JP2009251574A - Wide-field endoscope - Google Patents

Wide-field endoscope Download PDF

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Publication number
JP2009251574A
JP2009251574A JP2008103411A JP2008103411A JP2009251574A JP 2009251574 A JP2009251574 A JP 2009251574A JP 2008103411 A JP2008103411 A JP 2008103411A JP 2008103411 A JP2008103411 A JP 2008103411A JP 2009251574 A JP2009251574 A JP 2009251574A
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imaging module
endoscope
field
visual field
wide
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Kunio Ando
邦郎 安藤
Masahiko Nagano
雅彦 長野
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I SYSTEMS KK
MEDIA TECHNOLOGY KK
Systems Kk I
Media Technology Corp
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I SYSTEMS KK
MEDIA TECHNOLOGY KK
Systems Kk I
Media Technology Corp
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/00163Optical arrangements
    • A61B1/00174Optical arrangements characterised by the viewing angles
    • A61B1/00177Optical arrangements characterised by the viewing angles for 90 degrees side-viewing
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/00163Optical arrangements
    • A61B1/00172Optical arrangements with means for scanning
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/00163Optical arrangements
    • A61B1/00174Optical arrangements characterised by the viewing angles
    • A61B1/00181Optical arrangements characterised by the viewing angles for multiple fixed viewing angles
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/04Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor combined with photographic or television appliances
    • A61B1/05Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor combined with photographic or television appliances characterised by the image sensor, e.g. camera, being in the distal end portion
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B23/00Telescopes, e.g. binoculars; Periscopes; Instruments for viewing the inside of hollow bodies; Viewfinders; Optical aiming or sighting devices
    • G02B23/24Instruments or systems for viewing the inside of hollow bodies, e.g. fibrescopes
    • G02B23/2407Optical details
    • G02B23/2423Optical details of the distal end
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/00002Operational features of endoscopes
    • A61B1/00043Operational features of endoscopes provided with output arrangements
    • A61B1/00045Display arrangement
    • A61B1/0005Display arrangement combining images e.g. side-by-side, superimposed or tiled

Abstract

<P>PROBLEM TO BE SOLVED: To provide a wide-field endoscope that is easily used by widening the visual field range of an electronic endoscope, and especially that easily obtains a front visual field and a side visual field in an optional direction. <P>SOLUTION: The wide-field endoscope has a tip structure to attach a first imaging module to one end of a transparent cylinder provided to the tip of the endoscope so as to have the front visual field toward the axial direction of the transparent cylinder, and to have a second imaging module which is arranged in the rear of the first imaging module, has an optical axis in the side visual field in relation to the optical axis of the first imaging module, and is attached inside the transparent cylinder in a freely rotatable manner. The endoscope further has a means to display the visual field direction of the side view of the second imaging module in an image by the first imaging module. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、機器内部や体腔内部等の観察に適した広視野内視鏡に関する。   The present invention relates to a wide-field endoscope suitable for observing the inside of a device or the inside of a body cavity.

被検体としての機器内部や体腔内を観察する目的の内視鏡は、披検体の像を観察する手段として対物レンズ+リレーレンズを用いた硬性内視鏡や、対物レンズ+ファイバーイメージガイドを用いたファイバースコープ、先端部に対物レンズ+CCDのような固体撮像素子を組み込んだ電子内視鏡等があり使用目的に応じて使い分けられているが、近年は固体撮像素子の小型化、高性能化に伴って固体撮像素子を使用した電子内視鏡が広く使われてきている。   Endoscopes for the purpose of observing the inside of a device or body cavity as a subject use a rigid endoscope using an objective lens and a relay lens, or an objective lens and a fiber image guide as means for observing an image of a specimen. There are fiberscopes, electronic endoscopes incorporating a solid-state image sensor such as an objective lens and CCD at the tip, etc., which are used properly according to the purpose of use, but in recent years the solid-state image sensor has been reduced in size and performance Accordingly, electronic endoscopes using solid-state image sensors have been widely used.

図1は、電子内視鏡の基本的な構成を示すもので、図中101は電子内視鏡(本体)、102は信号処理回路、104は照明用の光源装置、103は映像表示手段としてのモニターを示している。なお以降の説明では、101の電子内視鏡(本体)を内視鏡と表記する。   FIG. 1 shows a basic configuration of an electronic endoscope. In the figure, 101 is an electronic endoscope (main body), 102 is a signal processing circuit, 104 is a light source device for illumination, and 103 is an image display means. Shows the monitor. In the following description, the electronic endoscope (main body) 101 is referred to as an endoscope.

上記内視鏡101は、披検体内部に挿入する挿入部105と内視鏡を手で保持、操作する操作部106、対物レンズ、固体撮像素子等を含む先端部107から構成されており、挿入部105の先端に装着された先端部107には対物レンズ111とCCDセンサーやCMOSセンサー等で代表される固体撮像素子112を含んだ撮像モジュール110が組み込まれており、先端部の端面には対物レンズの視野方向を照明するライトガイド113が照明手段として組み込まれ、ライトガイド113の他端は照明用の光源装置104に連接している。固体撮像素子112からの映像信号はケーブル114によって信号処理回路102に連接されており、信号処理回路で所定の信号処理された映像信号はモニター103で画像として表示される。なお操作部106には内視鏡を操作する機構部、スイッチ等の操作手段115が組込まれている。   The endoscope 101 includes an insertion portion 105 that is inserted into the specimen, an operation portion 106 that holds and operates the endoscope by hand, and a distal end portion 107 that includes an objective lens, a solid-state imaging device, and the like. An imaging module 110 including an objective lens 111 and a solid-state imaging device 112 typified by a CCD sensor, a CMOS sensor, or the like is incorporated in a distal end portion 107 attached to the distal end of the portion 105, and an objective lens is mounted on an end surface of the distal end portion. A light guide 113 that illuminates the visual field direction of the lens is incorporated as illumination means, and the other end of the light guide 113 is connected to the light source device 104 for illumination. A video signal from the solid-state imaging device 112 is connected to the signal processing circuit 102 by a cable 114, and the video signal subjected to predetermined signal processing by the signal processing circuit is displayed as an image on the monitor 103. The operation unit 106 incorporates a mechanism unit for operating the endoscope and an operation means 115 such as a switch.

内視鏡の目的によっては、先端部の方向を変え得る屈曲部を先端部107と挿入部105の間に設けたり、挿入部105も屈曲可能な軟性部材で構成したり、金属パイプ等の硬性部材で構成したもの等いろいろな形態がある。   Depending on the purpose of the endoscope, a bending portion that can change the direction of the distal end portion is provided between the distal end portion 107 and the insertion portion 105, the insertion portion 105 is also formed of a flexible member that can be bent, or a rigid material such as a metal pipe There are various forms such as those composed of members.

従来は前記撮像モジュール110からの映像信号を処理する信号処理回路102は、その大部分は内視鏡外部に設けられており、先端部111や操作部106内には信号処理回路等の一部が組み込まれた構成が一般的であったが、近年信号処理回路デバイスの小型化が進み、信号処理回路を操作部106内、または先端の撮像モジュール110内に組み込まれるものも実用化されている。また小型の高効率の発光ダイオードが実用化されるに伴って、発光ダイオードを操作部106内に装着し、内視鏡の先端部に装着されたライトガイド113に連接するか、ライトガイド113に代わって発光ダイオードを直接先端部に配置することも可能になって来た。この場合、光源部104は不要となり発光ダイオードの電源は信号処理回路102から供給することが可能となる。   Conventionally, most of the signal processing circuit 102 for processing the video signal from the imaging module 110 is provided outside the endoscope, and a part of the signal processing circuit or the like is provided in the distal end portion 111 or the operation portion 106. However, in recent years, signal processing circuit devices have been miniaturized, and those in which the signal processing circuit is incorporated in the operation unit 106 or the imaging module 110 at the tip are also in practical use. . Further, as a small high-efficiency light-emitting diode is put into practical use, the light-emitting diode is mounted in the operation unit 106 and connected to the light guide 113 mounted on the distal end portion of the endoscope or connected to the light guide 113. Instead, it has become possible to place a light emitting diode directly at the tip. In this case, the light source unit 104 is not necessary, and the power of the light emitting diode can be supplied from the signal processing circuit 102.

いずれの形態の内視鏡でも、先端部110に設けられた撮像モジュール110の視野方向は前方視のものが多いが、管壁の観察などでは観察視野が前方のみでは十分でなく側方視の観察ができる内視鏡の要求も多く、側方視のみの視野を持つ側視型と呼ばれる内視鏡もある。   In any form of endoscope, the viewing direction of the imaging module 110 provided at the distal end portion 110 is mostly forward-viewed. There are many demands for an endoscope that can be observed, and there is an endoscope called a side-view type that has a field of view only for side view.

またこのような目的のために、特開平9−313435に見られるような、前方視、側方視が可能な内視鏡が開示されており、工業用内視鏡では直視内視鏡の先端部に光路変換手段を着脱することで前方視、側方視の要求を満たすものもあるが前方視と側方視の被写体画像を同時に観察することはできない。   For this purpose, an endoscope capable of forward view and side view as disclosed in Japanese Patent Laid-Open No. 9-313435 is disclosed, and the tip of a direct-view endoscope is used in an industrial endoscope. Some optical path changing means are attached to and removed from the part to satisfy the requirements for forward view and side view, but it is not possible to observe the subject images for forward view and side view at the same time.

上記のような前方視、側方視を可能とした内視鏡では、管体内壁を観察する場合には側方視方向の視野は限定されているので、360度の円周に広がる管体内壁面を観察する場合には内視鏡を回転することで円周状部分の観察することが可能であるが、屈曲した状態の管体等に対しては挿入部を軟性部材で構成した内視鏡でも、内視鏡自体を屈曲した管体内で回転するのは難しく、側視の観察範囲を広くするのが困難な場合が多い。   Endoscopes that allow forward and side views as described above have a limited field of view in the side view direction when observing the wall of the tube. When observing the wall surface, it is possible to observe the circumferential portion by rotating the endoscope. However, for a bent tube or the like, the insertion portion is made of a soft member. Even with a mirror, it is difficult to rotate the endoscope itself in a bent tube, and it is often difficult to widen the observation range of the side view.

特開2000−131737、特開2003−279862などでは、360度の円周に広がる管体内壁を内視鏡を回転することなく観察するために、対物レンズの前方に円錐形型の反射部材を配置する案が提示されているが、対物レンズの周辺視野部分を使用するので被写体像が帯状に観察されるため、観察可能な帯状の幅にも制限があり、解像度も制約を受ける。また内視鏡の前方方向を観察する前方視野がないという大きな欠陥を有する。   In JP-A-2000-131737, JP-A-2003-279862, etc., a conical reflecting member is provided in front of the objective lens in order to observe the inner wall of the tube extending around 360 degrees without rotating the endoscope. Although an arrangement plan is presented, since the object image is observed in a band shape because the peripheral visual field portion of the objective lens is used, the width of the band shape that can be observed is limited, and the resolution is also limited. In addition, there is a large defect that there is no front visual field for observing the front direction of the endoscope.

以上のように、内視鏡の視野範囲を広くする試みはいろいろ試みられているがいずれも十分でなく、前方視野、側方視野を有する広視野内視鏡としては十分なものではない。
特開平9−313435号公報 特開2000−131737号公報 特開2003−279862号公報
As described above, various attempts have been made to widen the field of view of the endoscope, but none of them is sufficient, and it is not sufficient as a wide field endoscope having a front field of view and a side field of view.
JP 9-313435 A JP 2000-131737 A JP 2003-279862 A

前述のように、内視鏡の観察できる視野範囲を広くする試みはいろいろ試みられてきたが十分ではない。本発明の目的は、前方視野と任意方向の側方視野が容易に得られる広視野内視鏡を提供することである。   As described above, various attempts have been made to widen the field of view that can be observed by the endoscope, but this is not sufficient. An object of the present invention is to provide a wide-field endoscope in which a front visual field and a lateral visual field in an arbitrary direction can be easily obtained.

上記目的を達成するために、視野方向の異なる第1の撮像モジュールと、第2の撮像モジュールを持つ広視野内視鏡で、撮像モジュールは少なくとも対物レンズと固体撮像素子を含んだ構造を有し、内視鏡先端部に設けられた透明な円筒体の一端に、透明な円筒体の軸方向に向かって前方視野を有するように第1の撮像モジュールを装着し、第1の撮像モジュールの後部に配置され、第1の撮像モジュールの光軸に対し側方視方向の光軸を有し、透明な円筒体内部で回転自在に装着された第2の撮像モジュールを有する先端構造を持っことで広視野内視鏡を構成する。     To achieve the above object, a wide-field endoscope having a first imaging module and a second imaging module having different viewing directions, the imaging module has a structure including at least an objective lens and a solid-state imaging device. The first imaging module is attached to one end of the transparent cylindrical body provided at the distal end portion of the endoscope so as to have a front visual field in the axial direction of the transparent cylindrical body, and the rear part of the first imaging module And having a tip structure having a second imaging module rotatably mounted within a transparent cylindrical body, having an optical axis in a lateral view direction with respect to the optical axis of the first imaging module. Configure a wide-field endoscope.

さらに詳細に説明すると、透明な円筒体内部で回転自在に装着された第2の撮像モジュールは、内視鏡操作部から回転方向を自由に制御する制御手段を設けることで、360度の円周に広がる管体内壁任意の側方視方向の視野を選択できるので、非常に使い勝手のよい広視野内視鏡を構成できる。   More specifically, the second imaging module mounted rotatably in the transparent cylindrical body has a 360 degree circumference by providing a control means for freely controlling the rotation direction from the endoscope operation unit. Since the field of view in any lateral direction can be selected, it is possible to construct a very easy-to-use wide field endoscope.

請求項2にかかわる発明は、第2の撮像モジュールの視野方向を検出する回転位置検出手段と、視野方向を表示する視野方向表示手段を設け、前方視野を持つ第1の撮像モジュールによる画像内に重畳して第2の撮像モジュールの視野方向を表示することを特徴とした請求項1に記載の広視野内視鏡に関するもので、第1の撮像モジュールによる前方視野の画像内に管壁の傷等を発見した場合、第2の撮像モジュールの視野方向をこの傷のある方向に容易に回転制御可能となるので、内視鏡自体を回転させることなくこの傷を第2の撮像モジュールで容易に正面から観察することが可能になる。   According to a second aspect of the present invention, there is provided rotational position detecting means for detecting the visual field direction of the second imaging module, and visual field direction display means for displaying the visual field direction, and the image by the first imaging module having a front visual field is included in the image. 2. The wide-field endoscope according to claim 1, wherein the field-of-view direction of the second imaging module is displayed in a superimposed manner, and the tube wall is damaged in the image of the front field of view by the first imaging module. When the second imaging module is discovered, it is possible to easily control the rotation of the visual field direction of the second imaging module in the direction of the scratch. Therefore, the scratch can be easily detected by the second imaging module without rotating the endoscope itself. It becomes possible to observe from the front.

請求項3にかかわる発明は、第2の撮像モジュールと同期して透明な円筒体内で回転するよう、第2の撮像モジュールの周辺に発光ダイオードを装着した側方視用照明手段を装着したことを特徴とする請求項1記載の広視野内視鏡に関するもので、最少の数の発光ダイオードで側視視野360度の照明を可能にする。   According to a third aspect of the present invention, there is provided a side-viewing illumination unit having a light emitting diode mounted around the second imaging module so as to rotate in a transparent cylindrical body in synchronization with the second imaging module. The wide-field endoscope according to claim 1, wherein a side-view visual field of 360 degrees can be illuminated with a minimum number of light emitting diodes.

本発明による広視野内視鏡の場合、側方視用観察範囲360度を照明する手段としては先端部の外周に沿って複数個の発光ダイオードを配列するのが一般的であるが、本発明のように回転する第2の撮像モジュールの周辺に必要な明るさを持つ最少な数の発光ダイオードを配置し、第2の撮像モジュールの回転と同期して照明範囲を変える構造をとることで先端部の発熱を極力抑える効果を持つ。   In the case of the wide-field endoscope according to the present invention, as a means for illuminating the observation range for side viewing 360 degrees, it is common to arrange a plurality of light emitting diodes along the outer periphery of the distal end portion. As shown in the figure, the minimum number of light emitting diodes having the necessary brightness is arranged around the rotating second imaging module, and the illumination range is changed in synchronization with the rotation of the second imaging module. It has the effect of suppressing the heat generation of the part as much as possible.

本発明による広視野内視鏡は、内視鏡自体を回転することなく、360度の円周に広がる管体内壁任意の視野周囲方向を正面視する状態で観察することが可能であり、前方視野方向の視野と併設して観察できる。また内視鏡を回転するのが困難な屈曲した管体の内壁等も容易に観察できるのでその利用価値は非常に大きい。   The wide-field endoscope according to the present invention can be observed in a state in which an arbitrary visual field peripheral direction extending in a 360-degree circumference is viewed from the front without rotating the endoscope itself. It can be observed alongside the field of view. In addition, since the inner wall of a bent tube, which is difficult to rotate the endoscope, can be easily observed, its utility value is very large.

以下、図面を参照して本発明の実施の形態を説明する。なお実施例の説明で使用する図面は本発明を容易に把握、理解出来るよう本発明と直接関係ない機構等の具体的な詳細は省略して示している。   Embodiments of the present invention will be described below with reference to the drawings. In the drawings used in the description of the embodiments, specific details such as mechanisms not directly related to the present invention are omitted so that the present invention can be easily understood and understood.

図2は本発明の実施の一形態を示す内視鏡の先端部構成図で図2(A)は先端部の断面を示し、図2(B)は左側前方より見た正面図、図2(C)は図2(A)のX−X‘方向の断面図を示している。   2 is a configuration diagram of a distal end portion of an endoscope showing an embodiment of the present invention. FIG. 2 (A) shows a cross section of the distal end portion, FIG. 2 (B) is a front view as seen from the left front side, FIG. FIG. 2C is a cross-sectional view in the XX ′ direction in FIG.

先端部110は透明なアクリル等の材質で作られた透明な円筒体121と、円筒体121の端面に装着された第1の撮像モジュール122と、円筒体121内に回転自在に装着された第2の撮像モジュール123を主構成要素としている。   The distal end portion 110 includes a transparent cylindrical body 121 made of a material such as transparent acrylic, a first imaging module 122 mounted on the end surface of the cylindrical body 121, and a first rotationally mounted in the cylindrical body 121. Two imaging modules 123 are the main components.

撮像モジュール122、123は、図3に示すように少なくとも対物レンズ111とCMOSやCCDのような固体撮像素子112を含めて構成されており、目的に応じて固体撮像素子の駆動回路、信号処理回路等を組込んだ構成要素に変えることが出来る。なお点線114は対物レンズの視野範囲を示している。   As shown in FIG. 3, the imaging modules 122 and 123 are configured to include at least an objective lens 111 and a solid-state imaging device 112 such as a CMOS or a CCD, and a driving circuit and a signal processing circuit for the solid-state imaging device according to the purpose. It can be changed to a component that incorporates etc. A dotted line 114 indicates the visual field range of the objective lens.

例えば、極力内視鏡の先端部を細くしようとした場合の撮像モジュールは、対物レンズと固体撮像素子とプリアンプ等で構成し、固体撮像素子の駆動回路、信号処理回路等は撮像ユニットから離れた操作部や外部等に配置することで小型化出来る。   For example, the imaging module when trying to make the tip of the endoscope as thin as possible is composed of an objective lens, a solid-state imaging device, a preamplifier, etc., and the drive circuit, signal processing circuit, etc. of the solid-state imaging device are separated from the imaging unit It can be downsized by arranging it on the operation unit or outside.

また形状はやや大きくなるが、対物レンズとCMOS撮像素子とその周辺回路を一体化しUYVYのデジタル出力を取り出せる撮像モジュールが実用化されているのでこの様な撮像モジュールを使用することで、信号処理回路を簡略化することも可能である。   Although the shape is slightly larger, an imaging module that integrates an objective lens, a CMOS imaging device, and its peripheral circuits and can extract UYVY digital output has been put into practical use. By using such an imaging module, a signal processing circuit Can also be simplified.

図2に示すように、第1の撮像モジュール122は透明な円筒体121の前方の一端面に前方方向の視野を持つよう固定して装着され、第2の撮像モジュール123は第1の撮像モジュール122の光軸に対して側方視方向(概略90度)の光軸を持ち、透明な円筒体121の内部で回転自在に動くよう装着される。   As shown in FIG. 2, the first imaging module 122 is fixedly attached to the front end surface of the transparent cylindrical body 121 so as to have a visual field in the forward direction, and the second imaging module 123 is the first imaging module. It has an optical axis in the side viewing direction (approximately 90 degrees) with respect to the optical axis 122, and is mounted so as to move freely inside the transparent cylindrical body 121.

詳細に第1の撮像モジュール122の装着方法を説明すると、前面保持枠124は透明な円筒体121の前面に固定され、第1の撮像モジュール122は前面保持枠124に装着される。更に前面保持枠124の前面にはカバーガラス125が装着され、この内部に照明用の小型発光ダイオード126が組み込まれる。   The mounting method of the first imaging module 122 will be described in detail. The front holding frame 124 is fixed to the front surface of the transparent cylindrical body 121, and the first imaging module 122 is mounted on the front holding frame 124. Further, a cover glass 125 is mounted on the front surface of the front holding frame 124, and a small light emitting diode 126 for illumination is incorporated therein.

透明な円筒体121の他の端面には、透明な円筒部121と挿入部127を連結する連結部材128が装着され、連結部材128には第2の撮像モジュール123を装着した回転部材132が透明な円筒体121内で回転できるように、円筒状の摺動部142が設けられている。   A connecting member 128 that connects the transparent cylindrical portion 121 and the insertion portion 127 is attached to the other end surface of the transparent cylindrical body 121, and the rotating member 132 to which the second imaging module 123 is attached is transparent to the connecting member 128. A cylindrical sliding portion 142 is provided so that it can rotate within the cylindrical body 121.

また前面保持枠124の後端には、第2の撮像モジュール123を装着した回転部材132が透明な円筒体121内で回動できるように、円筒状の摺動部141が設けられている。   In addition, a cylindrical sliding portion 141 is provided at the rear end of the front holding frame 124 so that the rotating member 132 on which the second imaging module 123 is mounted can rotate within the transparent cylindrical body 121.

回転部材132の外周は、前記摺動部141、142と接しており、透明な円筒体121の内部で回転部材132は回転するが、回転部材132の後端部には内側にギアー143が設けられており、連結部材128に装着されたモーター131の回転軸先端に装着されたギアー144と連結され、回転部材132はモーター131によって駆動される。さらに回転部材132に装着された第2の撮像デバイス123の近傍には側視方向の視野を照明する発光ダイオード145が装着されており、第2の撮像デバイス123に同期して、透明な円筒体121内で回転する。   The outer periphery of the rotating member 132 is in contact with the sliding portions 141 and 142, and the rotating member 132 rotates inside the transparent cylindrical body 121, but a gear 143 is provided on the inner side at the rear end portion of the rotating member 132. The rotating member 132 is driven by the motor 131, and is connected to a gear 144 attached to the tip of the rotating shaft of the motor 131 attached to the connecting member 128. Further, a light emitting diode 145 that illuminates the field of view in the side view direction is mounted in the vicinity of the second imaging device 123 mounted on the rotating member 132, and is a transparent cylindrical body in synchronization with the second imaging device 123. Rotates within 121.

また図中146は固体撮像素子や発光ダイオードを駆動する電源ケーブル、撮像モジュールを駆動する信号ケーブル等のケーブル束を示している。   In the figure, reference numeral 146 denotes a bundle of cables such as a power cable for driving the solid-state imaging device and the light emitting diode, and a signal cable for driving the imaging module.

図4にモーター131を駆動する制御手段を示す。150はモーメンタリ動作の2極双投スイッチで、図中上方に示された方向にスイッチのレバーを倒したとき、モーター131の端子152には電源151のプラス端子が接続され、モーター131の他の端子153には電源151のマイナス端子が接続される。また、図中下方に示された方向にスイッチのレバーを倒したとき、モーター131の端子152には電源151のマイナス端子が接続され、モーター131の他の端子153には電源151のプラス端子が接続される。なおスイチのレバーをフリーにすると、スイチ150はオフの状態に戻る。   FIG. 4 shows control means for driving the motor 131. 150 is a momentary-operation double pole double throw switch. When the switch lever is tilted in the direction shown in the upper part of the figure, the positive terminal of the power supply 151 is connected to the terminal 152 of the motor 131, A negative terminal of the power source 151 is connected to the terminal 153. When the switch lever is tilted in the direction shown in the lower part of the figure, the negative terminal of the power source 151 is connected to the terminal 152 of the motor 131, and the positive terminal of the power source 151 is connected to the other terminal 153 of the motor 131. Connected. When the lever of the switch is released, the switch 150 returns to the off state.

このように、モーメンタリ動作の2極双投スイッチ150を用いることで、スイッチ160のレバー操作でモーター131の回転方向を右回り、左回りと変えることができ、また容易に回転を止めることが出来るが、第1、第2の撮像モジュール等からのケーブル146の保護のため、回転の範囲は360度以内に制限するのが望ましい。なお、この2極双投スイッチは操作部106(図1参照)内に組込まれるのが一般的である。     In this way, by using the momentary-operation double-pole double-throw switch 150, the rotation direction of the motor 131 can be changed clockwise or counterclockwise by the lever operation of the switch 160, and the rotation can be easily stopped. However, in order to protect the cable 146 from the first and second imaging modules and the like, it is desirable to limit the rotation range to within 360 degrees. In general, the double pole double throw switch is incorporated in the operation unit 106 (see FIG. 1).

第1の撮像モジュール122による画像と、第2の撮像モジュール123による画像は1台のモニター内に並べて表示するか、ピクチャー・イン・ピクチャーのような形態で表示しても良いが、使用目的によっては2台のモニターに個別に表示しても良い。   The image from the first imaging module 122 and the image from the second imaging module 123 may be displayed side by side in a single monitor or may be displayed in a form such as picture-in-picture, depending on the purpose of use. May be displayed individually on two monitors.

このような先端部を持った内視鏡は、前方部と希望する方向の側方部が同時に見られるので、前方視野内に発見した管壁の傷状物(斜めから見た像)に合わせて、側方視野を有する第2の撮像モジュールを適切な位置に回転することが可能なので、管壁の傷状物等も正面視が可能になり、広視野内視鏡として有用な観察が可能になる。   An endoscope with such a tip can be seen at the same time as the front part and the side part in the desired direction. Since the second imaging module having a side field of view can be rotated to an appropriate position, it is possible to view a flawed object on the tube wall from the front, and a useful observation as a wide field endoscope is possible. become.

実施例1で説明した内視鏡は、管壁内等の観察に当たっては、第1の撮像デバイスによる前方視野と、第2の撮像デバイスによる任意方向の側方視野を選択可能にしているが、前方視野の画像と側方視野の画像は独立しており直接的な関連は無い。そのため、前方視野の画像内に管壁の傷状物等を発見した場合には、側方視野内にこの傷状物等を取込むために第2の撮像デバイスを試行錯誤的に回転させる必要がある。   The endoscope described in Example 1 enables selection of a front visual field by the first imaging device and a side visual field in an arbitrary direction by the second imaging device when observing the inside of the tube wall or the like. The front view image and the side view image are independent and are not directly related. Therefore, when a flawed object on the tube wall is found in the image of the front field of view, the second imaging device needs to be rotated by trial and error in order to incorporate the flawed object or the like in the side field of view. There is.

第2の実施例は、前記欠点を著しく改善したものである。図5(A)は、本発明による広視野内視鏡で管体160の内部管壁を観察している状態を示したもので、図4(B)は図4(A)における前方視野の画像を示している。内視鏡101の第1の撮像デバイス122による画像は、管壁aの位置では、図4(B)の外周円aで、管壁bの位置は図4(B)の点線の円bで、管壁cの位置は図4(B)の小円cで表示される。   In the second embodiment, the above-mentioned drawbacks are remarkably improved. FIG. 5A shows a state in which the inner tube wall of the tube body 160 is observed with the wide-field endoscope according to the present invention, and FIG. 4B shows the front field of view in FIG. An image is shown. The image by the first imaging device 122 of the endoscope 101 is the outer circumference circle a of FIG. 4B at the position of the tube wall a, and the position of the tube wall b is the dotted circle b of FIG. 4B. The position of the tube wall c is indicated by a small circle c in FIG.

第1の撮像デバイス122による前方視野内に傷状物161が観察された場合、第1の撮像デバイスによるモニター上の画像上に、第2の撮像デバイス123の視野方向163がマーカー162のように表示されると、マーカー162が傷状物161と重なるように第2の撮像デバイスの回転方向を制御し、内視鏡を前方に進めることで容易に傷状物162を第2の撮像デバイス123の視野内に捕捉することが出来、画像としてモニター上に表示可能となる。なおこの実施例では、マーカー162は線状の形で表示しているが、他にもいろいろな形のものを選択できる。   When the scratched object 161 is observed in the front visual field by the first imaging device 122, the visual field direction 163 of the second imaging device 123 is like a marker 162 on the image on the monitor by the first imaging device. When displayed, the rotation direction of the second imaging device is controlled so that the marker 162 overlaps the wounded object 161, and the wounded object 162 is easily moved forward by moving the endoscope forward. It can be captured within the field of view and can be displayed on the monitor as an image. In this embodiment, the marker 162 is displayed in a linear shape, but various other shapes can be selected.

第2の撮像デバイス123の視野方向を表示するためには、第2の撮像デバイス123の視野方向の位置を予め検出する手段が必要となる。図6は第1の実施例に、第2の撮像デバイス123の視野方向の位置を予め検出する位置検出の手段の一例として、ポテンショメーターを装着した例を示している。図中170はポテンショメーターを示しており、先端にギアー171が装着され、第2の撮像デバイス123を装着した回転部材132の後端に設けられたギアー143に連接されている。他の部分は図5と同じなので詳細な構造の説明は省略する。   In order to display the visual field direction of the second imaging device 123, a means for detecting in advance the position of the second imaging device 123 in the visual field direction is required. FIG. 6 shows an example in which a potentiometer is attached to the first embodiment as an example of position detecting means for detecting the position of the second imaging device 123 in the visual field direction in advance. In the drawing, reference numeral 170 denotes a potentiometer. A gear 171 is attached to the tip of the potentiometer, and is connected to a gear 143 provided at the rear end of the rotating member 132 to which the second imaging device 123 is attached. Since other parts are the same as those in FIG. 5, detailed description of the structure is omitted.

図7は、第2の撮像デバイス123の視野方向をマーカーとして、第1の撮像デバイス122によるモニター上の画像に重畳して表示する手段を示すもので、前述のポテンショメーター170による位置情報は、電気信号に変換され回転位置表示パターン発生回路180で回転位置表示パターン信号に変換される。   FIG. 7 shows a means for superimposing and displaying the image on the monitor by the first imaging device 122 using the visual field direction of the second imaging device 123 as a marker. It is converted into a signal and converted into a rotational position display pattern signal by a rotational position display pattern generation circuit 180.

第1の撮像モジュール122からの信号を映像信号として所定の処理を行う信号処理回路182からの映像信号と、前記回転位置表示パターン信号は信号重畳回路181で合成されモニター184上に画像として図8(A)のように表示される。ここで、161は管壁の傷、162は回転位置表示のマーカーを表している。   The video signal from the signal processing circuit 182 that performs predetermined processing using the signal from the first imaging module 122 as a video signal and the rotation position display pattern signal are combined by the signal superimposing circuit 181 and displayed as an image on the monitor 184 as shown in FIG. (A) is displayed. Here, 161 represents a flaw on the tube wall, and 162 represents a marker for displaying the rotational position.

この状態で、内視鏡を前方に進めると、図7の第2の撮像モジュールからの信号は信号処理回路173で所定の信号処理を行い、モニター185上に図8(B)のように管壁の傷を正面視した画像として表示される。   In this state, when the endoscope is advanced forward, the signal from the second imaging module in FIG. 7 is subjected to predetermined signal processing by the signal processing circuit 173, and the tube is displayed on the monitor 185 as shown in FIG. It is displayed as an image of a wall scratch viewed from the front.

第1の撮像モジュールによる画像と、第2の撮像モジュールによる画像は1台のモニター内に並べて表示するか、ピクチャー・イン・ピクチャーのような形態で表示しても良いが、2台のモニターに個別に表示しても良いのは実施例1の場合と同じである。   The image from the first imaging module and the image from the second imaging module may be displayed side by side on a single monitor or may be displayed in a form such as picture-in-picture, but on two monitors It may be displayed individually as in the case of the first embodiment.

このように、 前方視野を持つ第1の撮像モジュールの画像内に、側方視野を持つ第2の撮像モジュールの視野方向を表示することによって、管壁等内部の傷等が容易に発見でき、前記傷等が管壁のどの方向にあっても、内視鏡自体を回転せずに常に正面視した画像を容易に得ることが出来るので、利用しやすい広視野内視鏡が提供可能となる。   Thus, by displaying the visual field direction of the second imaging module having the side field of view in the image of the first imaging module having the front field of view, it is possible to easily find scratches or the like inside the tube wall, etc. An easy-to-use wide-field endoscope can be provided because an image always viewed from the front can be easily obtained without rotating the endoscope itself regardless of the direction of the tube wall. .

本発明による広視野内視鏡は、パイプの内壁等を観察するに適しているが、超小型の対物レンズ、固体撮像素子を用いて、第1の撮像モジュールと、第2の撮像モジュールを小型化し、軟性部材の挿入部を用いることで医用としての広視野内視鏡も構成できるので広い分野での利用可能性が非常に大きい。   The wide-field endoscope according to the present invention is suitable for observing the inner wall and the like of a pipe, but the first imaging module and the second imaging module are miniaturized using an ultra-small objective lens and a solid-state imaging device. Therefore, a wide field endoscope for medical use can be configured by using an insertion portion of a soft member, so that the applicability in a wide field is very large.

電子内視鏡の基本構成図。1 is a basic configuration diagram of an electronic endoscope. 広視野内視鏡の第1の実施例による先端部の構成図。The block diagram of the front-end | tip part by the 1st Example of a wide-field endoscope. 撮像モジュールの基本構成図。The basic block diagram of an imaging module. 先端部に装着されたモーターの回転を制御する制御手段の説明図。Explanatory drawing of the control means which controls rotation of the motor with which the front-end | tip part was mounted | worn. 第2の実施例の説明図。Explanatory drawing of a 2nd Example. 広視野内視鏡の第2の実施例による先端部の構成図。The block diagram of the front-end | tip part by the 2nd Example of a wide-field endoscope. 第2の実施例に用いる制御手段の説明図。Explanatory drawing of the control means used for a 2nd Example. 第2の実施例による前方視画像と側方視画像の関連の説明図。Explanatory drawing of the relationship between the forward view image and side view image by a 2nd Example.

符号の説明Explanation of symbols

101 内視鏡
102、182、183 信号処理回路
103、184、185 モニター
105 挿入部
106 操作部
107 先端部
110、122、123 撮像モジュール
111 対物レンズ
112 固体撮像素子
113 ライトガイド
121 透明な円筒体
126、145 発光ダイオード
131 モーター
132 回転部材
143、144、171 ギアー
150 2極双投スイッチ
151 電源
161 傷状物
162 マーカー
170 ポテンショメーター
180 回転位置表示パターン発生回路
181 信号重畳回路
101 Endoscopes 102, 182, 183 Signal processing circuits 103, 184, 185 Monitor 105 Insertion unit 106 Operation unit 107 Tip portions 110, 122, 123 Imaging module 111 Objective lens 112 Solid-state imaging device 113 Light guide 121 Transparent cylindrical body 126 145 Light-emitting diode 131 Motor 132 Rotating member 143, 144, 171 Gear 150 Two-pole double-throw switch 151 Power supply 161 Wound object 162 Marker 170 Potentiometer 180 Rotation position display pattern generation circuit 181 Signal superposition circuit

Claims (3)

視野方向の異なる第1の撮像モジュールと、第2の撮像モジュールを持つ広視野内視鏡で、撮像モジュールは少なくとも対物レンズと固体撮像素子を含んだ構造を有し、内視鏡先端部に設けられた透明な円筒体の一端に、透明な円筒体の軸方向に向かって前方視野を有するように第1の撮像モジュールを装着し、第1の撮像モジュールの後部に配置され、第1の撮像モジュールの光軸に対し側方視方向の光軸を有し、透明な円筒体内部で回転自在に装着された第2の撮像モジュールを有する先端構造を持ったことを特徴とする広視野内視鏡。     A wide-field endoscope having a first imaging module and a second imaging module having different viewing directions. The imaging module has a structure including at least an objective lens and a solid-state imaging device, and is provided at the distal end of the endoscope. The first imaging module is mounted on one end of the transparent cylinder so that the first imaging module has a front field of view in the axial direction of the transparent cylinder, and is disposed at the rear of the first imaging module. Wide-field endoscope having a tip structure having a second imaging module having an optical axis in a lateral viewing direction with respect to the optical axis of the module and rotatably mounted inside a transparent cylindrical body mirror. 第2の撮像モジュールの視野方向を検出する回転位置検出手段と、視野方向を表示する視野方向表示手段を設け、前方視野を持つ第1の撮像モジュールによる画像内に重畳して第2の撮像モジュールの視野方向を表示することを特徴とした請求項1に記載の広視野内視鏡。     Rotation position detecting means for detecting the visual field direction of the second imaging module and visual field direction display means for displaying the visual field direction are provided, and the second imaging module is superimposed on the image of the first imaging module having the front visual field. The wide-field endoscope according to claim 1, wherein the visual field direction is displayed. 第2の撮像モジュールと同期して透明な円筒体内で回転するよう、第2の撮像モジュールの周辺に発光ダイオードを装着した側視用照明手段を装着したことを特徴とする請求項1記載の広視野内視鏡。   2. The wide viewing illumination device according to claim 1, further comprising a side-view illumination unit having a light emitting diode mounted around the second imaging module so as to rotate in a transparent cylindrical body in synchronization with the second imaging module. Field endoscope.
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