WO2012169846A2 - Stimulateur électrique utilisant un plan de fréquences - Google Patents

Stimulateur électrique utilisant un plan de fréquences Download PDF

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Publication number
WO2012169846A2
WO2012169846A2 PCT/KR2012/004574 KR2012004574W WO2012169846A2 WO 2012169846 A2 WO2012169846 A2 WO 2012169846A2 KR 2012004574 W KR2012004574 W KR 2012004574W WO 2012169846 A2 WO2012169846 A2 WO 2012169846A2
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WO
WIPO (PCT)
Prior art keywords
frequency
mode
electrode portion
positive electrode
negative electrode
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PCT/KR2012/004574
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English (en)
Korean (ko)
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WO2012169846A3 (fr
WO2012169846A4 (fr
Inventor
김미승
Original Assignee
Kim Mi-Seung
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Application filed by Kim Mi-Seung filed Critical Kim Mi-Seung
Publication of WO2012169846A2 publication Critical patent/WO2012169846A2/fr
Publication of WO2012169846A3 publication Critical patent/WO2012169846A3/fr
Publication of WO2012169846A4 publication Critical patent/WO2012169846A4/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/36Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
    • A61N1/36014External stimulators, e.g. with patch electrodes
    • A61N1/3603Control systems
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H39/00Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
    • A61H39/002Using electric currents
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/02Details
    • A61N1/04Electrodes
    • A61N1/0404Electrodes for external use
    • A61N1/0408Use-related aspects
    • A61N1/0452Specially adapted for transcutaneous muscle stimulation [TMS]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/02Details
    • A61N1/04Electrodes
    • A61N1/0404Electrodes for external use
    • A61N1/0472Structure-related aspects
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/02Details
    • A61N1/04Electrodes
    • A61N1/0404Electrodes for external use
    • A61N1/0472Structure-related aspects
    • A61N1/0476Array electrodes (including any electrode arrangement with more than one electrode for at least one of the polarities)
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/321Electromedical belts
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/36Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
    • A61N1/36014External stimulators, e.g. with patch electrodes
    • A61N1/3603Control systems
    • A61N1/36031Control systems using physiological parameters for adjustment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/36Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
    • A61N1/36014External stimulators, e.g. with patch electrodes
    • A61N1/3603Control systems
    • A61N1/36034Control systems specified by the stimulation parameters

Definitions

  • the present invention relates to an electrical stimulator using a frequency pattern, and more specifically, each symptom of the human body is grouped into symptom units and departments of treatment, and each of the symptom units according to the output of an appropriately selective electric frequency according to the patient's condition.
  • the present invention relates to an electrical stimulator using a frequency pattern that enables short-term intensive treatment of similar diseases in the department of treatment and treatment.
  • the electric stimulator using frequency is a stimulator widely used to prevent or treat various diseases by stimulating the user's body with a frequency stimulus (particularly, frequency stimulation).
  • a pad type stimulator that stimulates the body's stimulation point using an adhesive pad
  • probe type stimulators that stimulate the meridians using the probe.
  • the pad type stimulator requires a body part of a predetermined area for pad adhesion
  • the pad type stimulator may vary in shape and size depending on the body part to be stimulated, and the probe type stimulator is relatively pointed like a meridians using a pointed probe. Configured to intensively stimulate narrow areas.
  • the electric stimulator using the conventional frequency as described above is configured to change the stimulus through the frequency output level divided into several steps, the change of the output frequency, the adjustment of the interval of the output frequency, and the like.
  • the Patent Publication No. 2001-0073733 outputs a variety of frequencies through the ceramic in contact with the user's body to treat various diseases, the frequency for treating each disease at the same time giving each mode number for each of the various diseases
  • the pattern is configured to match each mode number (see Table 1).
  • the user can select the mode number of the disease to be treated to receive a stimulus corresponding to the frequency pattern for treating the disease, for example, when selecting the mode number 33 corresponding to rheumatism to treat rheumatism
  • the user may receive a stimulus corresponding to the frequency pattern.
  • the method of assigning each mode number to each disease and providing a frequency pattern corresponding to the selected mode number has a problem that only one disease can be treated at a time.
  • the user has all diseases of the joint pain caused by rheumatism, arthritis, and gout, select the mode number 33 corresponding to rheumatism, the mode number 34 corresponding to arthritis, and the mode number 35 corresponding to the joint pain caused by gout, respectively.
  • the disease must be treated three times.
  • Rheumatism, arthritis, gout and joint pain as described above are all diseases occurring in the joint part, and the frequency pattern for treating them includes a large part of common frequencies. Since the number of treatments in the frequency pattern corresponding to all three diseases required a considerable treatment time was required.
  • An object of the present invention for solving the problems according to the prior art, grouping each symptom of the human body into symptom units and treatment units, respectively, and outputs an appropriate selective electric frequency according to the patient's condition, symptom unit and treatment department
  • the present invention provides an electrical stimulator using a frequency pattern that can be intensively treated in a short time for a similar disease corresponding to a unit.
  • Electric stimulator using the frequency pattern of the present invention for solving the above technical problem, a single mode for outputting a single frequency, a complex mode for outputting at least a plurality of different frequencies sequentially according to each symptom of the human body, each symptom of the human body
  • a stimulation primitive having a control unit configured to control the operation in a selected mode among intensive modes of sequentially outputting a plurality of different frequencies by grouping the medical departments; And a stimulus configured to be connected to the body part by being connected to the stimulus base body through a connection cable, and to deliver an electric frequency stimulus by transferring a frequency output from the stimulus base body to a mode selected by the controller to the body part of the user.
  • Means configured.
  • the magnetic pole means is composed of a belt type having a fastening member at both ends, the at least one positive electrode portion and at least one negative electrode portion may be spaced apart from each other on the inner surface in contact with the body part of the user. .
  • the area of each of the positive electrode portion and the negative electrode portion is the same, but the number of the negative electrode portion and the number of the positive electrode portion may be configured differently.
  • the electrode unit of any one of the positive electrode portion and the negative electrode portion may be configured to include a pressing portion to be in close contact with the body portion of the user.
  • the pressing unit, the air tube, the air tube is embedded in the stimulation means corresponding to the position of any one of the positive electrode portion and the negative electrode portion so that the electrode portion is pressed against the body part of the user when inflated It may be configured to include an air means for supplying or discharging air to.
  • a plurality of pairs of positive electrode parts are arranged in sequence, and each pair of positive electrode parts is simultaneously or sequentially or randomly outputted with frequency of the same mode to apply stimulation or different modes of frequency are simultaneously or sequentially or randomly. Can be stimulated.
  • the magnetic pole means is composed of a rod-shaped rod member extending to both sides around the insulation center portion, the rod member extending to one side is composed of a positive electrode portion, the rod member extending to the other side may be composed of a negative electrode portion have.
  • the surface area of the one rod member and the other rod member may be configured differently.
  • a conductive shield member detachably coupled to surround a portion of the surface of the one rod member or the other rod member; may be configured to further include.
  • the magnetic pole means is composed of a scaffold having a pair of scaffold pads that are spaced apart from each other and exposed to the upper side of the insulating case, one scaffold pad is composed of a positive electrode portion, the other scaffold pad is composed of a negative electrode portion Can be.
  • the conductive shielding member detachably coupled to the insulating case so as to surround a portion of the exposed surface of the one side scaffold pad or the other side scaffold pad may be further configured.
  • the magnetic pole body is provided with a plurality of connection channels connectable to a plurality of magnetic pole means, respectively, each connection channel can be independently controlled by the control unit.
  • the stimulus body is configured to include a level operation unit for adjusting the level of the frequency output to the stimulation means, the control unit, the mode selected by the level operation unit is selected only in the state of the level set to zero level It can be controlled to start the operation of.
  • the complex mode is composed of a plurality of complex codes sequentially outputting at least a plurality of different frequencies according to each symptom of the human body, and the concentrated mode sequentially groups a plurality of different frequencies by grouping each symptom of the human body in a department of treatment. Consists of a plurality of intensive codes to output, it is possible to extract a common frequency of a plurality of complex codes corresponding to the same medical department to set as the intensive code of the medical department.
  • the present invention groups each symptom of the human body into symptom units and departments of care, and outputs an electrical frequency appropriately selected according to a patient's condition.
  • the advantage is that it can be intensively treated for a short time.
  • a plurality of pairs of positive electrode parts are arranged in sequence so that each pair of positive electrode parts are simultaneously or sequentially or randomly stimulated with the same mode frequency, or different modes are simultaneously or sequentially or randomly with different frequency. According to this, there is an advantage in that the type of stimulus felt by the user can be varied.
  • the magnetic pole strength of either one can be further strengthened by varying the surface area of one rod member and the other rod member of the rod-shaped magnetic pole means or by adjusting the surface area using the conductive shielding member.
  • the magnetic pole strength of either side can be made stronger by controlling the area of the exposed surface by using a conductive shielding member on one of the scaffold pad and the exposed surface of the other scaffold pad. .
  • connection channels of the stimulus base body are independently controlled, there is an advantage in that different frequency stimuli are applied to a plurality of body parts or a plurality of users may receive different frequency stimuli at the same time.
  • FIG. 1 is a perspective view showing a state in which the magnetic pole body and the magnetic pole means connected via a connecting cable according to an embodiment of the present invention.
  • Figure 2 is a block diagram showing the configuration of the magnetic pole main body according to an embodiment of the present invention.
  • FIG. 3 is a flow chart showing the operation of the stimulation body in accordance with an embodiment of the present invention.
  • Figure 4 is a front view showing an example of the belt-type magnetic pole means according to an embodiment of the present invention.
  • Figure 5 is a front view showing another example of the belt-type magnetic pole means according to an embodiment of the present invention.
  • Figure 6 is a side cross-sectional view showing an air tube provided in the belt-type magnetic pole means according to an embodiment of the present invention.
  • Figure 7 is a front view showing another example of the belt-type magnetic pole means according to an embodiment of the present invention.
  • FIG. 8 is a perspective view showing an example of the rod-shaped magnetic pole means according to an embodiment of the present invention.
  • FIG. 9 is a perspective view showing another example of the rod-shaped magnetic pole means according to an embodiment of the present invention.
  • FIG. 10 is a perspective view showing a state in which a conductive shield member is coupled to a rod-shaped magnetic pole means according to an embodiment of the present invention.
  • FIG. 11 is a perspective view showing another example of the rod-shaped magnetic pole means according to an embodiment of the present invention.
  • FIG. 12 is a perspective view showing an example of the scaffold-type magnetic pole means according to an embodiment of the present invention.
  • Figure 13 is a perspective view showing a state in which the conductive shield member is coupled to the scaffold type magnetic pole means according to an embodiment of the present invention.
  • FIG. 14 is a table showing a single mode frequency of the stimulus primitive according to an embodiment of the present invention.
  • 15 is a perspective view showing a light irradiator according to an embodiment of the present invention.
  • first and second may be used to describe various components, but the components should not be limited by the terms. The terms are used only for the purpose of distinguishing one component from another.
  • the first component may be referred to as the second component, and similarly, the second component may also be referred to as the first component.
  • an electrical stimulator using a frequency pattern may include a stimulus base 100, a stimulus means 200, the stimulus base 100, and the stimulus means 200. It is configured to include a connecting cable 300 to connect.
  • the magnetic pole main body 100 includes a power supply unit 110a, a voltage control unit 110b, a key control unit 120, a level control unit 111, 112, 113, and 114, and a display unit 130. ), The transfer device unit 140, the light irradiation generating unit 150, the sound generating unit 160, the oscillator 100b, the first connection channel 101, the second connection channel 102, the third connection channel 103 ), The fourth connection channel 104, and the controller 100a.
  • the power supply unit 110a is for supplying power to the key operation unit 120, the sound generating unit 160, the light irradiation generating unit 150, the transfer device unit 140, the control unit 100a, the oscillation unit 100b, and the like.
  • the AC input voltage of AC 220V is converted into DC 12V
  • the converted DC 12V is converted into a constant voltage of DC 5V by the SETP DOWN circuit and supplied.
  • the voltage adjusting unit 110b is connected to the first connection channel 101, the second connection channel 102, the third connection channel 103, and the fourth connection through the level manipulation units 111, 112, 113, and 114.
  • the output voltage level is controlled by receiving a PWM control signal from the controller 100a.
  • the key manipulation unit 120 may be located at the front end of the upper surface of the magnetic pole body 100, and the first connection channel 101, the second connection channel 102, the third connection channel 103, and the fourth Set and execute the operation mode of the connection channel 104, the display unit 130, the transfer unit 140, the light irradiation generator 150, the sound generator 160, operation time, output start and stop, etc. This part is composed of including operation keys and numeric keys.
  • the key manipulation unit 120 may be, for example, a memory key for storing frequencies in a memory corresponding to M1 to M5 keys, M1 to M5 keys for recalling and executing a frequency code stored by a user, and a single frequency.
  • Single key to set code composite key to set complex frequency code, concentrated key to set intensive frequency code, start / pause key to start or pause frequency output, stop to stop frequency output Key, time key for setting operation time, speaker ON / OFF key to turn on / off beep sound when key operation and frequency change, numeric key to input numbers, input cancel key to cancel number input, etc. It may be configured to include.
  • the rotatable level manipulators 111, 112, 113, and 114 may be located at the front side of the magnetic pole main body 100, and are rotated by the user to the first connection channel 101 and the second connection channel.
  • Reference numeral 102 is a portion for adjusting the level of the frequency output to the stimulus means 200 through the third connection channel 103, the third connection channel 104, respectively.
  • the sound generator 160 may be configured to control the first connection channel 101, the second connection channel 102 by the key operation unit 120 or the level operation units 111, 112, 113, and 114.
  • the beeping sound is generated when the output frequency of the third connection channel 103 and the fourth connection channel 104 changes.
  • the light irradiation generation unit 150 receives a control signal from the control unit 100a by a switching operation of the light irradiation output ON / OFF key provided in the key operation unit 120 (see FIG. 15). ) Is the part irradiating light through.
  • the light irradiator includes a main body 310, a button 320 provided on one side of the main body, a plurality of LEDs or laser light emitting units 330 disposed forward on an upper end of the main body, and a cover covering the light emitting unit. It may be configured to include a 340, it may be operated according to the signal received through a cable connected to the cable connection portion 350 provided on the lower surface.
  • the light irradiator may be connected to any one of the first connection channel 101, the second connection channel 102, the third connection channel 103, and the fourth connection channel 104.
  • the transfer device unit 140 may be located at one side of the rear end of the upper surface of the magnetic pole main body 100, and generates wave energy by applying the frequency to the transfer coil induction device when an output frequency is generated according to a user's setting.
  • the transfer device unit 140 may be configured such that a cylindrical recess formed in the casing of the magnetic pole main body 100 is located at the inner center of the transfer coil, and a cup containing water in the cylindrical recess. In this state, the output frequency is applied to the transfer coil induction apparatus to generate wave energy, so that the energy of the output frequency can be stored in the water contained in the cup.
  • the controller 100a is a part for controlling to operate in a selected mode among a single mode, a complex mode, and a concentrated mode.
  • the single mode is a mode for outputting a single frequency.
  • the single mode is a mode for matching each frequency number with respect to a single frequency and outputting a single frequency of the corresponding frequency number selected by the user.
  • frequency 1 is a single frequency having a frequency of 10 KHz
  • frequency 2 is a single frequency having a frequency of 1.05 KHz
  • frequency 392 is a single frequency having 700 Hz.
  • about 393 single frequencies may be matched with frequency numbers.
  • the complex mode is a mode for sequentially outputting at least a plurality of different frequencies according to each symptom of the human body.
  • the complex code is assigned to each symptom of the human body, and the complex code is formed by combining a plurality of single frequency numbers.
  • a complex code 312 is selected and used to treat knee joint pain symptoms, and the complex code 312 is frequency 11, frequency 14, frequency 16, and frequency 17.
  • Frequency, frequency 20, frequency 29, frequency 55, frequency 58, frequency 69, frequency 78, frequency 82, frequency 34, frequency 62, frequency 63, frequency 104, frequency 372, Frequency 28 may be configured in order.
  • a complex code 247 is selected and used to treat the gout symptom, and the complex code 247 is frequency 1, frequency 14, frequency 17, frequency 20, and frequency. 24, frequency 42, frequency 45, frequency 49, frequency 58, frequency 265, frequency 288, frequency 327, frequency 389, frequency 372, frequency 373, frequency 28 Can be.
  • the intensive mode is a mode for sequentially outputting a plurality of different frequencies by grouping each symptom of the human body into a medical department, and assigning an intensive code to a medical department (for example, a joint pain medical department) according to each symptom of the human body,
  • the centralized code can be extracted from the composite code.
  • complex code 193 for treating astigmatism-related symptoms includes frequency 1, frequency 14, frequency 17, frequency 20, frequency 58, frequency 288, and frequency 28, and myopia and
  • the complex code 197 for treating primordial related symptoms consists of frequency 1, frequency 14, frequency 17, frequency 20, frequency 40, frequency 372, frequency 373, and frequency 28 in this order.
  • astigmatism-related symptoms, myopia and hyperopia-related symptoms can be grouped into the same unit of care (eg ophthalmology), frequency 1, frequency commonly used in astigmatism-related symptoms, myopia and hyperopia-related symptoms. 14, frequency 17, frequency 20, frequency 28 is extracted by setting the intensive code 9 to treat astigmatism, myopia and hyperopia simultaneously.
  • the intensive code 9 of ophthalmology is compound code 193 (astigmatism), compound code 197 (myopia and hyperopia), compound code 117 (eye infection), compound code 192 (eye disorder), compound code 194 It is extracted frequency commonly used in complex codes corresponding to ophthalmic diseases such as (color blindness), complex code 195 (glaucoma), complex code 198 (eye fatigue).
  • the concentrated code 15 to improve the symptoms associated with the dental oral care department frequency 1, frequency 3, frequency 4, frequency 5, frequency 6, frequency 7, frequency 8, frequency 9 , Frequency 10, frequency 11, frequency 12, frequency 14, frequency 15, frequency 16, frequency 17, frequency 18, frequency 19, frequency 20, frequency 22, frequency 24, frequency 25, frequency 26, frequency 27, frequency 28, frequency 29, frequency 39, frequency 42, frequency 45, frequency 49, frequency 51, frequency 58, frequency 68, frequency 87 , Frequency 88, frequency 102, frequency 105, frequency 107, frequency 108, frequency 109, frequency 114, frequency 265, frequency 288, frequency 327, frequency 328, frequency 372, frequency 373, frequency 389, and frequency 28 are configured in this order.
  • These intensive codes 15 are complex code 61 (the bad ones), compound code 152 (the diseased elements), compound code 250 (the gum disease), compound code 516 (the disease), and complex code to improve dental diseases. Common frequencies used in dental diseases, such as 530 (toothache), are extracted.
  • the intensive mode has the advantage of being able to intensively treat a short period of time for a similar disease corresponding to a clinic unit by outputting a frequency by grouping each symptom of the human body into a clinic unit.
  • the oscillator 100b generates a clock pulse of approximately 16 KHz and supplies the clock pulse to the controller 100a.
  • the first connection channel 101, the second connection channel 102, the third connection channel 103, and the fourth connection channel 104 are controlled by the level control units 111, 112, 113, and 114.
  • each connection channel 101, 101, 103, 104 may be independently controlled by the controller 100a.
  • the controller 100a controls the controller 100a to start the operation of the selected mode and output the frequency only when the level of the frequency is set to zero level by the level manipulators 111, 112, 113, and 114.
  • the mode operation starts only when the level of the frequency is set to zero level, it is possible to prevent a safety accident such as a shock due to a sudden frequency output.
  • the first connection channel 101, the second connection channel 102, the third connection channel 103, the fourth connection channel 104, for example, the male connector of the connection cable 300 is inserted It may consist of a female connector that can be connected.
  • the display unit 130 graphically outputs various types of information according to the control signal of the controller 100a.
  • the display unit 130 may include, for example, a code number, a running time, a memory storage state corresponding to M1 to M5 keys, a mode setting state, a frequency output state for each connection channel 101, 101, 103, 104, and the like. It can be displayed by this zone.
  • the intensive frequency pulse for outputting to the corresponding channel is set (S31), and when the intensive key is not pressed, it is checked whether the memory key is pressed (S30).
  • the magnetic pole means 200 is configured to be connected to the magnetic pole main body 100 and the connection cable 300 in a state where the electrode portion 200a is in surface contact with the user's body part.
  • the frequency output from the stimulus base body 100 in the mode selected by the controller 100a is transferred to the user's body part to apply electrical frequency stimulation.
  • the magnetic pole means may be composed of a belt-like magnetic pole means (210).
  • the belt-type magnetic pole means 210 is formed in a belt-type having a fastening member (210a, 210b), such as Velcro at both ends, the contact with the body part of the user
  • a fastening member 210a, 210b
  • Velcro at both ends
  • the frequency output from the positive electrode unit 211 is configured to be connected through the connection cable 300 and the cable connection unit 210c from the magnetic pole body 100 is output from the positive electrode unit 211, passing through the body of the user, the negative electrode unit 213 ) And the cable connection part 210c and the connection cable 300 to apply electrical frequency stimulation to the corresponding body part of the user as it returns to the stimulus base 100.
  • the cable connection part 210c and the positive electrode part 211 or the negative electrode part 213 are connected through a known electrical wiring means for frequency transmission.
  • the areas of each of the positive electrode portion 211 and the negative electrode portion 213 are the same, the number of the negative electrode portion 213 and the number of the positive electrode portion 211 may be configured differently, Preferably, as shown in FIG. 5, the number of the negative electrode portions 213 may be smaller than the number of the positive electrode portions 211.
  • the overall area of the negative electrode portion 213 is smaller than the overall area of the positive electrode portion 211.
  • the intensity of the magnetic pole is stronger than that of the positive electrode portion 211 having a large area.
  • the negative electrode portion 213 is brought into contact with the body part to give a strong stimulus, and the positive electrode part 211 and the negative electrode part (2) are allowed to pass in a state in which the positive electrode part 211 is in contact with another body part. 213 may be different in intensity.
  • any one of the positive electrode portion 211 and the negative electrode portion 213 of the electrode portion may be configured to include a pressing portion 215 to be in close contact with the body part of the user.
  • the pressing unit 215 may be configured to be embedded in the magnetic pole unit 200 corresponding to the position of any one of the positive electrode unit 211 and the negative electrode unit 213.
  • the pressing portion 215 is embedded in the inside of the belt-shaped magnetic pole means 210 so that the positive electrode portion 211 is pressed against the body part of the user when inflated It may be configured to include an air tube 215a, an air hose 215b for supplying / discharging air to the air tube 215a, and air means (not shown).
  • the air tube 215a is expanded so that the positive electrode portion 211 is in close contact with the curved user's body. Since the area becomes wider, the negative electrode portion 213 has a smaller contact area than the positive electrode portion because only a portion of the negative electrode portion 213 contacts the body of the curved user.
  • the intensity of the magnetic pole is stronger than that of the positive electrode portion 211 having a large area.
  • the inner surface of the belt-shaped magnetic pole means 210 is composed of a plurality of pairs of positive electrode portions 211a to 211d, 213a to 213d are sequentially arranged, each pair of positive electrode portions
  • the frequencies 211a to 211d and 213a to 213d may be configured to stimulate the same mode simultaneously, sequentially, or randomly, or to apply the different modes of frequency simultaneously, sequentially, or randomly.
  • first positive electrode portion 211a and the first negative electrode portion 213a are connected to the first connection channel 101, and the second positive electrode portion 211b and the second negative electrode portion 213b are connected to the second.
  • the third positive electrode part 211c and the third negative electrode part 213c are connected to the channel 102, and the fourth positive electrode part 211d and the fourth negative electrode part 213d are connected to the third connection channel 103. Is connected to the fourth connection channel 104.
  • the frequencies of the same mode are simultaneously or sequentially or randomly output through each connection channel 101, 101, 103, and 104, or the stimulus is output by the frequencies of different modes simultaneously or sequentially or randomly.
  • a first frequency is output to the first positive electrode portion 211a and the first negative electrode portion 213a through the first connection channel 101, and then, through the second connection channel 102.
  • a second frequency different from the first frequency is output to the second positive electrode part 211b and the second negative electrode part 213b, and then, the third positive electrode part 211c and the third electrode are connected through the third connection channel 103.
  • a third frequency different from the first and second frequencies is output to the negative electrode unit 213c, and then, the first positive electrode unit 211d and the fourth negative electrode unit 213d are connected to the fourth positive electrode unit 213d through the fourth connection channel 104.
  • a fourth frequency different from the 2, 3 and 3 frequencies may be output.
  • a first frequency is output to the first positive electrode portion 211a and the first negative electrode portion 213a through the first connection channel 101, and the second positive electrode portion through the second connection channel 102.
  • connection channel 101, 101, 103, 104
  • frequency output from each connection channel 101, 101, 103, 104 in the various forms according to the user's choice Of course, it can be stimulated.
  • Such a configuration can be usefully used, for example, when activating long-term exercise of the abdomen.
  • the magnetic pole means may be composed of a rod-shaped magnetic pole means 220.
  • the rod-shaped magnetic pole means 220 is composed of a rod-shaped rod member extending to both sides around the insulation center portion 225, respectively, the rod member extending to one side is composed of the positive electrode portion 221, the other side
  • the extended rod member may include a negative electrode part 223, and a cable connection part 220a for connecting the connection cable 300 may be formed at one side of the negative electrode part 223.
  • the frequency output from the magnetic pole body 100 is output from the positive electrode unit 221 which is one rod member, passes through the user's body, and returns to the negative electrode unit 223 which is the other rod member. Electrical frequency stimulation is applied to the body part.
  • the surface area of the one rod member and the other rod member may be configured differently, preferably, as shown in Figure 9, the surface area of the other rod member that is the negative electrode portion 223, the surface area of the one rod member It can be configured narrower.
  • the surface area of the other rod member is configured to be narrower than the surface area of the one rod member, like the belt type magnetic pole means 210, the strength of the magnetic poles due to the difference in area may be different from each other, and a detailed description thereof is omitted. do.
  • the user may receive an electrical frequency stimulus by holding the one rod member with one hand and holding the other rod member with the other hand.
  • the rod-like magnetic pole means 220 as shown in Figure 10, the surface area of the one rod member and the other rod member is configured to be the same, but further comprises a cylindrical conductive shield member 227 Can be.
  • the cylindrical conductive shielding member 227 is configured such that one side is opened to be inserted into the rod member, and a plurality of slit holes 227h are formed on the surface thereof, and a cable connection hole corresponding to the cable connection part 220a is formed at the other end thereof. 237a is formed.
  • the cylindrical conductive shielding member 227 configured as described above When the cylindrical conductive shielding member 227 configured as described above is inserted to surround the surface of the other rod member, as shown in FIG. 10B, the surface area of the negative electrode portion 213 can be narrowed. Accordingly, the intensity of the stimulus due to the difference in area can be different.
  • Figure 11 is a view showing another example of the rod-shaped magnetic pole means 220, the positive electrode portion 221-1 and the negative electrode portion 223-1 on one side of the rod member 225-1 that can be held by one hand And provided with a cable connection portion (225-1a) on the other end can be stimulated using only one hand.
  • the magnetic pole means may be composed of a scaffold type magnetic pole means (230).
  • the scaffold-type magnetic pole means 230 is composed of a scaffold having a pair of scaffold pads that are spaced apart from each other and exposed to the upper side of the insulating case 235, one scaffold pad to the positive electrode portion 231
  • the other side scaffold pad is composed of a negative electrode unit 233, and a cable connection part 235a for connecting the connection cable 300 may be formed at one side of the insulating case 235.
  • the frequency output from the stimulus base body 100 is output from the positive electrode unit 231, which is the scaffold pad on one side, passes through the user's body, and returns to the negative electrode unit 233, which is the scaffold pad, on the other side. Electrical frequency stimulation is applied to the body part.
  • it may be configured to include a block-type conductive shield member 237 detachably coupled to the insulating case 235 so as to surround a portion of the exposed surface of the one side scaffold pad or the other side scaffold pad, and thus the one side scaffold pad And the surface area of the other scaffold pad may be configured differently.
  • the block-type conductive shield member 237 is formed in a block shape open to the lower surface and one side so as to surround the upper side of one side of the insulating case 235, a square hole 237h is formed on the upper surface, and the cable connection portion ( The cable connection hole 237a is formed to correspond to 235a.
  • the surface area of the other scaffold pad that is the negative electrode part 233 is one scaffold. It can be configured to be narrower than the surface area of the pad, it is possible to vary the intensity of the stimulus due to the difference in area.

Abstract

La présente invention a trait à un stimulateur électrique utilisant un plan de fréquences, permettant à chaque symptôme du corps humain d'être groupé séparément dans une unité de symptôme et une unité de partie de traitement et à une fréquence électrique sélectionnée d'être fournie de façon appropriée en fonction de la condition d'un patient, ce qui permet de la sorte d'obtenir un traitement intensif à court terme d'une maladie similaire à l'unité de symptôme et à l'unité de partie de traitement correspondantes. Pour ce faire, le stimulateur électrique utilisant un plan de fréquences selon la présente invention comprend un corps principal de stimulateur comprenant une partie de commande permettant de contrôler le fonctionnement d'un mode sélectionné à partir de ce qui suit : un mode unique permettant de fournir une fréquence unique, un mode composite permettant de fournir de façon consécutive au moins une pluralité de fréquences mutuellement différentes en fonction de chaque symptôme du corps humain et un mode intensif permettant de grouper chaque symptôme du corps humain dans une unité de partie de traitement afin de fournir une pluralité de fréquences mutuellement différentes de façon consécutive ; et un moyen de stimulation qui est connecté au corps principal du stimulateur au moyen d'un câble de connexion afin de permettre un contact avec une zone du corps d'un utilisateur et qui fournit la fréquence fournie par le mode sélectionné par la partie de commande à partir du corps principal du stimulateur à la partie du corps de l'utilisateur, ce qui permet de la sorte d'appliquer un stimulus au moyen d'une fréquence électrique.
PCT/KR2012/004574 2011-06-09 2012-06-08 Stimulateur électrique utilisant un plan de fréquences WO2012169846A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020110055425A KR101093103B1 (ko) 2011-06-09 2011-06-09 주파수 패턴을 이용한 전기 자극기
KR10-2011-0055425 2011-06-09

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WO2012169846A2 true WO2012169846A2 (fr) 2012-12-13
WO2012169846A3 WO2012169846A3 (fr) 2013-03-07
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KR101458083B1 (ko) * 2012-12-03 2014-11-05 김미향 파동을 이용한 치료장치
KR101528195B1 (ko) * 2013-03-18 2015-06-12 영남대학교 산학협력단 심부근육 자극용 전기 치료 자극기
KR101618720B1 (ko) 2014-05-22 2016-05-09 주식회사 힐링이야기 인체 고유 파동에 따른 주파수 조합을 이용한 원격 주파수 치료 시스템
KR102171563B1 (ko) * 2019-03-29 2020-10-29 조승희 경피성 통증 완화 전기자극 장치
KR102214255B1 (ko) * 2020-08-07 2021-02-08 한정우 저주파를 이용한 전자 장치 및 그의 동작 방법

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US20040267333A1 (en) * 2003-06-24 2004-12-30 Kronberg James W. Apparatus and method for bioelectric stimulation, healing acceleration, pain relief, or pathogen devitalization
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