JP2005027851A - Endoscope - Google Patents

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Publication number
JP2005027851A
JP2005027851A JP2003195916A JP2003195916A JP2005027851A JP 2005027851 A JP2005027851 A JP 2005027851A JP 2003195916 A JP2003195916 A JP 2003195916A JP 2003195916 A JP2003195916 A JP 2003195916A JP 2005027851 A JP2005027851 A JP 2005027851A
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Prior art keywords
led illumination
adapter
distal end
heat
ccd
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JP2003195916A
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JP2005027851A5 (en
JP4391772B2 (en
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Yasuo Hirata
康夫 平田
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Olympus Corp
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Olympus Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an endoscope in which the problem due to heat generated by an LED illumination arranged at a front end of an insertion portion is overcome and good long time observation can be carried out. <P>SOLUTION: A lens cover 21 for photographing and a lens cover 22 for illuminating provided to an adapter 20 for observation are arranged in an adapter body 23 being a radiating means formed of a radiating member having high thermal conductivity. A center protruding portion 23c protruding into an inner space side is disposed in the adapter body 23. Whereas, a front end rigid section 2a includes a front end body 11, a CCD protecting tube 12 being an overheat preventing means formed of a substantially tubular heat insulating member, a CCD 13 arranged in the through hole of the CCD protecting tube 12, a CCD protecting plate 14 being an overheat preventing means arranged in the front end surface of the front end body 11 and formed of a thin plate link-like heat insulation member, the LED illumination 15, and an LED illumination fixing member 16 for fixing and arranging the LED illumination 15 and the CCD protecting plate 14 onto the front end body 11. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は長尺の挿入部の先端側に流体圧アクチュエータで構成した湾曲部を備えた、工業用、医療用に適用される内視鏡に関する。
【0002】
【従来の技術】
一般に、工業用、医療用に適用可能な内視鏡には、管腔内に挿入される柔軟で長尺な挿入部が設けられている。そして、このタイプの内視鏡には、挿入部の先端部側に湾曲部が配設されている。この湾曲部は、湾曲操作によって湾曲されて、観察方向を任意の方向に向けられるようになっている。
【0003】
工業用の内視鏡装置においては、挿入部を30メートル又は、それ以上に挿入することが要求されることがある。その場合、内視鏡の湾曲部を湾曲動作させる湾曲機構を、湾曲ワイヤを牽引操作するタイプで構成した場合、湾曲ワイヤと他部材との間に発生する摺動抵抗等によって、湾曲部を使用者の所望する状態に湾曲させることが困難になるおそれがあった。このため、空気等の流体を供給することによって湾曲部を湾曲動作させる流体圧アクチュエータを、この湾曲部に設けた内視鏡が提案されている。
【0004】
また、一般的な内視鏡装置では、内視鏡の外部装置として光源装置を用意し、この光源装置で発する照明光を内視鏡の挿入部内に配設したライトガイドに供給し、このライトガイドによって伝送された照明光を内視鏡の挿入部先端に配置した照明窓から出射させて観察部位を照らすようにしていた。この場合、挿入部が長尺になるにしたがって伝達される照明量が減衰されて、照明窓から出射される光量が減少して十分な観察を行えなくなるという不具合が発生する。
【0005】
近年では、観察部位を照明するライトガイドファイバを挿入部内に配設する代わりに、発光素子である例えばLED照明を挿入部先端側に配置し、このLED照明の発する照明光で観察部位を照らすようにした内視鏡も提案されている。
【0006】
【発明が解決しようとする課題】
しかしながら、LED照明を配置した内視鏡では観察状況に応じた明るさの確保が難しい。このため、内視鏡の先端部に観察状況に応じた観察用アダプタを装着して所望の明るさを確保するようにしていたが、LED照明の発する熱によって高温になることにより、長時間の使用が困難になる等の不具合が発生するおそれがあった。
【0007】
加えて、前記LED照明から発生する熱が撮像素子に熱伝導されると、この撮像素子の温度が上昇して内視鏡画像にノイズを発生する等の内視鏡画像に不具合が生じるおそれがある。
【0008】
本発明は上記事情に鑑みてなされたものであり、挿入部先端部に配置したLED照明から発生する熱による不具合を防止して、良好な観察を長時間に渡って行える内視鏡を提供することを目的にしている。
【0009】
【課題を解決するための手段】
本発明の内視鏡は、細長な挿入部の先端側に流体圧アクチュエータによる湾曲部を備え、この湾曲部の先端側に連設する先端部に着脱自在な観察用アダプタを配設して、LED照明で照らされる観察部位を撮像素子で撮像して内視鏡画像を取得する内視鏡であって、
前記LED照明で発生した熱を放熱させる放熱手段又は前記撮像素子が前記LED照明の発生する熱で過熱されることを防止する過熱防止手段を設けている。
【0010】
また、前記過熱防止手段は、前記撮像素子と前記LED照明との間に配置される前記先端部の一部を構成する断熱部材である。
【0011】
さらに、前記観察用アダプタの一部を放熱手段である放熱部材で構成している。
【0012】
又、前記先端部に、前記放熱手段及び過熱防止手段を兼ねる、前記LED照明で発生した熱を前記流体圧アクチュエータの一部に熱伝導させる熱伝導部材を設けている。
【0013】
また、前記放熱手段又は過熱防止手段は、前記LED照明から延出する電気ケーブルが挿通する管路を含む流体路である。
【0014】
さらに、前記流体圧アクチュエータに、前記前記放熱手段及び過熱防止手段を兼ね、前記LED照明から延出する電気ケーブルが挿通する管路を設け、この管路内に冷却用流体を循環させる。
【0015】
これらの構成によれば、LED照明から発生する熱の一部を放熱するとともに、LED照明から発生する熱によって撮像素子が加熱されることを防止する。
【0016】
【発明の実施の形態】
以下、図面を参照して本発明の実施の形態を説明する。
図1ないし図6は本発明の第1実施形態に係り、図1は内視鏡装置の構成を説明する図、図2は観察用アダプタ及び先端硬質部の一構成を説明する図、図3は湾曲部を構成する流体圧アクチュエータを説明する図、図4は流体圧アクチュエータを形成する工程を説明する図、図5は観察用アダプタを先端硬質部に装着した状態の内視鏡の先端側の構成を説明する図、図6は観察用アダプタ及び先端硬質部の他の構成例を説明する図である。
【0017】
なお、図2(a)は観察用アダプタを説明する図、図2(b)は先端硬質部を説明する図、図3(a)はマルチルーメンチューブを説明する図、図3(b)は内コイルを説明する図、図3(c)は内チューブを説明する図、図3(d)は排気チューブを説明する図、図3(e)は挿入部側流体供給チューブを説明する図、図3(f)は外チューブを説明する図、図3(g)は前口金を説明する図、図3(h)は後口金を説明する図、図3(i)は外コイルを説明する図、図4(a)はマルチルーメンチューブの中央貫通孔に内チューブを被覆した内コイルを配置状態を示す図、図4(b)は配置チューブ及び挿入部側チューブを配置した状態を示す図、図4(c)は外チューブを被覆配置した状態を示す図、図4(d)は口金を配置した状態を示す図、図6(a)は観察用アダプタの他の構成を説明する図、図6(b)は先端硬質部の他の構成を説明する図である。
【0018】
図1に示すように本実施形態の内視鏡装置1は、細長な挿入部2の先端部に後述するCCDを内蔵した電子式の内視鏡3と、この内視鏡3の挿入部2を巻回するドラム部4とで主に構成されている。なお、符号10はドラム部4を構成する上フランジ4aに配置された例えばLCDモニタであり、このLCDモニタ10には前記内視鏡3でとらえた内視鏡画像が表示されるようになっている。
【0019】
前記内視鏡3の挿入部2は、先端側から順に先端部を構成する先端硬質部2aと、この先端硬質部2aに連設する湾曲部2bと、この湾曲部2bに連設する可撓管部2cとで構成されている。前記先端硬質部2aには観察用アダプタ20が着脱自在に配置されるようになっている。前記湾曲部2bは、後述する流体圧アクチュエータを備えて構成される。前記可撓管部2cは、前記湾曲部2bに連接する柔軟で長尺な可撓性部材で構成される。
【0020】
前記観察用アダプタ20の例えば中央部には撮像光学系を構成する撮像用レンズカバー21が配置され、この撮像用レンズカバー21の周囲には複数の照明光学系を構成する照明用レンズカバー22が配置されている。
【0021】
前記ドラム部4は例えばボビン形状であり、円盤状の上フランジ4a、前記挿入部2が巻回される管状の挿入部巻回部4b、円盤状の下フランジ4c及びこの下フランジ4cの一面側に配置されるゴム足4dとで構成されている。なお、符号4eは支持棒である。
【0022】
前記上フランジ4aにはモニタ固定部材10Aを介して前記LCDモニタ10が配置されるようになっている。また、この上フランジ4aにはバッテリ収納部に設けられたバッテリ用蓋部7a、ボンベ収納部に設けられたボンベ用蓋部7bが開閉自在に配置されている。さらに、この上フランジ4aには前記内視鏡3の湾曲部2bの湾曲操作指示を行うジョイスティック8a等を備えたリモートコントローラ(以下、リモコンと略記する)8から出射される例えば通信用光線を受光する受光部9が設けられている。
【0023】
前記挿入部巻回部4b内には図示しない仕切り板が配置され、この仕切り板には前記バッテリ、前記ガスボンベ、前記リモコン8の湾曲操作指示にしたがって前記ガスボンベから流体圧アクチュエータに供給する流体の制御を行う流体供給量制御部、前記CCDを駆動する駆動信号やこのCCDから伝送された画像信号を映像信号に変換するCCU等が配置されている。
【0024】
図2(a)に示すように前記観察用アダプタ20に設けられる前記撮像用レンズカバー21及び前記照明用レンズカバー22は、熱伝導率の高い放熱部材である金属製筒状部材で形成された放熱手段であるアダプタ本体23の所定位置に配置されるようになっている。このアダプタ本体23には内部空間側に突出した中央凸部23cが設けられている。
【0025】
具体的に、前記アダプタ本体23には前記撮像光学系を構成する前記撮像用レンズカバー21及び複数の光学レンズ24が配置される撮像用透孔23aと、前記照明光学系を構成する前記照明用レンズカバー22及び複数の光学レンズ25が配置される照明用透孔23bとが形成されている。そして、それぞれの透孔23a、23bにレンズカバー21、22及び光学レンズ24、25が配置される。
【0026】
前記アダプタ本体23の基端部内周面には前記挿入部2の先端硬質部2aを構成する先端部本体11の外周面に形成された後述する雄ネジ部(図中の符号11a)に螺合する雌ネジ部26が形成されている。
【0027】
一方、図2(b)に示すように前記先端硬質部2aは、略管状の前記先端部本体11と、この先端部本体11の貫通孔内に配置される略管状の断熱部材で形成した過熱防止手段であるCCD保護管12と、このCCD保護管12の透孔内所定位置に配置される撮像光学系を構成する撮像素子であるCCD13と、前記先端部本体11の先端面に配置される薄板リンク状の断熱部材で形成した過熱防止手段であるCCD保護板14と、このCCD保護板14の一面側に配置される複数のLED照明15と、これらLED照明15及び前記CCD保護板14を前記先端部本体11上に固定配置させる略管状のLED照明固定部材16とで主に構成されている。
【0028】
前記観察用アダプタ20は焦点距離や視野角の異なるものが複数種類用意されている。このため、観察目的に応じた最適な観察用アダプタ20を内視鏡3に交換配置させることによって、最適な内視鏡画像がLCDモニタ10の画面上に表示される。
【0029】
なお、前記LED照明固定部材16は、前記先端部本体11に例えば接着によって一体的に固定されるようになっている。また、符号17はCCD13から延びる信号線、符号18はLED照明15から延びる電気ケーブルであり、挿入部2内を挿通して挿入部巻回部4b内に延出している。さらに、符号11bは後述する湾曲部2bを構成する流体圧アクチュエータ30が配置される連結凸部である。
【0030】
図3(a)ないし図5を参照して湾曲部2bを構成する流体圧アクチュエータ30の構成を説明する。
図3(a)ないし図3(i)に示すように流体圧アクチュエータ30は、柔軟なシリコン材で形成した断面形状が略円形状で流体室を構成する4つの透孔31a、31b、31c、31dと、中央部に軸方向に対して平行な中央貫通孔31eとを有するマルチルーメンチューブ31と、このマルチルーメンチューブ31の中央貫通孔31eに挿通配置される内側管状部材である例えばステンレス製の第1コイルである内コイル33及びこの内コイル33の外周側に被覆配置されて前記マルチルーメンチューブ31が内コイル33の線間に挟み込まれて破損することを防止する例えばフッ素製の薄肉チューブで形成された内側薄肉チューブ(以下、内チューブと略記する)37と、前記マルチルーメンチューブ31の4つの透孔31a、31b、31c、31dの基端側に配置される先端部を図に示すような先細形状に形成した、例えばテフロン(登録商標)製の挿入部側流体供給チューブ(以下、挿入部側チューブと略記する)32a、32b、32c、32dと、外側管状部材である前記マルチルーメンチューブ31の先端部を被覆する段付き形状の前口金34、前記マルチルーメンチューブ31の基端部を被覆する段付き形状の後口金35、前記マルチルーメンチューブ31の外周側を被覆する例えばステンレス製の第2コイルである外コイル36及び前記マルチルーメンチューブ31の外周側に被覆配置されてこのマルチルーメンチューブ31が外コイル36の線間に挟み込まれて破損することを防止する例えばフッ素製の薄肉チューブで形成された外側薄肉チューブ(以下、外チューブと略記する)38と、排気手段となる例えば管状の金属部材で形成した前記マルチルーメンチューブ31と内チューブ37との間、及び前記マルチルーメンチューブ31と外チューブ38との間にそれぞれ配置される排気チューブ39とで主に構成されている。
【0031】
なお、前記内チューブ37及び外チューブ38は、上述したとおり内コイル33若しくは外コイル36の線間にマルチルーメンチューブ31が挟み込まれて穴あき等の不具合が発生することを防止する他に、このマルチルーメンチューブ31が軽油等に触れて膨潤を起こす等の不具合を防止する。
【0032】
図4(a)ないし図5を参照して流体圧アクチュエータ30の構成手順の一例を説明する。
まず、前記内チューブ37を内コイル33に被せる。そして、この状態の内コイル33を、図4(a)に示すように前記マルチルーメンチューブ31の中央貫通孔31e内に挿入配置する。
【0033】
次に、図4(b)に示すように前記マルチルーメンチューブ31の透孔31a、31b、31c、31dの先端側に例えばシリコン接着剤等を流し込んで、先端側開口を閉塞する閉塞部40を形成する。また、前記中央貫通孔31eの先端側と内チューブ37との間に前記排気チューブ39を配置し、その後、マルチルーメンチューブ31の先端側に先端側糸巻き固定部41aを形成する。このことによって、前記排気チューブ39及び内チューブ37の被覆されている内コイル33が前記マルチルーメンチューブ31の先端側に一体的に配置される。
【0034】
さらに、前記透孔31a、31b、31c、31dの基端側開口に前記挿入部側チューブ32a、32b、32c、32dの先細部を配置し、透孔31a、31b、31c、31dと挿入部側チューブ32a、32b、32c、32dとの隙間を例えばシリコン接着剤等で塞ぐ。その後、マルチルーメンチューブ31の基端側に基端側糸巻き固定部41bを形成して、前記挿入部側チューブ32a、32b、32c、32dをマルチルーメンチューブ31の基端側に一体的に配置する。
【0035】
このことによって、前記マルチルーメンチューブ31の透孔31a、31b、31c、31dが空間部として形成されるとともに、それぞれの空間部と外部とが前記挿入部側チューブ32a、32b、32c、32dによって連通状態になって、それぞれ流体室(図5の符号42を参照)として構成される。
【0036】
次いで、図4(c)に示すように前記外チューブ38を前記マルチルーメンチューブ31の外周面側に被覆配置する。また、先端側の外チューブ38とマルチルーメンチューブ31との間に排気チューブ39を配置する。その後、このマルチルーメンチューブ31の先端側に先端側糸巻き固定部41cを形成して前記外チューブ38をマルチルーメンチューブ31に一体的に配置する。
【0037】
その後、図4(d)に示すように前記外チューブ38を配置した状態のマルチルーメンチューブ31の先端側に前口金34を被覆配置するとともに前記後口金35を基端側に被覆配置する。このとき、後口金35、前口金34の順にマルチルーメンチューブ31の先端側から口金35、34をそれぞれ挿通していく。
【0038】
また、前記外コイル36を外チューブ38が配置されている状態のマルチルーメンチューブ31の外周側に配置する。このとき、図中の一点鎖線に示すように外コイル36の先端部を前記前口金34のコイル配置部34a上に配置するとともに、基端部を前記後口金35のコイル配置部35a上に配置する。このことによって、流体圧アクチュエータ30が構成される。
【0039】
そして、上述のように構成した流体圧アクチュエータ30を、図5に示すように前記先端硬質部2aを構成する先端部本体11の連結凸部11bの外周部に配置固定する。
【0040】
なお、符号43は湾曲部2bの最外装を構成する金属網管で形成した湾曲カバーであり、先端部が前記前口金34のカバー配置部34b上に配置され、基端部が前記後口金35のカバー配置部35b上に配置される。このことによって、前記先端硬質部2aの基端側に湾曲部2bが連結配置される。
【0041】
また、本実施形態においてはマルチルーメンチューブ31の中央貫通孔31eの周囲に4つの透孔31a、31b、31c、31dを規則的に配列させた構成を示しているが、透孔の数は湾曲方向及び湾曲させたい形状等によって設定されるものであるので、4つに限定されるものではなく、それ以上であっても、それ以下であってもよい。
【0042】
さらに、前記後口金35は前記可撓管部2cの先端部に配置される図示しない連結口金の外周部に配置固定される。このことによって、前記湾曲部2bの基端側に可撓管部2cが連結配置される。
【0043】
ここで、前記図5を参照して観察用アダプタ20の先端硬質部2aへの着脱について説明する。
まず、内視鏡3の先端硬質部2aに観察に最適な観察用アダプタ20の開口を対向させる。次に、この観察用アダプタ20の内周面を先端硬質部2aの外周面側に配置し、その後、前記先端硬質部2aの雄ネジ部11aに対して前記観察用アダプタ20の雌ネジ部26を螺合し、固定状態にする。
【0044】
このとき、前記観察用アダプタ20の撮像光学系を構成する前記撮像用レンズカバー21及び複数の光学レンズ24がCCD13の前面所定位置に配置されるとともに、前記照明光学系を構成する前記照明用レンズカバー22及び複数の光学レンズ25が前記LED照明15の前面所定位置に配置された状態になる。
【0045】
前記LED照明15にバッテリからの電力が供給されることにより、LED照明15は点灯状態になる。そして、これらLED照明15から発せられた照明光は、光学レンズ25及び照明用レンズカバー22を通過して観察部位を照らす。このとき、これらLED照明15からは熱が発生する。
【0046】
これらLED照明15から発生する熱は、熱伝導率の高い例えばアルミニウムで形成されたアダプタ本体23から外部に積極的に放熱されていく。また、前記CCD13が断熱部材で形成されたCCD保護板14及びCCD保護管12によって覆われた状態になっているので、このCCD13に前記LED照明15で発生した熱が伝達されることが防止される。このことによって、LCDモニタ10の画面上には、アダプタ20を通して観察された内視鏡画像が長時間に渡って表示される。
なお、前記観察用アダプタ20を先端硬質部2aから取り外す際には上述した手順と逆の手順で行う。
【0047】
このように、LED照明を先端部に配置するとともにCCDを内蔵した先端部本体に着脱自在で、照明光学系及び観察光学系を構成するレンズカバー及び光学レンズが配置されるアダプタ本体を熱伝導率の高い部材で形成してLED照明で発生した熱をアダプタ本体を介して積極的に外部に放熱する一方、CCDを断熱部材で形成したCCD保護管内に配置するとともに、このCCD保護管の先端面側とLED照明の基端面側との間に断熱部材で形成したCCD保護板を配置することによって、LED照明で発生した熱によって観察用アダプタ及び先端硬質部が温度上昇すること及びLED照明で発生する熱のCCDへの熱伝導が防止されて、十分な照明光量の元で、良好な内視鏡画像の観察を長時間に渡って行うことができる。
【0048】
なお、図6(b)に示すように先端硬質部2aを構成する先端部本体11の所定の位置に前記LED照明15と電気的に接続された第1電極11c及び前記電気ケーブル18に電気的に接続された第2電極11dを設ける一方、図6(a)に示すように観察用アダプタ20Aの所定位置に前記第1電極11cと前記第2電極11dとを電気的な接続状態にする板ばね27を設ける構成にしてもよい。ここで、符号28は内周面に雌ネジ部28aを形成したアダプタ本体23Aに対して回動自在な連結部材であり、符号29はアダプタ本体23Aの内周面と先端部本体11の外周面との間の水密を保持するOリングである。
【0049】
上述のように先端硬質部2a及び観察用アダプタ20Aを構成したことによって、前記板ばね27と第1電極11c及び第2電極11dとを位置合わせした状態にして、観察用アダプタ20Aの内周面を先端硬質部2aの外周面側に配置させ、この状態で連結部材28の雌ネジ部28aを先端硬質部2aの雄ネジ部11aに螺合して一体固定する。このことによって、第1電極11cと第2電極11dとが板ばね27を介して電気的に導通した状態になる。
【0050】
つまり、本実施形態においては先端硬質部2aに観察用アダプタ20Aが配置固定されて、第1電極11cと第2電極11dとが板ばね27によって電気的に導通されたときにだけ、バッテリーの電力をLED照明に供給して、LED照明15を点灯状態にすることができる。
【0051】
このことによって、観察用アダプタを交換しているとき等に、誤って、バッテリーからの電力がLED照明に供給されて、LED照明が点灯状態になることをなくして、バッテリーの浪費が確実に防止される。
【0052】
図7は本発明の第2実施形態にかかる観察用アダプタ及び先端硬質部の別の構成を説明する図であり、図7(a)は観察用アダプタを先端硬質部に装着した状態の内視鏡の先端側の構成を説明する図、図7(b)は図7(a)のA−A線断面図である。
【0053】
図7(a)に示すように本実施形態の観察用アダプタ20Bにおいては前記アダプタ本体23、23Aに示した内部空間側に突出した中央凸部23cを省いて、内部空間の底面を平面に形成したアダプタ本体23Bにしている。そして、このアダプタ本体23Bに撮像用透孔23a及び照明用透孔23bを形成し、それぞれの透孔23a、23bにレンズカバー21、22及び光学レンズ24、25を配置している。
【0054】
一方、前記先端硬質部2aは、略管状の前記先端部本体51と、この先端部本体51の貫通孔内に配置されるCCD13と、この先端部本体51の一面側に配置される複数のLED照明15と、これらLED照明15を前記先端部本体51上に固定配置させる略管状で中央部に観察光学系を構成する光学レンズ24を配置したLED照明固定部材52とで主に構成されている。
【0055】
なお、前記LED照明固定部材52は、前記先端部本体51に例えば接着によって一体的に固定される。符号51aは前記雌ネジ部26と螺合する雄ネジ部であり、符号51bは前記流体圧アクチュエータ30が配置される連結凸部である。その他の構成は前記第1実施形態と同様であり、同部材には同符号を付して説明を省略する。
【0056】
本実施形態においては、前記先端部本体51の貫通孔周囲の所定位置に図7(a)及び図7(b)に示すように複数の透孔51cが形成してある。そして、この透孔51c内に前記LED照明15で発生した熱を伝導する放熱部材を兼ねる例えば熱伝導率の高い銅線やアルミ線で構成した放熱手段及び過熱防止手段とを兼ねる第1熱伝導部材53を挿通配置している。
【0057】
前記第1熱伝導部材53の先端側は前記LED照明15に固設されており、基端部は前口金34Aに形成された内周凸部34cに一体的に固定された内リング部材54に固設されている。この内リング部材54に固設された第1熱伝導部材53には熱伝導率の高い銅線等で形成した放熱手段及び過熱防止手段とを兼ねる第2熱伝導部材55の一端部が固設されており、この第2熱伝導部材55の他端部は放熱手段を兼ねる前記流体圧アクチュエータ30を構成する熱伝導率の高い例えば銅部材やアルミ部材で形成した内コイル33aに固設している。
【0058】
上述のように構成することによって、前記LED照明15にバッテリからの電力を供給して、これらLED照明15を点灯状態にさせたとき、これらLED照明15から発生する熱を、熱伝導率の高い第1熱伝導部材53、第2熱伝導部材55、内コイル33aに伝導させて放熱している。
【0059】
このことによって、LED照明15で発生した熱によって温度上昇すること及び、このLED照明15で発生した熱がCCD13に伝達されることを防止して、前記第1実施形態と同様の作用及び効果を得ることができる。
なお、前記内コイル33aを可撓管部2c内を挿通させて挿入部2の基端部まで延出する長さ等に設定することによって、放熱効果をより高める構成にしてもよい。
【0060】
図8は本発明の第3実施形態にかかる観察用アダプタ及び先端硬質部のまた他の構成を説明する図である。
【0061】
図に示すように本実施形態の観察用アダプタ20Cにおいてはアダプタ本体23Cを、前記アダプタ本体23Bと同様、中央凸部23cを省いて、内部空間の底面を平面に形成してある。そして、前記アダプタ本体23Cの内周面側に雌ネジ26を形成する代わりに所定の押圧力を有するOリング61を配設して、このOリング61の押圧力で観察用アダプタ20Cを先端硬質部2aに一体的に取り付けられるようにしている。
【0062】
また、前記アダプタ本体23Cの内周面には放熱手段及び過熱防止手段を兼ねる放熱用或いは冷却用の流体路となる凹み部62を内周面に渡って形成してある。そして、この凹み部62と前記照明用透孔23bの所定位置とが連通路63によって連通状態になっている。
【0063】
一方、前記先端硬質部2aは、略管状の前記先端部本体65と、この先端部本体65の貫通孔内に配置されるCCD13と、この先端部本体65の一面側に配置される複数のLED照明15と、これらLED照明15を前記先端部本体65上に固定配置させる略管状で中央部に観察光学系を構成する光学レンズ24を配置したLED照明固定部材52とで主に構成されている。
【0064】
本実施形態においては前記先端部本体65の貫通孔周囲の所定位置に、前記電気ケーブル18が挿通する前記流体路を兼ねる複数の透孔65aと、この透孔65aと前記凹み部62とを連通する流体路となる連通孔65bとが形成されている。そして、本実施形態においては内チューブ37の被覆されている内コイル33内に図示しないボンベからの流体が供給される例えばチューブが配置される構成になっている。
【0065】
なお、符号65bは前記流体圧アクチュエータ30が配置される連結凸部である。その他の構成は前記第1実施形態と同様であり、同部材には同符号を付して説明を省略する。
【0066】
したがって、本実施形態においては、前記LED照明15にバッテリからの電力を供給して、これらLED照明15を点灯状態にさせたとき、このLED照明15から発生した熱が照明用透孔23bから外部へと放熱され、また先端部本体65、口金34から放熱される。
【0067】
一方、必要に応じて冷却のための流体をボンベから内チューブ37の被覆されている内コイル33内に図示しないチューブを介して供給すると、この流体は、湾曲部内空間66から透孔65aに供給されるとともに、この透孔65aに連通する連通孔65b、凹み部62、連通路63を介して照明用透孔23b内に供給される。
【0068】
これらのことによって、LED照明15から発生した熱を放熱、或いは、必要に応じて温度上昇した先端部本体65やLED照明15を前記流体によって冷却して、LED照明15で発生した熱によって温度上昇すること及び、このLED照明15で発生した熱によってCCD13が加熱されることを防止して、上述した実施形態と同様の作用及び効果を得ることができる。
【0069】
図9ないし図12は本発明の第4実施形態にかかり、図9は観察用アダプタ及び先端硬質部のまた別の構成を説明する図、図10は熱伝導部材を配設した構成例を説明する図、図11は放熱部材を配置した構成を示す図、図12は他の放熱部材を配置した構成例を説明する図である。
なお、図10(a)は熱伝導部材を配設した状態を説明する断面図、図10(b)は熱伝導部材の配設状態を説明する斜視図、図10(c)は熱伝導部材の他の配設状態を説明する斜視図である。
【0070】
図9に示すように本実施形態においては、観察用アダプタ70に照明光学系を構成するLED照明71を配設している。
【0071】
具体的に、本実施形態においては前記観察用アダプタ70に設けられる前記撮像用レンズカバー21及び前記LED照明71は、熱伝導率の高い放熱部材である金属製筒状部材で形成された放熱手段であるアダプタ本体23Dの所定位置に配置されるようになっている。このアダプタ本体23Dは前記アダプタ本体23B、23Cと同様、中央凸部23cを省いて、内部空間の底面を平面に形成してある。
【0072】
前記アダプタ本体23Dには撮像用透孔72aの他に、前記照明光学系を構成するLED照明71を先端側に配置する照明用凹部72bと、このLED照明71から延出する電線71aが挿通する電線用透孔72cと、電極73が配置される電極用凹部72dとが形成されている。前記電極73は、前記電線71aが接続される板電極73aと、前記電気ケーブル18の先端が接続された照明用電極74の接点部74bと電気的に接触する突起電極73bとで構成されている。
【0073】
一方、前記先端硬質部2aは、略管状の前記先端部本体75と、この先端部本体75の貫通孔内に配置されるCCD13と、このCCD13が配置される貫通孔の周囲に形成されて前記照明用電極74の主電極74aが配設されるとともに前記電気ケーブル18が挿通する複数の透孔75aとが形成されている。
【0074】
なお、符号71aは発光素子の前面に設けられた充填剤である。
【0075】
このように、放熱部材で形成したアダプタ本体の、CCDから離れた先端部に、LED照明を配設したことによって、このLED照明で発生した熱がアダプタ本体を介して積極的に外部に放熱される一方、このLED照明で発生した熱がCCDへ熱伝導されることを防止して、LED照明で発生した熱によって温度上昇すること及び、このLED照明で発生した熱によってCCDが加熱されることを防止して、上述した実施形態と同様の作用及び効果を得ることができる。
【0076】
なお、図10(a)及び図10(b)に示すように前記先端部本体75内を挿通して、一端部が前記アダプタ本体23Dの端面に当接し、他端部が内コイル33aの先端部に接合される熱伝導率の高い銅線等で形成した放熱手段及び過熱防止手段を兼ねる熱伝導部材76を複数配設することによって、LED照明71で発生してCCD13側に熱伝導されてくる熱を積極的に前記熱伝導部材76を介して内コイル33aに伝導させて放熱させられる。このことによって、上述した実施形態で得られる作用及び効果をさらに効率よく得ることができる。
【0077】
このとき、図10(c)に示すように前記熱伝導部材76を内コイル33aの先端部に接合する代わりに、この熱伝導部材76の長さ寸法を他端部が密閉部に到達する位置程度まで長めに設定して、これら熱伝導部材76の端部を前記内コイル33aの内周面に接触させるようにしてもよい。このことによって、熱伝導部材76を内コイル33aに接合する作業をなくして、同様の作用及び効果を得られる。
【0078】
また、図11に示すように先端硬質部2aと湾曲部2bとの間に形成される先端部空間部77内に熱伝導部材である熱伝導率の高い細径の銅線等を一纏めにして立体形成した放熱手段及び過熱防止手段を兼ねる放熱体78を配設して、前記LED照明71で発生してアダプタ本体23Dに熱伝導され熱を積極的に前記放熱体78を介して内コイル33aに伝導させることによって、上述した実施形態と同様の作用及び効果を効率よく得ることができる。なお、符号79は信号線17、電気ケーブル18の配置位置を保持する保持部材である。
【0079】
さらに、図12に示すように前記先端部空間部77内及び内チューブ37の被覆されている内コイル33内空間部に粘性の高い熱伝導部材である放熱手段及び過熱防止手段を兼ねる放熱粘部80を配設するようにしても同様の作用及び効果を得られる。
【0080】
図13ないし図15は本発明の第5実施形態にかかり、図13は観察用アダプタ及び先端硬質部のさらにまた他の構成を説明する図、図14はアダプタ本体に冷却機構を設けた構成例を説明する図、図15は先端部本体に設ける流体路の1例を説明する図である。
【0081】
なお、図13(a)は内視鏡の先端側部の構成を説明する断面図、図13(b)は流体圧アクチュエータを構成する主要部の構成を説明する図、図14(a)はアダプタ本体に設ける冷却機構の構成を説明する断面図、図14(b)は観察用アダプタと先端硬質部とを連通する流体路の関係を説明する図、図15(a)は先端部本体に設ける螺旋溝及びその溝に配設する流体チューブを説明する図、図15(b)は図15(a)のB−B線断面図である。
【0082】
図13(b)に示すように本実施形態の流体圧アクチュエータを構成するマルチルーメンチューブ31には前記流体室42を構成するための透孔31a、31b、31c、31dの他に、2つの貫通孔81a、81bが形成してある。
【0083】
前記貫通孔81a、81bの先端側部には一対の流体用パイプ82、83が突出して配設され、基端側部には冷却用流体供給用チューブ84及び冷却用流体排出用チューブ85が連通状態で連結固定されている。したがって、前記流体用パイプ81のうち一方は流体供給用パイプ82であり、他方は流体排出用パイプ83になっている。
【0084】
図13(a)に示すように本実施形態においては前記観察用アダプタ70に設けられる前記撮像用レンズカバー21及び前記LED照明71は金属製筒状部材で形成されたアダプタ本体23Eの所定位置に配置されるようになっている。このアダプタ本体23Eは前記アダプタ本体23B、23C、23Dと同様、中央凸部23cを省いて、内部空間の底面を平面に形成してある。
【0085】
前記アダプタ本体23Eには撮像用透孔72aの他に、前記照明光学系を構成するLED照明71が配置される照明用凹部72bと、このLED照明71から突出する電極86が配置される流体路を兼ねる電極用凹部72eとが形成されている。前記電極86は基端部に曲部86aが構成されており、前記電気ケーブル18の先端部が電気的に接続された管状の照明用パイプ電極87に電気的に接触するようになっている。
【0086】
一方、前記先端硬質部2aは、略管状の前記先端部本体88と、この先端部本体88の貫通孔内に配置されるCCD13と、このCCD13が配置される貫通孔の周囲に形成されて、前記照明用パイプ電極87が一端部側に配置され、他端部側に前記流体供給用パイプ82又は前記流体排出用パイプ83が連通状態に配置される一対の電気ケーブル用透孔88aとが形成されている。なお、符号89は弾性力を有する例えばゴム製のパイプ型固定部材であり、前記電気ケーブル用透孔88aの基端部に配設されている。
【0087】
前記流体供給用パイプ82の先端部は、前記パイプ固定部材89に固定され、前記流体排出用パイプ83の先端部は前記パイプ固定部材89に固定される。このことによって、前記流体供給用パイプ82及び前記流体排出用パイプ83は電気ケーブル用透孔88aに連通状態になっている。
【0088】
したがって、前記冷却用流体供給用チューブ84側を例えば冷却気体供給状態にする一方、前記冷却用流体排出用チューブ85側を流体吸引状態にすることによって、前記冷却用流体供給用チューブ84から送られる冷却用の気体は、矢印に示すように、貫通孔81a、流体供給用パイプ82、電気ケーブル用透孔88a、照明用パイプ電極87の透孔、電極用凹部72e、照明用パイプ電極87の透孔、電気ケーブル用透孔88a、流体排出用パイプ83、貫通孔81b、冷却用流体排出用チューブ85で構成された流体路である冷却用流路を循環していく。
【0089】
したがって、前記LED照明15から発生する熱は冷却用流路を流れる冷却用の気体とともに外部に排出されていく。また、冷却用流路に供給される冷却用の気体によってCCD13が加熱されることが防止される。
【0090】
なお、前記電気ケーブル18は前記電気ケーブル用透孔88a内、流体供給用パイプ82内(又は流体排出用パイプ83内)、貫通孔81a、81b内を挿通している。
【0091】
このように、内視鏡内に冷却用流路を形成し、この冷却用流路内に冷却用の気体を循環させることによって、LED照明で発生した熱を積極的に外部に排出するとともに、このLED照明で発生した熱によってCCDが加熱されることを防止して、LED照明で発生した熱によって温度上昇すること及び、このLED照明で発生した熱によってCCDが加熱されることを防止して、良好な観察を長時間に渡って行うことができる。
【0092】
なお、図14(a)及び図14(b)に示すように冷却用の気体の流入を開閉動作によって制御する開閉弁を有するマイクロバルブ91及びこのマイクロバルブ91に対して駆動動作のための起電力を供給するペルチェ素子92を、固定板93によって仕切られるアダプタ本体23Fに形成した周状凹部72fに設けて過熱防止手段となる冷却機構を構成するようにしてもよい。
【0093】
前記固定板93には前記マイクロバルブ91に連通する連結パイプ94a及び周状凹部72fに連通する流体路を構成する連結パイプ94bが設けられている。これら連結パイプ94a、94bは、前記貫通孔81aと図示しない流体供給用パイプを介して連通された先端部本体96に設けられた図示しない流体路の開口部96a、96bに連結されるようになっている。
【0094】
前記ペルチェ素子92は、前記LED照明15の基端面側近傍に配置されており、前記LED照明15から発生する熱がこのペルチェ素子92に伝導されて所定温度に到達したとき、起電力を前記マイクロバルブ91に供給して開閉弁を所定時間、閉状態から開状態にして、冷却用の気体を周状凹部72f内に供給して、前記LED照明71で発生した熱によって温度上昇すること及び、このLED照明71で発生した熱によって図示しないCCDのが加熱されることを防止して、良好な観察を長時間に渡って行うことができる。
【0095】
また、前記図2で示したようにLED照明15を先端部本体11に配設した構成の場合には、図15(a)及び図15(b)に示すように先端部本体100の内周面内に螺旋溝100aを形成し、その螺旋溝100aに冷却用流路を形成する柔軟性を有する流体チューブ101を配設する。そして、この流体チューブ101のそれぞれの端部を前記流体供給用パイプ82、流体排出用パイプ83に連結して内視鏡を構成することによって、前記第5実施形態と同様の作用及び効果を得ることができる。
【0096】
なお、本発明は、以上述べた実施形態のみに限定されるものではなく、発明の要旨を逸脱しない範囲で種々変形実施可能である。
【0097】
【発明の効果】
以上説明したように本発明によれば、挿入部先端部に配置したLED照明から発生する熱による不具合を防止して、良好な観察を長時間に渡って行える内視鏡を提供することができる。
【図面の簡単な説明】
【図1】図1ないし図6は本発明の第1実施形態に係り、図1は内視鏡装置の構成を説明する図
【図2】観察用アダプタ及び先端硬質部の一構成を説明する図
【図3】湾曲部を構成する流体圧アクチュエータを説明する図
【図4】流体圧アクチュエータを形成する工程を説明する図
【図5】観察用アダプタを先端硬質部に装着した状態の内視鏡の先端側の構成を説明する図
【図6】観察用アダプタ及び先端硬質部の他の構成例を説明する図
【図7】本発明の第2実施形態にかかる観察用アダプタ及び先端硬質部の別の構成を説明する図
【図8】本発明の第3実施形態にかかる観察用アダプタ及び先端硬質部のまた他の構成を説明する図
【図9】図9ないし図12は本発明の第4実施形態にかかり、図9は観察用アダプタ及び先端硬質部のまた別の構成を説明する図
【図10】熱伝導部材を配設した構成例を説明する図
【図11】放熱部材を配置した構成を示す図
【図12】他の放熱部材を配置した構成例を説明する図
【図13】図13ないし図15は本発明の第5実施形態にかかり、図13は観察用アダプタ及び先端硬質部のさらにまた他の構成を説明する図
【図14】アダプタ本体に冷却機構を設けた構成例を説明する図
【図15】アダプタ本体に設ける流体路の1例を説明する図
【符号の説明】
2a…先端硬質部
2b…湾曲部
3…内視鏡
12…CCD保護管
13…CCD
14…CCD保護板
15…LED照明
23…アダプタ本体
30…流体圧アクチュエータ
42…流体室
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an endoscope applied for industrial use and medical use, which includes a bending portion formed of a fluid pressure actuator on the distal end side of a long insertion portion.
[0002]
[Prior art]
In general, endoscopes applicable for industrial use and medical use are provided with a flexible and long insertion portion that is inserted into a lumen. In this type of endoscope, a bending portion is disposed on the distal end side of the insertion portion. The bending portion is bent by a bending operation so that the observation direction is directed to an arbitrary direction.
[0003]
In an endoscope apparatus for industrial use, it may be required to insert the insertion portion 30 meters or more. In that case, when the bending mechanism that bends the bending portion of the endoscope is configured to pull the bending wire, the bending portion is used due to the sliding resistance generated between the bending wire and other members. There is a risk that it may be difficult to bend in a state desired by a person. For this reason, an endoscope has been proposed in which a fluid pressure actuator for bending the bending portion by supplying a fluid such as air is provided in the bending portion.
[0004]
Further, in a general endoscope apparatus, a light source device is prepared as an external device of the endoscope, and illumination light emitted from the light source device is supplied to a light guide disposed in an insertion portion of the endoscope. Illumination light transmitted by the guide is emitted from an illumination window arranged at the distal end of the insertion portion of the endoscope to illuminate the observation site. In this case, the amount of illumination transmitted as the insertion portion becomes longer is attenuated, and the amount of light emitted from the illumination window decreases, resulting in a problem that sufficient observation cannot be performed.
[0005]
In recent years, instead of arranging a light guide fiber for illuminating the observation site in the insertion section, a light emitting element, for example, LED illumination is arranged on the distal end side of the insertion section, and the observation site is illuminated with illumination light emitted from this LED illumination. Endoscopes have also been proposed.
[0006]
[Problems to be solved by the invention]
However, it is difficult to secure brightness according to the observation situation with an endoscope in which LED illumination is arranged. For this reason, the adapter for observation according to the observation situation is attached to the distal end portion of the endoscope so as to ensure a desired brightness. There was a risk of problems such as difficulty in use.
[0007]
In addition, when the heat generated from the LED illumination is conducted to the image sensor, the temperature of the image sensor rises, and there is a risk of malfunctioning in the endoscopic image, such as generating noise in the endoscopic image. is there.
[0008]
The present invention has been made in view of the above circumstances, and provides an endoscope capable of preventing a malfunction due to heat generated from LED illumination disposed at a distal end portion of an insertion portion and performing good observation for a long time. It is aimed at that.
[0009]
[Means for Solving the Problems]
The endoscope of the present invention includes a bending portion by a fluid pressure actuator on the distal end side of the elongated insertion portion, and a detachable observation adapter is disposed on the distal end portion continuously provided on the distal end side of the bending portion, An endoscope that acquires an endoscopic image by imaging an observation site illuminated by LED illumination with an imaging device,
A heat dissipating means for dissipating heat generated by the LED lighting or an overheating preventing means for preventing the image pickup device from being overheated by the heat generated by the LED lighting is provided.
[0010]
The overheat preventing means is a heat insulating member that constitutes a part of the tip portion disposed between the imaging element and the LED illumination.
[0011]
Further, a part of the observation adapter is constituted by a heat radiating member as a heat radiating means.
[0012]
In addition, a heat conducting member that serves as the heat radiating means and the overheat preventing means and conducts heat generated by the LED illumination to a part of the fluid pressure actuator is provided at the tip portion.
[0013]
Further, the heat dissipation means or the overheat prevention means is a fluid path including a pipe line through which an electric cable extending from the LED illumination is inserted.
[0014]
Further, the fluid pressure actuator is provided with a pipe line that serves as the heat radiating unit and the overheat prevention unit and through which an electric cable extending from the LED illumination is inserted, and a cooling fluid is circulated in the pipe line.
[0015]
According to these configurations, part of the heat generated from the LED illumination is radiated, and the imaging element is prevented from being heated by the heat generated from the LED illumination.
[0016]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be described below with reference to the drawings.
1 to 6 relate to the first embodiment of the present invention, FIG. 1 is a diagram illustrating the configuration of the endoscope apparatus, FIG. 2 is a diagram illustrating the configuration of the observation adapter and the distal end rigid portion, and FIG. FIG. 4 is a diagram for explaining a process for forming the fluid pressure actuator, FIG. 5 is a diagram for explaining the process of forming the fluid pressure actuator, and FIG. 5 is a distal end side of the endoscope in a state where the observation adapter is attached to the distal rigid portion. FIG. 6 is a diagram illustrating another configuration example of the observation adapter and the distal end hard portion.
[0017]
2A is a view for explaining the observation adapter, FIG. 2B is a view for explaining the hard tip portion, FIG. 3A is a view for explaining the multi-lumen tube, and FIG. FIG. 3C is a view for explaining the inner tube, FIG. 3D is a view for explaining the exhaust tube, and FIG. 3E is a view for explaining the insertion portion side fluid supply tube. 3 (f) is a diagram for explaining the outer tube, FIG. 3 (g) is a diagram for explaining the front cap, FIG. 3 (h) is a diagram for explaining the rear cap, and FIG. 3 (i) is a diagram for explaining the outer coil. Fig. 4 (a) is a diagram showing an arrangement state of an inner coil covering an inner tube in a central through hole of a multi-lumen tube, and Fig. 4 (b) is a diagram showing a state in which an arrangement tube and an insertion portion side tube are arranged. FIG. 4 (c) is a view showing a state in which the outer tube is disposed so as to cover the outer tube, and FIG. Shows, FIGS. 6 (a) is a diagram illustrating another configuration of the observation adapter, FIG. 6 (b) is a diagram illustrating another configuration of the distal end rigid portion.
[0018]
As shown in FIG. 1, an endoscope apparatus 1 according to this embodiment includes an electronic endoscope 3 in which a later-described CCD is built in a distal end portion of an elongated insertion portion 2, and an insertion portion 2 of the endoscope 3. And a drum unit 4 that winds the drum. Reference numeral 10 denotes, for example, an LCD monitor disposed on the upper flange 4a constituting the drum portion 4, and an endoscope image captured by the endoscope 3 is displayed on the LCD monitor 10. Yes.
[0019]
The insertion portion 2 of the endoscope 3 includes a distal end hard portion 2a constituting the distal end portion in order from the distal end side, a bending portion 2b provided continuously with the distal end hard portion 2a, and a flexible portion provided continuously with the bending portion 2b. It is comprised with the pipe part 2c. An observation adapter 20 is detachably disposed on the distal end hard portion 2a. The bending portion 2b includes a fluid pressure actuator described later. The flexible tube portion 2c is composed of a flexible and long flexible member connected to the bending portion 2b.
[0020]
For example, an imaging lens cover 21 constituting an imaging optical system is disposed at the center of the observation adapter 20, and an illumination lens cover 22 constituting a plurality of illumination optical systems is disposed around the imaging lens cover 21. Has been placed.
[0021]
The drum portion 4 has, for example, a bobbin shape, a disc-shaped upper flange 4a, a tubular insertion portion winding portion 4b around which the insertion portion 2 is wound, a disc-shaped lower flange 4c, and one surface side of the lower flange 4c. It is comprised with the rubber foot 4d arrange | positioned. Reference numeral 4e denotes a support rod.
[0022]
The LCD monitor 10 is arranged on the upper flange 4a via a monitor fixing member 10A. Further, on the upper flange 4a, a battery cover 7a provided in the battery storage part and a cylinder cover 7b provided in the cylinder storage part are disposed so as to be openable and closable. Further, the upper flange 4a receives, for example, a communication beam emitted from a remote controller (hereinafter abbreviated as a remote controller) 8 provided with a joystick 8a for instructing the bending operation of the bending portion 2b of the endoscope 3. A light receiving unit 9 is provided.
[0023]
A partition plate (not shown) is disposed in the insertion portion winding portion 4b, and the partition plate controls the fluid supplied from the gas cylinder to the fluid pressure actuator in accordance with the bending operation instructions of the battery, the gas cylinder, and the remote controller 8. A fluid supply amount control unit that performs the above-described operation, a drive signal that drives the CCD, and a CCU that converts an image signal transmitted from the CCD into a video signal are disposed.
[0024]
As shown in FIG. 2A, the imaging lens cover 21 and the illumination lens cover 22 provided on the observation adapter 20 are formed of a metal cylindrical member that is a heat radiating member having high thermal conductivity. It is arranged at a predetermined position of the adapter main body 23 which is a heat radiating means. The adapter main body 23 is provided with a central convex portion 23c protruding toward the internal space.
[0025]
Specifically, the adapter body 23 has an imaging through hole 23a in which the imaging lens cover 21 and a plurality of optical lenses 24 that constitute the imaging optical system are disposed, and the illumination that constitutes the illumination optical system. An illumination through-hole 23b in which the lens cover 22 and the plurality of optical lenses 25 are arranged is formed. The lens covers 21 and 22 and the optical lenses 24 and 25 are disposed in the respective through holes 23a and 23b.
[0026]
The adapter main body 23 is screwed into the inner peripheral surface of the base end portion with a male screw portion (reference numeral 11a in the drawing) described later formed on the outer peripheral surface of the distal end main body 11 constituting the distal end hard portion 2a of the insertion portion 2. An internal thread portion 26 is formed.
[0027]
On the other hand, as shown in FIG. 2 (b), the distal end hard portion 2 a is an overheat formed by the substantially tubular distal end portion body 11 and a substantially tubular heat insulating member disposed in the through hole of the distal end portion body 11. A CCD protective tube 12 serving as prevention means, a CCD 13 serving as an imaging optical system that is disposed at a predetermined position in the through hole of the CCD protective tube 12, and a distal end surface of the distal end body 11. A CCD protective plate 14 which is an overheat preventing means formed of a thin plate-like heat insulating member, a plurality of LED illuminations 15 arranged on one side of the CCD protective plate 14, and the LED illumination 15 and the CCD protective plate 14 It is mainly composed of a substantially tubular LED illumination fixing member 16 fixedly disposed on the distal end main body 11.
[0028]
A plurality of types of observation adapters 20 having different focal lengths and viewing angles are prepared. For this reason, the optimal endoscope image is displayed on the screen of the LCD monitor 10 by replacing the optimal observation adapter 20 corresponding to the observation purpose with the endoscope 3.
[0029]
The LED illumination fixing member 16 is integrally fixed to the tip end body 11 by adhesion, for example. Reference numeral 17 denotes a signal line extending from the CCD 13, and reference numeral 18 denotes an electric cable extending from the LED illumination 15, which is inserted through the insertion portion 2 and extends into the insertion portion winding portion 4 b. Furthermore, the code | symbol 11b is a connection convex part by which the fluid pressure actuator 30 which comprises the curved part 2b mentioned later is arrange | positioned.
[0030]
The configuration of the fluid pressure actuator 30 constituting the bending portion 2b will be described with reference to FIGS.
As shown in FIGS. 3A to 3I, the fluid pressure actuator 30 has four through holes 31a, 31b, 31c, each of which has a substantially circular cross-section formed of a flexible silicon material and forms a fluid chamber. 31d and a multi-lumen tube 31 having a central through-hole 31e parallel to the axial direction at the center, and an inner tubular member inserted into the central through-hole 31e of the multi-lumen tube 31, for example, made of stainless steel An inner coil 33 which is the first coil and a thin tube made of, for example, fluorine, which is disposed on the outer peripheral side of the inner coil 33 and prevents the multi-lumen tube 31 from being sandwiched between the inner coil 33 and being damaged. The formed inner thin tube (hereinafter abbreviated as inner tube) 37 and the four through holes 31a and 31b of the multi-lumen tube 31. For example, a Teflon (registered trademark) insertion portion-side fluid supply tube (hereinafter abbreviated as an insertion portion-side tube) in which the distal end portions arranged on the proximal end sides of 31c and 31d are formed in a tapered shape as shown in the figure. 32a, 32b, 32c, 32d, a stepped-shaped front cap 34 that covers the distal end portion of the multi-lumen tube 31 that is an outer tubular member, and a stepped shape that covers the proximal end portion of the multi-lumen tube 31 A base 35, an outer coil 36 that is a second coil made of, for example, stainless steel that covers the outer peripheral side of the multi-lumen tube 31, and an outer peripheral side of the multi-lumen tube 31, and the multi-lumen tube 31 serves as an outer coil 36. For example, an outer thin tube (hereinafter referred to as a thin tube made of fluorine) that prevents the wire from being broken between the wires. 38, abbreviated as outer tube), and between the multi-lumen tube 31 and the inner tube 37 formed of, for example, a tubular metal member serving as an exhaust means, and between the multi-lumen tube 31 and the outer tube 38, respectively. The exhaust tube 39 is mainly configured.
[0031]
As described above, the inner tube 37 and the outer tube 38 are provided with the multi-lumen tube 31 sandwiched between the lines of the inner coil 33 or the outer coil 36 as described above. The multi-lumen tube 31 prevents problems such as swelling by touching light oil or the like.
[0032]
An example of the configuration procedure of the fluid pressure actuator 30 will be described with reference to FIGS.
First, the inner tube 37 is put on the inner coil 33. Then, the inner coil 33 in this state is inserted and disposed in the central through hole 31e of the multi-lumen tube 31 as shown in FIG.
[0033]
Next, as shown in FIG. 4B, for example, silicon adhesive or the like is poured into the distal end side of the through-holes 31a, 31b, 31c, 31d of the multi-lumen tube 31 so as to close the closing portion 40 that closes the opening on the distal end side. Form. Further, the exhaust tube 39 is disposed between the distal end side of the central through hole 31 e and the inner tube 37, and then the distal-end-side spool fixing portion 41 a is formed on the distal end side of the multi-lumen tube 31. Thus, the inner coil 33 covered with the exhaust tube 39 and the inner tube 37 is integrally disposed on the distal end side of the multi-lumen tube 31.
[0034]
Further, the tapered portions of the insertion portion side tubes 32a, 32b, 32c, 32d are arranged in the proximal end side openings of the through holes 31a, 31b, 31c, 31d, and the through holes 31a, 31b, 31c, 31d and the insertion portion side are arranged. The gaps between the tubes 32a, 32b, 32c, and 32d are closed with, for example, a silicon adhesive. Thereafter, a base end side spool fixing portion 41 b is formed on the base end side of the multi-lumen tube 31, and the insertion portion side tubes 32 a, 32 b, 32 c, and 32 d are integrally disposed on the base end side of the multi-lumen tube 31. .
[0035]
Thus, the through holes 31a, 31b, 31c, 31d of the multi-lumen tube 31 are formed as space portions, and the respective space portions and the outside communicate with each other through the insertion portion side tubes 32a, 32b, 32c, 32d. Each state is configured as a fluid chamber (see reference numeral 42 in FIG. 5).
[0036]
Next, as shown in FIG. 4C, the outer tube 38 is disposed on the outer peripheral surface side of the multi-lumen tube 31. Further, an exhaust tube 39 is disposed between the outer tube 38 on the distal end side and the multi-lumen tube 31. Thereafter, a distal-end-side spool fixing portion 41 c is formed on the distal end side of the multi-lumen tube 31, and the outer tube 38 is disposed integrally with the multi-lumen tube 31.
[0037]
Thereafter, as shown in FIG. 4D, the front cap 34 is disposed on the distal end side of the multi-lumen tube 31 in a state where the outer tube 38 is disposed, and the rear cap 35 is disposed on the proximal end side. At this time, the caps 35 and 34 are respectively inserted from the front end side of the multi-lumen tube 31 in the order of the rear cap 35 and the front cap 34.
[0038]
Further, the outer coil 36 is disposed on the outer peripheral side of the multi-lumen tube 31 in a state where the outer tube 38 is disposed. At this time, the distal end portion of the outer coil 36 is disposed on the coil placement portion 34a of the front base 34 and the base end portion is disposed on the coil placement portion 35a of the rear base 35 as shown by a one-dot chain line in the figure. To do. Thus, the fluid pressure actuator 30 is configured.
[0039]
And the fluid pressure actuator 30 comprised as mentioned above is arrange | positioned and fixed to the outer peripheral part of the connection convex part 11b of the front-end | tip part main body 11 which comprises the said front-end | tip hard part 2a, as shown in FIG.
[0040]
Reference numeral 43 denotes a curved cover formed of a metal mesh tube constituting the outermost exterior of the curved portion 2b. The distal end portion is disposed on the cover placement portion 34b of the front base 34, and the base end portion is the rear base 35. It arrange | positions on the cover arrangement | positioning part 35b. As a result, the bending portion 2b is connected to the proximal end side of the distal end hard portion 2a.
[0041]
Moreover, in this embodiment, although the four through-holes 31a, 31b, 31c, and 31d are regularly arranged around the center through-hole 31e of the multi-lumen tube 31, the number of through-holes is curved. Since it is set according to the direction and shape to be curved, it is not limited to four, and may be more or less.
[0042]
Further, the rear cap 35 is disposed and fixed on the outer peripheral portion of a connection base (not shown) disposed at the distal end portion of the flexible tube portion 2c. As a result, the flexible tube portion 2c is connected to the proximal end side of the bending portion 2b.
[0043]
Here, with reference to the said FIG. 5, attachment / detachment with respect to the front-end | tip hard part 2a of the adapter 20 for observation is demonstrated.
First, the opening of the observation adapter 20 that is optimal for observation is opposed to the distal end hard portion 2 a of the endoscope 3. Next, the inner peripheral surface of the observation adapter 20 is arranged on the outer peripheral surface side of the hard tip portion 2a, and then the female screw portion 26 of the observation adapter 20 with respect to the male screw portion 11a of the hard tip portion 2a. To be fixed.
[0044]
At this time, the imaging lens cover 21 and the plurality of optical lenses 24 constituting the imaging optical system of the observation adapter 20 are arranged at predetermined positions on the front surface of the CCD 13 and the illumination lens constituting the illumination optical system. The cover 22 and the plurality of optical lenses 25 are arranged at predetermined positions on the front surface of the LED illumination 15.
[0045]
When the LED illumination 15 is supplied with electric power from the battery, the LED illumination 15 is turned on. The illumination light emitted from these LED lights 15 passes through the optical lens 25 and the illumination lens cover 22 and illuminates the observation site. At this time, heat is generated from these LED lights 15.
[0046]
The heat generated from these LED lights 15 is actively radiated to the outside from the adapter main body 23 made of, for example, aluminum having a high thermal conductivity. Further, since the CCD 13 is covered with the CCD protective plate 14 and the CCD protective tube 12 formed of a heat insulating member, the heat generated by the LED illumination 15 is prevented from being transmitted to the CCD 13. The As a result, the endoscopic image observed through the adapter 20 is displayed on the screen of the LCD monitor 10 for a long time.
In addition, when removing the said observation adapter 20 from the front-end | tip hard part 2a, it performs by the reverse procedure to the procedure mentioned above.
[0047]
As described above, the LED illumination is disposed at the distal end portion, and is detachable from the distal end portion main body incorporating the CCD, and the adapter cover in which the lens cover and the optical lens constituting the illumination optical system and the observation optical system are disposed has a thermal conductivity. The heat generated by the LED illumination formed by the high-profile member is actively dissipated to the outside through the adapter body, while the CCD is disposed in the CCD protective tube formed of the heat insulating member, and the front end surface of the CCD protective tube The CCD adapter plate formed of a heat insulating member between the LED lighting and the base end face side of the LED lighting causes the observation adapter and the tip hard part to rise in temperature due to the heat generated by the LED lighting, and is generated by the LED lighting. Heat conduction to the CCD is prevented, and a good endoscopic image can be observed for a long time with a sufficient amount of illumination light.
[0048]
As shown in FIG. 6B, the first electrode 11c electrically connected to the LED illumination 15 and the electric cable 18 are electrically connected to a predetermined position of the tip end body 11 constituting the tip hard portion 2a. The second electrode 11d connected to the plate is provided, and the first electrode 11c and the second electrode 11d are electrically connected to a predetermined position of the observation adapter 20A as shown in FIG. 6A. The spring 27 may be provided. Here, reference numeral 28 denotes a connecting member that is rotatable with respect to the adapter main body 23A having a female screw portion 28a formed on the inner peripheral surface, and reference numeral 29 denotes an inner peripheral surface of the adapter main body 23A and an outer peripheral surface of the tip end main body 11. It is an O-ring that keeps watertight between the two.
[0049]
By configuring the distal end hard portion 2a and the observation adapter 20A as described above, the leaf spring 27, the first electrode 11c, and the second electrode 11d are aligned, and the inner peripheral surface of the observation adapter 20A. Are arranged on the outer peripheral surface side of the hard tip portion 2a, and in this state, the female screw portion 28a of the connecting member 28 is screwed into the male screw portion 11a of the hard tip portion 2a to be integrally fixed. As a result, the first electrode 11c and the second electrode 11d are electrically connected via the leaf spring 27.
[0050]
In other words, in this embodiment, the power of the battery is only applied when the observation adapter 20A is disposed and fixed on the distal end hard portion 2a and the first electrode 11c and the second electrode 11d are electrically connected by the leaf spring 27. Can be supplied to the LED illumination, and the LED illumination 15 can be turned on.
[0051]
This ensures that power from the battery is not accidentally supplied to the LED lighting, such as when the observation adapter is being replaced, and the LED lighting is not turned on, thus ensuring that the battery is not wasted. Is done.
[0052]
FIG. 7 is a view for explaining another configuration of the observation adapter and the hard tip portion according to the second embodiment of the present invention, and FIG. 7A is an internal view of the state in which the observation adapter is mounted on the hard tip portion. FIG. 7B is a cross-sectional view taken along line AA of FIG. 7A, illustrating the configuration of the front end side of the mirror.
[0053]
As shown in FIG. 7A, in the observation adapter 20B of the present embodiment, the central protrusion 23c protruding toward the internal space shown in the adapter main bodies 23 and 23A is omitted, and the bottom surface of the internal space is formed in a plane. The adapter body 23B is made. An imaging through hole 23a and an illumination through hole 23b are formed in the adapter main body 23B, and the lens covers 21 and 22 and the optical lenses 24 and 25 are arranged in the through holes 23a and 23b, respectively.
[0054]
On the other hand, the distal end hard portion 2a includes the substantially tubular distal end portion body 51, the CCD 13 disposed in the through hole of the distal end portion body 51, and a plurality of LEDs disposed on one surface side of the distal end portion body 51. The illumination 15 is mainly composed of an LED illumination fixing member 52 in which the LED illumination 15 is fixed and arranged on the distal end portion main body 51 and has a substantially tubular shape and an optical lens 24 constituting an observation optical system is arranged in the central portion. .
[0055]
The LED illumination fixing member 52 is integrally fixed to the tip end body 51 by, for example, adhesion. Reference numeral 51 a is a male screw part screwed into the female screw part 26, and reference numeral 51 b is a connecting convex part on which the fluid pressure actuator 30 is arranged. Other configurations are the same as those of the first embodiment, and the same members are denoted by the same reference numerals and description thereof is omitted.
[0056]
In the present embodiment, a plurality of through holes 51c are formed at predetermined positions around the through hole of the tip body 51 as shown in FIGS. 7 (a) and 7 (b). And the 1st heat conduction which serves also as a heat dissipation means and the overheat prevention means comprised, for example with the copper wire and aluminum wire with high heat conductivity which also serve as the heat radiating member which conducts the heat which generate | occur | produced in the said LED illumination 15 in this through-hole 51c The member 53 is inserted and arranged.
[0057]
The distal end side of the first heat conducting member 53 is fixed to the LED illumination 15, and the base end portion is fixed to an inner ring member 54 that is integrally fixed to an inner peripheral protrusion 34c formed on the front cap 34A. Has been. The first heat conducting member 53 fixed to the inner ring member 54 is fixed with one end portion of a second heat conducting member 55 that also serves as a heat dissipating means and an overheat preventing means formed of a copper wire having high heat conductivity. The other end portion of the second heat conducting member 55 is fixed to an inner coil 33a formed of, for example, a copper member or an aluminum member having a high thermal conductivity constituting the fluid pressure actuator 30 that also serves as a heat radiating means. Yes.
[0058]
By configuring as described above, when the power from the battery is supplied to the LED lighting 15 and the LED lighting 15 is turned on, the heat generated from the LED lighting 15 has high thermal conductivity. The heat is conducted by being conducted to the first heat conducting member 53, the second heat conducting member 55, and the inner coil 33a.
[0059]
As a result, the temperature rise due to the heat generated by the LED illumination 15 and the heat generated by the LED illumination 15 are prevented from being transmitted to the CCD 13, and the same operations and effects as in the first embodiment can be achieved. Obtainable.
In addition, you may make it the structure which heightens the heat dissipation effect by setting the length etc. which the said inner coil 33a penetrates the inside of the flexible tube part 2c, and extends to the base end part of the insertion part 2.
[0060]
FIG. 8 is a view for explaining another configuration of the observation adapter and the hard tip portion according to the third embodiment of the present invention.
[0061]
As shown in the drawing, in the observation adapter 20C of the present embodiment, the adapter main body 23C is omitted from the central convex portion 23c, and the bottom surface of the internal space is formed in a plane, like the adapter main body 23B. Then, instead of forming the female screw 26 on the inner peripheral surface side of the adapter main body 23C, an O-ring 61 having a predetermined pressing force is disposed, and the observation adapter 20C is hardened at the distal end by the pressing force of the O-ring 61. It is designed to be integrally attached to the portion 2a.
[0062]
Further, a concave portion 62 serving as a heat dissipation or cooling fluid path serving as a heat radiating means and an overheating preventing means is formed on the inner peripheral surface of the adapter main body 23C. And this recessed part 62 and the predetermined position of the said through-hole 23b for illumination are in the communication state by the communication path 63. FIG.
[0063]
On the other hand, the distal end hard portion 2a includes the substantially tubular distal end portion main body 65, the CCD 13 disposed in the through hole of the distal end portion main body 65, and a plurality of LEDs disposed on one surface side of the distal end portion main body 65. The illumination 15 is mainly composed of an LED illumination fixing member 52 in which the LED illumination 15 is fixed and arranged on the tip body 65 and is substantially tubular, and an optical lens 24 constituting an observation optical system is arranged in the center. .
[0064]
In the present embodiment, a plurality of through holes 65a that also serve as the fluid passage through which the electric cable 18 is inserted, and the through holes 65a and the recessed portions 62 are communicated with each other at a predetermined position around the through hole of the tip body 65. A communication hole 65b serving as a fluid path is formed. In this embodiment, for example, a tube to which fluid from a cylinder (not shown) is supplied is arranged in the inner coil 33 covered with the inner tube 37.
[0065]
Reference numeral 65b denotes a connecting convex portion on which the fluid pressure actuator 30 is disposed. Other configurations are the same as those of the first embodiment, and the same members are denoted by the same reference numerals and description thereof is omitted.
[0066]
Therefore, in the present embodiment, when power from the battery is supplied to the LED illumination 15 and the LED illumination 15 is turned on, heat generated from the LED illumination 15 is externally transmitted from the illumination through hole 23b. The heat is dissipated from the tip body 65 and the base 34.
[0067]
On the other hand, if a fluid for cooling is supplied from a cylinder into the inner coil 33 covered with the inner tube 37 as needed via a tube (not shown), the fluid is supplied from the curved portion inner space 66 to the through hole 65a. In addition, the light is supplied into the illumination through hole 23b through the communication hole 65b communicating with the through hole 65a, the recess 62, and the communication path 63.
[0068]
As a result, the heat generated from the LED illumination 15 is dissipated, or the tip body 65 and the LED illumination 15 that have risen in temperature are cooled by the fluid, and the temperature rises due to the heat generated in the LED illumination 15. It is possible to prevent the CCD 13 from being heated by the heat generated by the LED illumination 15 and to obtain the same operation and effect as the above-described embodiment.
[0069]
9 to 12 relate to a fourth embodiment of the present invention, FIG. 9 is a diagram for explaining another configuration of the observation adapter and the hard tip portion, and FIG. 10 is a configuration example in which a heat conducting member is provided. FIG. 11 is a diagram illustrating a configuration in which a heat radiating member is disposed, and FIG. 12 is a diagram illustrating a configuration example in which another heat radiating member is disposed.
10A is a cross-sectional view illustrating a state in which the heat conducting member is disposed, FIG. 10B is a perspective view illustrating the state in which the heat conducting member is disposed, and FIG. 10C is a heat conducting member. It is a perspective view explaining the other arrangement | positioning state.
[0070]
As shown in FIG. 9, in this embodiment, the LED illumination 71 which comprises an illumination optical system is arrange | positioned at the adapter 70 for observation.
[0071]
Specifically, in the present embodiment, the imaging lens cover 21 and the LED illumination 71 provided in the observation adapter 70 are heat radiating means formed of a metal cylindrical member that is a heat radiating member having high thermal conductivity. It is arranged at a predetermined position of the adapter body 23D. The adapter main body 23D, like the adapter main bodies 23B and 23C, omits the central protrusion 23c and has a flat bottom surface of the internal space.
[0072]
In addition to the imaging through hole 72a, an illumination recess 72b in which the LED illumination 71 constituting the illumination optical system is disposed on the distal end side and an electric wire 71a extending from the LED illumination 71 are inserted into the adapter body 23D. An electric wire through hole 72c and an electrode recess 72d in which the electrode 73 is disposed are formed. The electrode 73 includes a plate electrode 73a to which the electric wire 71a is connected, and a protruding electrode 73b that is in electrical contact with the contact portion 74b of the illumination electrode 74 to which the tip of the electric cable 18 is connected. .
[0073]
On the other hand, the distal end hard portion 2a is formed around the substantially tubular distal end portion main body 75, the CCD 13 disposed in the through hole of the distal end portion main body 75, and the through hole in which the CCD 13 is disposed. A main electrode 74a of the illumination electrode 74 is disposed, and a plurality of through holes 75a through which the electric cable 18 is inserted are formed.
[0074]
In addition, the code | symbol 71a is the filler provided in the front surface of the light emitting element.
[0075]
In this way, by disposing the LED illumination at the tip of the adapter body formed of the heat radiation member away from the CCD, the heat generated by this LED illumination is actively dissipated outside through the adapter body. On the other hand, the heat generated by the LED lighting is prevented from being conducted to the CCD, the temperature is increased by the heat generated by the LED lighting, and the CCD is heated by the heat generated by the LED lighting. Can be prevented, and the same operation and effect as the above-described embodiment can be obtained.
[0076]
As shown in FIGS. 10A and 10B, the tip end main body 75 is inserted, one end abuts against the end face of the adapter main body 23D, and the other end is the tip of the inner coil 33a. By arranging a plurality of heat conducting members 76 serving both as heat dissipation means and overheat prevention means formed of copper wires or the like having high thermal conductivity joined to the parts, the LED illumination 71 generates heat and is conducted to the CCD 13 side. The incoming heat is positively conducted to the inner coil 33a through the heat conducting member 76 to be radiated. By this, the effect | action and effect which are obtained by embodiment mentioned above can be acquired still more efficiently.
[0077]
At this time, instead of joining the heat conducting member 76 to the tip of the inner coil 33a as shown in FIG. 10C, the length of the heat conducting member 76 is set to the position where the other end reaches the sealed portion. The end of the heat conducting member 76 may be brought into contact with the inner peripheral surface of the inner coil 33a. This eliminates the work of joining the heat conducting member 76 to the inner coil 33a, and the same operation and effect can be obtained.
[0078]
Further, as shown in FIG. 11, a small-diameter copper wire or the like having a high thermal conductivity, which is a heat conducting member, is gathered in a distal end space portion 77 formed between the distal end hard portion 2a and the curved portion 2b. A three-dimensionally formed heat dissipating means and a heat dissipating means 78 serving as an overheat preventing means are arranged, and the heat generated by the LED illumination 71 and conducted to the adapter main body 23D is actively transmitted through the heat dissipating body 78 to the inner coil 33a. By conducting to the above, the same operation and effect as the above-described embodiment can be obtained efficiently. Reference numeral 79 denotes a holding member that holds the arrangement positions of the signal line 17 and the electric cable 18.
[0079]
Furthermore, as shown in FIG. 12, the heat-dissipating viscous portion serving as the heat-dissipating means and the overheat-preventing means, which are highly viscous heat-conducting members, in the space portion 77 and the space in the inner coil 33 covered with the inner tube 37. Even if 80 is provided, the same operation and effect can be obtained.
[0080]
FIGS. 13 to 15 relate to a fifth embodiment of the present invention, FIG. 13 is a diagram for explaining still another configuration of the observation adapter and the hard tip portion, and FIG. 14 is a configuration example in which a cooling mechanism is provided on the adapter body. FIG. 15 is a diagram illustrating an example of a fluid path provided in the tip body.
[0081]
13A is a cross-sectional view illustrating the configuration of the distal end side portion of the endoscope, FIG. 13B is a diagram illustrating the configuration of the main portion constituting the fluid pressure actuator, and FIG. FIG. 14B is a cross-sectional view for explaining the configuration of the cooling mechanism provided in the adapter body, FIG. 14B is a view for explaining the relationship of the fluid path that communicates the observation adapter and the hard tip portion, and FIG. FIG. 15B is a cross-sectional view taken along the line BB in FIG. 15A, illustrating a spiral groove to be provided and a fluid tube disposed in the groove.
[0082]
As shown in FIG. 13 (b), the multi-lumen tube 31 constituting the fluid pressure actuator of this embodiment has two through holes in addition to the through holes 31a, 31b, 31c, 31d for constituting the fluid chamber 42. Holes 81a and 81b are formed.
[0083]
A pair of fluid pipes 82 and 83 project from the distal end portions of the through holes 81a and 81b, and a cooling fluid supply tube 84 and a cooling fluid discharge tube 85 communicate with the proximal end portion. It is connected and fixed in the state. Accordingly, one of the fluid pipes 81 is a fluid supply pipe 82 and the other is a fluid discharge pipe 83.
[0084]
As shown in FIG. 13A, in the present embodiment, the imaging lens cover 21 and the LED illumination 71 provided in the observation adapter 70 are located at predetermined positions of an adapter main body 23E formed of a metal cylindrical member. It is arranged. Like the adapter bodies 23B, 23C, and 23D, the adapter body 23E omits the central protrusion 23c and has a flat bottom surface of the internal space.
[0085]
In addition to the imaging through-hole 72a, the adapter body 23E has an illumination recess 72b in which the LED illumination 71 constituting the illumination optical system is disposed, and a fluid path in which an electrode 86 protruding from the LED illumination 71 is disposed. An electrode recess 72e that also serves as an electrode is formed. The electrode 86 has a curved portion 86a at the base end portion, and is in electrical contact with a tubular lighting pipe electrode 87 to which the distal end portion of the electric cable 18 is electrically connected.
[0086]
On the other hand, the distal end hard portion 2a is formed around the substantially tubular distal end portion body 88, the CCD 13 disposed in the through hole of the distal end portion body 88, and the through hole in which the CCD 13 is disposed. The lighting pipe electrode 87 is disposed on one end side, and a pair of electric cable through holes 88a in which the fluid supply pipe 82 or the fluid discharge pipe 83 is disposed in communication are formed on the other end side. Has been. Reference numeral 89 denotes an elastic pipe-type fixing member made of, for example, rubber, and is disposed at the base end portion of the electric cable through-hole 88a.
[0087]
The leading end of the fluid supply pipe 82 is fixed to the pipe fixing member 89, and the leading end of the fluid discharge pipe 83 is fixed to the pipe fixing member 89. Thus, the fluid supply pipe 82 and the fluid discharge pipe 83 are in communication with the electrical cable through-hole 88a.
[0088]
Therefore, the cooling fluid supply tube 84 side is set to, for example, a cooling gas supply state, while the cooling fluid discharge tube 85 side is set to a fluid suction state, thereby being sent from the cooling fluid supply tube 84. As shown by the arrows, the cooling gas is transmitted through the through hole 81a, the fluid supply pipe 82, the electrical cable through hole 88a, the illumination pipe electrode 87, the electrode recess 72e, and the illumination pipe electrode 87. It circulates through a cooling flow path that is a fluid path composed of holes, electrical cable through holes 88a, fluid discharge pipes 83, through holes 81b, and cooling fluid discharge tubes 85.
[0089]
Therefore, the heat generated from the LED illumination 15 is discharged to the outside together with the cooling gas flowing through the cooling channel. In addition, the CCD 13 is prevented from being heated by the cooling gas supplied to the cooling channel.
[0090]
The electric cable 18 is inserted through the electric cable through hole 88a, the fluid supply pipe 82 (or the fluid discharge pipe 83), and the through holes 81a and 81b.
[0091]
Thus, by forming a cooling flow path in the endoscope and circulating a cooling gas in the cooling flow path, the heat generated by the LED illumination is actively discharged to the outside, Preventing the CCD from being heated by the heat generated by the LED lighting, increasing the temperature by the heat generated by the LED lighting, and preventing the CCD from being heated by the heat generated by the LED lighting. Good observation can be performed for a long time.
[0092]
14 (a) and 14 (b), a micro valve 91 having an on / off valve that controls the inflow of cooling gas by an opening / closing operation, and the micro valve 91 for driving operation. A Peltier element 92 that supplies electric power may be provided in a circumferential recess 72f formed in the adapter main body 23F partitioned by the fixing plate 93 to constitute a cooling mechanism that serves as an overheat prevention means.
[0093]
The fixing plate 93 is provided with a connection pipe 94a communicating with the microvalve 91 and a connection pipe 94b constituting a fluid path communicating with the circumferential recess 72f. These connection pipes 94a and 94b are connected to fluid passage openings 96a and 96b (not shown) provided in a tip body 96 communicated with the through hole 81a via a fluid supply pipe (not shown). ing.
[0094]
The Peltier element 92 is disposed in the vicinity of the base end face side of the LED illumination 15, and when the heat generated from the LED illumination 15 is conducted to the Peltier element 92 and reaches a predetermined temperature, the electromotive force is converted into the micro-electromotive force. Supplying the valve 91 to the open / close valve from the closed state to the open state for a predetermined time, supplying a cooling gas into the circumferential recess 72f, and increasing the temperature by the heat generated in the LED illumination 71; It is possible to prevent the CCD (not shown) from being heated by the heat generated by the LED illumination 71 and to perform good observation over a long period of time.
[0095]
In the case of the configuration in which the LED illumination 15 is disposed on the tip end body 11 as shown in FIG. 2, the inner periphery of the tip end body 100 is shown in FIGS. 15 (a) and 15 (b). A spiral groove 100a is formed in the plane, and a fluid tube 101 having flexibility for forming a cooling channel is disposed in the spiral groove 100a. Then, by connecting each end portion of the fluid tube 101 to the fluid supply pipe 82 and the fluid discharge pipe 83 to constitute an endoscope, the same operation and effect as in the fifth embodiment are obtained. be able to.
[0096]
It should be noted that the present invention is not limited to the embodiments described above, and various modifications can be made without departing from the spirit of the invention.
[0097]
【The invention's effect】
As described above, according to the present invention, it is possible to provide an endoscope capable of preventing a problem caused by heat generated from the LED illumination arranged at the distal end portion of the insertion portion and performing good observation for a long time. .
[Brief description of the drawings]
FIG. 1 to FIG. 6 relate to a first embodiment of the present invention, and FIG. 1 is a diagram for explaining the configuration of an endoscope apparatus.
FIG. 2 is a diagram illustrating a configuration of an observation adapter and a hard tip portion
FIG. 3 is a diagram illustrating a fluid pressure actuator constituting a bending portion.
FIG. 4 is a diagram illustrating a process of forming a fluid pressure actuator
FIG. 5 is a diagram for explaining a configuration on the distal end side of an endoscope in a state where an observation adapter is mounted on a distal rigid portion.
FIG. 6 is a diagram illustrating another configuration example of the observation adapter and the hard tip portion.
FIG. 7 is a diagram illustrating another configuration of the observation adapter and the hard tip portion according to the second embodiment of the present invention.
FIG. 8 is a diagram for explaining another configuration of the observation adapter and the hard tip portion according to the third embodiment of the present invention.
9 to 12 are related to a fourth embodiment of the present invention, and FIG. 9 is a diagram for explaining another configuration of the observation adapter and the hard tip portion.
FIG. 10 is a diagram illustrating a configuration example in which a heat conducting member is disposed.
FIG. 11 is a diagram showing a configuration in which heat dissipating members are arranged.
FIG. 12 is a diagram for explaining a configuration example in which other heat radiating members are arranged;
13 to 15 are related to a fifth embodiment of the present invention, and FIG. 13 is a diagram for explaining still another configuration of the observation adapter and the hard tip portion.
FIG. 14 is a diagram illustrating a configuration example in which a cooling mechanism is provided in the adapter body.
FIG. 15 is a diagram for explaining an example of a fluid path provided in the adapter main body.
[Explanation of symbols]
2a ... Hard end
2b ... curved portion
3. Endoscope
12 ... CCD protective tube
13 ... CCD
14 ... CCD protective plate
15 ... LED lighting
23 ... Adapter body
30 ... Fluid pressure actuator
42 ... Fluid chamber

Claims (6)

細長な挿入部の先端側に流体圧アクチュエータによる湾曲部を備え、この湾曲部の先端側に連設する先端部に着脱自在な観察用アダプタを配設して、LED照明で照らされる観察部位を撮像素子で撮像して内視鏡画像を取得する内視鏡において、
前記LED照明で発生した熱を放熱させる放熱手段又は前記撮像素子が前記LED照明の発生する熱で過熱されることを防止する過熱防止手段を設けたことを特徴とする内視鏡。
An elongate insertion portion is provided with a bending portion by a fluid pressure actuator on the distal end side, and a detachable observation adapter is disposed on the distal end portion connected to the distal end side of the bending portion so that an observation site illuminated by LED illumination is provided. In an endoscope that captures an image by an image sensor and acquires an endoscopic image,
An endoscope comprising a heat dissipating means for dissipating heat generated by the LED illumination or an overheat preventing means for preventing the image sensor from being overheated by heat generated by the LED illumination.
前記過熱防止手段は、前記撮像素子と前記LED照明との間に配置される前記先端部の一部を構成する断熱部材であることを特徴とする請求項1に記載の内視鏡。The endoscope according to claim 1, wherein the overheat preventing means is a heat insulating member that constitutes a part of the tip portion disposed between the imaging element and the LED illumination. 前記観察用アダプタの一部を放熱手段である放熱部材で構成したことを特徴とする請求項1に記載の内視鏡。The endoscope according to claim 1, wherein a part of the observation adapter is configured by a heat dissipation member that is a heat dissipation unit. 前記先端部に、前記放熱手段及び過熱防止手段を兼ねる、前記LED照明で発生した熱を前記流体圧アクチュエータの一部に熱伝導させる熱伝導部材を設けたことを特徴とする請求項1に記載の内視鏡。The heat conduction member which serves as the heat radiation means and the overheat prevention means, and conducts heat generated by the LED illumination to a part of the fluid pressure actuator, is provided at the tip portion. Endoscope. 前記放熱手段又は過熱防止手段は、前記LED照明から延出する電気ケーブルが挿通する管路を含む流体路であることを特徴とする請求項1に記載の内視鏡。The endoscope according to claim 1, wherein the heat dissipation unit or the overheat prevention unit is a fluid path including a conduit through which an electric cable extending from the LED illumination is inserted. 前記流体圧アクチュエータに、前記前記放熱手段及び過熱防止手段を兼ね、前記LED照明から延出する電気ケーブルが挿通する管路を設け、この管路内に冷却用流体を循環させることを特徴とする請求項1に記載の内視鏡。The fluid pressure actuator is provided with a conduit that serves as the heat dissipation means and overheat prevention means, and through which an electric cable extending from the LED illumination is inserted, and a cooling fluid is circulated in the conduit. The endoscope according to claim 1.
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Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006046559A1 (en) * 2004-10-25 2006-05-04 Olympus Corporation Endoscope
EP1738679A2 (en) 2005-07-01 2007-01-03 Invendo Medical Gmbh Cooling device for electronic components, particularly for an endoscope
JP2007007322A (en) * 2005-07-04 2007-01-18 Olympus Medical Systems Corp Endoscope
JP2007007321A (en) * 2005-07-04 2007-01-18 Olympus Medical Systems Corp Endoscope
JP2007007092A (en) * 2005-06-29 2007-01-18 Olympus Corp Endoscope
JP2007014597A (en) * 2005-07-08 2007-01-25 Olympus Corp Endoscope apparatus
JP2008036032A (en) * 2006-08-03 2008-02-21 Olympus Corp Adapter type endoscope
KR100935932B1 (en) * 2006-09-21 2010-01-11 주식회사 엠지비엔도스코피 Endoscope for providing 3D image data
JP2011024954A (en) * 2009-07-29 2011-02-10 Olympus Corp Adapter and endoscope
WO2011115380A2 (en) * 2010-03-16 2011-09-22 (주)엠지비엔도스코피 Electronic endoscope for providing three-dimensional image data
WO2012056851A1 (en) * 2010-10-25 2012-05-03 オリンパスメディカルシステムズ株式会社 Endoscope
US8206289B2 (en) 2008-03-12 2012-06-26 Olympus Corporation Electric connection portion and adaptor endoscope
US8314835B2 (en) 2009-01-23 2012-11-20 Olympus Corporation Endoscope adapter including light emitting diode, and adapter type endoscope
US20130162789A1 (en) * 2011-12-22 2013-06-27 Himax Imaging Limited Endoscope with a light source
WO2013100312A1 (en) * 2011-12-26 2013-07-04 가톨릭대학교 산학협력단 Device for three dimensional endoscopic surgery
US8721524B2 (en) 2007-07-02 2014-05-13 Olympus Corporation Endoscope with thin plate-like substrate
JP2017156320A (en) * 2016-03-04 2017-09-07 国立研究開発法人理化学研究所 Imaging device and biological information acquisition device
CN109620121A (en) * 2018-12-14 2019-04-16 深圳市博盛医疗科技有限公司 A kind of electric celioscope of front end LED illumination
KR20200078700A (en) * 2011-02-23 2020-07-01 인튜어티브 서지컬 오퍼레이션즈 인코포레이티드 Maximizing illumination fiber in an endoscope

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5545380U (en) * 1978-09-21 1980-03-25
JPS57176208U (en) * 1981-05-01 1982-11-08
JPH02110505A (en) * 1988-10-20 1990-04-23 Olympus Optical Co Ltd Endoscope
JPH04241830A (en) * 1991-01-11 1992-08-28 Olympus Optical Co Ltd Tv camera device for endoscope
JPH11216113A (en) * 1998-02-03 1999-08-10 Olympus Optical Co Ltd Endoscope device
JPH11267099A (en) * 1998-03-24 1999-10-05 Olympus Optical Co Ltd Endoscope
JP2002000562A (en) * 2000-06-19 2002-01-08 Olympus Optical Co Ltd Endoscope
JP2002177197A (en) * 2000-12-14 2002-06-25 Asahi Optical Co Ltd Distal end of endoscope
JP2003024276A (en) * 2001-07-13 2003-01-28 Pentax Corp Endoscope
JP2003038437A (en) * 2001-07-27 2003-02-12 Pentax Corp Portable endoscope and light source cooling device for endoscope
JP2003153852A (en) * 2001-11-22 2003-05-27 Olympus Optical Co Ltd Electronic endoscope

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5545380U (en) * 1978-09-21 1980-03-25
JPS57176208U (en) * 1981-05-01 1982-11-08
JPH02110505A (en) * 1988-10-20 1990-04-23 Olympus Optical Co Ltd Endoscope
JPH04241830A (en) * 1991-01-11 1992-08-28 Olympus Optical Co Ltd Tv camera device for endoscope
JPH11216113A (en) * 1998-02-03 1999-08-10 Olympus Optical Co Ltd Endoscope device
JPH11267099A (en) * 1998-03-24 1999-10-05 Olympus Optical Co Ltd Endoscope
JP2002000562A (en) * 2000-06-19 2002-01-08 Olympus Optical Co Ltd Endoscope
JP2002177197A (en) * 2000-12-14 2002-06-25 Asahi Optical Co Ltd Distal end of endoscope
JP2003024276A (en) * 2001-07-13 2003-01-28 Pentax Corp Endoscope
JP2003038437A (en) * 2001-07-27 2003-02-12 Pentax Corp Portable endoscope and light source cooling device for endoscope
JP2003153852A (en) * 2001-11-22 2003-05-27 Olympus Optical Co Ltd Electronic endoscope

Cited By (27)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8043211B2 (en) 2004-10-25 2011-10-25 Olympus Corporation Endoscope device with a heat removal portion
WO2006046559A1 (en) * 2004-10-25 2006-05-04 Olympus Corporation Endoscope
JP2007007092A (en) * 2005-06-29 2007-01-18 Olympus Corp Endoscope
EP1738679A2 (en) 2005-07-01 2007-01-03 Invendo Medical Gmbh Cooling device for electronic components, particularly for an endoscope
EP1738679A3 (en) * 2005-07-01 2009-09-16 Invendo Medical Gmbh Cooling device for electronic components, particularly for an endoscope
JP2007007322A (en) * 2005-07-04 2007-01-18 Olympus Medical Systems Corp Endoscope
JP2007007321A (en) * 2005-07-04 2007-01-18 Olympus Medical Systems Corp Endoscope
JP2007014597A (en) * 2005-07-08 2007-01-25 Olympus Corp Endoscope apparatus
JP2008036032A (en) * 2006-08-03 2008-02-21 Olympus Corp Adapter type endoscope
KR100935932B1 (en) * 2006-09-21 2010-01-11 주식회사 엠지비엔도스코피 Endoscope for providing 3D image data
US8721524B2 (en) 2007-07-02 2014-05-13 Olympus Corporation Endoscope with thin plate-like substrate
US8206289B2 (en) 2008-03-12 2012-06-26 Olympus Corporation Electric connection portion and adaptor endoscope
US8314835B2 (en) 2009-01-23 2012-11-20 Olympus Corporation Endoscope adapter including light emitting diode, and adapter type endoscope
JP2011024954A (en) * 2009-07-29 2011-02-10 Olympus Corp Adapter and endoscope
WO2011115380A3 (en) * 2010-03-16 2012-02-23 (주)엠지비엔도스코피 Electronic endoscope for providing three-dimensional image data
WO2011115380A2 (en) * 2010-03-16 2011-09-22 (주)엠지비엔도스코피 Electronic endoscope for providing three-dimensional image data
WO2012056851A1 (en) * 2010-10-25 2012-05-03 オリンパスメディカルシステムズ株式会社 Endoscope
JP5139599B2 (en) * 2010-10-25 2013-02-06 オリンパスメディカルシステムズ株式会社 Endoscope
KR20200078700A (en) * 2011-02-23 2020-07-01 인튜어티브 서지컬 오퍼레이션즈 인코포레이티드 Maximizing illumination fiber in an endoscope
KR102194481B1 (en) 2011-02-23 2020-12-23 인튜어티브 서지컬 오퍼레이션즈 인코포레이티드 Maximizing illumination fiber in an endoscope
US20130162789A1 (en) * 2011-12-22 2013-06-27 Himax Imaging Limited Endoscope with a light source
WO2013100312A1 (en) * 2011-12-26 2013-07-04 가톨릭대학교 산학협력단 Device for three dimensional endoscopic surgery
US10028650B2 (en) 2011-12-26 2018-07-24 Catholic Kwandong University Industry Foundation Device for three dimensional endoscopic surgery
JP2017156320A (en) * 2016-03-04 2017-09-07 国立研究開発法人理化学研究所 Imaging device and biological information acquisition device
WO2017150730A1 (en) * 2016-03-04 2017-09-08 国立研究開発法人理化学研究所 Imaging device and biological information acquiring device
US11375899B2 (en) 2016-03-04 2022-07-05 Riken Image capturing apparatus and biometric information acquiring apparatus
CN109620121A (en) * 2018-12-14 2019-04-16 深圳市博盛医疗科技有限公司 A kind of electric celioscope of front end LED illumination

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