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JP4390502B2 - Endoscopic high-frequency incision tool - Google Patents

Endoscopic high-frequency incision tool Download PDF

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JP4390502B2
JP4390502B2 JP2003302215A JP2003302215A JP4390502B2 JP 4390502 B2 JP4390502 B2 JP 4390502B2 JP 2003302215 A JP2003302215 A JP 2003302215A JP 2003302215 A JP2003302215 A JP 2003302215A JP 4390502 B2 JP4390502 B2 JP 4390502B2
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frequency incision
endoscope
distal end
frequency
electrode
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JP2005066140A (en
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輝雄 大内
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Hoya Corp
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Description

この発明は、高周波電流を通電して人体組織の粘膜等を切開するために内視鏡に取り付けて使用される内視鏡用高周波切開具に関する。   The present invention relates to a high-frequency incision tool for an endoscope that is used by being attached to an endoscope in order to incise a mucous membrane or the like of a human tissue by energizing a high-frequency current.

内視鏡用高周波切開具は一般に、内視鏡の処置具挿通チャンネルに挿通される電気絶縁性の可撓性シースの先端に高周波切開電極が取り付けられた構成になっているが、粘膜下等を切開している最中には高周波切開電極の先端が切開部の奥に潜ってしまうので、切開深さがよくわからず、人体組織を予定外の深さまで切開してしまうおそれがある。   In general, a high-frequency incision instrument for an endoscope is configured such that a high-frequency incision electrode is attached to the tip of an electrically insulating flexible sheath that is inserted into a treatment instrument insertion channel of an endoscope. Since the tip of the high-frequency incision electrode lies in the back of the incision while the incision is being incised, the incision depth is not well understood, and human tissue may be incised to an unplanned depth.

そこで、高周波切開電極を、粘膜下切開中に先端部分が粘膜の表面に露出するように屈曲した棒状に形成して、内視鏡観察画面で高周波切開電極の先端を確認しながら切開することができるようにしたもの等がある(例えば、特許文献1)。
特開2002−153485
Therefore, it is possible to form a high-frequency incision electrode in a rod shape that is bent so that the tip portion is exposed on the surface of the mucosa during submucosal incision, and incision can be performed while checking the tip of the high-frequency incision electrode on the endoscopic observation screen. There is what can be made (for example, Patent Document 1).
JP 2002-153485 A

しかし、特許文献1に記載された発明のように切開中に粘膜の表面に露出する高周波切開電極の先端を内視鏡観察画面で確認することができても、高周波切開電極によって現に切開されつつある粘膜下等の切開面をリアルタイムで観察することはできないので、必ずしも医学的に最適な所望の範囲を切開することができない場合があった。   However, even though the tip of the high-frequency incision electrode exposed on the surface of the mucous membrane can be confirmed on the endoscopic observation screen as in the invention described in Patent Document 1, the incision is actually made by the high-frequency incision electrode. Since an incision surface such as a submucosa cannot be observed in real time, there is a case where a desired medically optimal range cannot always be incised.

また、従来の内視鏡用高周波切開具で患部を切開処置するためには、まず内視鏡の先端部分を患部に対する処置に都合のよい位置に誘導してから、高周波切開具を内視鏡の挿入部先端から突き出して患部に対して正確に臨ませ、それから内視鏡の誘導操作と処置具の誘導操作を組み合わせて患部を切開する必要があり、操作が非常に煩雑であった。   In order to perform an incision treatment on an affected area with a conventional endoscopic high-frequency incision tool, first, the distal end portion of the endoscope is guided to a position convenient for treatment on the affected area, and then the high-frequency incision tool is inserted into the endoscope. Therefore, it is necessary to incise the affected part by combining the guidance operation of the endoscope and the guidance operation of the treatment instrument, and the operation is very complicated.

そこで本発明は、高周波切開電極によって現に切開されつつある粘膜下等の切開面をリアルタイムで観察しながら、医学的に最適な所望の範囲を簡潔な操作で容易かつ安全に切開することができる内視鏡用高周波切開具を提供することを目的とする。   Therefore, the present invention is capable of easily and safely incising a desired medically optimal range by a simple operation while observing in real time an incision surface such as a submucosa that is actually being incised by a high-frequency incision electrode. An object is to provide a high-frequency incision tool for an endoscope.

上記の目的を達成するため、本発明の内視鏡用高周波切開具は、観察窓が配置されている内視鏡の先端部本体の先端面を囲むように取り付けられるフードを有していて、フードには、先端部本体の先端面の外縁全周から前方に向かって突出する透明な筒状突出部が形成され、高周波切開電極が、筒状突出部の最先端面から前方に突出する位置で筒状突出部の最先端部分を横断する状態に筒状突出部に取り付けられているものである。   In order to achieve the above object, the endoscope high-frequency incision tool of the present invention has a hood attached so as to surround the distal end surface of the distal end main body of the endoscope in which the observation window is arranged, The hood is formed with a transparent cylindrical protruding portion that protrudes forward from the entire outer edge of the distal end surface of the tip body, and the high-frequency incision electrode protrudes forward from the most distal surface of the cylindrical protruding portion. And attached to the cylindrical projecting portion so as to cross the most distal end portion of the cylindrical projecting portion.

なお、フードが内視鏡の先端部本体に対して着脱自在であると取り扱いが容易である。
また、筒状突出部を先寄りの部分で偏平に押し潰した形状に形成して、その長軸方向に高周波切開電極を配置すると、高周波切開電極で切開された粘膜片を押し退け易く、筒状突出部の最先端面に、高周波切開電極を頂上とする斜面部分を形成すれば高周波切開電極で切開された粘膜片をさらに押し退け易くなる。
In addition, handling is easy if the hood is detachable from the distal end main body of the endoscope.
In addition, if the cylindrical protrusion is formed into a flat shape at the tip, and the high-frequency incision electrode is arranged in the long axis direction, the mucosal piece incised by the high-frequency incision electrode can be easily pushed away, and the cylindrical shape If a slope portion with the high-frequency incision electrode at the top is formed on the most distal surface of the protrusion, the mucosal piece incised by the high-frequency incision electrode can be further pushed away.

なお、高周波切開電極は、筒状突出部の最先端位置に間隔をあけて位置する二箇所を結ぶ線状に形成されていると切開に使用するのに向いており、高周波切開電極が導電性ワイヤであってもよい。その場合、導電性ワイヤが、筒状突出部の内側空間を通って、後方に引き出されていてもよい。   The high-frequency incision electrode is suitable for incision when it is formed in a line connecting two points spaced apart from the foremost position of the cylindrical protrusion, and the high-frequency incision electrode is conductive. It may be a wire. In that case, the conductive wire may be drawn backward through the inner space of the cylindrical protrusion.

また、高周波切開電極が、セラミック製のパイプを介して筒状突出部の最先端部分に取り付けられているとフードの耐熱上有利である。   In addition, it is advantageous in terms of heat resistance of the hood if the high-frequency cutting electrode is attached to the most distal end portion of the cylindrical protrusion via a ceramic pipe.

本発明によれば、透明な筒状突出部の最先端面から前方に突出する位置で筒状突出部の最先端部分を横断する状態に取り付けられた高周波切開電極付近とその周辺の、高周波切開電極によって現に切開されつつある粘膜下等の切開面をリアルタイムで観察することができるので、医学的に最適な所望の範囲を安全に切開することができ、しかも、高周波切開具単体の誘導操作を必要とせず、内視鏡の誘導操作だけの極めて簡潔で容易な操作でそれを行うことができる。   According to the present invention, the high-frequency incision in the vicinity of and around the high-frequency incision electrode attached in a state of crossing the most advanced portion of the cylindrical protrusion at a position protruding forward from the front-most surface of the transparent cylindrical protrusion Since the incision surface under the mucous membrane that is actually being incised by the electrode can be observed in real time, the desired medically optimal range can be safely incised, and the high-frequency incision unit alone can be guided. It is not necessary, and it can be performed with an extremely simple and easy operation only by the guidance operation of the endoscope.

観察窓が配置されている内視鏡の先端部本体の先端面を囲むように取り付けられるフードに、先端部本体の先端面の外縁全周から前方に向かって突出する透明な筒状突出部が形成され、導電ワイヤ状の高周波切開電極が、筒状突出部の最先端面から前方に突出する位置で筒状突出部の最先端部分を横断する状態に筒状突出部に取り付けられている。   A transparent cylindrical protrusion that protrudes forward from the entire outer edge of the distal end surface of the distal end body on the hood that is attached to surround the distal end surface of the distal end body of the endoscope in which the observation window is disposed. The formed conductive wire-shaped high-frequency incision electrode is attached to the cylindrical projecting portion so as to cross the most distal portion of the cylindrical projecting portion at a position projecting forward from the most distal surface of the cylindrical projecting portion.

図面を参照して本発明の実施例を説明する。
図1は、本発明の第1の実施例の内視鏡用高周波切開具が内視鏡50の先端部分に取り付けられた状態の側面断面図、図2は内視鏡用高周波切開具単体の側面断面図、図3と図4は、図2における矢視III図(正面図)と矢視IV図(底面図)である。
Embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a side sectional view of a state in which the endoscope high-frequency incision instrument according to the first embodiment of the present invention is attached to the distal end portion of the endoscope 50, and FIG. 3 and 4 are a side view III view (front view) and an arrow view IV view (bottom view) in FIG.

内視鏡50は、挿入部の先端を構成する円柱状の先端部本体51の先端面52に、前方を観察するための観察窓53が配置されたいわゆる前方視型内視鏡である。ただし、前方斜視型の内視鏡等であっても差し支えない。   The endoscope 50 is a so-called front-view endoscope in which an observation window 53 for observing the front is arranged on a distal end surface 52 of a columnar distal end main body 51 that constitutes the distal end of the insertion portion. However, it may be a front perspective type endoscope or the like.

観察窓53から取り入れられた被写体の光像は、対物光学系54により固体撮像素子55の撮像面(又はイメージガイドファイババンドルの端面)に投影される。56は処理具類を挿通させるための処置具挿通チャンネルであり、その出口が先端部本体51の先端面52に開口している。   The optical image of the subject taken in from the observation window 53 is projected onto the imaging surface of the solid-state imaging device 55 (or the end surface of the image guide fiber bundle) by the objective optical system 54. Reference numeral 56 denotes a treatment instrument insertion channel for allowing the treatment instruments to be inserted, and an outlet thereof opens to the distal end surface 52 of the distal end portion main body 51.

内視鏡50の挿入部は外力によって自由に屈曲する可撓管状に形成されているが、先端部本体51に隣接する挿入部の最先端寄りの部分は、挿入部の基端に連結されている操作部からの遠隔操作によって任意に屈曲させることができる湾曲部57になっている。その構成は公知なので、詳細な説明は省略する。   The insertion portion of the endoscope 50 is formed in a flexible tubular shape that is freely bent by an external force, but a portion closer to the most distal end of the insertion portion adjacent to the distal end portion main body 51 is connected to the proximal end of the insertion portion. The bending portion 57 can be arbitrarily bent by a remote operation from the operating portion. Since the structure is well-known, detailed description is abbreviate | omitted.

内視鏡用高周波切開具には、内視鏡50の先端部本体51の先端面52を囲む状態に先端部本体51に対して着脱自在に取り付けられる透明フード10が設けられている。透明フード10の材質としては、透明なアクリル樹脂又はポリカーボネート樹脂等を用いることができる。   The endoscope high-frequency incision tool is provided with a transparent hood 10 that is detachably attached to the distal end body 51 so as to surround the distal end surface 52 of the distal end body 51 of the endoscope 50. As a material of the transparent hood 10, a transparent acrylic resin or polycarbonate resin can be used.

透明フード10の後側半部は、先端部本体51の外周に対して被脱自在な円筒形に形成された着脱部12になっており、その内面に形成されている段部13に先端部本体51の先端面52が当接することにより先端部本体51に対して透明フード10が位置決めされる。   The rear half of the transparent hood 10 is a detachable portion 12 formed in a cylindrical shape that is detachable with respect to the outer periphery of the tip portion main body 51, and the tip portion is formed on the step portion 13 formed on the inner surface thereof. The transparent hood 10 is positioned with respect to the distal end main body 51 when the distal end surface 52 of the main body 51 abuts.

なお、この実施例においては、着脱部12が弾性変形を伴って先端部本体51に対してきつく被嵌されることにより透明フード10が先端部本体51から自然脱落しないようになっている。ただし、自然脱落防止用に、係合する突起と溝やその他の係合部材等を設けても差し支えない。   In this embodiment, the detachable portion 12 is tightly fitted to the tip portion main body 51 with elastic deformation, so that the transparent hood 10 does not fall off from the tip portion main body 51 naturally. However, it is possible to provide engaging protrusions and grooves, other engaging members, and the like to prevent natural dropout.

透明フード10の先側半部は、先端部本体51の先端面52の外縁全体から前方に向かって突出する筒状突出部11になっており、少なくとも筒状突出部11が透明であればよい。その筒状突出部11の先寄りの部分は偏平に押し潰された形状に形成されていて、筒状突出部11の最先端面15は図3に示されるように横長の長円形状になっている。ただし、楕円形状等であってもよい。   The front half of the transparent hood 10 is a cylindrical protrusion 11 that protrudes forward from the entire outer edge of the distal end surface 52 of the distal end body 51, and at least the cylindrical protrusion 11 only needs to be transparent. . The tip portion of the cylindrical projection 11 is formed in a flattened shape, and the most distal surface 15 of the cylindrical projection 11 is a horizontally long oval shape as shown in FIG. ing. However, it may be oval.

そして、筒状突出部11には、筒状突出部11の最先端面15から前方に突出する位置において筒状突出部11の最先端部分を長軸方向に横断する状態に高周波切開電極16が取り付けられている。したがって、高周波切開電極16付近とその周辺の状態を観察窓53から透明な筒状突出部11を通して観察することができる。対物光学系54の観察深度をそれに適するように設定するとよく、観察窓53から高周波切開電極16までの距離が例えば10mm強程度だと最も使用し易い。   The high-frequency cutting electrode 16 is provided in the cylindrical protruding portion 11 so as to cross the longest portion of the cylindrical protruding portion 11 in the major axis direction at a position protruding forward from the most distal surface 15 of the cylindrical protruding portion 11. It is attached. Therefore, the vicinity of the high-frequency incision electrode 16 and the surrounding state can be observed from the observation window 53 through the transparent cylindrical protrusion 11. The observation depth of the objective optical system 54 may be set so as to be suitable for it, and the distance from the observation window 53 to the high-frequency incision electrode 16 is, for example, about 10 mm or more, so that it is most easily used.

高周波切開電極16は導電性ワイヤにより形成されていて、筒状突出部11の最先端面15の左右両端付近に埋設されたセラミック製の耐熱性パイプ17内に挿通され、そのように間隔をあけて配置されている二つの耐熱性パイプ17の外端面の間に固定的に張り渡されている。高周波切開電極16は、図4に示されるようにやや前方に膨らんだ状態に配置されている。ただし、直線状に配置しても差し支えない。   The high-frequency incision electrode 16 is formed of a conductive wire, and is inserted into a ceramic heat-resistant pipe 17 embedded in the vicinity of the left and right ends of the most distal surface 15 of the cylindrical protrusion 11, so that there is a gap therebetween. Are fixedly stretched between the outer end surfaces of the two heat-resistant pipes 17 arranged. The high-frequency incision electrode 16 is arranged in a state of swelling slightly forward as shown in FIG. However, it may be arranged in a straight line.

高周波切開電極16に連なる導電性ワイヤ18は、耐熱性パイプ17の内端部分から透明フード10の内側の空間を通って後方に引き出され、使用時には内視鏡50の処置具挿通チャンネル56内を通過するように配置される。   The conductive wire 18 connected to the high-frequency incision electrode 16 is drawn backward from the inner end portion of the heat-resistant pipe 17 through the space inside the transparent hood 10, and is used in the treatment instrument insertion channel 56 of the endoscope 50 when used. Arranged to pass.

図5は、本発明の第1の実施例の内視鏡用高周波切開具を用いて人体組織100の粘膜下を切開する際のセッティングの状態を示しており、透明フード10から後方に引き出された導電性ワイヤ18は、内視鏡50の処置具挿通チャンネル56内を通過して高周波電源装置70の正極端子に接続される。高周波電源装置70の負極端子には生体組織100の外面に広い面積で接触配置される対極板71が接続される。58は内視鏡の挿入部、59は操作部である。   FIG. 5 shows a setting state when the submucosal portion of the human tissue 100 is incised using the endoscope high-frequency incision instrument according to the first embodiment of the present invention, and is pulled out rearward from the transparent hood 10. The conductive wire 18 passes through the treatment instrument insertion channel 56 of the endoscope 50 and is connected to the positive terminal of the high frequency power supply device 70. The negative electrode terminal of the high frequency power supply device 70 is connected to a counter electrode plate 71 arranged in contact with the outer surface of the living tissue 100 in a wide area. Reference numeral 58 denotes an endoscope insertion portion, and 59 denotes an operation portion.

図6は、本実施例の内視鏡用高周波切開具を用いて内視鏡的粘膜剥離術(EMR)を施行している状態を示しており、高周波切開電極16を生体組織100の粘膜面に押し当てて高周波電流を通電することにより、粘膜下を切開することができる。   FIG. 6 shows a state in which endoscopic mucosal dissection (EMR) is performed using the endoscopic high-frequency incision instrument of this embodiment, and the high-frequency incision electrode 16 is placed on the mucosal surface of the living tissue 100. It is possible to make an incision under the mucous membrane by applying a high-frequency current while being pressed against.

その際に、高周波切開具単体の誘導操作を行う必要がなく、内視鏡の誘導操作を行うだけで高周波切開電極16を所望の患部に誘導することができ、高周波切開電極16付近とその周辺の切開される粘膜の切開面の状態を、筒状突出部11の最先端面15で押し広げ、透明な筒状突出部11を透過してリアルタイムで観察しながら切開処置を行うことができる。   At this time, it is not necessary to perform the guiding operation of the high-frequency incision tool alone, and the high-frequency incising electrode 16 can be guided to a desired affected area only by performing the guiding operation of the endoscope. The state of the incision surface of the mucous membrane to be incised can be expanded by pushing the front end surface 15 of the cylindrical projection 11 and observed through the transparent cylindrical projection 11 in real time.

そして、内視鏡50の湾曲部57を湾曲操作して、内視鏡50の挿入部先端の向きを変えることにより、高周波切開電極16による切開深さを遠隔的に容易に調整することができる。このようにして、従来困難とされていた粘膜面と筋層との間のすじ等を正確に切断して粘膜を剥離することができる。   Then, by operating the bending portion 57 of the endoscope 50 to change the direction of the distal end of the insertion portion of the endoscope 50, the incision depth by the high-frequency incision electrode 16 can be easily adjusted remotely. . In this way, the mucous membrane can be peeled off by accurately cutting the streaks between the mucosal surface and the muscle layer, which has been considered difficult in the past.

なお、筒状突出部11の最先端面15の下端位置15′と高周波切開電極16との間の間隔Dを適切に設定することにより、粘膜下を深く切開し過ぎないようにすることができる。   Note that, by appropriately setting the distance D between the lower end position 15 ′ of the foremost surface 15 of the cylindrical protrusion 11 and the high-frequency incision electrode 16, it is possible to prevent incision deeply under the mucous membrane. .

図7は、本発明の第2の実施例の内視鏡用高周波切開具を示しており、筒状突出部11の最先端面15に高周波切開電極16を頂上とする斜面部分を形成したものである。このようにすることにより、高周波切開電極16で切開された粘膜片を側方に押し退け易くなる。   FIG. 7 shows a high-frequency incision instrument for an endoscope according to a second embodiment of the present invention, in which a slope portion with the high-frequency incision electrode 16 as the top is formed on the most distal surface 15 of the cylindrical projection 11. It is. By doing in this way, it becomes easy to push away the mucosa piece incised by the high-frequency incision electrode 16 to the side.

なお、本発明は上記各実施例に限定されるものではなく、例えば高周波切開電極16は必ずしもワイヤである必要はなくどのような導電部材を用いても差し支えない。   The present invention is not limited to the above embodiments. For example, the high-frequency incision electrode 16 does not necessarily need to be a wire, and any conductive member may be used.

本発明の第1の実施例の内視鏡用高周波切開具が内視鏡の先端部分に取り付けられた状態の側面断面図である。It is side surface sectional drawing of the state in which the high frequency incision tool for endoscopes of the 1st Example of this invention was attached to the front-end | tip part of an endoscope. 本発明の第1の実施例の内視鏡用高周波切開具単体の側面断面図である。It is side surface sectional drawing of the high frequency cutting tool for endoscopes of the 1st Example of this invention. 本発明の第1の実施例の内視鏡用高周波切開具単体の正面図(図2における矢視III図)である。It is a front view (arrow III figure in FIG. 2) of the high frequency incision tool for endoscopes of the 1st Example of this invention. 本発明の第1の実施例の内視鏡用高周波切開具単体の底面図(図2における矢視IV図)である。FIG. 3 is a bottom view of the endoscope high-frequency incision tool according to the first embodiment of the present invention (an arrow IV view in FIG. 2). 本発明の第1の実施例の内視鏡用高周波切開具を用いて人体組織の粘膜下を切開する際のセッティング状態の略示図である。It is a schematic diagram of the setting state at the time of incising the submucosa of a human body tissue using the endoscope high frequency incision instrument of the 1st example of the present invention. 本発明の第1の実施例の内視鏡用高周波切開具の使用状態の側面断面図である。It is side surface sectional drawing of the use condition of the high frequency incision tool for endoscopes of the 1st Example of this invention. 本発明の第2の実施例の内視鏡用高周波切開具が内視鏡の先端部分に取り付けられた状態の側面断面図である。It is side surface sectional drawing of the state in which the high frequency incision tool for endoscopes of the 2nd Example of this invention was attached to the front-end | tip part of an endoscope.

符号の説明Explanation of symbols

10 透明フード
11 筒状突出部
12 着脱部
15 最先端面
16 高周波切開電極
17 耐熱性パイプ
18 導電性ワイヤ
50 内視鏡
51 先端部本体
52 先端面
53 観察窓
56 処置具挿通チャンネル
DESCRIPTION OF SYMBOLS 10 Transparent hood 11 Cylindrical protrusion 12 Detachable / detachable part 15 State-of-the-art surface 16 High frequency incision electrode 17 Heat-resistant pipe 18 Conductive wire 50 Endoscope 51 End part main body 52 End face 53 Observation window 56 Treatment instrument insertion channel

Claims (5)

観察窓が配置されている内視鏡の先端部本体の先端面を囲むように取り付けられるフードを有していて、上記フードには、上記先端部本体の先端面の外縁全周から前方に向かって突出する透明な筒状突出部が形成され、高周波切開電極が、上記筒状突出部の最先端面から前方に突出する位置で上記筒状突出部の最先端部分を横断する状態に上記筒状突出部に取り付けられた内視鏡用高周波切開具であって、
上記高周波切開電極が、導電性ワイヤで形成されて、上記筒状突出部の最先端位置に間隔をあけて位置する二箇所を結んで配置されると共に、その二箇所の各々から上記筒状突出部内に引き込まれた二本の導電性ワイヤが一本に撚り合わされ、その撚り合わされた二本の導電性ワイヤが、上記先端部本体の先端面に開口する処置具挿通チャンネル内に直接挿通されるようになっていることを特徴とする内視鏡用高周波切開具。
The hood has a hood attached to surround the distal end surface of the distal end body of the endoscope in which the observation window is arranged, and the hood faces forward from the entire outer edge of the distal end surface of the distal end body. A transparent cylindrical projecting portion projecting from the tube, and the high-frequency incision electrode traverses the most distal portion of the tubular projecting portion at a position projecting forward from the most distal surface of the tubular projecting portion. An endoscopic high-frequency incision tool attached to the protruding portion ,
The high-frequency incision electrode is formed of a conductive wire, and is arranged by connecting two positions that are spaced apart from the most distal position of the cylindrical protruding portion, and the cylindrical protruding from each of the two positions. Two conductive wires drawn into the part are twisted into one, and the two twisted conductive wires are directly inserted into the treatment instrument insertion channel that opens at the distal end surface of the distal end body. A high-frequency incision tool for an endoscope, characterized by being configured as described above .
上記フードが上記内視鏡の先端部本体に対して着脱自在である請求項1記載の内視鏡用高周波切開具。   The high-frequency incision tool for an endoscope according to claim 1, wherein the hood is detachable from a distal end main body of the endoscope. 上記筒状突出部が、先寄りの部分で偏平に押し潰された形状に形成されていて、その長軸方向に上記高周波切開電極が配置されている請求項1又は2記載の内視鏡用高周波切開具。   The endoscope for an endoscope according to claim 1 or 2, wherein the cylindrical projecting portion is formed in a flattened shape at a tip portion, and the high-frequency incision electrode is disposed in a major axis direction thereof. High frequency incision tool. 上記筒状突出部の最先端面が、上記高周波切開電極を頂上とする斜面部分を有している請求項1、2又は3記載の内視鏡用高周波切開具。   The high-frequency incision tool for endoscopes according to claim 1, 2 or 3, wherein the most distal surface of the cylindrical projecting portion has a slope portion with the high-frequency incision electrode as a top. 上記高周波切開電極が、セラミック製のパイプを介して上記筒状突出部の最先端部分に取り付けられている請求項1ないしのいずれかの項に記載の内視鏡用高周波切開具。 The high-frequency incision tool for endoscopes according to any one of claims 1 to 4 , wherein the high-frequency incision electrode is attached to a foremost portion of the cylindrical protrusion through a ceramic pipe.
JP2003302215A 2003-08-27 2003-08-27 Endoscopic high-frequency incision tool Expired - Fee Related JP4390502B2 (en)

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