Skin adhesion type low frequency treatment device structure
Abstract
(57) [Abstract] Since this gazette is application data in front of an electronic application, the data of an abstract is not recorded.
Term
Term ended
Projected expiry passed 15 April 2007, 19.4 years ago.
- Priority and filed
- Published
- Projected expiry
- Today
1 claim: 1 independent, 0 dependent
- 1[Claim(s)] 【特許請求の範囲】 (1) A combination structure of tissue adhesion Leader, tissue adhesion non-Leader, and a low frequency wave power supply unit is comprised, A skin attachment type low-frequency massage device structure, wherein said each A conduit is electrically connected with said low frequency wave power supply unit so that said combination structure can form a closed circuit at the time of the skin attachment. (1)皮膚接着性関導子と、皮膚接着性不関導子と、低周波パワーサプライユニットとの組合せ構造体から成り、前記組合せ構造体がその皮膚貼着時に閉回路を形成し得るように前記各導子は前記低周波パワーサプライユニットと電気的に連結されていることを特徴とする皮膚貼着型低周波治療器構造体。
4 paragraphs, as filed
[Detailed Description of the Invention]
the present invention -- a human body -- direct attachment -- it is related with an usable low-frequency massage device structure. as the former and an endermic electric stimulator, i.e., what is called a low-frequency massage device etc., it is carrying -- although offer use of the thing of the size of an usable grade is carried out, the thing of the structure which does not require a Connection Fleet line etc. but can carry out attachment use of the main part of a medical treatment machine and the A conduit in one like a bandage, cataplasm, etc. at the skin is not yet proposed. therefore, the main object of the present invention can carry out attachment use directly at the human body skin which conquers the difficulties of these known art -- very -- Fishing work -- it is in providing a simple and lightweight new low-frequency massage device structure. Hereinafter, it explains in detail about the example of a present invention low-frequency massage device structure. (Mr. frequency power supply uni-,7) Present invention low frequency wave power supply unit (it is hereafter called a power supply unit for short), Although it has been what the designation of the combination unit which used as one or another object the small lightweight battery and the low frequency wave pulse output means which this drives was carried out, and hybrid-izing, IC-ization, etc. carried out the low-frequency massage device conventionally as a low frequency wave pulse output means, and carried out the small weight saving enough, it will be as follows if desirable circuit composition is shown especially. Drawing 1 is a block diagram showing one example of the power supply unit suitably used in a present invention low-frequency massage device structure, and Drawing 2 is each part wave form chart in Drawing 1. Rising pressure pulse generating means A which the unit concerned comprises with oscillation part 11 and boost portion 12 in here, Output means B constituted by M arris part (accumulation means) 13, and switch control section 16 and switch part 14 It becomes depolarization part (depolarization means) 15, and small Power supply and an output terminal from F, the waveform of outgoing end a of Boost pulse generating means A -- Drawing 2 -- (-- in the output between Drawing 2 (c) and output terminals K and F, outgoing end C of Drawing 2 (1]) and output means B corresponds [ the waveform of) and outgoing end 1] of M arris part 13 ] to Drawing 2 (d) respectively. The output of oscillation f311 which oscillates a pulse in running by itself generates the Rising pressure pulse the amplitude value of the pulse increased [ the pulse ] Rising pressure several times with boost portion 12. Pulse width is outputted, for example as a pulse wave-like pulse by 1 (microsec) and about 2 S (kllz), and a Boost pulse is inputted into accumulating part 13, as shown in Drawing 2 (a). In the accumulating part, as shown in Drawing 2 (b), the pulse wave-like pulse is accumulated. When predetermined potential is reached, switch control section 16 outputs a control signal to switch part 14, and discharges the accumulation electric charge of accumulating part 13. When it becomes fixed potential, since switch control section 16 suspends the output of a control signal, a switch part will be in an OFF state, and in the output of output means B, as shown in Drawing 2 (c), pulse width outputs 0.3 (msec) and the low frequency wave pulse of about 5 (llz), for example. Although this one-person cycle pulse is impressed to living body 11 Weave via Leader, in falling of a low frequency wave pulse, the polarization charge which carried out raw to the body tissue is discharged via depolarization part 15, and serves as a wave form chart showing in Drawing 2 (C *). Although the pulse width and frequency of an oscillation pulse which the Rising pressure pulse generating means in the present invention oscillates may be suitably chosen according to the output frequency and pulse width of a switch control section (output means) which are installed in the latter part, they are usually 1~ hundreds (kllz) grade. Next, it Separation in details per each part technical element of this example. 1 Small power supply One piece thru/or plurality are used for a small power supply shown in this example for a button type battery, a sheet type battery, a coin type battery, the telescopic battery, a pin type battery, etc. Although shape in particular of a small power supply is not limited, a lightweight battery is preferred at being small and a thin shape. Small rechargeable batteries, such as the shape of a button which can be charged, etc. may be used. Many pressure pulse generating means Boost pulse generating means are an oscillator and inductors, such as a-less stable multi-vibes lake, Or it is constituted by the oscillator which combines an external pressure function in one and has it as shown in combination composition or a prong king oscillator with the pressure rising means by a transformer or charge pump type Rising pressure circuit etc., etc. That is, if it is formed, and it acts as an output side philharmonic of the self-propelled Bron king oscillator from the coil of three 1 This provided in a circuit and it is used as turn ratio mouth * of 1 and middle coil L2 as shown in Drawing 3, the peak voltage of the pulse of an output side will produce IEl to power supply voltage E1. Therefore, it is possible by carrying out an output side coil and changing the number of turns of , to change the amount of Rising pressure easily. thing food * since the output of a self-propelled blocking oscillator does not have the constant peak of a pulse, a pulse with constant peak amplitude of a pulse is outputted by setting a constant voltage element to an outgoing end -- cut. the amount of Boost was described above -- as -- a number of turns -- Be deformed -- things can adjust. Pulse cycle T oscillated from a blocking oscillator is almost equal to the product of resistance Rb and capacitor C1. on the other hand -- Phil Nakama L2, base side coil L1, and a transistor (This -- a Rising pressure pulse can be oscillated also with a blocking oscillator as shown in constituted Drawing 3 (b).) With the back electromotive force which arises by switching operation of a transistor in Phil Nakama L2, the Rising pressure pulse oscillated, and this example is a more suitable example of the Rising pressure pulse generating means to which it carries out and But can also lessen the number of elements, and showed the example which performed that modification further in Drawing 3 (c). 3, U means, and output Trace As for an accumulation means and an output means in the present invention, M product is a means to set up two means of a means to output an electric charge carried out, with a means to accumulate electric energies, such as an external pressure pulse outputted from a Rising pressure pulse generating means. Pulse width of a pulse which an electric discharge electric charge draws with cumulative dosage is set up. Although an output means is formed by the composition of the switch control section which outputs a signal, and the switch part which discharges the accumulation electric charge of the above-mentioned accumulation means in response to the signal of this switch control section when the above-mentioned means measures the charge quantity of an accumulation means on predetermined threshold voltage and a predetermined threshold is exceeded, It is considered as the circuit which lessened the element and the thing using negative resistance element N to which The - was connected in parallel with capacitor C as shown in a figure can be shown. The Rising pressure pulse which capacitor C Is and is charged by capacitor C1, C by resistance R2, and R damping time constant, The voltage between terminals of a negative resistance element is raised gradually, if the value of negative resistance element Individual or the voltage determined by resistance R1 is reached, it will be in switch-on, and the accumulation voltage of capacitor C will be discharged via negative resistance element i4, and it will be in non-switch-on in the lower limit of Individual of a negative resistance element. When amplitude was inputted by 1 (microsec) and the Rising pressure pulse of 24 (~*) is more specifically inputted for pulse width by a 100 (kllz) frequency 1~number from input part IN of Drawing 4, M product carries out to the state where capacitor C is closed one (micro F) and negative resistance element N flows, The electrical connection time of negative resistance element N outputs the low frequency wave pulse whose amplitude is one of the 24 (\-') by about 0 and 3 (+n5ec), and the low frequency wave pulse of frequency 5 (llz), pulse width 0, 3 (1rlsec), and amplitude 24(V) is outputted by repeating this. Since a negative resistance element, capacitor C1, and the composition by resistance R constitute a remittency wave oscillator and an oscillation pulse discharges the charged type of capacitor C, and a load by the above explanation, a high energy pulse is obtained. This negative resistance element is also a Electricity; Bite limit resistive element, and is UJT (uni-junction transistor), Saibook, and PUT (since programmable uni-junction transistor Lll type 5CR (Silesk) etc. are used suitably, it does not This limited 1.). It is a very suitable embodiment -- a low frequency wave pulse stabilized periodically practically is generable -- to carry out charge and discharge voltage of an accumulation means, using a remittency wave oscillator using a negative resistance element as a switching means. The concrete composition was shown all over a circuit of Drawing 8. Cumulative dosage requires sufficient cumulative dosage to generate stimulus current, or Chofu of it can be carried out free with the capacity of an accumulation means, etc., and firing potential and electric discharge stop voltage are a characteristic value of a negative resistance element thru/or a negative resistance element (the damping time constant etc. of the remittency wave oscillator which is This and was constituted are determined.). In PUT, the point that the electrical connection starting potential of PUT can be determined etc. are suitably used by the resistance attached to the 7 maid side. As for the accumulation means, M product should just have a function to carry out for electric energy, a capacitor, the diode which can be accumulated, an inductor, etc. -- business -- the pulse which also Apply nu] The -- Drawing 6 (,) When the electric charge (polarization charge) which This residue body tissue 1 when it right-angled With a pulse wave * Is appears in the state where it is shown in Drawing 6 (b) and it makes a cycle small so that it may be shown, energization is prevented by the remains electric charge and the stimulus to feel becomes very small. And when the voltage value of impress pulses is low, the influence of polarization is great. style r& Therefore, the depolarization means in the present invention may be carried out by arranging the resistance which establishes a means to short-circuit Leader and non-Leader at the predetermined time of the interval of the pulse to impress, or has predetermined resistance. A means to connect too hastily may be set up to operate only to the predetermined time of an interval, for example, is good in fJl1mON Si State using switching operation of a transistor at the time of predetermined. [ of setting If it dries ] the above composition -- Drawing 6 -- (-- to the input of), as shown in Drawing 6 (c), an output is generable. If the above-mentioned resistance object is also set as the value in consideration of skin resistance, even if it always arranges, it will operate enough, and will become one suitable example in the point to miniaturize. The about 100 (komega) following are suitable for this resistance object. The interval of a pulse points to the between from falling of a pulse to the standup of the following pulse, and depolarization operation has the preferably good time of falling of a pulse. A resistance object and a short circuit state are set up, as an example of the pond of a depolarization means, if polarization charge may be collected, it may be used as a part of power supply voltage and it does in this way instead of performing electric discharge by the side of a circuit, a power supply amount of consumption will be made low, and much more prolonged use is also attained. The example for collecting polarization voltage was shown in Drawing 7 like the above. 71 is a power supply. Power supply 71 is a power supply for operating the present invention, accumulates the current which arose by recovery of polarization charge, and consists of a rechargeable battery, a capacitor, etc. A Rising pressure pulse generating means [ in / in 72 / the present invention ] and 73 are an accumulation means and an output means. 74.75 is an inching means again, and when there is an output from the 1st switching means 74 and low frequency wave pulse conversion method 73 turned on when there is an output from low frequency wave pulse conversion method 73 and 0 FFL cannot be found, it is ONL and the 2nd switching means 75 turned off when there is nothing. 76 is a transformer. A primary side is connected between the output of a low frequency wave pulse conversion method, and Leader, as for the secondary, one end grounds and the other end is connected to the forward direction of a diode. 77 is GuiotY. R is load which shows skin impedance. It is outputted via 71.72.73, and as for j This low frequency pulse, a switching means 75 and primary transformer side passes Leader K, and it is impressed to load. Although the 2nd Swinging means 75 will be come by off, the 1st switching means will be set to ON and the polarization charge which arose by the pulse impressed to load R will be discharged via the 1st switching means, if a pulse falls, The current which voltage is guided to the secondary of transformer 76 in that case, and flows with the guided voltage is collected by power supply 71 via diode 77. The recovery means of the polarization voltage in the present invention is suitably chosen [ provide / connect a separate battery to the power supply side in parallel, change the number of turns of a transformer, or / in the middle / the voltage dropping means by resistance ], when polarization voltage becomes higher than power supply voltage. The example of a pond is described in detail with reference to Drawing 8 about °, next a power supply unit. The end of nominal voltage 1 and power supply 80 which uses the button type battery (LR44: made by Matsushita Battery Industrial) of S (V) is connected to the collector side of transistor 83 via philharmonic the 1st order of transformer 84, and the emitter side is grounded. For philharmonic the 2nd order of transistor 84, an end is grounded, and the end of the pond is connected to the base via capacitor 81. It is connected between the end of power supply 80, and A part, and resistance 82 constitutes a blocking oscillator (Rising pressure pulse oscillation part). The collector side of transistor 83 is used as an outgoing end, and it is connected to the end of capacitor 86 via diode S5, and is further connected to output terminal K. The end of capacitor 86 is connected to remittency wave oscillator 87 centering on PUT (programmable uni-junction transistor). The output of remittency wave oscillator 87 is connected to the base side of switching transistor S8 via resistance. The collector side of switching transistor 88 is connected to output terminal F of a pond, and the emitter side is grounded. Resistance 89 for performing depolarization is connected among output terminals K and F. In Drawing 8, the portion shown in dashed line part SK is an output means. Next, the operation of the power supply unit shown in Drawing 8 of the above is explained. The voltage of power supply 80 which is 1.5 and has the direct-current voltage of 7 is impressed to transformer 84, and it is inputted into the collector side of transistor 83 via primary winding. Transistor 83 performs switching operation by the voltage guided to the secondary of transformer 84, and capacitor C1 which performs charge and discharge via resistance R1. At this time, it acts as a student, and the external pressure of the back electromotive force of To transformer 84 is carried out to 25 (\ *), and it is inputted into capacitor 86 via diode D. Since discharge of the accumulation electric charge to a Rising pressure pulse oscillation part is prevented with diode D, the potential of capacitor 8C in the accumulation electric charge of capacitor 86 or the remittency oscillator which contains PUT at the same time it increases rises, and PUT will be in an electric conduction state. At this time, the electric charge of capacitor 8C discharges, human power is carried out to the base side of Transis evening 88, and Tran * Star 88 will be in an ON state, and energizes the electric charge charged by capacitor 86 for loads, such as a human body, via A conduit. As for the low frequency wave pulse at this time, pulse width is set as 0*3 (1+1SeC) by 5 (Ilz). The electric charge of PUT in a remittency oscillator decreases, while discharging, in a certain value, OFFL and accumulation operation of capacitor S6 are performed again, and transistor 88 is performed repeatedly. In the dormant period of a low frequency wave pulse, the electric charge which carried out polarization to the human body via resistance 89 is discharged, and performs a depolarizing action. The cycle of the low frequency wave pulse is determined by the switching operation determined with the charge speed determined by resistance 8R and capacitor 8C in remittency oscillator 87, and the characteristic value of resistance eight R2 and PUT. Pulse g of a radiofrequency pulse is decided by the inductance of lance 84, and stray capacitance, and a cycle is decided by the product of resistance 82 and capacitor 81, is not limited by the above-mentioned numerical value, and is chosen suitably. The circuit explained in full detail above (it is usable at low power supply voltage, and it will be understood P1 The * [ which can be provided ] that there is a device miniaturized, so that it could stick on the skin as shown in the example of 1v1 Commandment.) Although the output pulse of the account power supply unit of i1j is outputting the right-angled pulse wave periodically, modification waves, such as a trapezoid wave, may be outputted. By outputting such a modification wave aperiodically, it may be made adapted for various stimulus forms which a human body feels, and the amplitude of an output pulse, a cycle, a waveform, etc. are chosen suitably. Next, the amount of Output increase pressure of a power supply unit describes in detail one example which can set up the output pulse of a Rising pressure pulse generating means more than twice using Drawing 11 and Drawing 12. Outgoing end 218 in fjS11 figure and 21B are respectively connected to output '421A in Drawing 12, and 21B. Capacitor 102 connected in parallel with power supply 101 which uses the micro battery (LR, 44: made by Matsushita Battery Industrial) of nominal voltage 1.5(V), and power supply voltage 101 are supplied as power supply voltage of-less stable multi-vibes lake 11B. Power supply voltage 101 is connected to inductor 107. The other end of inductor 107 is connected to the collector of transistor 106. The output of un-stable vibrator IIB is connected to the base of transistor 106 via the multiple connection part of resistance 104 and capacitor 105. Zener diode 202 is connected to the other end of inductor 107 via diode 201 at the opposite direction. Opposite direction connection of the zener diode 202 is made in series like zener diode 203. Capacitor 204 is connected in parallel with zener diode 203. The gate of P U T 207 is connected with capacitor 204 via resistance 218. Diode 206 of the forward direction of 2 and One to which Ikehata of inductor 107 was connected in series is connected (it carries out.). Diode group 206 is connected to the collector and capacitor 211 of transistor 210. The base of transistor 210 is connected to the cathode of resistance PUT(programmable uni-junction transistor)207. Ikehata of inductor 107 is further connected to diode 205 of a forward direction. It is further connected to the end of capacitor 213, and diode 205 is connected to participation child 12C. Ikehata of capacitor 211 connects diode 212 of a forward direction further, and is further connected to the emitter part of Tran * Star 217 via resistance 215. The collector of transistor 217 is connected to non-Leader 12D. Between participation child 12C and non-Leader], and 2 D, resistance 216 is connected in parallel. Voltage E supplied by power supply section 11A constituted by capacitor 102 with large capacity connected in parallel with power supply 101 It is impressed by Boost inductor 107 and astable multivibrator IIB, a pulse is oscillated by the on/off action of Tran * Star 103 which is a component of a-less stable multi-vibes lake, and this output makes switching Transta 106 turn on and turn off. On the other hand, at the time [ transistor / 106 ] of OFF, as for external pressure inductor 107, M product is carrying out the electric charge, and current flows at the time [ transistor / 106 ] of ON. ON of transistor 106 and the back electromotive force which arises at the time of OFF output power supply voltage to Boost and 12 persons several times. The oscillating frequency of an astable multivibrator is 1~100. It is general in (kllz) a grade. In order to carry out the speed amplifier of the switching operation of transistor 106, capacitor 105 is connected in parallel with resistance 104. Next, operation of the circuit diagram showing in Drawing 12 is explained. 12Ah - Voltage inputted is a Rising pressure pulse of Drawing 11 by which outgoing end 1.2 A l This output is carried out. By Boost PAL or zener diode 202, amplitude is constant-voltage-ized and is supplied to resistance 218 via diode 201. Rising pressure pulse amplitude is prepared with zener diode 203 on the way, and change of the voltage which performs constant voltage-ization by capacitor 204 and is supplied to resistance 218 is lessened. A Rising pressure pulse is supplied to resistance 209 and capacitor 208 via diode 205. it is main -- a Rising pressure pulse is supplied and accumulated in capacitor 211 and capacitor 213 via two diodes 206. It is the 1st Sui, when the potential of capacitor 208 rises gradually, PtJT will be in switch-on if it exceeds the potential given via resistance 206, the electric charge of capacitor 208 flows between the anode - cathodes of P U T 207 and the base of switching transistor 210 is supplied. Ting transistor 210 flows and has an accumulation electric charge. The accumulation electric charge of capacitor 211 is discharged via switching transistor 210, and voltage is supplied to the base of the 2nd switching transistor 217 via resistance 214. The 2nd switching transistor 215 will be in switch-on, and capacitor 213 starts electric discharge. Therefore, capacitor 213 and capacitor 211 will be in a series connection state via 1st switching tolan Nosta 210 in switch-on, the electric charge of capacitor 211 and capacitor 213 is added, and low frequency wave pulse voltage is impressed by participation child 12C. Since it is in a series connection state, impressed electromotive force will also be twice as a matter of fact. Since 2nd switching Transta 215 is switch-on, the twice as many voltage applied to the skin via participation child 12C as this forms a closed circuit including skin resistance, and current flows through it. As for the above operation, a pulse is generated by ON of the 2nd switching transistor 214, and OFF, and the cycle is determined by the characteristic value of P U T 207, the resistance of resistance 206, etc., and it is suitably chosen so that the low frequency wave pulse frequency may turn into 100 (If z) 1~number. On the other hand, since in 2nd switching transistor 217#fOFF (i.e., when it is a non-electrical connection) it produces with the low frequency wave pulse voltage impressed to 1 This skin and Polarization charge flows via resistance 216 when the 2nd Swinging transistor 217 is ON, depolarization is performed. Switching operation of the 1st switching transistor 210 for doubling the accumulation electric charge of an accumulation means, Diode 206 which connected two diodes in series for the purpose of keeping an over-current from in prevention and the 1st switching transistor 210 flowing through breakage of Rising pressure inductor 107 by electric discharge operation of capacitor 211 into a Rising pressure inductor in an electric conduction state was installed. The circuit diagram was shown in Drawing 13 about the example of the pond which transformed the above-mentioned example. As mentioned above, it is although explained in full detail per suitable example of the power supply unit which may drive by an usable small battery in a present invention structure, that by which the present invention is limited to these -- carrying out the lightweight miniaturization of this as much as possible in various well-known low-frequency massage device circuit composition conventionally [ Then. / <] -- it is attachment to the skin -- if an usable grade is used, it will be clear that it is what can be used altogether. Therefore, it should be considered that the above-mentioned example is an example of representation of a circuit miniaturization. Width i (&) A present invention skin attachment type low-frequency massage device structure is a combination structure of the above-mentioned power supply unit, and a related child who has a skin adhesion (adhesion) conductivity gel layer as an electrode part and non-Leader. They may be various structures if a closed circuit can be formed at the time of skin attachment. Next, the example of the whole composition of a present invention low-frequency massage device structure is explained in full detail below. Drawing 5 -- (--) and (b) show the 1st example. In the figure, 50 is the low-frequency massage device structure really [ skin ] constituted in the stuck type, i.e., plaster shape, and has related child 51 and non-Leader 52. The above-mentioned related child 51 laminates tissue adhesion conductivity gel layer 53 formed a flexible sheet thru/or in the shape of a film, and conductive member layer 54 formed in metallic foil, such as aluminum foil, conductive rubber, the resin film or the carbon film, the electric conduction paints, etc., and forms in one. Non-Leader 52 laminates tissue adhesion conductivity gel layer 55 formed a flexible sheet thru/or in the shape of a film, and conductive member layer 56 formed with aluminum foil etc. like the above, and forms it in one. it is installed in the above-mentioned related child's 51 upper surface approximately center part in power supply unit 57, and is [ come out and ] in it. It is installed inside this power supply unit 57 in a hybrid circuit including a power supply, for example, what is called a button-like battery, and a depolarization means. output terminal of one of these is installed for contacting conductive member layer 54, and also obtaining. It is connected to this power supply uni-7 member layer 56. 59 is an insulating backing layer. This insulating backing layer 59 is what formed the synthetic resin of non-conducting a flexible sheet thru/or in the shape of a film, the above-mentioned related child 51 and non-Leader 52 are estranged to this insulating backing layer 59, and arrangement adherence is carried out. That is, support connection of related child 51, non-Leader 52, and the power supply unit 57 is carried out by insulating banking layer 59 in one. Next, the operation and directions of a low-frequency massage device structure which were constituted in this way are explained. It sticks so that the position wishing medical treatment of a human body may be first contacted in related child 51. Simultaneously with this, related child 51 and non-Leader 52 form a closed circuit, make it the composition that as a result a pulse oscillation is started, and a low frequency wave pulse can be impressed to a human body by related child 51. according to this example, it can stick on the human body skin directly -- very -- operation -- it is easy and lightweight and the low-frequency massage device structure from which sufficient curative effect is acquired is obtained. - Explain in detail. In a figure, 90 is a low-frequency massage device structure, 91 shows a related child and 92 shows non-Leader. Conductive member layer 93.94 of this related child 91 and non-Leader 92 carries out S+nm grade estrangement, and is arranged, and about 0.3-mm tissue adhesion conductivity gel layer 95 formed ultra-thin is stuck on that undersurface in one. Support connection of non-Leader 92 and the related child 93 is carried out by insulating backing layer 96 in one. 97 And tF9S is the terminal respectively connected to related child 91 and non-Leader 92. The top part of this terminal 97.98 has penetrated and projected the above-mentioned insulating backing layer 96, and while electrically being connected by this terminal 97.98, support connection of the attachment and detachment of power supply unit 99 including a small power supply and an electronic circuit is enabled mechanically. Since it is the same as that of the 1st above-mentioned example, the directions for the low-frequency massage device structure of this example are omitted. Since the distance between the same, i.e., Fighting conductive member layer 93.94 which stuck the conductive Dell layer 95 of one sheet on conductive member layer 93.94, is very large to the thickness of conductive gel layer 95 in the conductive gel layer which carries out lamination arrangement to related child 91 and non-Leader 92 according to this example, he rubs with the resistance object installed between related child 91 and non-Leader 92, and do -- function [ a depolarization means ] -- it may have. According to this example, the manufacturing process has very simple and the efficient This effect in the pond of the effect of the 1st above-mentioned example. That is, when a device is obtained only by attaching a terminal and a power supply to what cut one beltlike sheet which carried out lamination arrangement of a conductive gel layer, a conductive member layer, and the insulating banking layer with the predetermined interval and mass production is taken into consideration, a very useful effect is produced. When the arrangement interval of both terminals is narrowed like an example and a power supply is arranged in the approximately center part on the upper surface of a device, It becomes a thing without most influences of the size of a power supply on the whole device, and when sticking on the curved surface part of a big tree, it can be used satisfactorily for hardly spoiling pliability. Next, with reference to Drawing 10 of a drawing, the 3rd example of a present invention low-frequency massage device structure is described in detail. In a figure, 02 is Leader, 04 is a power supply unit, the terminal of one of these is connected to surface insulation coating conductive member layer 07 of Leader 02, and the terminal of another side is connected to same conductive member layer 07 of non-Leader 03 via lead 06. According to the composition of the example of this real dust, it can do [ using it also for the field of Leader, non-Leader or comparatively big curvature reasonable, or ]. It is used at the time of heat and high humidity, and the skin or also when it perspires so much, since each A conduit is separated, the skin attachment type low-frequency massage device structure which is not subject to the influence of the current which flows through an outer skin at all is obtained. In here, lead 06 adds reel composition and is good also as elastic. As mentioned above, it is although explained in full detail per example of a present invention structure, since the present invention is not limited to these and skin attachment does not necessarily take whole pliability, for example in cases, like an electrode surface product is comparatively small -- it is only estrangement about the adhesive conductivity gel film of two sheets thru/or a sheet to a device (power supply unit) -- it may allocate. As skin adhesion and conductive gel, it is Provisional-Publication-No. 52 year 95895 No., for example, It is said 55 year 52742 No. No. 77489 the 54 years. It is said 55 year 129035 No. No. 81635 the 55 years, It is said 56 year 36939 No. No. 15728 the 56 years. It is said 56 year 60534 No. No. 36940 the 56 years, said 56 year 89270 No. -- said 56 year 143141% said -- 57 years 'No. 28505 -- said 57 year 49431 No., It is said 57 year 55132 No. No. 52463 the 57 years. It is said 57 year 160439 No. No. 131428 the 57 years, It is said 57 year 166142 No. No. 164064 the 57 years. It is said 57 year 4569 No. No. 168675 the 57 years, Said 58 year 10066 No. Indeed 54 year 30689 No. It is indicated by the 57 year 185309 No. - Suitable (This useing 1 To humiliate.) in what is carried out It is said 56 year 138603 No. No. 135706 the 56 years. 57 No. 93305 said 57-year 1794] No. 3 [ per year ] the above-mentioned example -- karaya gum and a tiger -- natural resin polysaccharide, such as can Togam and xanthan gum, -- moreover (ground polyvinyl alcohol partial saponification thing) Po 1 Novinhold -- Cobolima of marc and polyvinyl methyl ether, Vinyl system Japan cedars, such as poly Vinyl pyrrole 1 No Dong and Po 1 Novinyl methacrylate (Directionality) Po I Noack 1J Le acid, its sodium salt, Vo 1 Noack I 7 Reamide, and its partial hydrolysate, The various nature which has hydrophilicity or Synthesis r& resin, such as acrylic resin, such as a polyacrylic ester partial saponification thing and poly (acrylic acid-acryl amide), etc. is indicated in details per example of manufacture of the conductive gel for which it is provided as water and 1. What Leader in a present invention structure, non-Leader, etc. do not have an exceptional meaning, and should only understand as one pair of A conduit on a function is added. As mentioned above, as tissue adhesion A conduit, in conductivity and tissue adhesion Dell, although To use and the example of To are shown, the present invention is not limited to this, and the embodiment of the pond of tissue adhesion A conduit which can use the most desirable electrolyte solution as an energization medium in respect of electric convectivity is also provided. Hereinafter, it explains in full detail per other suitable examples of present invention tissue adhesion A conduit. First, based on one example which is attached to present invention A conduit structure and shown in attachment 14th thru/or 15 figure, it explains in full detail. Conductive member layer 305 for current distribution which A conduit 302 comprises among a figure from rems, such as sponge thru/or porous materials, etc., such as fiber materials, such as cloth material, such as paper materials, such as water absorption paper, and gauze, and absorbent cotton, a synthetic resin continuation foaming object, or water absorbency resin, etc., Backing layers 3010, such as a synthetic resin film laminated in one by the hydrophilic adhesives thru/or gel layer 3011, and these which have the tissue adhesion formed in the circumference of the above-mentioned water absorbency member 304, are comprised. In here, what vapor-deposited metal, such as aluminum, to the backing layer may be sufficient as the above-mentioned conductive member layer 305, and a suitable terminal may be provided by necessary. Between the above-mentioned hydrophilic gel layer 304 and the above-mentioned water absorbency member 304, barrier layer 3012 may be provided by a synthetic resin material etc. that osmosis in gels, such as a medical fluid, should be prevented. Present invention A conduit which comprises the above-mentioned composition arranges and inserts in a prescribed position the member concerned with which you made it the water absorbency member 304 impregnated with ionicity solution etc., or were made to be impregnated beforehand, carries out contact adhesion directly at the skin, and use is presented with it. therefore -- going up to the moderate water absorbency of a gel layer at the time of the use, since it is the structure where an electrolyte liquid holding portion is surrounded by tissue adhesion and the hydrophilic gel layer -- namely If it depends on present invention A conduit, the ideal electrolyte liquid holding portion which does not require complicated fixing means, such as a band, and from which the outflow of solution etc. is prevented effectively will attain simultaneously. Drawing 14 is a top view of present invention A conduit, and Drawing 15 is the sectional view. Hereinafter, the example of the present invention structure also using the above-mentioned A conduit structure is described to Details with reference to Drawings 16 thru/or 18 of a drawing. In the figure, 301 is a present invention structure and has Leader 302 and non-Leader 303. Water absorbency member 304 for electrolyte solution impregnating maintenance which above-mentioned Leader 302 comprises from sponge thru/or porous materials, etc., such as fiber materials, such as cloth material, such as paper materials, such as water absorption paper, and gauze, and absorbent cotton, a synthetic resin continuation foaming object, or water absorbency resin, Conductive member layer 305 for current distribution formed with metallic foil, conductive rubber, or resin films, such as hydrophilic Dell layer 3011 And CIAL minium foil, etc. is comprised. Non-Leader 303 is aluminum To like conductive gel layer 306 of the tissue adhesion formed a flexible sheet thru/or in the shape of a film, and the above. Low frequency wave power supply 308 is installed by the husband in upper surface abbreviated of above-mentioned Leader 302 so that the pole of one of these, for example, the (-) pole, and conductive member layer 305 for current distribution may be contacted. For example, the (+) pole of this power supply 308 gave insulating coating to the undersurface except that neighborhood of both ends, it is connected to electric conduction member layer 307 for current distribution of above-mentioned non-Leader 303 by lead 309 of aluminum foil. 3010 is an insulating backing layer. This insulating backing layer 3010 is what formed the synthetic resin of non-conducting a flexible sheet thru/or in the shape of a film, above-mentioned Leader 302 and non-Leader 303 are estranged to this insulating backing layer 3010, and arrangement adherence is carried out. That is, support connection of Leader 302. non-Leader 303 and the power supply 308 is carried out by insulating backing layer 3o10 in one. In this example, insulating barrier layer 3012 made of a synthetic resin is provided. Next, the operation and directions of a present invention structure which were constituted in this way are explained. It is made for water absorbency member layer 304 of Leader 302 to be first impregnated with a desired electrolyte thru/or sherry, and it sticks so that Leader 302 may contact subsequently to the position of choice of a human body. Leader 302 and non-Leader 303 form a closed circuit simultaneously with this, and predetermined energization is attained. It is Be sufficient also when it is more convenient to separate Leader and non-Leader depending on the attachment part, although 1 sun of both A conduit came to the example by which proximity arrangement was carried out in one and explained in full detail. Therefore, it "is fabrication in one" thru/or "it is connection in one" include general, when electrically connected only not only in when only allocated by the same packing. [ which is said by the present invention ] As mentioned above, clearly, a present invention structure enables the operation of effective medical treatment by remarkable simple operation, and makes it not require a complicated large-sized device, and takes effect the higher efficacy that But can also be carried out safely certainly.
[Brief Description of the Drawings]
Drawing 1 is a block diagram showing one example of a present invention power supply unit, In Drawing 2, each part wave form chart of Drawing 1 and Drawings 3 or 4 are a circuit diagram showing 1 component part in one example of the present invention, Drawing 5 shows one example of the whole composition of a present invention low-frequency massage device structure -- Drawing 5 -- (--) -- a sectional view and Drawing 5 (b) -- a bottom view and Drawing 6, the current wave form figure through which it flows when the current wave form figure and depolarizing action which flow when a pulse voltage waveform is impressed to a human body are performed, the circuit diagram from which Drawing 7 collects polarization voltage, and Drawing 8 -- one Example 0 figure of the present invention -- a sectional view and Drawings 11 or 13 -- a present invention power supply -- uni--- it is a circuit diagram showing one example of 7. Drawing 14, Drawing 16, and Drawing 18 show one example of the whole composition of a present invention low-frequency massage device structure, Drawing 15 is a sectional view of Drawing 14, and Drawing 17 is a sectional view of Drawing 16. 11 ... Oscillation part A [ B / D ... Power supply / ... Output means 13 ... Accumulating part ] ... Rising pressure pulse generating means 12 ... Boost portion 14 ... switch part K ... output terminal F ... output terminal 15 ... depolarization part Inductor TR ... tolan Nosta Dl ... the 1st diode D2 ... Rh ... resistance f6 ... switch control section C1 ... capacitor L, L2.L, and ... the 2nd diode N ... negative resistance element Resistance IN ... C, C, and ... capacitors R and R and ... input part OUT ... outputting part 74.75 ... switching element 76 ... transformer 77 ... diode R ... load 80 ... small batteries 81 and 86.8C ... capacitor 82. Eight R1, Eight R2 ... Resistance 89 ... Depolarization Resistance 84 ... Transformer 85 [ G ... Date K / ... Remittency wave oscillator 84 / ... Transformer / ... Cathodes 33 and 88 ... Switching element 87 ] ... Diode PUT ... Programmable uni-junction TranostaA ... Anode (50), 90.01 ... Present invention small low-frequency massage devices 51 and 91.02 ... Leader 52 and 92.03 ... Non-Leader 53, 55.95.05 ... Conductive gel layer 5L56.93.94.07 ... Conductive members 57 and 9! L 04 [ An incorporated company advance, S --- ] ... Power sir 7' rye Unity 06 ... The Lee r line applicant for a patent Drawing 2 Drawing 3 Drawing 4 UT Drawing 5 Drawing 6 Drawing 8 1- - - -- No. 11 Figure 9 The 1'2nd figure Drawing 13 Drawing 15 Drawing 18 d(J4 1ej
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| JP2014150930A | Cited by | Japan | Search report |
| US5922012A | Cited by | United States of America | Search report |
| JP2013521030A | Cited by | Japan | Examiner |
| US5755749A | Cited by | United States of America | Search report |
| JP2014150930A | Cited by | Japan | Search report |
| JPS5547869A | Cites | Japan | Search report |
| JPS5717648U | Cites | Japan | Search report |
| JPS60116330A | Cites | Japan | Search report |
| JPS6212354U | Cites | Japan | Search report |
| JPS63147476A | Cites | Japan | Search report |
| JPS6385251U | Cites | Japan | Search report |
3 priority claims, no other members on record
Priority claims3
| Document | Office | Kind | Date |
|---|---|---|---|
| 9092687 | Japan | A | |
| 62090926 | – | – | – |
| JP19870090926 | – | – | – |
2 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Renewal fee payment (event date is renewal date of database)FPAY | FPAY | |
| Cancellation because of completion of termEXPY | EXPY |
Numbers
- Publication
- 63-257577
- Publication, DOCDB
- S63257577
- Publication, EPODOC
- JPS63257577
- Application
- 62090926
- Application, DOCDB
- 9092687
- Application, EPODOC
- JP19870090926
Titles2
- English
- SKIN ADHESION TYPE LOW FREQUENCY TREATMENT DEVICE STRUCTURE
- Japanese
- 【発明の名称】皮膚貼着型低周波治療器構造体
Classification
- IPC, 2
- A61N1 04
- A61N1 32