JP4053629B2 - Low frequency treatment device - Google Patents

Low frequency treatment device Download PDF

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Publication number
JP4053629B2
JP4053629B2 JP23216497A JP23216497A JP4053629B2 JP 4053629 B2 JP4053629 B2 JP 4053629B2 JP 23216497 A JP23216497 A JP 23216497A JP 23216497 A JP23216497 A JP 23216497A JP 4053629 B2 JP4053629 B2 JP 4053629B2
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electrode
conductor
low
water
electrode pad
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JPH1157029A (en
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哲也 是永
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哲也 是永
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Description

【0001】
【発明の属する技術分野】
本発明は、低周波治療器に関するものである。
【0002】
【従来の技術】
従来、低周波治療器としては、実公平6-128 号公報に開示されているように、低周波発振器と、同低周波発振器が発生する低周波電磁波を患部に伝導する導子とから構成し、同導子は、可撓性を有するケースの下部に開口を形成するとともに、ケースの上部に電極を配設し、同電極の直下方位置に吸水性を有する電極パッドを配設し、しかも、導子に吸引ポンプを連通連結したものが知られている。
【0003】
そして、上記低周波治療器を用いた治療を行う際には、電極パッドに水分を吸収させた状態で患部に導子を装着し、吸引ポンプを作動させることにより、ケース内の空気を排出して、導子を患部に密着するようにしていた。
【0004】
【発明が解決しようとする課題】
ところが、上記従来の低周波治療器にあっては、吸引ポンプによってケース内の空気を吸引して、導子を患部に密着させていたため、吸引ポンプがケース内の空気とともに、電極パッドに吸収された水分までも吸収してしまい、長時間連続使用すると、電極パッド内の水分が大量に吸収され、通電感が悪化するとともに、導子と患部との密着性が低下し、導子が患部から外れてしまうといった不具合があった。
【0005】
【課題を解決するための手段】
そこで、本発明では、患部に装着した導子に、低周波発振器によって発生した低周波電磁波を伝導してなる低周波治療器であって、水又は湯を溜めておく貯水容器と、この貯水容器に往道パイプを介して連通連結した導子と、この導子に復道パイプを介して連通連結した吸引ポンプと、この吸引ポンプと貯水容器とを連通連結した連通パイプとを有し、導子は、低周波発振器に電気的に接続された電極と、この電極の真下方位置に設けた吸水性を有する電極パットと、電極を収容する電極収容部と電極パットを収容する電極パット収容部を備えたケースとを有し、電極には、貯水容器と連通連結する往道側連通路を設けるとともに、吸引ポンプに連通連結する復道側連通路を設け、一方、電極パットには、往道側連通路に連通する連通孔と、下面において連通孔から放射状に形成した下部連通路と、側面に沿って下部連通路の端部から復道側連通路に連通する側部連通路とを設けて、貯水容器内の水又は湯水を導子内部に循環させながら電極パットを常に水を含んだ状態として低周波電磁波を放射させることを特徴とする低周波治療器を提供するものである。
【0009】
【発明の実施の形態】
本発明に係る低周波治療器は、低周波発振器と、同低周波発振器が発生する低周波電磁波を患部に伝導するための導子と、同導子に湯又は水を循環させるための湯水循環器とから構成している。
【0010】
湯水循環器は、貯水容器と導子とを往道パイプを介して連通連結し、導子と吸引ポンプを復道パイプを介して連通連結し、吸引ポンプと貯水容器とを連通パイプを介して連通連結している。
【0011】
導子は、下部に開口を有するケースの上部に電極を配設するとともに、同電極の直下方位置に電極パッドを配設している。
【0012】
電極には、往道側連通路と復道連通路とを形成し、往道側連通路に往道パイプを連通連結する一方、復道側連通路に復道パイプを連通連結している。
【0013】
電極パッド又はケースには、湯水を循環させるための循環路を形成している。
【0014】
そして、低周波治療器は、導子の開口を患部に密着させ、低周波発振器によって発生させた低周波電磁波を電極から患部に向けて放射し、低周波電磁波の作用により患部の治療を行うものである。
【0015】
その際に湯水循環器によって湯水を循環させることにより、電極パッドは、常に水分を含んだ状態となっており、電極と患部との間に常に水分が介在することとなり、水分の作用によって低周波治療器による通電感を向上させることができるものである。
【0016】
しかも、循環する湯水を適温に保持することにより、患部を適温にすることができ、使用者の使い心地を向上させることができるとともに、湯水による温熱効果が得られ、低周波治療器による治療効果を向上させることができるものである。
【0017】
さらに、吸引ポンプによって導子のケース内の空気も吸引されることとなり、導子を患部上に載置するだけで導子を患部に容易に装着することができるとともに、導子と患部との密着性を向上させることができるものである。
【0018】
【実施例】
以下に、本発明の実施例について、添付図面を参照して具体的に説明する。
【0019】
図1及び図2は、本発明に係る低周波治療器1を示した図であり、低周波治療器1は、低周波発振器2と、同低周波発振器2が発生する低周波電磁波を患部に伝導するための導子3と、同導子3に湯又は水を循環させるための湯水循環器4とから構成している。
【0020】
低周波発振器2は、患部治療用の低周波電磁波を発生するための装置であり、矩形箱型の本体ケース5の上部に配設している。
【0021】
湯水循環器4は、本体ケース5の下部に貯水容器6を配設するとともに、同貯水容器6の上方位置に吸引ポンプ7を配設し、貯水容器6と導子3とを往道パイプ8を介して連通連結し、導子3と吸引ポンプ7とを復道パイプ9を介して連通連結し、吸引ポンプ7と貯水容器6とを連通パイプ10を介して連通連結している。
【0022】
貯水容器6には、ヒータ11を設けており、貯水容器6内部に適温の湯水12を溜めておけるようにしている。
【0023】
導子3は、図3及び図4に示すように、可撓性を有するケース13の上部に矩形状の電極収容部14を形成し、同電極収容部14の下部に円筒状の電極パッド収容部15を連設しており、電極収容部14に電極16を収容するとともに、電極パッド収容部15に電極パッド17を収容している。
【0024】
また、導子3は、ケース13の電極パッド収容部15の下部に円形状の開口18を形成し、同開口18の内側縁部に鍔体19を形成しており、電極パッド17が開口18から落下しないように、鍔体19が電極パッド17を保持している。
【0025】
電極16は、図3及び図4に示すように、矩形箱型の電極本体20の下部に円板状の電極板21を形成し、同電極板21の下面を電極面23とし、同電極面23から患部に向けて低周波電磁波を放射するようにしている。
【0026】
また、電極16は、電極本体20の前面22右側部から電極板21の電極面23中央部に向けて往道側連通路24を形成する一方、電極本体20の背面25から電極本体20の前面22左側部に向けて復道側連通路26を形成しており、往道側連通路24に往道パイプ8をニップル27を介して連通連結する一方、復道側連通路26に復道パイプ9をニップル28を介して連通連結している。尚、ニップル27,28 は、ケース13に穿設した挿通孔35,35 に挿通され、電極本体20にケース13を挟んで螺着されており、ニップル27,28 によって、ケース13に電極16が保持されるようにしている。
【0027】
このように、電極16に往道側連通路24と復道側連通路26とを形成しているため、ケース13内に湯水12を円滑に循環させることができる。
【0028】
往道パイプ8及び復道パイプ9は、可撓性を有するビニール素材からなり、しかも、復道パイプ9の外周面には、金属線29を被覆するとともに同金属線29の外周を絶縁しており、電極16と低周波発振器2とを電気的に接続している(図2参照)。尚、金属線29は、往道パイプ8に設けてもよく、又、往道パイプ8及び復道パイプ9の両方に設けてもよい。
【0029】
電極パッド17は、図3〜図5に示すように、吸水性を有するスポンジを円柱状に形成し、しかも、湯水12を循環させるための循環路30を形成している。すなわち、電極パッド17は、中央部に、電極16の往道側連通路24に連通する連通孔31を穿設するとともに、下面に連通孔31から放射状に4本の下部連通路32を形成し、各下部連通路32の端部から側面に沿って電極16の復道側連通路26に連通する側部連通路33を形成しており、連通孔31と下部連通路32と側部連通路33とによって循環路30を形成している。尚、電極パッド17は、図6に示すように、下部連通路32の端部に側部連通孔34を穿設したものでもよい。
【0030】
このように、電極パッド17に循環路30を形成することにより、電極パッド17に湯水12を円滑に循環させることができる。
【0031】
図7及び図8は、他実施例としての導子3を示した図であり、本実施例においては、中央部に電極16の往道側連通路24に連通する連通孔31を穿設した円柱状の電極パッド38を用い、しかも、ケース36の電極パッド収容部15の内周壁に湯水12を循環させるための連通溝37を上下方向へ向けて刻設している。
【0032】
このように、ケース36の内部に形成した連通溝37を形成することによっても、電極パッド17に湯水12を円滑に循環させることができる。
【0033】
低周波治療器1は、上述したように構成しており、使用に際しては、導子3の開口18を患部に密着させ、低周波発振器2によって発生させた低周波電磁波を電極16の電極面23から患部に向けて放射し、低周波電磁波の作用により患部の治療が行われる。
【0034】
その際に湯水循環器4を作動させて、導子3の内部に湯水12を循環させている。すなわち、湯水循環器4の吸引ポンプ7を作動させると、貯水容器6内の湯水12は、往道パイプ8から導子3の内部に流入し、電極16の往道側連通路24、電極パッド17の循環路30、電極16の復道側連通路26を流れた後、導子3から復道パイプ9へと流出し、再び貯水容器6内に流れ込むようにしている。
【0035】
このように、湯水循環器4によって湯水12を循環させることにより、電極パッド17は、常に水分を含んだ状態となっており、電極16の電極面23と患部との間に常に水分が介在することとなり、水分の作用によって低周波治療器1による通電感を向上させることができる。
【0036】
しかも、循環する湯水12を適温に保持することにより、患部を適温にすることができ、使用者の使い心地を向上させることができるとともに、湯水12による温熱効果が得られ、低周波治療器1による治療効果を向上させることができる。
【0037】
さらに、吸引ポンプ7によって導子3のケース13内の空気も吸引されることとなり、導子3を患部上に載置するだけで導子3を患部に容易に装着することができるとともに、導子3と患部との密着性を向上させることができる。
【0038】
【発明の効果】
本発明は、以上説明してきたような形態で実施され、以下に記載されるような効果を奏する。
【0039】
請求項1記載の発明にでは、患部に装着した導子に、低周波発振器によって発生した低周波電磁波を伝導してなる低周波治療器であって、水又は湯を溜めておく貯水容器と、この貯水容器に往道パイプを介して連通連結した導子と、この導子に復道パイプを介して連通連結した吸引ポンプと、この吸引ポンプと貯水容器とを連通連結した連通パイプとを有し、導子は、低周波発振器に電気的に接続された電極と、この電極の真下方位置に設けた吸水性を有する電極パットと、電極を収容する電極収容部と電極パットを収容する電極パット収容部を備えたケースとを有し、電極には、貯水容器と連通連結する往道側連通路を設けるとともに、吸引ポンプに連通連結する復道側連通路を設け、一方、電極パットには、往道側連通路に連通する連通孔と、下面において連通孔から放射状に形成した下部連通路と、側面に沿って下部連通路の端部から復道側連通路に連通する側部連通路とを設けて、貯水容器内の水又は湯水を導子内部に循環させながら電極パットを常に水を含んだ状態として低周波電磁波を放射させる構成としたことにより、湯水循環器によって湯水を循環させることにより、導子が常に水分を含んだ状態となり、導子の電極と患部との間に常に水分が介在することとなり、水分の作用によって低周波治療器による通電感を向上させることができる。
【0040】
しかも、循環する湯水を適温に保持することにより、患部を適温にすることができ、使用者の使い心地を向上させることができるとともに、湯水による温熱効果が得られ、低周波治療器による治療効果を向上させることができる。
【0041】
また、吸引ポンプによって導子内に湯水を循環させることができ、前述した低周波治療器よる通電感の向上、治療効果の向上を図ることができるとともに、導子内の空気も吸引されることとなり、導子を患部上に載置するだけで導子を患部に容易に装着することができる、しかも、導子と患部との密着性を向上させることができる。
【図面の簡単な説明】
【図1】本発明に係る低周波治療器を示す斜視図。
【図2】同模式図。
【図3】導子を示す斜視図。
【図4】導子内の湯水の循環を示す断面説明図。
【図5】電極パッドを示す斜視図。
【図6】他の電極パッドを示す斜視図。
【図7】他の電極パッド及びケースを示す斜視図。
【図8】図7のI−I断面図。
【符号の説明】
1 低周波治療器
2 低周波発振器
3 導子
4 湯水循環器
6 貯水容器
7 吸引ポンプ
8 往道パイプ
9 復道パイプ
11 ヒータ
12 湯水
13 ケース
16 電極
17 電極パッド
18 開口
24 往道側連通路
26 復道連通路
30 循環路
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a low frequency treatment device.
[0002]
[Prior art]
Conventionally, as disclosed in Japanese Utility Model Publication No. 6-128, a low frequency treatment device is composed of a low frequency oscillator and a conductor that conducts low frequency electromagnetic waves generated by the low frequency oscillator to the affected area. The conductor has an opening at the bottom of the flexible case, an electrode at the top of the case, and an electrode pad with water absorption at a position directly below the electrode. A device in which a suction pump is connected to a conductor is known.
[0003]
And when performing treatment using the above low frequency treatment device, the air in the case is exhausted by attaching a conductor to the affected part with moisture absorbed by the electrode pad and operating the suction pump. In this way, the guide was in close contact with the affected area.
[0004]
[Problems to be solved by the invention]
However, in the above-described conventional low frequency treatment device, the air in the case is sucked by the suction pump and the lead is brought into close contact with the affected part, so that the suction pump is absorbed by the electrode pad together with the air in the case. If it is used for a long period of time, a large amount of moisture is absorbed in the electrode pad, the feeling of electrical conduction deteriorates, the adhesion between the conductor and the affected area decreases, and the conductor is removed from the affected area. There was a problem that it would come off.
[0005]
[Means for Solving the Problems]
Therefore, in the present invention, a low-frequency treatment device in which a low-frequency electromagnetic wave generated by a low-frequency oscillator is conducted to a conductor attached to an affected area, a water storage container for storing water or hot water, and the water storage container And a suction pump that is connected to the conductor via a return pipe, and a communication pipe that is connected to the suction pump and a water storage container. The child includes an electrode electrically connected to the low-frequency oscillator, an electrode pad having water absorption provided immediately below the electrode, an electrode housing part for housing the electrode, and an electrode pad housing part for housing the electrode pad. The electrode is provided with an outward communication passage communicating with the water storage container and a return communication passage communicating with the suction pump, while the electrode pad has an outward communication passage. A communication hole communicating with the roadside communication passage; A lower communication passage formed radially from the communication hole on the surface and a side communication passage communicating from the end of the lower communication passage to the return-side communication passage along the side surface are provided to supply water or hot water in the water storage container. An object of the present invention is to provide a low-frequency treatment device characterized in that a low-frequency electromagnetic wave is radiated with an electrode pad constantly containing water while circulating inside a conductor.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
A low-frequency treatment device according to the present invention includes a low-frequency oscillator, a conductor for conducting low-frequency electromagnetic waves generated by the low-frequency oscillator to an affected area, and hot water circulation for circulating hot water or water through the conductor. It consists of a container.
[0010]
The hot water circulator connects a water storage container and a conductor through a forward pipe, connects a conductor and a suction pump through a return pipe, and connects the suction pump and the water storage container through a communication pipe. Communication connection.
[0011]
In the conductor, an electrode is disposed on an upper portion of a case having an opening in the lower portion, and an electrode pad is disposed immediately below the electrode.
[0012]
The electrode forms an outward communication path and a return communication path, and an outward pipe is connected to the outward communication path, while a return pipe is connected to the return communication path.
[0013]
A circulation path for circulating hot water is formed in the electrode pad or case.
[0014]
And the low frequency treatment device makes the opening of the conductor closely contact the affected area, radiates the low frequency electromagnetic wave generated by the low frequency oscillator from the electrode toward the affected area, and treats the affected area by the action of the low frequency electromagnetic wave. It is.
[0015]
At that time, the hot water is circulated by the hot water circulator, so that the electrode pad always contains moisture, and moisture is always present between the electrode and the affected area. It is possible to improve the feeling of energization by the treatment device.
[0016]
In addition, by keeping the circulating hot water at an appropriate temperature, the affected area can be kept at an appropriate temperature, the user's comfort can be improved, and the thermal effect of the hot water is obtained. Can be improved.
[0017]
Furthermore, the air in the case of the guide is also sucked by the suction pump, so that the guide can be easily attached to the affected part simply by placing the guide on the affected part, and between the guide and the affected part. Adhesion can be improved.
[0018]
【Example】
Embodiments of the present invention will be specifically described below with reference to the accompanying drawings.
[0019]
1 and 2 are diagrams showing a low-frequency treatment device 1 according to the present invention. The low-frequency treatment device 1 uses a low-frequency oscillator 2 and a low-frequency electromagnetic wave generated by the low-frequency oscillator 2 in an affected area. A conductor 3 for conducting and a hot water circulator 4 for circulating hot water or water through the conductor 3 are constituted.
[0020]
The low-frequency oscillator 2 is a device for generating a low-frequency electromagnetic wave for treating an affected area, and is disposed on the upper part of a rectangular box-shaped main body case 5.
[0021]
In the hot water circulator 4, a water storage container 6 is disposed below the main body case 5, and a suction pump 7 is disposed above the water storage container 6, so that the water storage container 6 and the conductor 3 are connected to the outward pipe 8. Are connected to each other via a return pipe 9, and the suction pump 7 and the water storage container 6 are connected to each other via a communication pipe 10.
[0022]
The water storage container 6 is provided with a heater 11 so that hot water 12 having an appropriate temperature can be stored inside the water storage container 6.
[0023]
As shown in FIGS. 3 and 4, the conductor 3 has a rectangular electrode housing part 14 formed on the upper part of a flexible case 13 and a cylindrical electrode pad housed on the lower part of the electrode housing part 14. The electrode 15 is accommodated in the electrode accommodating part 14 and the electrode pad 17 is accommodated in the electrode pad accommodating part 15.
[0024]
Further, the conductor 3 has a circular opening 18 formed in the lower portion of the electrode pad housing portion 15 of the case 13, and a housing 19 is formed in the inner edge of the opening 18, and the electrode pad 17 has the opening 18. The housing 19 holds the electrode pad 17 so that it does not fall off.
[0025]
As shown in FIGS. 3 and 4, the electrode 16 is formed with a disk-shaped electrode plate 21 at the bottom of a rectangular box-shaped electrode body 20, and the lower surface of the electrode plate 21 is used as an electrode surface 23. A low frequency electromagnetic wave is radiated from 23 toward the affected part.
[0026]
Further, the electrode 16 forms an outward communication path 24 from the right side portion of the front surface 22 of the electrode body 20 toward the center portion of the electrode surface 23 of the electrode plate 21, while the back surface 25 of the electrode body 20 and the front surface of the electrode body 20 22 A return-side communication passage 26 is formed toward the left side, and the outward-pipe 8 is connected to the outward-direction communication passage 24 via a nipple 27, while the return-direction pipe 26 is connected to the return-side communication passage 26. 9 are connected in communication via a nipple 28. The nipples 27 and 28 are inserted into insertion holes 35 and 35 formed in the case 13 and screwed to the electrode body 20 with the case 13 interposed therebetween. The electrodes 16 are attached to the case 13 by the nipples 27 and 28. It is to be retained.
[0027]
Thus, since the outward communication path 24 and the return communication path 26 are formed in the electrode 16, the hot water 12 can be smoothly circulated in the case 13.
[0028]
The outward pipe 8 and the backward pipe 9 are made of a flexible vinyl material, and the outer peripheral surface of the backward pipe 9 is covered with a metal wire 29 and the outer periphery of the metal wire 29 is insulated. The electrode 16 and the low frequency oscillator 2 are electrically connected (see FIG. 2). The metal wire 29 may be provided on the outward pipe 8 or may be provided on both the outward pipe 8 and the backward pipe 9.
[0029]
As shown in FIGS. 3 to 5, the electrode pad 17 forms a water-absorbing sponge in a columnar shape, and forms a circulation path 30 for circulating the hot water 12. That is, the electrode pad 17 has a communication hole 31 communicating with the forward communication path 24 of the electrode 16 in the center, and four lower communication paths 32 are formed radially from the communication hole 31 on the lower surface. A side communication path 33 that communicates from the end of each lower communication path 32 along the side surface to the return-side communication path 26 of the electrode 16 is formed, and the communication hole 31, the lower communication path 32, and the side communication path 33 forms a circulation path 30. As shown in FIG. 6, the electrode pad 17 may have a side communication hole 34 formed at the end of the lower communication path 32.
[0030]
Thus, by forming the circulation path 30 in the electrode pad 17, the hot water 12 can be smoothly circulated through the electrode pad 17.
[0031]
7 and 8 are views showing a conductor 3 as another embodiment. In this embodiment, a communication hole 31 communicating with the forward communication passage 24 of the electrode 16 is formed in the center portion. A cylindrical electrode pad 38 is used, and a communication groove 37 for circulating the hot water 12 is engraved in the vertical direction on the inner peripheral wall of the electrode pad housing portion 15 of the case 36.
[0032]
Thus, the hot water 12 can be smoothly circulated through the electrode pad 17 also by forming the communication groove 37 formed in the case 36.
[0033]
The low-frequency treatment device 1 is configured as described above, and in use, the opening 18 of the conductor 3 is brought into close contact with the affected area, and the low-frequency electromagnetic wave generated by the low-frequency oscillator 2 is applied to the electrode surface 23 of the electrode 16. Is radiated toward the affected area, and the affected area is treated by the action of low-frequency electromagnetic waves.
[0034]
At that time, the hot water circulator 4 is operated to circulate the hot water 12 inside the conductor 3. That is, when the suction pump 7 of the hot water circulator 4 is operated, the hot water 12 in the water storage container 6 flows into the conductor 3 from the forward pipe 8, and the forward communication passage 24 of the electrode 16 and the electrode pad. After flowing through the circulation path 30 of 17 and the return side communication path 26 of the electrode 16, it flows out from the conductor 3 to the return pipe 9 and flows into the water storage container 6 again.
[0035]
Thus, by circulating the hot water 12 by the hot water circulator 4, the electrode pad 17 is always in a state of containing moisture, and moisture is always present between the electrode surface 23 of the electrode 16 and the affected part. Thus, the feeling of energization by the low frequency treatment device 1 can be improved by the action of moisture.
[0036]
In addition, by maintaining the circulating hot water 12 at an appropriate temperature, the affected area can be adjusted to an appropriate temperature, and the user's comfort can be improved, and the thermal effect of the hot water 12 can be obtained. The therapeutic effect by can be improved.
[0037]
Furthermore, the air in the case 13 of the conductor 3 is also sucked by the suction pump 7, so that the conductor 3 can be easily attached to the affected area by simply placing the conductor 3 on the affected area, The adhesion between the child 3 and the affected part can be improved.
[0038]
【The invention's effect】
The present invention is implemented in the form described above, and has the effects described below.
[0039]
In the invention of claim 1, a low frequency treatment device that conducts low frequency electromagnetic waves generated by a low frequency oscillator to a conductor attached to the affected area, a water storage container for storing water or hot water, There are a conductor connected to the water storage container via an outward pipe, a suction pump connected to the conductor via a return pipe, and a communication pipe connecting the suction pump and the water storage container. The conductor is an electrode electrically connected to the low frequency oscillator, an electrode pad having water absorption provided at a position directly below the electrode, an electrode housing part for housing the electrode, and an electrode for housing the electrode pad. The electrode has a case with a pad accommodating portion, and the electrode is provided with an outward communication path that is connected to the water storage container and a return communication path that is connected to the suction pump. Is a communication that communicates with the outgoing communication path If, provided a lower communicating passage formed radially from the communicating hole at the lower surface, and a side communicating passage communicating with Fukudo side communication path from the end of the lower communication passage along the side, the water in the water vessel or By circulating the hot water inside the conductor, the electrode pad always contains water, and the low frequency electromagnetic wave is emitted. By circulating hot water with a hot water circulator, the conductor always contains moisture. In this state, moisture is always present between the electrode of the conductor and the affected part, and the feeling of energization by the low frequency treatment device can be improved by the action of moisture.
[0040]
In addition, by keeping the circulating hot water at an appropriate temperature, the affected area can be kept at an appropriate temperature, the user's comfort can be improved, and the thermal effect of the hot water is obtained. Can be improved.
[0041]
In addition, hot water can be circulated in the conductor by a suction pump, so that the above-mentioned low-frequency treatment device can improve the feeling of conduction and the treatment effect, and the air in the conductor can also be sucked. Thus, the guide can be easily attached to the affected part simply by placing the guide on the affected part, and the adhesion between the guide and the affected part can be improved.
[Brief description of the drawings]
FIG. 1 is a perspective view showing a low frequency treatment device according to the present invention.
FIG. 2 is a schematic diagram of the same.
FIG. 3 is a perspective view showing a conductor.
FIG. 4 is an explanatory cross-sectional view showing circulation of hot water in the conductor.
FIG. 5 is a perspective view showing an electrode pad.
FIG. 6 is a perspective view showing another electrode pad.
FIG. 7 is a perspective view showing another electrode pad and case.
8 is a cross-sectional view taken along the line II of FIG.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Low frequency treatment device 2 Low frequency oscillator 3 Conductor 4 Hot water circulator 6 Water storage container 7 Suction pump 8 Outward pipe 9 Return pipe
11 Heater
12 Hot water
13 cases
16 electrodes
17 Electrode pad
18 opening
24 Outward passage
26 Return Passage
30 Circuit

Claims (1)

患部に装着した導子(3)に、低周波発振器(2)によって発生した低周波電磁波を伝導してなる低周波治療器であって、
水又は湯を溜めておく貯水容器 (6) と、
この貯水容器 (6) に往道パイプ (8) を介して連通連結した前記導子 (3) と、
この導子 (3) に復道パイプ (9) を介して連通連結した吸引ポンプ (7) と、
この吸引ポンプ (7) と前記貯水容器 (6) とを連通連結した連通パイプ (10) とを有し、
前記導子 (3) は、
前記低周波発振器 (2) に電気的に接続された電極 (16) と、
この電極 (16) の真下方位置に設けた吸水性を有する電極パット (17) と、
前記電極 (16) を収容する電極収容部 (14) と前記電極パット (17) を収容する電極パット収容部 (15) を備えたケース (13) とを有し、
前記電極 (16) には、前記貯水容器 (6) と連通連結する往道側連通路 (24) を設けるとともに、前記吸引ポンプ (7) に連通連結する復道側連通路 (26) を設け、一方、
前記電極パット (17) には、前記往道側連通路 (24) に連通する連通孔 (31) と、下面において前記連通孔 (31) から放射状に形成した下部連通路 (32) と、側面に沿って前記下部連通路 (32) の端部から前記復道側連通路 (26) に連通する側部連通路 (33) とを設けて、
前記貯水容器 (6) 内の水又は湯水を前記導子(3)内部に循環させながら前記電極パット (17) を常に水を含んだ状態として低周波電磁波を放射させることを特徴とする低周波治療器。
A low-frequency treatment device that conducts low-frequency electromagnetic waves generated by a low-frequency oscillator (2) to a conductor (3) attached to the affected area,
A water storage container (6) for storing water or hot water ;
The conductor (3) connected to the water storage container (6) through an outward pipe (8) ; and
A suction pump (7) connected to this conductor (3) through a return pipe (9) ;
The suction pipe (7) and the water storage container (6) have a communication pipe (10) that is connected in communication ,
The conductor (3) is
An electrode (16) electrically connected to the low frequency oscillator (2) ;
An electrode pad (17) having water absorption provided immediately below the electrode (16) ;
An electrode housing portion (14 ) for housing the electrode (16) and a case (13) including an electrode pad housing portion (15) for housing the electrode pad (17) ,
Wherein the electrode (16), the with the reservoir (6) and provided 往道side communication passage connecting communicating (24), provided Fukudo side communication passage connecting communicating with the suction pump (7) (26) ,on the other hand,
Wherein the electrode pads (17), a communicating hole communicating with the往道side communication path (24) (31), a lower communicating passage formed radially from the communication hole (31) at the lower surface (32), a side A side communication path (33) communicating with the return-side communication path (26) from the end of the lower communication path (32) along ,
Low-frequency electromagnetic waves are radiated in such a manner that the electrode pad (17) always contains water while circulating water or hot water in the water storage container (6) inside the conductor (3). Treatment device.
JP23216497A 1997-08-28 1997-08-28 Low frequency treatment device Expired - Fee Related JP4053629B2 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP23216497A JP4053629B2 (en) 1997-08-28 1997-08-28 Low frequency treatment device
TW88103005A TW381036B (en) 1997-08-28 1999-02-26 Electrotherapeutic apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP23216497A JP4053629B2 (en) 1997-08-28 1997-08-28 Low frequency treatment device

Publications (2)

Publication Number Publication Date
JPH1157029A JPH1157029A (en) 1999-03-02
JP4053629B2 true JP4053629B2 (en) 2008-02-27

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TW (1) TW381036B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013188241A (en) * 2012-03-12 2013-09-26 Boocs Apparatus for treating brain fatigue and/or depression, and method of use thereof

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1202882C (en) 1999-02-25 2005-05-25 是永哲也 Electric therapeutic device
US6799063B2 (en) * 2002-02-27 2004-09-28 Medivance Incorporated Temperature control pads with integral electrodes
JP5339470B2 (en) * 2011-01-06 2013-11-13 オージー技研株式会社 Conductor set for electrical stimulator and electrical stimulator provided with the same

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06128Y2 (en) * 1989-08-09 1994-01-05 オージー技研株式会社 Adsorption conductor with valve
JPH0562266U (en) * 1991-04-12 1993-08-20 伊藤超短波株式会社 Low frequency therapy device
JP3497192B2 (en) * 1992-12-10 2004-02-16 オリンパス株式会社 Thermal treatment device
JPH09299488A (en) * 1996-05-09 1997-11-25 Og Giken Co Ltd Low frequency therapeutic apparatus with water treating mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013188241A (en) * 2012-03-12 2013-09-26 Boocs Apparatus for treating brain fatigue and/or depression, and method of use thereof

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JPH1157029A (en) 1999-03-02

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