consisting of a battery and a plurality of electronic components, there is a problem in that the function of promoting the growth of the kidney is not obtained because the operation of the electric stimulation member is stopped when the life of the battery runs out.
  • the life of the battery itself is extremely short, which requires a lot of maintenance costs due to frequent battery replacements, as well as securing the space required for battery replacement and watertightness for the protection of electronic components.
  • the second current generator described above allows the microcurrent to be generated by the internal resistance of the power generation point itself, but the current generated by the internal resistance of the power generation point itself is in the range of tens to hundreds of mA for stimulation of the growth plate. There is a problem that can not achieve the effect of promoting the growth of the kidneys as extremely weak current is generated at all.
  • the third current generator described above uses a piezoelectric element that generates a voltage and a microcurrent according to the applied pressure, but the amount of current and voltage generated by the piezoelectric element is basically proportional to the external force applied from the outside.
  • the voltage may increase or vary depending on the material and the size and shape of the device.
  • the voltage may be formed from several volts to several thousand volts, but the amount of current is usually very small.
  • the Korean Patent No. 669125 described above is manufactured in a form in which several tens to hundreds of layers are laminated instead of a single layer in order to generate a microcurrent required from a piezoelectric element.
  • the manufacturing cost of the device is formed very high, due to this the actual shoe price is accompanied with the problem that the burden on the consumer is increased.
  • the present invention can be manufactured at low cost and small size, and generates semi-permanently micro currents and magnetic fields by the interaction of a fixed coil and a moving magnet when a person shakes due to movement or walking while wearing shoes.
  • Built-in current stimulator insole provides exercise effect by repeating contraction and relaxation of plantar muscles, reducing lactic acid in muscle, less fatigue and preventing oxidase activity due to enzyme changes.
  • the present invention is a rectangular body having a space portion formed therein, a disk-shaped flow magnet flowing into the space portion, the coil is installed on the outer surface of the body to generate a microcurrent and magnetic field by interaction with the flow magnet And a microcurrent stimulation device provided at both ends of the body to prevent leakage of the flow magnet, and a stimulation member installed at both ends of the coil to apply microcurrent stimulation to the human body.
  • the body of the microcurrent stimulation device is installed on one side of the insole, the stimulation member is characterized in that it is exposed to the surface so as to contact the acupuncture points of the human foot.
  • the present invention provides a cylindrical body having a space portion therein, a cylindrical flow magnet flowing into the space portion, a coil installed on the outer surface of the body to generate a microcurrent by interacting with the flow magnet, and Covers are installed at both ends of the body to prevent the flow of the flow magnet, and fixed magnets are provided on one inner surface of the cover and have the same polarity as the polarity of the flow magnet, and are installed at both ends of the coil
  • a microcurrent stimulation device comprising a stimulation member for applying stimulation to the human body, the body of the microcurrent stimulation device is installed on one side of the insole, and the stimulation member is exposed to the surface to be in contact with the menstrual blood of the sole of the human body. It is characterized by.
  • the present invention is provided with a body having a space formed therein and the bottom is closed, the bottom surface of the body is fixed to the first coil is connected to both ends of the magnetic pole member, the upper surface of the first coil flows A magnet is disposed, and a microcurrent stimulation device provided with a cover for preventing separation of the magnet is provided above the end of the body, the body of the microcurrent stimulation device is installed on one side of the insole, the magnetic pole
  • the member is characterized in that it is installed exposed to the surface in contact with the acupuncture points of the human foot.
  • one side of the body is formed with a recess to prevent the separation of the coil, characterized in that to generate a micro-current of 10 ⁇ 200 ⁇ A by the interaction of the coil with the flow magnet.
  • the magnetic pole member is provided with a conductive sheet of 0.01 to 0.5 mm thick conductive sheet or a conductive network woven in a fiber form as a conductive material of 0.01 to 0.5 mm thick, the conductive
  • the upper surface of the sheet and the conductive network is characterized in that the protruding contact protrusions in contact with the acupuncture points of the human foot and the skin.
  • the present invention can be manufactured at low cost and small size, and generates semi-permanently micro currents and magnetic fields by the interaction of a fixed coil and a moving magnet when a person shakes due to movement or walking while wearing shoes.
  • Built-in current stimulator insole provides exercise effect by repeating contraction and relaxation of plantar muscles, reducing lactic acid in muscle, less fatigue and preventing oxidase activity due to enzyme changes.
  • peripheral blood vessels are expanded to help blood flow, and stimulation of growth plates by microcurrent has the effect of contributing to the promotion and activation of kidney growth.
  • the present invention is not only possible to manufacture a simple structure, low cost and miniaturization and have a semi-permanent life, there is no need for a separate power supply such as a battery, there is an effect that does not require any maintenance costs.
  • FIG. 1 is a perspective view of a shoe insole with a built-in microcurrent stimulation apparatus according to the present invention.
  • FIG. 2 is a cross-sectional view taken along the line E-E of FIG.
  • Figure 3 is a perspective view showing an embodiment of a microcurrent stimulation apparatus used in the present invention.
  • FIG. 4 is an exploded perspective view of the microcurrent stimulation apparatus shown in FIG.
  • FIG. 5 is a cross-sectional view taken along line A-A and line B-B of the microcurrent stimulation apparatus shown in FIG.
  • FIG. 6 is an operational state diagram of the microcurrent stimulation apparatus shown in FIG.
  • FIG. 7 is a perspective view showing another embodiment of the microcurrent stimulation apparatus used in the present invention.
  • FIG. 8 is an exploded perspective view of the microcurrent stimulation apparatus shown in FIG.
  • FIG. 9 is a cross-sectional view taken along line C-C and line D-D of the microcurrent stimulation apparatus shown in FIG.
  • FIG. 10 is an operational state diagram of the microcurrent stimulation apparatus shown in FIG.
  • Figure 12 (a), (b) is an exploded perspective view and cross-sectional view showing another embodiment of the microcurrent stimulation apparatus used in the present invention.
  • Figure 13 (a), (b) is an exploded perspective view and cross-sectional view showing another embodiment of the microcurrent stimulation device shown in FIG.
  • FIG. 14 is a perspective view and a cross-sectional view showing another embodiment of the magnetic pole member in the microcurrent stimulation apparatus used in the present invention.
  • FIG. 15 is a perspective view and a cross-sectional view showing another embodiment of the magnetic pole member shown in FIG.
  • Figure 16 is an illustration of a state in which the magnetic pole member of the other embodiment of Figure 14 and 15 installed in the shoe insole.
  • step 17 coil
  • FIGS. 1 to 16 a shoe insole having a microcurrent stimulation device according to the present invention will be described in detail with reference to FIGS. 1 to 16.
  • FIG. 1 is a perspective view of a shoe insole incorporating the microcurrent stimulation apparatus according to the present invention
  • Figure 2 is a cross-sectional view of the EE line of Figure 1
  • the microcurrent stimulation apparatus 10 for semi-permanently generating the microcurrent and the magnetic field by the interaction of the coil is installed, and the microcurrent generated from the microcurrent stimulation apparatus 10 at a predetermined position of one side of the insole 40.
  • Stimulation members (18) and (19) for contact with acupuncture points or muscles of the sole of the human body to apply stimulation are exposed to the surface.
  • FIG. 3 is a perspective view showing an embodiment of the microcurrent stimulation apparatus 10 used in the present invention
  • FIG. 4 is an exploded perspective view of the microcurrent stimulation apparatus 10 shown in FIG. 3
  • FIG. AA and BB lines are cross-sectional views of the microcurrent stimulation device 10 shown in FIG. 6, and
  • FIG. 6 is an operation state diagram of the microcurrent stimulation device 10 shown in FIG.
  • a space portion 16a-1 is formed inside and has a rectangular body 16a having a height greater than a width, and a disk-shaped flow magnet in the space portion 16a-1 formed in the body 16a.
  • 15a is introduced, and a coil 17 is wound around the outer surface of the body 16a to generate a microcurrent and a magnetic field by interacting with the flow magnet 15a.
  • one side is closed at both ends of the body (16a), the cover 11, 12 to prevent the flow of the flow magnet (15a) is installed inflow, both ends of the coil 17, the sole of the human foot
  • the stimulation member (18) and (19) for contact with the menstrual blood and the skin (muscle) of the stimulus are connected.
  • the stimulation member 18, 19 is preferably used a conductive material that does not damage the skin when the body is in contact, and can be installed in various ways depending on the stimulation portion is not limited to the number of installation.
  • the stimulating members 18 and 19 come into contact with acupuncture points and muscles of the soles of the human body.
  • the space magnet 16a is formed inside the body 16a by the inclination angle. It flows back and forth within 1).
  • an induced current and a magnetic field are generated in the coil 17 wound on the outer surface of the body 16a due to the flow generated in the space 16a-1 in which the flow magnet 15a is formed inside the body 16a.
  • the generated induction current that is, the microcurrent is transmitted to the stimulus members 18 and 19 to apply a microcurrent stimulus to the menstrual blood and the skin of the sole, and at the same time a magnetic field is applied to the stimulus member 18. (19) is to stimulate the soles.
  • FIG. 7 is a perspective view illustrating another embodiment of the microcurrent stimulation apparatus used in the present invention
  • FIG. 8 is an exploded perspective view of the microcurrent stimulation apparatus shown in FIG. 7
  • FIG. 9 is a microcurrent stimulation apparatus illustrated in FIG. 7A. Is a cross-sectional view taken along lines CC and DD
  • FIG. 10 is a diagram illustrating an operating state of the microcurrent stimulation apparatus shown in FIG.
  • the inside is provided with a cylindrical body 16b having a space portion 16b-1 formed therein, and the cylindrical magnet 16b-1 flows into the space portion 16b-1 formed inside the body 16b.
  • a coil 17 for generating a microcurrent in interaction with the flow magnet 15b is wound.
  • one side is closed at both ends of the body 16b, and covers 11 and 12 are installed to prevent the outflow of the flow magnet 15b, and one side inner surface of the cover 11 and 12 is provided.
  • Fixing magnets 13 and 14 having the same polarity as that of the floating magnet 15b are provided, respectively, and both ends of the coil 17 are in contact with the human body to apply magnetic poles 18. (19) is connected.
  • the Gaussian value of the stator magnets 13 and 14 should be much smaller than the Gaussian value of the floating magnet 15b. This is because when the Gaussian value of the stator magnets 13 and 14 is larger than the Gaussian value of the flow magnets 15b, the flow distance of the flow magnets 15b is shortened, so that the desired microcurrent cannot be obtained.
  • the polarities of the stator magnets 13 and 14 corresponding to the ends of the floating magnets 15b have the same polarity as those of the floating magnets 15b so that a repulsive force acts so that the impact magnets are not applied. Due to the attraction and repulsive action of the fixed magnets 13 and 14, the floating magnet 15b floats inside the space 16b-1 to maintain a stopped state without flow. When an impact is applied, an imbalance occurs in the attractive force and the repulsive force due to the impact, so that the flow magnet 15b flows in the lateral direction in the space portion 16b-1 formed in the body 16b.
  • the stimulating members 18 and 19 installed in the insole 40 come into contact with the acupuncture points and the skin of the sole of the foot.
  • an induced current and a magnetic field are generated in the coil 17 wound on the outer surface of the body 16b due to the flow generated in the space 16b-1 in which the flow magnet 15b is formed inside the body 16b.
  • the generated induction current that is, the microcurrent is transmitted to the stimulation members 18 and 19, and the magnetic field is applied to the menstrual blood and the skin of the sole through the stimulation members 18 and 19. By being applied around this, an electrical stimulus is applied.
  • FIG. 11 shows another embodiment of the bodies 16a and 16b in the microcurrent stimulation apparatus 10 shown in FIGS. 3 to 6 and 7 to 10, and FIG.
  • the recess 16c is formed by forming the stepped portion 16d on one side surface of one side of 16a and 16b, and FIG. 11B shows the stepped portion on one front surface of the body 16a or 16b.
  • FIGS. 12A and 12B are exploded perspective views and cross-sectional views showing still another embodiment of the microcurrent stimulation apparatus used in the present invention, in which a body 41 having a space part formed therein and a closed bottom surface thereof is provided. It is provided, the bottom surface of the body 41 is wound to a predetermined thickness, both ends of the first coil 42 to which the magnetic pole member 18, 19 is connected is fixedly installed, the first coil 42 The upper surface of the flow magnet 43 is disposed, the upper end of the body 41, the cover 44 to prevent the separation of the magnet 43 is provided to form a structure.
  • the flow magnet 43 has a suitable space portion 47 between the first coil 42 and the inner surface of the cover 44 so that the left and right flow can be free.
  • the floating magnet 43 is a microcurrent stimulation device ( Since no inclination of 10) does not flow in the front-rear direction on the first coil 42, a microcurrent hardly occurs in the first coil 42.
  • the flow magnet 43 is formed in the space 47 formed inside the body 41 by the inclination angle. It flows forward and backward.
  • the flow magnet 43 flows left and right on the upper surface of the first coil 42, an induced current and a magnetic field are generated in the first coil 42.
  • the generated induced current that is, the microcurrent is not shown.
  • the magnetic field is applied to the periphery of the stimulus members 18 and 19 and the microcurrent stimulus is applied to the menstrual blood and muscles of the sole through the stimulus members 18 and 19.
  • Figure 13 (a), (b) is an exploded perspective view and cross-sectional view showing another embodiment of the microcurrent stimulation device shown in FIG. 12, the body having a space 47 formed therein and the bottom surface is closed ( 41 is provided, and the first coil 42 is fixed to the bottom surface of the body 41 is connected to the magnetic pole member 18, 19 is connected to both ends is fixed, the first coil A floating magnet 43 is disposed on an upper surface of the 42, and a cover 44 is installed above the end of the body 41 to prevent the magnet 43 from being separated. An inner surface of the cover 44 is provided. Has a structure in which the second coil 45 is fixedly installed.
  • the flow magnet 43 has a suitable space portion 47 so that the left and right flow freely between the first coil 42 and the second coil 45.
  • the microcurrent stimulation apparatus 10 When the user is not moving or walking while the insole 40 installed with the microcurrent stimulation apparatus 10 according to another embodiment made as described above is introduced into the shoe, the microcurrent stimulation apparatus 10 does not incline. Therefore, the flow magnet 43 does not flow in the front and rear direction in the space portion 47 between the first and second coils 42 and 45, which causes the first and second coils 42 and 45 to flow. In this case, microcurrent rarely occurs.
  • the flow magnet 43 is formed in the space 47 formed inside the body 41 by the inclination angle. It flows forward and backward.
  • the flow magnet 43 flows between the first and second coils 42 and 45 to generate more microcurrent and magnetic field than the embodiment of FIG. 12.
  • the fine current generated from the microcurrent stimulation apparatus 10 in the embodiment shown in Figs. 4 to 6, the embodiment in Figs. 7 to 10, and the embodiment shown in Figs. 12 and 13 of the present invention provides the exercise effect by the repetitive action of muscle contraction and relaxation by stimulating the menstrual blood and muscles of the sole of the human foot, reducing the lactic acid of the muscle, feeling less fatigue and preventing the oxidase activity due to the change of enzyme.
  • peripheral blood vessels are expanded to increase blood flow, as well as to promote the growth of kidneys through stimulation of the growth plate to output several tens to several hundred microseconds, which is the flow magnet (15a)
  • the desired microcurrent can be obtained by adjusting the Gaussian value of (15b) 43 and the number of turns of the coils 17, 42, 45.
  • the repetitive action of muscle contraction and relaxation provides the exercise effect, reduces the lactic acid in the muscle, reduces fatigue, prevents oxidase activity due to enzyme changes, and increases the distribution of capillaries in the muscle
  • Blood vessels can be expanded and blood flow can be expected, and a preferable microcurrent that can promote kidney growth by stimulating the growth plate of the human body is about 10 to 200 mA, and the flow magnets 15a, 15b, and 43 are 500 to 3,000.
  • Gaussian, coils 17, 42, 45 can be seen through the experimental results that the micro-current in the range of 10 ⁇ 200 ⁇ generated from the micro-current stimulation apparatus 10 of the present invention when winding 500 to 20,000 times .
  • the Gaussian values of the floating magnets 15a, 15b and 43 and the number of turns of the coils 17, 42 and 45 may vary depending on the desired degree of generation of the microcurrent, and thus the range is not limited.
  • microcurrent stimulation apparatus 10 in the embodiment shown in Figs. 3 to 6, the embodiment shown in Figs. 7 to 10, and the embodiment shown in Figs. The greater the impact on the ground due to faster or jogging, the greater the flow range of the flow magnets 15a, 15b, 43, and the faster the flow rate. And the like can be maximized.
  • microcurrent stimulation apparatus 10 of the embodiment shown in Figs. 3 to 6, the embodiment shown in Figs. 7 to 10, and the embodiment shown in Figs. may be provided in the part, it is preferable that it is provided in the arch part which contacts the midfoot arch of the sole which is thickest in the insole 40.
  • FIG. 14 is a perspective view and a cross-sectional view showing another embodiment of the magnetic pole member 18, 19 in the microcurrent stimulation apparatus according to the present invention
  • Figure 15 is another of the magnetic pole member 18, 19 shown in FIG. 16 is a perspective view and a cross-sectional view showing an embodiment
  • FIG. 16 is an exemplary view of a state in which the magnetic pole members 18 and 19 shown in FIGS. 14 and 15 are installed on the insole 40. It is to be done.
  • a conductive sheet 51 having a plate shape as a conductive material having a thickness of 0.01 to 0.5 mm is provided, and a human body is disposed on an upper surface of the conductive sheet 51.
  • Contact protrusions 52 in contact with the menstrual blood and the skin of the sole form a protruding structure.
  • the conductive material of the 0.01 to 0.5mm thick material is provided with a conductive network 53 made of a fiber form, the upper surface of the conductive network 53 and the acupuncture points of the human foot and skin and The contact protrusions 52 in contact with each other form a protruding structure.
  • the conductive sheets 51 and the conductive nets 53 may be made of gold, silver, or the like having a very low electrical resistance, but it is preferable to use copper from an economical point of view.
  • the type thereof is not limited, and the contact protrusions 52 formed on the conductive sheet 51 and the conductive network 53 are formed through a pressing work process of a bottom surface.
  • the magnetic pole members 18 and 19 of FIG. 14 and FIG. 15 are installed in the insole 40 as shown in FIG. 16 or installed on the surface by sewing, and the contact protrusion 52 )
  • the contact protrusion 52 By exposing to the outside of the skin of a large area of the human foot at the same time to apply a microcurrent stimulation and magnetic field multiple times to increase the efficiency, it is possible to apply to a variety of items because there is an advantage that can be sewn.
  • the conductive sheet 51 and the conductive net 53 is formed when the thickness is less than 0.01mm is feared to be broken when washing the insole 40, when formed with a thickness of 0.5mm or more increases the price and load and flexibility There is a problem that damage is caused to damage the human body is preferred to have a thickness in the range of 0.01 ⁇ 0.5mm.
  • the present invention provides a microcurrent stimulator for semi-permanently generating microcurrents and magnetic fields in the insole to provide a motor effect by the stimulation of the plantar acupoints and the repetitive action of muscle contraction and relaxation, reducing the lactic acid in the fatigue Not only can the oxidase activity be prevented due to changes in enzymes, and the distribution of capillaries in the muscles increases, thereby expanding peripheral blood vessels and helping blood flow, and stimulating growth plates by microcurrent stimulation. It can contribute to the promotion and activation of growth.
  • the present invention incorporates a microcurrent stimulator in the insole of the shoe to provide the exercise effect by the repetitive action of the contraction and relaxation of the plantar muscles, reduce the lactic acid of the muscle to feel less fatigue and prevent oxidase activity due to changes in the enzyme
  • a microcurrent stimulator in the insole of the shoe to provide the exercise effect by the repetitive action of the contraction and relaxation of the plantar muscles, reduce the lactic acid of the muscle to feel less fatigue and prevent oxidase activity due to changes in the enzyme
  • peripheral blood vessels expand to help blood flow, and stimulate the growth plate caused by microcurrent stimulation, thereby contributing to the promotion and activation of kidney growth. It is.

Abstract

La présente invention concerne une semelle intérieure renfermant un dispositif de stimulation par micro-courants. Plus précisément, la présente invention concerne une semelle intérieure renfermant un dispositif de stimulation par micro-courants, le dispositif de stimulation par micro-courants générant un micro-courant et un champ magnétique de façon semi-permanente par une interaction entre un aimant mobile et une bobine fixe tandis que l’aimant vibre en accompagnant le mouvement ou la marche d’une personne portant la chaussure, donnant des effets d’exercice par contraction et relâchement répétitifs des muscles de la plante d’un pied, réduisant l’acide lactique dans le muscle de façon à diminuer la fatigue musculaire, inhibant une activité d’oxydase par une modification de l’enzyme, facilitant l’écoulement du sang en dilatant les vaisseaux sanguins périphériques conjointement à une augmentation de la distribution des vaisseaux capillaires dans le muscle, et contribuant à favoriser et à activer la croissance en stimulant le cartilage de conjugaison par un stimulus en micro-courant. Un tel dispositif de stimulation par micro-courants selon la présente invention comporte un corps rectangulaire comprenant un espace intérieur défini; un aimant mobile en forme de disque introduit dans ledit espace; une bobine enroulée autour de la surface extérieure du corps afin de générer un micro-‌courant par interaction avec l’aimant mobile; des couvercles placés aux deux extrémités du corps, l’une des extrémités du couvercle étant fermée pour empêcher la sortie du corps mobile; et des éléments de stimulation montés aux deux extrémités de la bobine afin d’appliquer un stimulus en micro-courant au corps en contact avec ceux-ci, le corps du dispositif de stimulation par micro-courants étant monté sur un côté à l’intérieur de la semelle intérieure et les éléments de stimulation étant installés de telle manière que leurs surfaces soient exposées à l’extérieur afin d’entrer en contact avec des points d’acupuncture et la peau de la plante du pied.
PCT/KR2010/004726 2009-08-01 2010-07-20 Semelle intérieure renfermant un dispositif de stimulation par micro-‌courants WO2011016627A2 (fr)

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KR1020090071099A KR100945145B1 (ko) 2009-08-01 2009-08-01 미세전류 자극장치가 내장된 신발안창

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013028025A2 (fr) * 2011-08-24 2013-02-28 주식회사 엔데오 Chaussure à moyen de stimulation électriques comportant une partie d'électrode de transfert électrique souple
WO2014166785A1 (fr) * 2013-04-11 2014-10-16 Menegazzo, Corrado Pièce rapportée pour article chaussant
CN109939000A (zh) * 2019-04-08 2019-06-28 丹阳市精通眼镜技术创新服务中心有限公司 一种眼部疲劳按摩器及其制作方法

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KR101369409B1 (ko) 2013-07-09 2014-03-03 김춘기 전기 및 미세전류 생성기
KR101614477B1 (ko) 2015-08-07 2016-04-21 김춘기 미세전류 건전지
KR102110552B1 (ko) 2018-11-19 2020-05-13 박정민 신발용 ems 내피

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CN109939000A (zh) * 2019-04-08 2019-06-28 丹阳市精通眼镜技术创新服务中心有限公司 一种眼部疲劳按摩器及其制作方法

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