JP2009066252A - High frequency treatment instrument for endoscope - Google Patents

High frequency treatment instrument for endoscope Download PDF

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JP2009066252A
JP2009066252A JP2007238927A JP2007238927A JP2009066252A JP 2009066252 A JP2009066252 A JP 2009066252A JP 2007238927 A JP2007238927 A JP 2007238927A JP 2007238927 A JP2007238927 A JP 2007238927A JP 2009066252 A JP2009066252 A JP 2009066252A
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flexible
tube
distal end
bending portion
treatment instrument
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JP5022841B2 (en
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Naoyuki Naito
直幸 内藤
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Hoya Corp
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Hoya Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a high frequency treatment instrument for an endoscope, wherein a curved part formed at the distal end of a flexible sheath tube can be safely bent by remote control without generating problems on electric insulation from a conductive operation wire and strength or the like. <P>SOLUTION: The curved part 2 freely bendable by external force is formed at a part near the distal end of the flexible sheath tube 1, the distal end of an electrically insulating flexible tube 8 for operations inserted and disposed inside the flexible sheath tube 1 in the state of surrounding the conductive operation wire 7 is connected to the vicinity of the distal end of the curved part 2, and by operating the flexible tube 8 for operations from the proximal end side, the curved part 2 is bent. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

この発明は内視鏡用高周波処置具に関する。   The present invention relates to a high-frequency treatment instrument for an endoscope.

内視鏡用高周波処置具は一般に、内視鏡の処置具挿通チャンネルに挿脱自在な電気絶縁性の可撓性外套管内に挿通配置された導電性の操作ワイヤが、可撓性外套管の先端から前方に向かって突没自在に設けられた棒状電極に接続された構成を有している(例えば、特許文献1)。   In general, a high-frequency treatment instrument for an endoscope has a conductive operation wire that is inserted and disposed in an electrically insulating flexible sheath that can be inserted into and removed from the treatment instrument insertion channel of the endoscope. It has the structure connected to the rod-shaped electrode provided so that it could protrude forward from the front-end | tip (for example, patent document 1).

そのような構成の従来の内視鏡用高周波処置具には、遠隔操作によって屈曲する湾曲部の類が設けられていない。そのため、棒状電極の位置や向きの変更は、高周波処置具が通されている内視鏡の湾曲部を屈曲させることにより行われるが、内視鏡の観察視野が大きく変わってしまう等の問題がある。   The conventional endoscope high-frequency treatment tool having such a configuration is not provided with a kind of bending portion that is bent by remote operation. Therefore, the change of the position and orientation of the rod-shaped electrode is performed by bending the bending portion of the endoscope through which the high-frequency treatment tool is passed, but there is a problem that the observation field of view of the endoscope is greatly changed. is there.

そこで、外力により屈曲する湾曲部を可撓性外套管の先端近傍部に形成して、手元側からの遠隔操作で湾曲部を屈曲させるようにすることが考えられる。内視鏡用処置具の中にはそのような装置を備えたものがあり、可撓性外套管内に配置した湾曲操作ワイヤを押し引き操作することにより湾曲部を屈曲させている(例えば、特許文献2)。
特開2002−153484 特開平11−76403 図25
Accordingly, it is conceivable to form a bending portion that is bent by an external force in the vicinity of the distal end of the flexible mantle tube, and to bend the bending portion by remote operation from the hand side. Some endoscopic treatment tools include such a device, and the bending portion is bent by pushing and pulling a bending operation wire disposed in the flexible mantle tube (for example, patents). Reference 2).
JP 2002-153484 A JP-A-11-76403

しかし、内視鏡用高周波処置具に用いられる可撓性外套管は直径が2mm程度の極めて細いものであって、その軸線位置には棒状電極に接続された操作ワイヤが挿通配置されているので、そこに湾曲操作ワイヤを追加配置すると、導電性の操作ワイヤと湾曲操作ワイヤとの間の電気絶縁の問題が発生したり、操作ワイヤは大電流を流せるように一定以上の径が必要なため湾曲操作ワイヤの径が不十分になって強度上の問題が発生したりする恐れがある。   However, the flexible mantle tube used for the endoscope high-frequency treatment instrument is extremely thin with a diameter of about 2 mm, and an operation wire connected to a rod-shaped electrode is inserted and arranged at the axial position. If a bending operation wire is additionally arranged there, a problem of electrical insulation between the conductive operation wire and the bending operation wire occurs, or the operation wire needs to have a certain diameter or more so that a large current can flow. There is a possibility that the diameter of the bending operation wire becomes insufficient and a problem in strength occurs.

本発明は、可撓性外套管の先端部分に形成された湾曲部を導電性の操作ワイヤとの間の電気絶縁や強度上の問題等が発生することなく遠隔操作により安全に屈曲させることができる内視鏡用高周波処置具を提供することを目的とする。   According to the present invention, the bending portion formed at the distal end portion of the flexible mantle tube can be bent safely by remote operation without causing electrical insulation between the conductive manipulating wire and problems of strength. An object of the present invention is to provide an endoscopic high-frequency treatment instrument.

上記の目的を達成するため、本発明の内視鏡用高周波処置具は、内視鏡の処置具挿通チャンネルに挿脱自在な電気絶縁性の可撓性外套管内に挿通配置された導電性の操作ワイヤが、可撓性外套管の先端から前方に向かって進退自在に突出配置された棒状電極に接続された構成を有する内視鏡用高周波処置具において、外力により屈曲自在な湾曲部を可撓性外套管の先端近傍部に形成すると共に、導電性の操作ワイヤを囲む状態に可撓性外套管内に挿通配置された電気絶縁性の操作用可撓性チューブの先端を湾曲部の先端付近に連結して、操作用可撓性チューブを基端側から操作することにより湾曲部が屈曲するようにしたものである。   In order to achieve the above-mentioned object, the high-frequency treatment instrument for an endoscope according to the present invention is an electrically conductive conductive tube that is inserted into an electrically insulating flexible outer tube that can be inserted into and removed from the treatment instrument insertion channel of the endoscope. In an endoscopic high-frequency treatment instrument having a configuration in which an operation wire is connected to a rod-shaped electrode that protrudes forward and backward from the distal end of a flexible mantle tube, a bending portion that can be bent by an external force is allowed. The tip of the flexible tube for electrical insulation, which is formed in the vicinity of the distal end of the flexible mantle tube and is inserted in the flexible mantle tube so as to surround the conductive operation wire, is near the tip of the bending portion. The bending portion is bent by operating the flexible tube for operation from the base end side.

なお、湾曲部が、可撓性外套管に側方から形成された複数の切り込みを備えていてもよく、操作用可撓性チューブを基端側から軸線方向に押し引き操作することにより湾曲部が屈曲するようにしてもよい。そして、操作用可撓性チューブが可撓性外套管の軸線位置より切り込み側に偏位した位置に配置されていてもよい。   The bending portion may include a plurality of cuts formed from the side in the flexible mantle tube, and the bending portion is operated by pushing and pulling the operation flexible tube in the axial direction from the proximal end side. May be bent. And the flexible tube for operation may be arrange | positioned in the position displaced to the notch | incision side from the axial line position of the flexible mantle tube.

本発明によれば、導電性の操作ワイヤを囲む状態に可撓性外套管内に挿通配置された電気絶縁性の操作用可撓性チューブを基端側から操作することにより湾曲部が屈曲するので、導電性の操作ワイヤとの間の電気絶縁の問題や湾曲操作ワイヤの強度上の問題等が発生することなく、湾曲部を遠隔操作により安全に屈曲させることができる。   According to the present invention, the bending portion is bent by operating the electrically insulating flexible operating tube inserted and arranged in the flexible mantle tube so as to surround the conductive operating wire from the base end side. The bending portion can be safely bent by remote operation without causing a problem of electrical insulation with the conductive operation wire or a problem with the strength of the bending operation wire.

内視鏡の処置具挿通チャンネルに挿脱自在な電気絶縁性の可撓性外套管内に挿通配置された導電性の操作ワイヤが、可撓性外套管の先端から前方に向かって進退自在に突出配置された棒状電極に接続された構成を有する内視鏡用高周波処置具において、外力により屈曲自在な湾曲部を可撓性外套管の先端近傍部に形成すると共に、導電性の操作ワイヤを囲む状態に可撓性外套管内に挿通配置された電気絶縁性の操作用可撓性チューブの先端を湾曲部の先端付近に連結して、操作用可撓性チューブを基端側から操作することにより湾曲部が屈曲する。   A conductive operation wire inserted into an electrically insulating flexible outer tube that can be inserted into and removed from an endoscope treatment instrument insertion channel protrudes forward and backward from the distal end of the flexible outer tube. In an endoscopic high-frequency treatment instrument having a configuration connected to a rod-shaped electrode that is arranged, a bending portion that can be bent by an external force is formed in the vicinity of the distal end of a flexible mantle tube, and a conductive operation wire is surrounded. By connecting the distal end of the electrically insulating flexible operating tube inserted in the flexible outer tube to the vicinity of the distal end of the bending portion and operating the flexible operating tube from the proximal end side The bend is bent.

以下、図面を参照して本発明の実施例を説明する。
図1は内視鏡用高周波処置具の全体構成を示し、図2はその先端部分を示しており、図示されていない内視鏡の処置具挿通チャンネルに挿脱自在な可撓性外套管1は、例えば四フッ化エチレン樹脂チューブ等のような電気絶縁性の可撓性チューブ等で形成されている。
Embodiments of the present invention will be described below with reference to the drawings.
FIG. 1 shows the overall configuration of an endoscope high-frequency treatment instrument, and FIG. 2 shows its distal end portion. A flexible outer tube 1 that can be inserted into and removed from an endoscope treatment instrument insertion channel (not shown). Is formed of an electrically insulating flexible tube such as a tetrafluoroethylene resin tube.

可撓性外套管1の先端近傍部には、外力により屈曲自在な湾曲部2が形成されている。この実施例の湾曲部2は、可撓性外套管1に複数の切り込み3が間隔をあけて側方から形成された構成になっており、可撓性外套管1の切り込み3が形成されている側を軸線方向に圧縮させれば、湾曲部2が切り込み3の側に屈曲する。   A bending portion 2 that can be bent by an external force is formed in the vicinity of the distal end of the flexible outer tube 1. The bending portion 2 of this embodiment has a configuration in which a plurality of cuts 3 are formed in the flexible outer tube 1 from the side at intervals, and the cuts 3 of the flexible outer tube 1 are formed. If the existing side is compressed in the axial direction, the bending portion 2 bends toward the cut 3 side.

可撓性外套管1の先端には、キャップ状の外套管先端口金4が連結環5を介して連結されており、その外套管先端口金4の先端面に軸線と平行方向に形成された貫通孔を突き抜ける状態に配置された真っ直ぐな棒状電極6が、外套管先端口金4から前方に突没することができるように、軸線方向に進退自在に前方に向かって突出配置されている。   A cap-like outer tube tip cap 4 is connected to the distal end of the flexible outer tube 1 via a connecting ring 5, and a through-hole formed in the distal end surface of the outer tube tip cap 4 in a direction parallel to the axis. A straight rod-like electrode 6 arranged so as to penetrate through the hole is arranged to protrude forward so as to be movable forward and backward in the axial direction so that it can protrude forward and backward from the outer tube tip cap 4.

可撓性外套管1内には全長にわたって、可撓性を有する金属製の撚り線からなる導電性の操作ワイヤ7が、可撓性外套管1の内周面との間に十分な隙間をあけて挿通配置され、操作ワイヤ7の先端が棒状電極6の後端に機械的及び電気的に連結接続されている。   A conductive operation wire 7 made of a stranded metal wire having flexibility throughout the entire length of the flexible outer tube 1 has a sufficient gap between the inner surface of the flexible outer tube 1. The tip of the operation wire 7 is mechanically and electrically connected to the rear end of the rod-shaped electrode 6.

なお、この実施例では、操作ワイヤ7の先端部分をそのまま延長して棒状電極6が形成されているが、棒状電極6を導電性の棒材等で操作ワイヤ7とは別に形成して、棒状電極6と操作ワイヤ7を連結部材等で連結してもよい。また、棒状電極6は、真っ直ぐな形状に限らず、先端付近が折れ曲がった形状等であってもよく、部分的に電気絶縁材で被覆されていてもよい。   In this embodiment, the rod-shaped electrode 6 is formed by extending the distal end portion of the operation wire 7 as it is. However, the rod-shaped electrode 6 is formed separately from the operation wire 7 with a conductive rod or the like to form a rod-shaped electrode. The electrode 6 and the operation wire 7 may be connected by a connecting member or the like. Further, the rod-like electrode 6 is not limited to a straight shape, and may have a shape in which the vicinity of the tip is bent, or may be partially covered with an electrical insulating material.

そのような操作ワイヤ7を囲む状態に、例えば四フッ化エチレン樹脂チューブ等からなる電気絶縁性の操作用可撓性チューブ8が、可撓性外套管1内の全長にわたって挿通配置されている。   An electrically insulating flexible operating tube 8 made of, for example, a tetrafluoroethylene resin tube or the like is inserted and disposed throughout the entire length of the flexible outer tube 1 so as to surround the operating wire 7.

それにより、可撓性外套管1に切り込み3が形成されただけの簡便な構造の湾曲部2であっても、高周波電流が流される操作ワイヤ7と外部との間の電気絶縁が確保されている。操作用可撓性チューブ8の先端は、連結環5に先側から嵌め込まれる圧入固定部材9と連結環5との間に挟み込まれて、そこ(即ち、湾曲部2の先端付近)に連結固定されている。   Thereby, even in the curved portion 2 having a simple structure in which the cut 3 is formed in the flexible mantle 1, electrical insulation is ensured between the operation wire 7 through which a high-frequency current flows and the outside. Yes. The distal end of the operating flexible tube 8 is sandwiched between the press-fit fixing member 9 fitted into the connecting ring 5 from the front side and the connecting ring 5 and connected and fixed there (that is, near the distal end of the bending portion 2). Has been.

したがって、操作用可撓性チューブ8が基端側(図1において右方)から引っ張られると、切り込み3に軸線方向の圧縮力が作用して湾曲部2が切り込み3の側に屈曲する。この実施例では、操作用可撓性チューブ8(及び操作ワイヤ7)が可撓性外套管1の軸線位置ではなくて、可撓性外套管1の軸線位置より切り込み3側に偏位した位置に配置されているので、切り込み3が確実に圧縮されて湾曲部2を切り込み3側にスムーズに屈曲させることができる。   Therefore, when the operation flexible tube 8 is pulled from the base end side (right side in FIG. 1), an axial compressive force acts on the cut 3 and the bending portion 2 bends to the cut 3 side. In this embodiment, the operation flexible tube 8 (and the operation wire 7) is not at the axial position of the flexible outer tube 1 but at a position displaced toward the notch 3 from the axial position of the flexible outer tube 1. Therefore, the cut 3 is reliably compressed and the bending portion 2 can be smoothly bent toward the cut 3.

棒状電極6の基端付近(又は操作ワイヤ7の先端付近)には、外套管先端口金4内に固定された圧入固定部材9の後面に当接するストッパ環10が固着されている。ストッパ環10は操作ワイヤ7と共に操作用可撓性チューブ8内で軸線方向に移動自在であり、ストッパ環10が圧入固定部材9の後端面に当接することにより棒状電極6のそれ以上の前方への突出が規制される。   A stopper ring 10 that is in contact with the rear surface of the press-fit fixing member 9 fixed in the outer tube distal end cap 4 is fixed near the proximal end of the rod-shaped electrode 6 (or near the distal end of the operation wire 7). The stopper ring 10 is movable in the axial direction in the operation flexible tube 8 together with the operation wire 7, and the stopper ring 10 abuts against the rear end surface of the press-fitting fixing member 9 and further forwards beyond the rod-shaped electrode 6. Is restricted.

20は操作部であり、上述の先端部分より小さな尺度で図示されている。
可撓性外套管1の基端が連結された操作部本体21の後端部には固定指掛け22が形成されて、操作部本体21にスライド自在に支持された可動指掛け23に操作ワイヤ7の基端が連結固定されている。
Reference numeral 20 denotes an operation unit, which is illustrated on a smaller scale than the above-described tip portion.
A fixed finger hook 22 is formed at the rear end portion of the operation portion main body 21 to which the proximal end of the flexible mantle tube 1 is connected, and the operation wire 7 is attached to the movable finger hook 23 slidably supported on the operation portion main body 21. The base end is connected and fixed.

したがって、可動指掛け23を矢印Aで示されるようにスライド操作することにより、操作ワイヤ7を介して棒状電極6が矢印Bで示されるように軸線方向に移動する。24は、図示されていない高周波電源コードが接続される接続端子であり、導電性の操作ワイヤ7の基端と電気的に導通している。   Therefore, when the movable finger hook 23 is slid as shown by the arrow A, the rod-like electrode 6 moves in the axial direction as shown by the arrow B through the operation wire 7. Reference numeral 24 denotes a connection terminal to which a high-frequency power cord (not shown) is connected, and is electrically connected to the proximal end of the conductive operation wire 7.

25は、操作部本体21にスライド自在に設けられた湾曲操作環であり、操作用可撓性チューブ8の基端が連結固定されている。したがって、湾曲操作環25を矢印Cで示されるようにスライド操作することにより、操作用可撓性チューブ8が軸線方向に押し引きされて、矢印Dで示されるように湾曲部2が屈曲する。   Reference numeral 25 denotes a bending operation ring slidably provided on the operation unit main body 21, and the base end of the operation flexible tube 8 is connected and fixed. Therefore, by sliding the bending operation ring 25 as indicated by the arrow C, the operation flexible tube 8 is pushed and pulled in the axial direction, and the bending portion 2 is bent as indicated by the arrow D.

このようにして、操作ワイヤ7を囲んで設けられた操作用可撓性チューブ8を基端側から操作することで湾曲部2を屈曲させることができるので、棒状電極6に高周波電流を通電する操作ワイヤ7との間の電気絶縁の問題や湾曲操作ワイヤの強度上の問題等が発生することなく、遠隔操作により湾曲部2を安全に屈曲させることができる。   In this way, the bending portion 2 can be bent by operating the operation flexible tube 8 provided surrounding the operation wire 7 from the proximal end side, and thus a high-frequency current is applied to the rod-shaped electrode 6. The bending portion 2 can be safely bent by remote control without causing problems of electrical insulation between the operation wire 7 and the strength of the bending operation wire.

なお、本発明は上記実施例に限定されるものではなく、例えば湾曲部2は、複数の関節輪を回動自在に連結した構成等であってもよい。また、湾曲部2の先端部分に、回転駆動することにより軸線方向の全長が変化するカム機構等を配置して、操作用可撓性チューブ8を基端側から軸線周りに回転操作することにより、カム機構が動作して湾曲部2が屈曲するような構成を採っても差し支えない。   In addition, this invention is not limited to the said Example, For example, the structure etc. which the curved part 2 connected the several joint ring | wheel so that rotation was possible may be sufficient. In addition, a cam mechanism or the like whose axial length is changed by being rotationally driven is disposed at the distal end portion of the bending portion 2, and the operation flexible tube 8 is rotated around the axis from the base end side. The cam mechanism may be operated and the bending portion 2 may be bent.

本発明の実施例の内視鏡用高周波処置具の全体構成を示す側面断面図である。It is side surface sectional drawing which shows the whole structure of the high frequency treatment tool for endoscopes of the Example of this invention. 本発明の実施例の内視鏡用高周波処置具の先端部分の外観斜視図である。It is an external appearance perspective view of the front-end | tip part of the high frequency treatment tool for endoscopes of the Example of this invention.

符号の説明Explanation of symbols

1 可撓性外套管
2 湾曲部
3 切り込み
6 棒状電極
7 操作ワイヤ
8 操作用可撓性チューブ
20 操作部
25 湾曲操作環
DESCRIPTION OF SYMBOLS 1 Flexible outer tube 2 Bending part 3 Cutting 6 Bar-shaped electrode 7 Operation wire 8 Flexible tube for operation 20 Operation part 25 Bending operation ring

Claims (4)

内視鏡の処置具挿通チャンネルに挿脱自在な電気絶縁性の可撓性外套管内に挿通配置された導電性の操作ワイヤが、上記可撓性外套管の先端から前方に向かって進退自在に突出配置された棒状電極に接続された構成を有する内視鏡用高周波処置具において、
外力により屈曲自在な湾曲部を上記可撓性外套管の先端近傍部に形成すると共に、導電性の上記操作ワイヤを囲む状態に上記可撓性外套管内に挿通配置された電気絶縁性の操作用可撓性チューブの先端を上記湾曲部の先端付近に連結して、上記操作用可撓性チューブを基端側から操作することにより上記湾曲部が屈曲するようにしたことを特徴とする内視鏡用高周波処置具。
A conductive operation wire inserted and placed in an electrically insulating flexible outer tube that can be inserted into and removed from the treatment instrument insertion channel of the endoscope can be moved forward and backward from the distal end of the flexible outer tube. In a high-frequency treatment instrument for an endoscope having a configuration connected to a protruding rod electrode,
A bending portion that can be bent by an external force is formed in the vicinity of the distal end of the flexible mantle tube, and the electrically insulating operation wire is inserted and arranged in the flexible mantle tube so as to surround the conductive manipulating wire. An internal view characterized in that the bending portion is bent by connecting the distal end of the flexible tube to the vicinity of the distal end of the bending portion and operating the flexible tube for operation from the proximal end side. High-frequency treatment tool for mirrors.
上記湾曲部が、上記可撓性外套管に側方から形成された複数の切り込みを備えている請求項1記載の内視鏡用高周波処置具。   The high-frequency treatment instrument for endoscope according to claim 1, wherein the bending portion includes a plurality of cuts formed in the flexible mantle tube from the side. 上記操作用可撓性チューブを基端側から軸線方向に押し引き操作することにより上記湾曲部が屈曲する請求項2記載の内視鏡用高周波処置具。   The high-frequency treatment instrument for endoscope according to claim 2, wherein the bending portion is bent by pushing and pulling the flexible tube for operation in the axial direction from the proximal end side. 上記操作用可撓性チューブが上記可撓性外套管の軸線位置より上記切り込み側に偏位した位置に配置されている請求項3記載の内視鏡用高周波処置具。   The high-frequency treatment instrument for an endoscope according to claim 3, wherein the flexible tube for operation is arranged at a position deviated from the axial position of the flexible outer tube toward the cut side.
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