JP4726014B2 - Endoscopic high-frequency treatment instrument for endoscope - Google Patents

Endoscopic high-frequency treatment instrument for endoscope Download PDF

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JP4726014B2
JP4726014B2 JP2007284366A JP2007284366A JP4726014B2 JP 4726014 B2 JP4726014 B2 JP 4726014B2 JP 2007284366 A JP2007284366 A JP 2007284366A JP 2007284366 A JP2007284366 A JP 2007284366A JP 4726014 B2 JP4726014 B2 JP 4726014B2
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scissors
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frequency treatment
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JP2009090060A (en
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幸 西村
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River Seiko Co Ltd
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Description

本発明は、内視鏡の処置具案内管に通して体内に導入され、一対の鋏片に高周波電流を通電して生体組織の切開や切断等を行う内視鏡用鋏型高周波処置具に関する。  The present invention relates to a scissors-type high-frequency treatment instrument for an endoscope which is introduced into a body through a treatment instrument guide tube of an endoscope and in which a high-frequency current is passed through a pair of scissors to incise or cut a living tissue. .

内視鏡用鋏型高周波処置具は一般に、内視鏡の処置具案内管に挿脱されるシースの先端に、シースの基端側からの操作により後端側を回動支点にして前方に向かって開閉する一対の鋏片が配置され、一対の鋏片の各々の対向面又は鋏片全体が電極刃になっている(例えば、特許文献1)。
特開2003−299667号公報
In general, a scissors-type high-frequency treatment instrument for an endoscope is moved forward at the distal end of the sheath inserted into and removed from the treatment instrument guide tube of the endoscope, with the rear end side as a pivotal fulcrum by an operation from the proximal end side of the sheath. A pair of scissors that open and close is disposed, and the opposing surfaces of the pair of scissors or the entire scissors are electrode blades (for example, Patent Document 1).
JP 2003-299667 A

内視鏡用鋏型高周波処置具で生体組織を切開したり切断したりする際には、まず一対の鋏片を開いてその間に処置対象の生体組織を位置させる。そして、鋏片に閉じる力を作用させて生体組織を鋏片で(即ち、電極刃で)摘んだ状態にしてから、高周波電流を通電しながら電極刃を閉じることにより生体組織の切開、切断等を行うことができる。
粘膜をその下の筋層から剥離させるいわゆる粘膜下層剥離術等を行う際には、表面粘膜を切開した後に、粘膜とその下の筋層との間に繊維状につながっている繊維状筋を切断していくことになる。
When incising or cutting biological tissue with the scissors-type high-frequency treatment instrument for endoscope, first, a pair of scissors pieces are opened, and the biological tissue to be treated is positioned therebetween. Then, a closing force is applied to the sepal piece so that the living tissue is picked with the sepal piece (that is, with the electrode blade), and then the living body tissue is incised or cut by closing the electrode blade while applying a high-frequency current. It can be performed.
When performing so-called submucosal dissection, etc., which removes the mucous membrane from the underlying muscle layer, after incising the surface mucosa, the fibrous muscles connected in a fibrous form between the mucosa and the underlying muscle layer are removed. It will be cut off.

しかし、そのような繊維状筋は摘まみ難くてしかも滑り易いので、一対の鋏片で単純に摘むような操作をしても、鋏片が繊維状筋の表面で滑ってうまく摘むことができず、操作のやり直しを繰り返して、処置に多大な時間を要する場合がある。
また、そのような繊維状筋の切断作業に夢中になっていると、電極刃が繊維状筋以外の周囲の正常組織に触れているのに気づかず、高周波電流で正常組織を不必要に焼灼して損傷してしまう恐れがある。
However, such a fibrous streak is difficult to pick and slippery, so even if the operation is simply picked with a pair of scissors, the scissors can slip well on the surface of the fibrous streaks and be picked well. First, the operation may be repeated, and the treatment may take a long time.
Also, if you are crazy about cutting such fibrous streaks, you will not notice that the electrode blade touches the surrounding normal tissue other than the fibrous streaks, and the normal tissue is unnecessarily cauterized with high-frequency current. May be damaged.

本発明はそのような問題を解決するためになされたものであり、電極刃に高周波電流を通電する前に繊維状筋を一対の鋏片で確実に摘んで保持することができ、かつ高周波電流の通電により周囲の無用な組織損傷等が発生せず、粘膜下層剥離処置等を安全かつ円滑に短時間で行うことができる内視鏡用鋏型高周波処置具を提供することを目的とする。  The present invention has been made in order to solve such a problem, and can reliably hold and hold the fibrous streak with a pair of scissors before energizing the electrode blade with the high-frequency current. An object of the present invention is to provide a scissors-type high-frequency treatment instrument for an endoscope which can safely and smoothly perform a submucosal layer peeling treatment in a short time without causing unnecessary tissue damage or the like due to energization.

前記の目的を達成するために本発明は、内視鏡の処置具案内管に挿脱されるシースと、シースの基端側からの操作によって後端側を回動支点にして先端側が円弧状に開閉するように向かい合って配置された一対の鋏片とを備え、鋏片の外表面全体が電気絶縁材によって覆われている内視鏡用鋏型高周波処置具であって、一対の鋏片は、一対の鋏片の円弧状開閉の軌跡により形成される平面に対して垂直方向に湾曲した形状に形成され、各鋏片の長手方向に沿って湾曲の内側縁寄りの位置に細長く電気絶縁材を剥離して導通部分が露出形成された電極刃と、一対の鋏片の一方の先端に閉じ方向に向かって電極刃より突出するフック状突起と、を有する。 In order to achieve the above object, the present invention provides a sheath inserted into and removed from a treatment instrument guide tube of an endoscope, and a distal end side having an arc shape with a rear end side as a rotation fulcrum by an operation from the proximal end side of the sheath. And a pair of scissors arranged opposite to each other so that the entire outer surface of the scissors is covered with an electrical insulating material. Is formed in a shape that is curved in a direction perpendicular to the plane formed by the arc-shaped opening and closing trajectory of a pair of flange pieces, and is electrically insulated at a position near the inner edge of the curve along the longitudinal direction of each flange piece. The electrode blade has a conductive portion exposed by peeling the material, and a hook-shaped protrusion protruding from the electrode blade toward the closing direction at one end of the pair of hooks.

なお、一対の鋏片の各々に形成された電極刃が、一対の鋏片を閉じた時に向かい合う位置関係に配置されていてもよい。また、電極刃が鋏片の対向面から閉じ方向に突出して形成されていてもよく、フック状突起が形成されていない方の鋏片に形成されている電極刃の先端がその鋏片の先端より後方に退避した位置に形成されていて、その電極刃の先端と鋏片の先端との間の部分の表面が電気絶縁されていてもよい。
The electrode edge formed at each of the scissor pieces of a pair may be arranged in a positional relationship facing when closed a pair of scissor pieces. In addition, the electrode blade may be formed so as to protrude in the closing direction from the opposing surface of the hook piece, and the tip of the electrode blade formed on the hook piece on which the hook-like protrusion is not formed is the tip of the hook piece. The surface of the part between the tip of the electrode blade and the tip of the collar piece may be electrically insulated.

また、フック状突起の先端面壁が、フック状突起の突端側へ向かうにしたがって後方に退避する斜面状に形成されていてもよく、一対の鋏片を支持する先端支持枠がシースの先端に軸周りに回転自在に連結されていて、操作ワイヤーを軸周りに回転させることにより、一対の鋏片が先端支持枠と共に軸周りに回転するようにしてもよい。また、フック状突起が、他方の電極刃の鋏片先端側を覆うようにしてもよい。 The end wall of the hook-like projections may be formed on the inclined surfaces of saving backwards toward the tip side of the hook-like projection, the tip of the distal end support frame sheath supports the scissor pieces of a pair A pair of flanges may be rotated around the axis together with the tip support frame by rotating the operation wire around the axis. Further, the hook-shaped protrusion may cover the tip end side of the other electrode blade.

本発明の内視鏡用鋏型高周波処置具によれば、一対の鋏片の一方のみの最先端部分に、電極刃に対して表面が電気絶縁されたフック状突起が閉じ方向に向かって電極刃より突出する状態に突出形成されていることにより、電極刃に高周波電流を通電する前に繊維状筋を容易に引き寄せて一対の鋏片で摘んで確実に保持することができ、一対の鋏片が開閉方向に対して垂直な方向に湾曲した形状に形成されて、各鋏片の長手方向に沿って細長い電極刃が一対の鋏片の双方の対向面に露出形成されていることにより、電極刃が周囲の正常組織等に接触し難くて、高周波電流の通電により周囲の無用な組織損傷等が発生せず粘膜下層剥離処置等を安全かつ円滑に短時間で行うことができる。  According to the scissors-type high-frequency treatment instrument for an endoscope of the present invention, a hook-shaped protrusion whose surface is electrically insulated with respect to the electrode blade is disposed on the tip of only one of the pair of scissors. By projecting and forming in a state of projecting from the blade, the fibrous streaks can be easily pulled before passing a high-frequency current through the electrode blade, and can be securely held by a pair of scissors. The piece is formed in a shape that is curved in a direction perpendicular to the opening and closing direction, and the elongated electrode blades are exposed on both opposing surfaces of the pair of hook pieces along the longitudinal direction of each hook piece, Since the electrode blade is unlikely to contact the surrounding normal tissue or the like, unnecessary tissue damage or the like is not caused by energization of the high frequency current, and the submucosal layer peeling treatment or the like can be performed safely and smoothly in a short time.

以下、図面を参照して本発明の実施の形態を具体的に説明する。
図2は、本発明の第1の実施の形態に係る内視鏡用鋏型高周波処置具の先端付近の側面部分断面図、図3は平面部分断面図であり、図1はその高周波鋏部分の斜視図である。なお、向かい合って配置されている一対の鋏片6A,6Bは、共に図3に示されるように湾曲した形状に形成されているが、図2ではそれが真っ直ぐに略示されている。また、図3には一方の鋏片6Bのみが図示されている。
Embodiments of the present invention will be specifically described below with reference to the drawings.
FIG. 2 is a side partial sectional view of the vicinity of the distal end of the scissors-type high-frequency treatment instrument for endoscopes according to the first embodiment of the present invention, FIG. 3 is a plan partial sectional view, and FIG. FIG. In addition, although a pair of collar pieces 6A and 6B arranged facing each other are formed in a curved shape as shown in FIG. 3, it is schematically shown straight in FIG. FIG. 3 shows only one flange piece 6B.

内視鏡の処置具案内管に挿脱自在な可撓性シース1はステンレス線等を密着巻きしたコイルパイプにより形成されて、その外周面には、電気絶縁性の可撓性チューブからなるシース外皮2が全長に被覆されている。シース外皮2の先端は、可撓性シース1の先端に固定的に取り付けられた先端口金3の外周に被覆固定されている。4は、可撓性シース1内に緩く挿通された導電性の操作ワイヤーであり、可撓性シース1の基端に連結された操作部(図示せず)からの操作により、軸方向に進退させることができ、また軸周りに回転させることができる。  A flexible sheath 1 that can be inserted into and removed from a treatment instrument guide tube of an endoscope is formed of a coil pipe that is tightly wound with a stainless steel wire or the like, and a sheath made of an electrically insulating flexible tube on the outer peripheral surface thereof. The outer skin 2 is covered over the entire length. The distal end of the sheath sheath 2 is covered and fixed to the outer periphery of the distal end cap 3 fixedly attached to the distal end of the flexible sheath 1. 4 is a conductive operation wire that is loosely inserted into the flexible sheath 1, and advances and retracts in the axial direction by an operation from an operation unit (not shown) connected to the base end of the flexible sheath 1. And can be rotated about an axis.

5は、先端口金3に対して軸方向に移動することはできないが、軸周りに回転自在に先端口金3に連結された先端支持枠であり、剛性の大きな電気絶縁性のプラスチック材等で形成されている。先端支持枠5に形成されたスリット7の先端部分には、導電性金属からなる一対の鋏片6A,6Bが、剛性の大きな電気絶縁性のプラスチック材等からなる支軸8を中心に、後端側を支点にして回動自在に前方に向かって開閉自在に支持されている。9は、一対の鋏片6A,6Bを開閉駆動するための公知のリンク機構であり、操作ワイヤー4の先端が導電金属製のリンク機構9に連結されている。ただし、一対の鋏片6A,6Bの開閉駆動をリンク機構9以外の機構で行ってもよい。  Reference numeral 5 denotes a tip support frame which cannot be moved in the axial direction with respect to the tip cap 3 but is connected to the tip cap 3 so as to be rotatable around the axis, and is formed of a highly rigid electrically insulating plastic material or the like. Has been. At the tip of the slit 7 formed in the tip support frame 5, a pair of flanges 6A and 6B made of a conductive metal are arranged around a support shaft 8 made of a highly rigid electrically insulating plastic material or the like. With the end side as a fulcrum, it is supported so as to be openable and closable forward. 9 is a known link mechanism for opening and closing the pair of collar pieces 6A and 6B, and the tip of the operation wire 4 is connected to a link mechanism 9 made of conductive metal. However, the pair of flange pieces 6A and 6B may be opened and closed by a mechanism other than the link mechanism 9.

そのような構成により、操作部において操作ワイヤー4を進退操作すれば一対の鋏片6A,6Bが各々支軸8を中心に回動して前方に向かって開閉し、操作ワイヤー4を軸周りに回転操作すれば、先端支持枠5や鋏片6A,6B等が一体となって先端口金3の軸周りに回転する。そして、操作部側において操作ワイヤー4を図示されていない高周波電源に接続することにより、操作ワイヤー4を経由して各鋏片6A,6Bに高周波電流を通電することができる。なお、図2には一対の鋏片6A,6Bが開いた状態が実線で図示されているが、閉じた状態も二点鎖線で図示されている。  With such a configuration, when the operation wire 4 is moved back and forth in the operation portion, the pair of hook pieces 6A and 6B rotate around the support shaft 8 to open and close forward, and the operation wire 4 is rotated around the axis. If the rotation operation is performed, the distal end support frame 5 and the flange pieces 6A and 6B and the like are integrally rotated around the axis of the distal end cap 3. Then, by connecting the operation wire 4 to a high-frequency power source (not shown) on the operation unit side, a high-frequency current can be supplied to each of the pieces 6A and 6B via the operation wire 4. In FIG. 2, a state in which the pair of collars 6A and 6B are opened is shown by a solid line, but a closed state is also shown by a two-dot chain line.

図1及び図3に示されるように、一対の鋏片6A,6Bは、中間部分において開閉方向に対し垂直な方向に湾曲した形状に形成されている。この実施例では、図3に示されるように、各鋏片6A,6Bが、先端支持枠5から前方に向かうに従って可撓性シース1の先端部分の中心線(即ち、先端支持枠5の中心線)の延長線Cから次第に斜め方向に離れて、湾曲部分より前方位置で逆に中心線の延長線Cを跨いでその反対側に達する形状に形成されている。その結果、湾曲形状の外側の壁面を体内組織面30に接触させれば、その体内組織面30に電極刃10A,10Bが接触し難い状態になる。また、鋏片6A,6Bが先端支持枠5の外縁の延長線から大きく飛び出すことなく(したがって、内視鏡の処置具案内管内に容易に挿脱可能)、鋏片6A,6Bの曲がり量を大きくとることができる。両鋏片6A,6Bの湾曲形状は同じであり、したがって一対の鋏片6A,6Bは互いに向かい合った状態で開閉する。  As shown in FIGS. 1 and 3, the pair of collar pieces 6A and 6B are formed in a shape curved in a direction perpendicular to the opening and closing direction at the intermediate portion. In this embodiment, as shown in FIG. 3, the center line of the distal end portion of the flexible sheath 1 (that is, the center of the distal end support frame 5) as each flange piece 6 </ b> A, 6 </ b> B moves forward from the distal end support frame 5. It is formed in a shape that gradually goes away from the extension line C of the line) and reaches the opposite side across the extension line C of the center line at a position forward from the curved portion. As a result, if the outer wall surface of the curved shape is brought into contact with the body tissue surface 30, the electrode blades 10A and 10B are unlikely to contact the body tissue surface 30. In addition, the bending amount of the collar pieces 6A and 6B can be reduced without causing the collar pieces 6A and 6B to jump out of the extended line of the outer edge of the distal end support frame 5 (thus, it can be easily inserted into and removed from the treatment instrument guide tube of the endoscope). It can be taken big. The curved shapes of the two flange pieces 6A and 6B are the same, and therefore the pair of flange pieces 6A and 6B open and close in a state of facing each other.

図1〜図3に示されるように、各鋏片6A,6Bの対向面には、細長い一定幅の電極刃10A,10Bが各鋏片6A,6Bの長手方向に沿って露出形成されている。ただし、電極刃10A,10Bの幅が前後両端部又はその途中位置で変化していても差し支えない。一対の電極刃10A,10Bは、一対の鋏片6A,6Bが閉じられた時に互いに向かい合う位置関係に、鋏片6A,6Bの対向面から閉じ方向に突出して露出形成されている。即ち、図2に示されるA−A線で切断した状態の断面を図示する図4に示されるように、各鋏片6A,6Bの対向部分は対向面側に突出する凸型の断面形状に形成されていて、その突端面が電極刃10A,10Bになっている。  As shown in FIGS. 1 to 3, long and narrow electrode blades 10 </ b> A and 10 </ b> B are exposed and formed along the longitudinal direction of each of the flanges 6 </ b> A and 6 </ b> B on the opposing surfaces of the flanges 6 </ b> A and 6 </ b> B. . However, the widths of the electrode blades 10A and 10B may be changed at the front and rear ends or in the middle thereof. The pair of electrode blades 10A and 10B are exposed and formed in a positional relationship facing each other when the pair of collar pieces 6A and 6B are closed, projecting in the closing direction from the facing surfaces of the collar pieces 6A and 6B. That is, as shown in FIG. 4 illustrating a cross section taken along the line AA shown in FIG. 2, the opposing portions of the flange pieces 6A and 6B have a convex cross-sectional shape protruding toward the opposing surface. It is formed, and the projecting end surfaces are electrode blades 10A and 10B.

そのような各鋏片6A,6Bは、突端対向面である電極刃10A,10Bの表面のみに金属面が露出して、その他の面には各々全面に一つながりに、例えばフッ素樹脂等のような化学的及び熱的に安定性が大きいいわゆる不活性の合成樹脂材からなる電気絶縁性被膜11が被覆されている。電気絶縁性被膜11部分は全図について砂目状に表示してある。このような構成により、高周波処置の際に必要な生体組織だけが焼灼されてその周囲が不必要に焼灼されないので、安全に切開又は切断等を行うことができる。  Each of the flanges 6A and 6B has a metal surface exposed only on the surfaces of the electrode blades 10A and 10B, which are the opposed surfaces of the protrusions, and the other surfaces are connected to the entire surface, such as a fluororesin. Further, an electrically insulating coating 11 made of a so-called inert synthetic resin material having high chemical and thermal stability is coated. The portion of the electrically insulating coating 11 is displayed in a grainy manner for all drawings. With such a configuration, only a living tissue necessary for high-frequency treatment is cauterized and its surroundings are not unnecessarily cauterized, so that incision or cutting can be performed safely.

なお、図2に示されるように、次に説明するフック状突起12が形成されていない方の鋏片6Aに形成されている電極刃10Aの先端は、その鋏片6Aの先端より後方に退避する位置に形成され、その電極刃10Aの先端と鋏片6Aの先端との間の部分Fの表面は電気絶縁性被膜11により電気絶縁されている。その結果、体内組織を挟む状態に一対の電極刃10A,10Bを閉じて高周波電流を通電した時に、周囲の正常組織等が焼灼損壊される恐れがない。  As shown in FIG. 2, the tip of the electrode blade 10A formed on the flange 6A on which the hook-like protrusion 12 described below is not formed is retracted backward from the tip of the flange 6A. The surface of the portion F between the tip of the electrode blade 10 </ b> A and the tip of the collar piece 6 </ b> A is electrically insulated by the electrically insulating coating 11. As a result, when the pair of electrode blades 10A and 10B are closed and a high-frequency current is applied while sandwiching the body tissue, the surrounding normal tissue or the like is not damaged.

図1〜図3に示されるように、一対の鋏片6A,6Bの一方の鋏片6Bの最先端部分には、フック状突起12が閉じ方向(即ち、他方の鋏片6Aの先端方向)に向かって、電極刃10Bより突出する突片状に突出形成され、フック状突起12の表面は電気絶縁性被膜11により電気絶縁されている。ただし、電気絶縁材で形成したフック状突起12を鋏片6Bの先端に取り付けてもよい。  As shown in FIGS. 1 to 3, the hook-shaped protrusion 12 is closed in the most distal end portion of one of the pair of collar pieces 6A and 6B (that is, the tip direction of the other collar piece 6A). The surface of the hook-shaped protrusion 12 is electrically insulated by the electrically insulating coating 11. However, you may attach the hook-shaped protrusion 12 formed with the electrical insulating material to the front-end | tip of the collar piece 6B.

そして、図2に示されるように、フック状突起12の先端面壁Sは、フック状突起12の突端側へ向かうにしたがって後方に退避する斜面状に形成されている。その結果、一対の鋏片6A,6Bが閉じる動作をする際に、フック状突起12の先端面壁Sの突端側の軌跡Zが基端側の軌跡Yより内側に退避した位置になるので、フック状突起12が意に反して生体組織に引っ掛かったりせず、安全に動作させることができる。  As shown in FIG. 2, the front end surface wall S of the hook-shaped protrusion 12 is formed in a slope shape that retracts backward as it goes toward the protruding end side of the hook-shaped protrusion 12. As a result, when the pair of hook pieces 6A and 6B are closed, the locus Z on the protruding end side of the distal end surface wall S of the hook-shaped protrusion 12 is in a position retracted inward from the locus Y on the proximal end side. The protrusion 12 does not get caught in the living tissue against the intention, and can be operated safely.

また、フック状突起12の後面壁も突端側を次第に後方に寄せた斜面状に形成され、さらに、フック状突起12の幅が突端側を窄めた形状に形成されている。その結果、粘膜下層剥離術等を行う際に、繊維状筋等をフック状突起に引っ掛けて移動させる操作等を容易に行うことができる。
図5は、上述のように構成された内視鏡用鋏型高周波処置具が内視鏡の処置具案内管(図示せず)に通されて体内で粘膜下層剥離処置等に用いられる途中の状態を示しており、表面粘膜の切開処置が済んだ後、高周波電流を通電する前に、表面粘膜とその下の筋層との間の繊維状筋31をフック状突起12に簡単に引っ掛けてたぐり寄せ、一対の鋏片6A,6Bで確実に摘んで保持することができる。フック状突起12が一対の鋏片6A,6Bの一方の鋏片6Bのみにしか形成されていないので、引っ掛け/たぐり寄せの作業を容易に行うことができる(フック状突起12が一対の鋏片6A,6Bの双方に形成されていると、もう一つのフック状突起12が邪魔をして引っ掛け作業を容易に行うことができない)。そして、一対の鋏片6A,6Bを閉じて高周波電流を通電することにより、繊維状筋31を容易に切断することができる。
Further, the rear wall of the hook-shaped protrusion 12 is also formed in a sloped shape with the protruding end side gradually approaching rearward, and the width of the hook-shaped protrusion 12 is formed in a narrowed shape on the protruding end side. As a result, when performing submucosal detachment or the like, it is possible to easily perform operations such as moving a fibrous muscle or the like by hooking it on a hook-like projection.
FIG. 5 shows a state in which the scissors-type high-frequency treatment instrument for an endoscope configured as described above is passed through a treatment instrument guide tube (not shown) of the endoscope and used in the body for a submucosal layer peeling treatment or the like. After the incision treatment of the surface mucous membrane is completed, the fibrous muscle 31 between the surface mucosa and the underlying muscle layer is easily hooked on the hook-shaped protrusion 12 before applying the high-frequency current. It can be picked up and held securely by the pair of hooks 6A and 6B. Since the hook-shaped projection 12 is formed only on one of the pair of collar pieces 6A and 6B, the hook / projection operation can be easily performed (the hook-shaped projection 12 is a pair of collar pieces 6B). If it is formed on both 6A and 6B, the other hook-like projection 12 will obstruct and the hooking operation cannot be easily performed). And the filamentous streak 31 can be easily cut | disconnected by closing a pair of collar pieces 6A and 6B, and supplying a high frequency current.

その際に、鋏片6A,6Bの湾曲形状の外側の壁面を体内組織面30に接触させた状態で高周波処置を行うことにより、電極刃10A,10Bが周囲の正常な体内組織面30等に接触し難い状態になるので、高周波電流の通電により無用な組織損傷等が発生しない。
なお、本発明は第1の実施の形態に限定されるものではなく、図6に示される第2の実施の形態のように、鋏片6A,6Bの中間屈曲部分以外の部分を真っ直ぐに形成しても同様の作用効果が得られる。また、図7に示される第3の実施の形態のように、電極刃10A,10Bを、鋏片6A,6Bの中心線上ではなく、鋏片6A,6Bの湾曲の内側寄りの位置に偏位して配置すれば、電極刃10A,10Bが体内組織面30から遠ざかるので、電極刃10A,10Bが正常な体内組織面30に対してより接触し難い状態になり、無用な組織損傷等の恐れがさらに減少する。また、本発明は、一対の電極刃10A,10Bが高周波電源の正極と負極とに電気的に分離して接続されるいわゆるバイポーラ型の高周波処置具に適用することもできる。
At that time, the electrode blades 10A and 10B are applied to the surrounding normal body tissue surface 30 and the like by performing high-frequency treatment with the curved outer wall surfaces of the collar pieces 6A and 6B in contact with the body tissue surface 30. Since the contact is difficult, unnecessary tissue damage or the like does not occur due to energization of the high-frequency current.
The present invention is not limited to the first embodiment, and the portions other than the intermediate bent portions of the flange pieces 6A and 6B are formed straight as in the second embodiment shown in FIG. However, the same effect can be obtained. Further, as in the third embodiment shown in FIG. 7, the electrode blades 10A and 10B are displaced not to the center line of the collar pieces 6A and 6B but to the position closer to the inside of the curvature of the collar pieces 6A and 6B. If the electrode blades 10A and 10B are arranged away from the body tissue surface 30, the electrode blades 10A and 10B are less likely to come into contact with the normal body tissue surface 30, which may cause unnecessary tissue damage. Is further reduced. The present invention can also be applied to a so-called bipolar high-frequency treatment instrument in which a pair of electrode blades 10A and 10B are electrically separated and connected to a positive electrode and a negative electrode of a high-frequency power source.

本発明の第1の実施の形態に係る内視鏡用鋏型高周波処置具の高周波鋏部分の斜視図。The perspective view of the high frequency heel part of the scissors type | mold high frequency treatment tool for endoscopes which concerns on the 1st Embodiment of this invention. 本発明の第1の実施の形態に係る内視鏡用鋏型高周波処置具の先端付近の側面部分断面図。The side surface fragmentary sectional view near the front-end | tip of the scissors type | mold high frequency treatment tool for endoscopes which concerns on the 1st Embodiment of this invention. 本発明の第1の実施の形態に係る内視鏡用鋏型高周波処置具の先端付近の平面部分断面図。The plane fragmentary sectional view near the front-end | tip of the scissors type | mold high frequency treatment tool for endoscopes which concerns on the 1st Embodiment of this invention. 本発明の第1の実施の形態に係る内視鏡用鋏型高周波処置具の図2のA−A線において切断された断面の端面図。The end view of the cross section cut | disconnected in the AA of FIG. 2 of the scissors type | mold high frequency treatment tool for endoscopes which concerns on the 1st Embodiment of this invention. 本発明の第1の実施の形態に係る内視鏡用鋏型高周波処置具の使用状態図。The use condition figure of the scissors type high frequency treatment tool for endoscopes concerning a 1st embodiment of the present invention. 本発明の第2の実施の形態に係る内視鏡用鋏型高周波処置具の先端付近の平面部分断面図。The plane fragmentary sectional view near the front-end | tip of the scissors type | mold high frequency treatment tool for endoscopes which concerns on the 2nd Embodiment of this invention. 本発明の第3の実施の形態に係る内視鏡用鋏型高周波処置具の先端付近の平面部分断面図。The plane fragmentary sectional view near the front-end | tip of the scissors type | mold high frequency treatment tool for endoscopes which concerns on the 3rd Embodiment of this invention.

符号の説明Explanation of symbols

1…可撓性シース
2…シース外皮
4…操作ワイヤー
6A,6B…鋏片
8…支軸
10A,10B…電極刃
11…電気絶縁性被膜
12…フック状突起
S…先端面壁
DESCRIPTION OF SYMBOLS 1 ... Flexible sheath 2 ... Sheath outer skin 4 ... Operation wire 6A, 6B ... Gutter piece 8 ... Support shaft 10A, 10B ... Electrode blade 11 ... Electrical insulating coating 12 ... Hook-like protrusion S ... Tip surface wall

Claims (7)

内視鏡の処置具案内管に挿脱されるシースと、該シースの基端側からの操作によって後端側を回動支点にして先端側が円弧状に開閉するように向かい合って配置された一対の鋏片とを備え、該鋏片の外表面全体が電気絶縁材によって覆われている内視鏡用鋏型高周波処置具であって、
前記一対の鋏片は、前記一対の鋏片の円弧状開閉の軌跡により形成される平面に対して垂直方向に湾曲した形状に形成され、
前記各鋏片の長手方向に沿って前記湾曲の内側縁寄りの位置に細長く電気絶縁材を剥離して導通部分が露出形成された電極刃と、
前記一対の鋏片の一方の先端に閉じ方向に向かって前記電極刃より突出するフック状突起と、
を有することを特徴とする内視鏡用鋏型高周波処置具。
A pair of sheaths that are inserted into and removed from the treatment instrument guide tube of the endoscope , and a pair that is arranged so that the distal end side is opened and closed in a circular arc shape with the rear end side as a rotation fulcrum by operation from the proximal end side of the sheath A scissors-type high-frequency treatment instrument for an endoscope, wherein the entire outer surface of the scissors is covered with an electrical insulating material,
The pair of flanges is formed in a shape that is curved in a direction perpendicular to a plane formed by an arc-shaped opening / closing locus of the pair of flanges,
An electrode blade in which the conductive portion is exposed by stripping the electrical insulating material at a position near the inner edge of the curve along the longitudinal direction of each flange;
A hook-like protrusion protruding from the electrode blade toward the closing direction at one end of the pair of hook pieces;
A scissors-type high-frequency treatment instrument for an endoscope, comprising:
請求項1に記載された内視鏡用鋏型高周波処置具において、前記一対の鋏片の各々に形成された電極刃が、前記一対の鋏片を閉じたときに向かい合う位置関係に配置されている内視鏡用鋏型高周波処置具。 2. The scissors-type high-frequency treatment instrument for an endoscope according to claim 1, wherein electrode blades formed on each of the pair of scissors are arranged in a positional relationship facing each other when the pair of scissors are closed. Endoscopic high-frequency treatment tool for endoscopes. 請求項1又は2に記載された内視鏡用鋏型高周波処置具において、前記電極刃が前記鋏片の対向面から閉じ方向に突出して形成されている内視鏡用鋏型高周波処置具。 The scissors-type high-frequency treatment tool for endoscopes according to claim 1 or 2, wherein the electrode blades are formed so as to protrude from a facing surface of the scissors in a closing direction . 請求項3に記載された内視鏡用鋏型高周波処置具において、前記フック状突起が形成されていない方の鋏片に形成されている電極刃の先端がその鋏片の先端より後方に退避した位置に形成されていて、その電極刃の先端と鋏片の先端との間の部分の表面が電気絶縁されている内視鏡用鋏型高周波処置具。 4. The scissors-type high-frequency treatment instrument for endoscope according to claim 3 , wherein the tip of the electrode blade formed on the scissors on which the hook-shaped protrusion is not formed is retracted backward from the tip of the scissors. A scissors-type high-frequency treatment instrument for an endoscope, which is formed at the position where the surface of the portion between the tip of the electrode blade and the tip of the scissors is electrically insulated . 請求項1から4の何れかに記載された内視鏡用鋏型高周波処置具において、前記フック状突起の先端面壁が、前記フック状突起の突端側へ向かうにしたがって後方に退避する斜面状に形成されている内視鏡用鋏型高周波処置具。 5. The scissors-type high-frequency treatment instrument for an endoscope according to claim 1 , wherein a distal end surface wall of the hook-shaped protrusion has a slope shape that retreats backward toward the protruding end side of the hook-shaped protrusion. An endoscopic saddle-type high-frequency treatment tool that is formed . 請求項1から5の何れかに記載された内視鏡用鋏型高周波処置具において、前記一対の鋏片を支持する先端支持枠が前記シースの先端に軸線周りに回転自在に連結されていて、操作ワイヤーを軸周りに回転させることにより、前記一対の鋏片が前記先端支持枠と共に軸周りに回転する内視鏡用鋏型高周波処置具。 6. A scissors-type high-frequency treatment instrument for an endoscope according to claim 1, wherein a distal end support frame that supports the pair of scissors pieces is connected to the distal end of the sheath so as to be rotatable about an axis. , by rotating the operating wire around the axis, endoscopic scissors frequency treatment instrument of the pair of scissor pieces are you rotated around the axis together with the tip support frame. 請求項1から6の何れかに記載された内視鏡用鋏型高周波処置具において、前記フック状突起が、他方の電極刃の鋏片先端側を覆う内視鏡用鋏型高周波処置具。
The scissors-type high-frequency treatment tool for endoscopes according to any one of claims 1 to 6, wherein the hook-shaped protrusion covers a tip end side of a scissors piece of the other electrode blade .
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