JP2009178564A - Endoscope device - Google Patents
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- JP2009178564A JP2009178564A JP2009114012A JP2009114012A JP2009178564A JP 2009178564 A JP2009178564 A JP 2009178564A JP 2009114012 A JP2009114012 A JP 2009114012A JP 2009114012 A JP2009114012 A JP 2009114012A JP 2009178564 A JP2009178564 A JP 2009178564A
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- 238000003780 insertion Methods 0.000 claims abstract description 49
- 230000037431 insertion Effects 0.000 claims abstract description 49
- 238000005452 bending Methods 0.000 claims description 248
- 238000012545 processing Methods 0.000 claims description 29
- 238000005286 illumination Methods 0.000 claims description 18
- 238000001514 detection method Methods 0.000 claims description 15
- 238000013500 data storage Methods 0.000 claims description 10
- 238000003384 imaging method Methods 0.000 claims description 10
- 238000012360 testing method Methods 0.000 claims description 10
- 230000003287 optical effect Effects 0.000 claims description 6
- 238000001839 endoscopy Methods 0.000 claims 1
- 238000007689 inspection Methods 0.000 abstract description 18
- 238000000034 method Methods 0.000 description 39
- 238000010586 diagram Methods 0.000 description 15
- 230000000694 effects Effects 0.000 description 3
- 238000011282 treatment Methods 0.000 description 3
- 238000013075 data extraction Methods 0.000 description 2
- 230000006870 function Effects 0.000 description 2
- 230000020169 heat generation Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000005540 biological transmission Effects 0.000 description 1
- 238000005282 brightening Methods 0.000 description 1
- 238000005260 corrosion Methods 0.000 description 1
- 230000007797 corrosion Effects 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 239000000284 extract Substances 0.000 description 1
- 239000004973 liquid crystal related substance Substances 0.000 description 1
- 210000000056 organ Anatomy 0.000 description 1
- 230000001225 therapeutic effect Effects 0.000 description 1
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Abstract
Description
本発明は、管腔内に挿入部を挿入し、管腔内の被検部位を照明し、被検部位を観察する内視鏡装置に関する。 The present invention relates to an endoscope apparatus that inserts an insertion portion into a lumen, illuminates a test site in the lumen, and observes the test site.
近年、体腔内に細長の挿入部を挿入することにより、体腔内臓器等を観察したり、必要に応じて処置具チャンネル内に挿通した処置具を用いて各種治療処置できる医療用の内視鏡が広く利用されている。 In recent years, a medical endoscope capable of observing organs in a body cavity by inserting an elongated insertion portion into a body cavity, or performing various therapeutic treatments using a treatment instrument inserted into a treatment instrument channel as necessary. Is widely used.
また、工業用の管路等の腐食や傷等の検査に工業用の内視鏡が利用されている。 In addition, industrial endoscopes are used for inspection of corrosion and scratches on industrial pipes and the like.
ところで、内視鏡の使用時に体腔内や管腔内等を照明するための手段としては、外部の照明装置からの照明光を内視鏡の挿入部内に配設されたライトガイドを用いて伝送を行うものがあるが、照明装置は大型であるために内視鏡装置全体が大型化してしまう。 By the way, as a means for illuminating a body cavity, a lumen or the like when using an endoscope, illumination light from an external illumination device is transmitted using a light guide disposed in an insertion portion of the endoscope. However, since the illumination device is large, the entire endoscope device is enlarged.
そこで、例えば特開平11−155811号公報等に示されるように、照明ランプを挿入部の先端部に配置し、内視鏡装置の小型化をねらった技術があり、照明ランプとしては主としてLED(Light Emitting Diodes)を用いている。 Therefore, as disclosed in, for example, Japanese Patent Application Laid-Open No. 11-15581, there is a technique in which an illumination lamp is disposed at the distal end of the insertion portion to reduce the size of the endoscope apparatus. Light Emitting Diodes).
LEDは消費電力が少ない一方で過電流に弱く破壊されやすいので、信頼性の要求される医療器に用いるのは難しいものであるが、小型化を要求される内視鏡においては注目される技術の一つである。 LED is low power consumption but weak against overcurrent and easily destroyed. Therefore, it is difficult to use for medical devices that require high reliability. one of.
上記特開平11−155811号公報の内視鏡装置は、挿入部先端にLEDを配置し、
電流値検出手段、電流値比較手段、電流値制御手段等を用いて、LEDの電源ラインの長さが異なる種々の内視鏡を用いても常に必要な光量を確保するものである。
The endoscope apparatus disclosed in Japanese Patent Laid-Open No. 11-155811 has an LED disposed at the distal end of the insertion portion,
The current value detecting means, current value comparing means, current value control means, etc. are used to ensure the necessary amount of light at all times even when using various endoscopes with different LED power line lengths.
また、特開平11−225952号公報は、複数のLEDを挿入部先端に配置し、内視鏡画像の映像信号をモニタし、モニタ結果により特定のLEDの輝度調整を指示する内視鏡装置を開示している。 Japanese Patent Laid-Open No. 11-225952 discloses an endoscope apparatus in which a plurality of LEDs are arranged at the distal end of an insertion portion, a video signal of an endoscopic image is monitored, and brightness adjustment of a specific LED is instructed according to a monitor result. Disclosure.
さらに、特開2005−342010号公報は、照明光学系のある挿入部を備えた内視鏡とは別体に、シースにLEDを設け、そのシースのLEDの照明制御を内視鏡挿入部の湾曲に連動させる内視鏡装置を開示している。 Furthermore, Japanese Patent Laid-Open No. 2005-342010 provides an LED in a sheath separately from an endoscope having an insertion portion with an illumination optical system, and controls the illumination of the LED of the sheath in the endoscope insertion portion. An endoscope apparatus interlocked with bending is disclosed.
しかしながら、上記特開平11−155811号公報の内視鏡装置においては、挿入部先端を湾曲動作させながら照明光の照明領域を検査対象物上で移動させる場合、湾曲させる方向(検査しようとしている方向)が暗く、検査対象物上の注目部位を発見することが難しいといった問題がある。 However, in the endoscope apparatus disclosed in Japanese Patent Application Laid-Open No. 11-15581, when the illumination area of the illumination light is moved on the inspection object while the distal end of the insertion portion is bent, the direction to be bent (direction to be inspected) ) Is dark and it is difficult to find a target region on the inspection object.
また、上記特開平11−225952号公報の内視鏡装置においては、湾曲させる方向(検査しようとしている方向)を明るくするめには、モニタ結果によりユーザが特定のLEDの輝度を手動で指示しなければならず、操作が煩雑になるといった問題がある。 In the endoscope apparatus disclosed in Japanese Patent Laid-Open No. 11-225952, in order to brighten the bending direction (direction to be inspected), the user must manually indicate the brightness of a specific LED based on the monitor result. There is a problem that the operation becomes complicated.
さらに、上記特開2005−342010号公報の内視鏡装置においては、上述の特開平11−155811号公報あるいは特開平11−225952号公報と比較すると、シースのLEDの照明制御を内視鏡挿入部の湾曲に連動させるという点で湾曲させる方向(検査しようとしている方向)を明るくといった操作性の向上が可能であるが、内視鏡挿入部を覆うために追加したシースにバッテリやローカルCPU等の付加的手段を内蔵させているため、挿入部全体の径が太くなり、使用できる環境が制限されるといった問題がある。 Further, in the endoscope apparatus disclosed in Japanese Patent Application Laid-Open No. 2005-342010, the LED illumination control of the sheath is inserted into the endoscope as compared with the above-mentioned Japanese Patent Application Laid-Open No. 11-155811 or Japanese Patent Application Laid-Open No. 11-225952. Although it is possible to improve the operability such as brightening the direction of bending (direction to be inspected) in terms of interlocking with the bending of the part, a battery, a local CPU, etc. are added to the sheath added to cover the endoscope insertion part Since the additional means is incorporated, there is a problem that the diameter of the entire insertion portion is increased, and the usable environment is restricted.
本発明は、上述した点に鑑みてなされたもので、挿入部の細径化を維持し、かつ検査箇所(注目部位)を適切な輝度で照明し、検査効率を向上させることのできる内視鏡装置を提供することを目的としている。 The present invention has been made in view of the above-described points, and is an endoscope that can maintain the narrowed diameter of the insertion portion and illuminate the inspection portion (target region) with appropriate luminance to improve inspection efficiency. The object is to provide a mirror device.
本発明の内視鏡装置は、
先端部に対物光学系を備え細長で湾曲部を有した、管腔内に挿入される挿入部と、
前記挿入部が挿入される前記管腔内の被検部位を撮像する撮像手段と、
前記撮像手段からの撮像信号を信号処理し前記被検部位の画像を表示手段に表示させる信号処理手段と、
前記湾曲部の湾曲動作を指示する湾曲指示手段と、
を有する内視鏡装置において、
前記挿入部の先端より前記被検部位を照明する照明光を発光する光源手段と、
前記挿入部の先端内部の前記撮像手段の近傍の温度を検出する温度検出手段と、
温度データに基づく前記光源手段の輝度データを格納した輝度データ格納部と、
前記温度データに基づき、前記輝度データ格納部に格納されている輝度データより前記光源手段の輝度を制御する輝度制御手段と、
を備えて構成される。
The endoscope apparatus of the present invention is
An insertion part to be inserted into the lumen, having an objective optical system at the distal end and having an elongated and curved part;
Imaging means for imaging a test site in the lumen into which the insertion unit is inserted;
Signal processing means for performing signal processing on an imaging signal from the imaging means and displaying an image of the test site on a display means;
A bending instruction means for instructing a bending operation of the bending portion;
In an endoscope apparatus having
Light source means for emitting illumination light for illuminating the test site from the tip of the insertion portion;
Temperature detecting means for detecting the temperature in the vicinity of the imaging means inside the distal end of the insertion portion;
A luminance data storage unit storing luminance data of the light source means based on temperature data;
A luminance control means for controlling the luminance of the light source means from the luminance data stored in the luminance data storage unit based on the temperature data;
It is configured with.
本発明によれば、挿入部の細径化を維持し、かつ検査箇所(注目部位)を適切な輝度で照明し、検査効率を向上させることができるという効果がある。 According to the present invention, it is possible to maintain the narrow diameter of the insertion portion and illuminate the inspection location (target region) with appropriate luminance, thereby improving the inspection efficiency.
以下、図面を参照しながら本発明の実施例について述べる。 Embodiments of the present invention will be described below with reference to the drawings.
図1ないし図7は本発明の実施例1に係わり、図1は内視鏡装置の構成を示す構成図、図2は図1の制御部の機能構成を示すブロック図、図3は図2の制御部の処理の流れを示すフローチャート、図4は図3の処理を説明する第1のタイミングチャート、図5は図3の処理を説明する第1の説明図、図6は図3の処理を説明する第2のタイミングチャート、図7は図3の処理を説明する第2の説明図である。 1 to 7 relate to the first embodiment of the present invention, FIG. 1 is a block diagram showing the configuration of the endoscope apparatus, FIG. 2 is a block diagram showing the functional configuration of the control unit in FIG. 1, and FIG. FIG. 4 is a first timing chart illustrating the processing of FIG. 3, FIG. 5 is a first explanatory diagram illustrating the processing of FIG. 3, and FIG. 6 is the processing of FIG. FIG. 7 is a second timing chart for explaining the processing of FIG.
図1に示すように、本実施例の内視鏡装置1は、管腔内に挿入され、先端部4の先端面に設けられた対物光学系10を介して管腔内の検査箇所(注目部位)を撮像する撮像手段としての撮像素子である例えば CCD7を先端内に有する挿入部3と、 CCD7が撮像した撮像信号を信号処理する信号処理手段としての信号処理装置2とから構成される。なお、撮像素子はCCDに限らず、CMOSセンサにより構成しても良い。 As shown in FIG. 1, the endoscope apparatus 1 of the present embodiment is inserted into a lumen, and an inspection location (attention) in the lumen via an objective optical system 10 provided on the distal end surface of the distal end portion 4. An image pickup device as an image pickup means for picking up an image of a part), for example, includes an insertion portion 3 having a CCD 7 in its tip, and a signal processing device 2 as a signal processing means for signal processing an image pickup signal picked up by the CCD 7. Note that the image sensor is not limited to a CCD, but may be a CMOS sensor.
前記先端部4の先端面には、前記対物光学系10を中心として、例えば上下左右に第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの4つの白色LEDを発光素子とする光源手段が配置され設けられている。 For example, a first (upper) LED 6a, a second (lower) LED 6b, a third (left) LED 6c, and a fourth (right) LED 6d vertically and horizontally on the distal end surface of the distal end portion 4 with the objective optical system 10 as the center. Light source means using the four white LEDs as light emitting elements are arranged and provided.
前記挿入部3は、細長で可撓性を有し、先端部4の近傍は複数の湾曲コマ8からなる湾曲部5が形成されており、この湾曲部5を湾曲させることで、先端部4を上下左右に湾曲させることかできるようになっている。 The insertion portion 3 is elongated and flexible, and a bending portion 5 including a plurality of bending pieces 8 is formed in the vicinity of the distal end portion 4. By bending the bending portion 5, the distal end portion 4 is formed. Can be bent vertically and horizontally.
前記信号処理装置2は、LEDドライバ11、湾曲ドライバ12、信号処理部13、表示部14、湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17、湾曲右方向指示ボタン18、主メモリ19及び制御部20を備えて構成されている。 The signal processing device 2 includes an LED driver 11, a bending driver 12, a signal processing unit 13, a display unit 14, a bending upward direction instruction button 15, a bending downward direction instruction button 16, a bending left direction instruction button 17, and a bending right direction instruction button. 18, a main memory 19 and a control unit 20 are provided.
前記LEDドライバ11は、上記の第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dを後述する制御に基づいた輝度で点灯させるドライバである。 The LED driver 11 is a driver that lights the first (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d with brightness based on control described later.
また、前記湾曲ドライバ12は、複数の湾曲コマ8の上下左右に連結されている4本の湾曲ワイヤ9を駆動することで、湾曲部5を湾曲させるドライバである。 The bending driver 12 is a driver that bends the bending portion 5 by driving the four bending wires 9 connected to the upper, lower, left, and right of the plurality of bending pieces 8.
前記信号処理部13は、CCD7を駆動すると共に、CCD7からの撮像信号を信号処理して検査箇所(注目部位)の観察画像を、例えば信号処理装置2の前面に配置された液晶モニタからなる前記表示部14に表示させる。 The signal processing unit 13 drives the CCD 7 and also performs signal processing on the image pickup signal from the CCD 7 to display an observation image of the inspection site (target site), for example, a liquid crystal monitor disposed on the front surface of the signal processing device 2. It is displayed on the display unit 14.
また、湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18は、例えば信号処理装置2の前面に配置された、湾曲部5の湾曲方向を指示するメカニカルボタンから構成される湾曲指示手段としての湾曲指示入力部である。 Further, the bending upward direction instruction button 15, the bending downward direction instruction button 16, the bending left direction instruction button 17, and the bending right direction instruction button 18 indicate the bending direction of the bending portion 5 disposed on the front surface of the signal processing device 2, for example. It is a bending instruction | indication input part as a bending instruction | indication means comprised from the mechanical button to instruct | indicate.
前記制御部20は、主メモリ19に格納されている制御プログラムに従って、装置内部の各部を制御する。なお、主メモリ19は、制御プログラムを格納すると共に、制御部20が制御に必要なデータをリード/ライトできるようになっている。 The control unit 20 controls each unit in the apparatus according to a control program stored in the main memory 19. The main memory 19 stores a control program, and the control unit 20 can read / write data necessary for control.
また、前記制御部20は、図2に示すように、システム制御部20a、湾曲方向判定部20b、湾曲制御手段としての湾曲駆動制御部20c及び輝度制御手段としてのLED駆動制御部20dの各部を有して構成される。 Further, as shown in FIG. 2, the control unit 20 includes a system control unit 20a, a bending direction determination unit 20b, a bending drive control unit 20c as a bending control unit, and an LED drive control unit 20d as a luminance control unit. It is configured.
システム制御部20aは、主メモリ19に格納されている制御プログラムに従って処理を実行する機能部である。湾曲方向判定部20bは、湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18の操作を検知し、湾曲方向を判定する機能部である。 The system control unit 20 a is a functional unit that executes processing according to a control program stored in the main memory 19. The bending direction determination unit 20b is a functional unit that detects the operation of the bending upward direction instruction button 15, the bending downward direction instruction button 16, the bending left direction instruction button 17, and the bending right direction instruction button 18 and determines the bending direction.
また、湾曲駆動制御部20cは、湾曲方向判定部20bが判定した湾曲方向に湾曲部5を湾曲させるために湾曲ドライバ12を制御する。LED駆動制御部20dは、湾曲方向判定部20bが判定した湾曲方向に基づいて湾曲部5の湾曲動作に連動して、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度を設定して、LEDドライバ11を制御する。 Further, the bending drive control unit 20c controls the bending driver 12 to bend the bending unit 5 in the bending direction determined by the bending direction determination unit 20b. The LED drive control unit 20d is linked to the bending operation of the bending unit 5 based on the bending direction determined by the bending direction determination unit 20b, and the first (upper) LED 6a, the second (lower) LED 6b, and the third (left). The brightness of the LED 6c and the fourth (right) LED 6d is set, and the LED driver 11 is controlled.
このように構成された本実施例の作用について、図3のフローチャートを用い、図4ないし図7を参照して説明する。 The operation of this embodiment configured as described above will be described with reference to FIGS. 4 to 7 using the flowchart of FIG.
内視鏡装置1による管腔内の検査が開始されると、制御部20のシステム制御部20aにより制御プログラムが起動し、図3に示すように、制御部20のLED駆動制御部20dは、ステップS1にてLEDドライバ11を制御し、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dを所定の輝度レベルであるLevel1で点灯させる。 When the inspection of the lumen by the endoscope apparatus 1 is started, the control program is started by the system control unit 20a of the control unit 20, and as shown in FIG. 3, the LED drive control unit 20d of the control unit 20 In step S1, the LED driver 11 is controlled to light the first (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d at Level 1, which is a predetermined luminance level.
そして、ステップS2にて、制御部20の湾曲方向判定部20bは、湾曲上方向指示ボタン15が押下されたかどうか判断する。湾曲上方向指示ボタン15が押下されていないと判断するとステップS5に進む。 In step S2, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending upward direction instruction button 15 has been pressed. If it is determined that the curved upward direction instruction button 15 is not pressed, the process proceeds to step S5.
一方、湾曲方向判定部20bが湾曲上方向指示ボタン15が押下されたと判断すると、ステップS3にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の上部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を上方向に湾曲させる。続いて、ステップS4にて制御部20のLED駆動制御部20dは、第1(上)LED6aの輝度レベルをLevel1より高い輝度レベル(Level2:Level2>Level1)に設定すると共に、第2(下)LED6bの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS5に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending up direction instruction button 15 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S3, and the upper portion of the plurality of bending pieces 8 is controlled. By driving the bending wire 9 connected to the bending portion 5, the bending portion 5 is bent upward. Subsequently, in step S4, the LED drive control unit 20d of the control unit 20 sets the luminance level of the first (upper) LED 6a to a luminance level higher than Level 1 (Level 2: Level 2> Level 1) and second (lower). The brightness level of the LED 6b is set to a brightness level lower than Level1 (Level3: Level3 <Level1), the LED driver 11 is controlled, and the process proceeds to Step S5.
これにより第1(上)LED6aは輝度レベル=Level2(>Level1)、第2(下)LED6bは輝度レベル=Level3(<Level1)、第3(左)LED6c及び第4(右)LED6dは輝度レベル=Level1で点灯駆動される。 Accordingly, the first (upper) LED 6a has a luminance level = Level 2 (> Level 1), the second (lower) LED 6b has a luminance level = Level 3 (<Level 1), the third (left) LED 6c and the fourth (right) LED 6d have luminance levels. = Light 1 is driven to light.
そして、ステップS5にて、制御部20の湾曲方向判定部20bは、湾曲下方向指示ボタン16が押下されたかどうか判断する。湾曲下方向指示ボタン16が押下されていないと判断するとステップS8に進む。 In step S5, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending downward direction instruction button 16 has been pressed. If it is determined that the curved downward direction instruction button 16 is not pressed, the process proceeds to step S8.
一方、湾曲方向判定部20bが湾曲下方向指示ボタン16が押下されたと判断すると、ステップS6にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の下部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を下方向に湾曲させる。続いて、ステップS7にて制御部20のLED駆動制御部20dは、第2(下)LED6bの輝度レベルをLevel1より高い輝度レベル(Level2:Level2>Level1)に設定すると共に、第1(上)LED6aの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS8に進む。 On the other hand, when the bending direction determination unit 20b determines that the bending down direction instruction button 16 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S6, and the lower portions of the plurality of bending pieces 8 are controlled. By driving the bending wire 9 connected to the bending portion 5, the bending portion 5 is bent downward. Subsequently, in step S7, the LED drive control unit 20d of the control unit 20 sets the luminance level of the second (lower) LED 6b to a luminance level higher than Level 1 (Level 2: Level 2> Level 1) and first (upper). The luminance level of the LED 6a is set to a luminance level lower than Level1 (Level3: Level3 <Level1), the LED driver 11 is controlled, and the process proceeds to Step S8.
これにより第1(上)LED6aは輝度レベル=Level3(<Level1)、第2(下)LED6bは輝度レベル=Level2(>Level1)、第3(左)LED6c及び第4(右)LED6dは輝度レベル=Level1で点灯駆動される。 Accordingly, the first (upper) LED 6a has a luminance level = Level3 (<Level1), the second (lower) LED 6b has a luminance level = Level2 (> Level1), the third (left) LED 6c and the fourth (right) LED 6d have luminance levels. = Light 1 is driven to light.
ステップS8では、制御部20の湾曲方向判定部20bは、湾曲左方向指示ボタン17が押下されたかどうか判断する。湾曲左方向指示ボタン17が押下されていないと判断するとステップS11に進む。 In step S8, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending left direction instruction button 17 has been pressed. If it is determined that the curved left direction instruction button 17 has not been pressed, the process proceeds to step S11.
一方、湾曲方向判定部20bが湾曲左方向指示ボタン17が押下されたと判断すると、ステップS9にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の左部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を左方向に湾曲させる。続いて、ステップS10にて制御部20のLED駆動制御部20dは、第3(左)LED6cの輝度レベルをLevel1より高い輝度レベル(Level2:Level2>Level1)に設定すると共に、第4(右)LED6dの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS11に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending left direction instruction button 17 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S9, and the left of the plurality of bending pieces 8 is left. The bending portion 5 is bent leftward by driving the bending wire 9 connected to the portion. Subsequently, in step S10, the LED drive control unit 20d of the control unit 20 sets the luminance level of the third (left) LED 6c to a luminance level higher than Level 1 (Level 2: Level 2> Level 1) and the fourth (right). The luminance level of the LED 6d is set to a luminance level lower than Level 1 (Level 3: Level 3 <Level 1), the LED driver 11 is controlled, and the process proceeds to step S11.
これにより第1(上)LED6a及び第2(下)LED6bは輝度レベル=Level1、第3(左)LED6cは輝度レベル=Level2(>Level1)、第4(右)LED6dは輝度レベル=Level3(<Level1)で点灯駆動される。 Thus, the first (upper) LED 6a and the second (lower) LED 6b have a luminance level = Level1, the third (left) LED 6c has a luminance level = Level2 (> Level1), and the fourth (right) LED 6d has a luminance level = Level3 (< Level 1) is driven to light.
ステップS11では、制御部20の湾曲方向判定部20bは、湾曲右方向指示ボタン18が押下されたかどうか判断する。湾曲右方向指示ボタン18が押下されていないと判断するとステップS14に進む。 In step S11, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending right direction instruction button 18 has been pressed. If it is determined that the curved right direction instruction button 18 is not pressed, the process proceeds to step S14.
一方、湾曲方向判定部20bが湾曲右方向指示ボタン18が押下されたと判断すると、ステップS12にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の右部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を右方向に湾曲させる。続いて、ステップS13にて制御部20のLED駆動制御部20dは、第4(右)LED6dの輝度レベルをLevel1より高い輝度レベル(Level2:Level2>Level1)に設定すると共に、第3(左)LED6cの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS14に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending right direction instruction button 18 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S12, and the right of the plurality of bending pieces 8 is controlled. The bending portion 5 is bent in the right direction by driving the bending wire 9 connected to the portion. Subsequently, in step S13, the LED drive control unit 20d of the control unit 20 sets the luminance level of the fourth (right) LED 6d to a luminance level higher than Level 1 (Level 2: Level 2> Level 1) and third (left). The luminance level of the LED 6c is set to a luminance level lower than Level1 (Level3: Level3 <Level1), the LED driver 11 is controlled, and the process proceeds to step S14.
これにより第1(上)LED6a及び第2(下)LED6bは輝度レベル=Level1、第3(左)LED6cは輝度レベル=Level3(<Level1)、第4(右)LED6dは輝度レベル=Level2(>Level1)で点灯駆動される。 Thereby, the first (upper) LED 6a and the second (lower) LED 6b have a luminance level = Level1, the third (left) LED 6c has a luminance level = Level3 (<Level1), and the fourth (right) LED 6d has a luminance level = Level2 (>). Level 1) is driven to light.
そして、ステップS14にて湾曲動作が停止した(湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18の操作が中止された)かどうか判断し、湾曲動作が停止したと判断するとステップS1に戻り、湾曲動作が停止していないと判断するとステップS2に戻る。 In step S14, it is determined whether or not the bending operation has been stopped (the operation of the bending upward direction button 15, the bending downward direction button 16, the bending left direction button 17 and the bending right direction button 18 has been stopped). If it is determined that the bending operation has stopped, the process returns to step S1, and if it is determined that the bending operation has not stopped, the process returns to step S2.
図4は検査開始から第1ないし第4のLED6a〜6dの点灯駆動開始に至るタイミングを示すタイミングチャートである。図5は図4の点灯駆動開始のタイミングで第1ないし第4のLED6a〜6dを輝度レベル=Level1(所定の輝度レベル)点灯駆動した際に(ステップS1)、表示部14に表示される表示画像の明るさを模式的に示した図である。図5では第1ないし第4のLED6a〜6dの照明光の最も明るいエリアが主として画像の中心部になっている状態を示している。 FIG. 4 is a timing chart showing the timing from the start of inspection to the start of lighting driving of the first to fourth LEDs 6a to 6d. FIG. 5 shows the display displayed on the display unit 14 when the first to fourth LEDs 6a to 6d are driven to be lit at the luminance level = Level 1 (predetermined luminance level) at the timing of starting the lighting drive in FIG. 4 (step S1). It is the figure which showed the brightness of the image typically. FIG. 5 shows a state in which the brightest area of the illumination light of the first to fourth LEDs 6a to 6d is mainly the center of the image.
また、図6は湾曲右方向指示ボタン18が押下された際の第1(上)LED6a、第2(下)LED6b、第3(左)LED6cを輝度レベル及び第4(右)LED6dの点灯駆動のタイミングを示すタイミングチャートである。図7は湾曲部5が右方向に湾曲される(ステップS12)と共に、図6での第1(上)LED6a及び第2(下)LED6bを輝度レベル=Level1、第3(左)LED6cを輝度レベル=Level3(<Level1)、第4(右)LED6dを輝度レベルの輝度レベル=Level2(>Level1)で点灯駆動された(ステップS13)際に、表示部14に表示される表示画像の明るさを模式的に示した図であり、図5と比較して照明光の最も明るいエリアが右方向に広がっている状態を示している。 FIG. 6 shows that the first (upper) LED 6a, the second (lower) LED 6b, and the third (left) LED 6c are driven to turn on the luminance level and the fourth (right) LED 6d is turned on when the curved right direction instruction button 18 is pressed. It is a timing chart which shows the timing of. In FIG. 7, the bending portion 5 is bent in the right direction (step S12), and the first (upper) LED 6a and the second (lower) LED 6b in FIG. 6 have luminance levels = Level1, and the third (left) LED 6c has luminance. The brightness of the display image displayed on the display unit 14 when the level = Level3 (<Level1) and the fourth (right) LED 6d are driven to be lit at the luminance level = Level2 (> Level1) (Step S13). FIG. 6 is a diagram schematically showing a state in which the brightest area of the illumination light spreads in the right direction as compared with FIG.
このように本実施例によれば、LEDを挿入部3の先端に配置することで挿入部3の細径化を維持し、かつ、湾曲方向に応じ第1ないし第4のLEDの輝度レベルを増減させているので、少なくとも湾曲方向の先にある検査箇所(注目部位)を適切な輝度で照明し、検査効率を向上させることができる。 As described above, according to this embodiment, the LED is arranged at the tip of the insertion portion 3 to maintain the diameter of the insertion portion 3, and the luminance levels of the first to fourth LEDs are set according to the bending direction. Since it is increased / decreased, at least the inspection location (attention site) ahead in the bending direction can be illuminated with appropriate luminance, and the inspection efficiency can be improved.
なお、上記ステップS4、S7、S10、S13においての第1ないし第4のLEDの輝度レベルの設定においては、制御部20のLED駆動制御部20dは、この4つのLED全体の消費電力を一定に保つように輝度設定の制御を行うようになっている。これは、近年、装置の携帯性、長寿命化等が求められるようになってきたこともあり、単純に輝度を上げた場合、LEDの発熱が増えることで挿入部3の先端の温度が上昇し、撮像素子での画像ノイズが増したり、場合によってはLEDや撮像素子が破損してしまうのを防止するためである。但し、発熱や消費電力が問題とならない場合には、湾曲動作に応じて全てのLEDの輝度を上げても良い。 In setting the luminance levels of the first to fourth LEDs in steps S4, S7, S10, and S13, the LED drive control unit 20d of the control unit 20 keeps the power consumption of the four LEDs as a whole. The brightness setting is controlled so as to keep it. In recent years, there has been a demand for portability of the device, longer life, etc. When the brightness is simply increased, the temperature at the tip of the insertion portion 3 rises due to the increase in heat generation of the LED. In order to prevent the image noise at the image sensor from increasing or the LED or the image sensor from being damaged in some cases. However, if heat generation and power consumption are not a problem, the brightness of all LEDs may be increased according to the bending operation.
また、ステップS4、S7、S10、S13では第1ないし第4のLEDのいずれかのLEDの輝度レベルを下げるとしたが、輝度レベルを下げる対象のLEDを消灯させるようにしてもよい。 In steps S4, S7, S10, and S13, the luminance level of any one of the first to fourth LEDs is lowered. However, the target LED whose luminance level is to be lowered may be turned off.
さらに、光源部は、挿入部3の先端面に設けるLEDは4つに限らず、複数系統であればLEDに関してはどのような数、組み合わせでも良い。また、複数のLEDを挿入部3の先端面に設けるとしたが、これに限らず、信号処理装置2内に複数のLEDを設け、挿入部3内にLEDに応じた複数の光ファイバ等の光伝送手段を設けて複数のLED毎の照明光を挿入部3の先端に伝送する構成としても本実施例と同様な作用・効果を得ることができることはいうまでもない。 Further, the number of LEDs provided on the distal end surface of the insertion portion 3 is not limited to four, and any number and combination of LEDs may be used as long as they are a plurality of systems. In addition, the plurality of LEDs are provided on the distal end surface of the insertion portion 3. However, the present invention is not limited to this, and a plurality of LEDs are provided in the signal processing device 2. It goes without saying that the same operation and effect as in the present embodiment can be obtained even if the light transmission means is provided and the illumination light for each of the plurality of LEDs is transmitted to the tip of the insertion portion 3.
また、本実施例では、例えば信号処理装置2の前面に配置されたメカニカルボタンにより構成される湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18により湾曲指示手段としての湾曲指示入力部を構成するとしたが、これに限らず、キーボードや、ジョイスティック、マウスあるいは表示部14に設けるタッチパネル等のポインティングデバイスにより湾曲指示入力部を構成してもよい。 Further, in this embodiment, for example, a curved upward direction instruction button 15, a curved downward direction instruction button 16, a curved left direction instruction button 17, and a curved right direction instruction button constituted by mechanical buttons arranged on the front surface of the signal processing device 2. However, the present invention is not limited to this, and the bending instruction input unit may be configured by a keyboard, a joystick, a mouse, or a pointing device such as a touch panel provided on the display unit 14. .
図8ないし図12は本発明の実施例2に係わり、図8は内視鏡装置の構成を示す構成図、図9は図8の挿入部の先端面に配置される先端面を示す図、図10は図9の挿入部の先端側面を示す図、図11は図8の制御部の処理の流れを示すフローチャート、図12は図8の挿入部先端の変形例を示す図である。 8 to 12 relate to the second embodiment of the present invention, FIG. 8 is a configuration diagram showing the configuration of the endoscope apparatus, FIG. 9 is a diagram showing the distal end surface disposed on the distal end surface of the insertion portion of FIG. FIG. 10 is a diagram showing the side of the distal end of the insertion portion in FIG. 9, FIG. 11 is a flowchart showing the processing flow of the control portion in FIG. 8, and FIG.
実施例2は、実施例1とほとんど同じであるので、異なる点のみ説明し、同一の構成には同じ符号をつけ説明は省略する。 Since the second embodiment is almost the same as the first embodiment, only different points will be described, and the same components are denoted by the same reference numerals and description thereof will be omitted.
図8に示すように、本実施例の内視鏡装置1aは、挿入部3の先端面に設けた第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの4つのLEDに加え、先端部4に先端面と挿入部3の側面に、例えば45°の角度の斜面部を設け、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dに隣接してこの斜面部にさらに4つのLEDを設けて構成され、この新たに設けられた4つのLEDを制御部20のLED駆動制御部20dの制御によりLEDドライバ11にて駆動するように構成される。 As shown in FIG. 8, the endoscope apparatus 1a of the present embodiment includes a first (upper) LED 6a, a second (lower) LED 6b, a third (left) LED 6c, and a fourth provided on the distal end surface of the insertion portion 3. (Right) In addition to the four LEDs 6d, the front end 4 and the side surface of the insertion portion 3 are provided with slope portions of, for example, 45 °, and the first (upper) LED 6a, second (lower) LED 6b, Four additional LEDs are provided on the slope portion adjacent to the third (left) LED 6c and the fourth (right) LED 6d, and the newly provided four LEDs are connected to the LED drive control unit 20d of the control unit 20. It is comprised so that it may drive with the LED driver 11 by control of.
詳細には、図9及び図10に示すように、実施例1と同様に挿入部3の先端面に設けられた第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dに加え、先端部4に先端面と挿入部3の側面に例えば45°の角度をなして形成された斜面部4aに第5(上側面)LED6e,第6(下側面)LED6f,第7(左側面)LED6g及び第8(右側面)LED6hが設けられ、制御部20のLED駆動制御部20dの制御によりLEDドライバ11にて、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dと同様に、第5(上側面)LED6e,第6(下側面)LED6f,第7(左側面)LED6g及び第8(右側面)LED6hが点灯駆動されるようになっている。その他の構成は実施例1と同じである。 Specifically, as shown in FIGS. 9 and 10, the first (upper) LED 6 a, the second (lower) LED 6 b, and the third (left) LED 6 c provided on the distal end surface of the insertion portion 3 as in the first embodiment. In addition to the fourth (right) LED 6d, the fifth (upper side) LED 6e, the sixth (lower) are provided on the inclined surface 4a formed at an angle of, for example, 45 ° between the distal end surface and the side surface of the insertion portion 3. Side LED 6f, 7th (left side) LED 6g, and 8th (right side) LED 6h are provided, and the LED driver 11 controls the first (upper) LED 6a and the second LED 6h under the control of the LED drive control unit 20d of the control unit 20. (Lower) LED 6b, third (left) LED 6c and fourth (right) LED 6d, as well as fifth (upper side) LED 6e, sixth (lower side) LED 6f, seventh (left side) LED 6g and eighth (right side) Surface) LED6h is lit and driven It has become. Other configurations are the same as those of the first embodiment.
このように構成された本実施例の作用を図11のフローチャートを用いて説明する。 The operation of this embodiment configured as described above will be described with reference to the flowchart of FIG.
内視鏡装置1による管腔内の検査が開始されると、制御部20のシステム制御部20aにより制御プログラムが起動し、図11に示すように、制御部20のLED駆動制御部20dは、ステップS1aにてLEDドライバ11を制御し、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dを所定の輝度レベルであるLevel1で点灯させると共に、第5(上側面)LED6e,第6(下側面)LED6f,第7(左側面)LED6g及び第8(右側面)LED6hを消灯する。 When the inspection of the lumen by the endoscope apparatus 1 is started, the control program is started by the system control unit 20a of the control unit 20, and the LED drive control unit 20d of the control unit 20 is configured as shown in FIG. In step S1a, the LED driver 11 is controlled, and the first (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d are turned on at Level 1, which is a predetermined luminance level. The fifth (upper side) LED 6e, the sixth (lower side) LED 6f, the seventh (left side) LED 6g, and the eighth (right side) LED 6h are turned off.
そして、ステップS2にて、制御部20の湾曲方向判定部20bは、湾曲上方向指示ボタン15が押下されたかどうか判断する。湾曲上方向指示ボタン15が押下されていないと判断するとステップS5に進む。 In step S2, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending upward direction instruction button 15 has been pressed. If it is determined that the curved upward direction instruction button 15 is not pressed, the process proceeds to step S5.
一方、湾曲方向判定部20bが湾曲上方向指示ボタン15が押下されたと判断すると、ステップS3にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の上部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を上方向に湾曲させる。続いて、ステップS4aにて制御部20のLED駆動制御部20dは、第5(上側面)LED6eの輝度レベルをLevel1に設定すると共に、第2(下)LED6bの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS5に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending up direction instruction button 15 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S3, and the upper portion of the plurality of bending pieces 8 is controlled. By driving the bending wire 9 connected to the bending portion 5, the bending portion 5 is bent upward. Subsequently, in step S4a, the LED drive control unit 20d of the control unit 20 sets the luminance level of the fifth (upper side) LED 6e to Level1, and the luminance level of the second (lower) LED 6b is lower than Level 1. It sets to (Level3: Level3 <Level1), controls the LED driver 11, and progresses to step S5.
これにより第5(上側面)LED6eは輝度レベル=Level1、第2(下)LED6bは輝度レベル=Level3(<Level1)、第1(上)LED6aと第3(左)LED6c及び第4(右)LED6dは輝度レベル=Level1で点灯駆動される。 Accordingly, the fifth (upper side) LED 6e has a luminance level = Level1, the second (lower) LED 6b has a luminance level = Level3 (<Level1), the first (upper) LED 6a, the third (left) LED 6c, and the fourth (right). The LED 6d is driven to turn on at a luminance level = Level1.
そして、ステップS5にて、制御部20の湾曲方向判定部20bは、湾曲下方向指示ボタン16が押下されたかどうか判断する。湾曲下方向指示ボタン16が押下されていないと判断するとステップS8に進む。 In step S5, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending downward direction instruction button 16 has been pressed. If it is determined that the curved downward direction instruction button 16 is not pressed, the process proceeds to step S8.
一方、湾曲方向判定部20bが湾曲下方向指示ボタン16が押下されたと判断すると、ステップS6にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の下部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を下方向に湾曲させる。続いて、ステップS7aにて制御部20のLED駆動制御部20dは、第6(下側面)LED6fの輝度レベルをLevel1に設定すると共に、第1(上)LED6aの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS8に進む。 On the other hand, when the bending direction determination unit 20b determines that the bending down direction instruction button 16 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S6, and the lower portions of the plurality of bending pieces 8 are controlled. By driving the bending wire 9 connected to the bending portion 5, the bending portion 5 is bent downward. Subsequently, in step S7a, the LED drive control unit 20d of the control unit 20 sets the luminance level of the sixth (lower side) LED 6f to Level1, and the luminance level of the first (upper) LED 6a is lower than Level 1. It sets to (Level3: Level3 <Level1), controls the LED driver 11, and progresses to step S8.
これにより第6(下側面)LED6fは輝度レベル=Level1、第1(上)LED6a=Level3(<Level1)、第2(下)LED6bと第3(左)LED6c及び第4(右)LED6dは輝度レベル=Level1で点灯駆動される。 Accordingly, the sixth (lower side) LED 6f has a luminance level = Level1, the first (upper) LED 6a = Level3 (<Level1), the second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d have luminance. It is driven to light at level = Level1.
ステップS8では、制御部20の湾曲方向判定部20bは、湾曲左方向指示ボタン17が押下されたかどうか判断する。湾曲左方向指示ボタン17が押下されていないと判断するとステップS11に進む。 In step S8, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending left direction instruction button 17 has been pressed. If it is determined that the curved left direction instruction button 17 has not been pressed, the process proceeds to step S11.
一方、湾曲方向判定部20bが湾曲左方向指示ボタン17が押下されたと判断すると、ステップS9にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の左部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を左方向に湾曲させる。続いて、ステップS10aにて制御部20のLED駆動制御部20dは、第7(左側面)LED6gの輝度レベルをLevel1に設定すると共に、第4(右)LED6dの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS11に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending left direction instruction button 17 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S9, and the left of the plurality of bending pieces 8 is left. The bending portion 5 is bent leftward by driving the bending wire 9 connected to the portion. Subsequently, in step S10a, the LED drive control unit 20d of the control unit 20 sets the luminance level of the seventh (left side) LED 6g to Level1, and the luminance level of the fourth (right) LED 6d is lower than Level 1. It sets to (Level3: Level3 <Level1), controls the LED driver 11, and progresses to step S11.
これにより第1(上)LED6aと第2(下)LED6bと第3(左)LED6c及び第7(左側面)LED6gは輝度レベル=Level1、第4(右)LED6dは輝度レベル=Level3(<Level1)で点灯駆動される。 Accordingly, the first (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the seventh (left side) LED 6g have a luminance level = Level1, and the fourth (right) LED 6d has a luminance level = Level3 (<Level1). ) Is driven to light.
ステップS11では、制御部20の湾曲方向判定部20bは、湾曲右方向指示ボタン18が押下されたかどうか判断する。湾曲右方向指示ボタン18が押下されていないと判断するとステップS14に進む。 In step S11, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending right direction instruction button 18 has been pressed. If it is determined that the curved right direction instruction button 18 is not pressed, the process proceeds to step S14.
一方、湾曲方向判定部20bが湾曲右方向指示ボタン18が押下されたと判断すると、ステップS12にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の右部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を右方向に湾曲させる。続いて、ステップS13aにて制御部20のLED駆動制御部20dは、第8(右側面)LED6hの輝度レベルをLevel1に設定すると共に、第3(左)LED6cの輝度レベルをLevel1より低い輝度レベル(Level3:Level3<Level1)に設定して、LEDドライバ11を制御し、ステップS14に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending right direction instruction button 18 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S12, and the right of the plurality of bending pieces 8 is controlled. The bending portion 5 is bent in the right direction by driving the bending wire 9 connected to the portion. Subsequently, in step S13a, the LED drive control unit 20d of the control unit 20 sets the luminance level of the eighth (right side) LED 6h to Level1, and the luminance level of the third (left) LED 6c is lower than Level 1. It sets to (Level3: Level3 <Level1), controls the LED driver 11, and progresses to step S14.
これにより第1(上)LED6aと第2(下)LED6bと第4(右)LED6d及び第8(右側面)LED6hは輝度レベル=Level1、第3(左)LED6cは輝度レベル=Level3(<Level1)で点灯駆動される。 Accordingly, the first (upper) LED 6a, the second (lower) LED 6b, the fourth (right) LED 6d, and the eighth (right side) LED 6h have a luminance level = Level1, and the third (left) LED 6c has a luminance level = Level3 (<Level1). ) Is driven to light.
そして、ステップS14にて湾曲動作が停止した(湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18の操作が中止された)かどうか判断し、湾曲動作が停止したと判断するとステップS1aに戻り、湾曲動作が停止していないと判断するとステップS2に戻る。 In step S14, it is determined whether or not the bending operation has been stopped (the operation of the bending upward direction button 15, the bending downward direction button 16, the bending left direction button 17 and the bending right direction button 18 has been stopped). If it is determined that the bending operation has stopped, the process returns to step S1a, and if it is determined that the bending operation has not stopped, the process returns to step S2.
なお、上記ステップS4a、S7a、S10a、S13aにおいての第1ないし第8のLEDの輝度レベルの設定においては、制御部20のLED駆動制御部20dは、第1実施例で説明した理由と同様に、この8つのLED全体の消費電力を一定に保つように輝度設定の制御を行うようになっている。
このように本実施例においても実施例1と同様の作用・効果を得ることができる。
In setting the luminance levels of the first to eighth LEDs in steps S4a, S7a, S10a, and S13a, the LED drive control unit 20d of the control unit 20 has the same reason as described in the first embodiment. The brightness setting is controlled so as to keep the power consumption of all the eight LEDs constant.
Thus, also in the present embodiment, the same operations and effects as those of the first embodiment can be obtained.
なお、本実施例では挿入部5の先端面及び先端側部の斜面にLEDを設けるとしたが、これに限らず、図12に示すように、挿入部5の先端面に第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの4つLEDを設け、挿入部5の先端部4に着脱可能なアダプタ70の先端側部の斜面に第5(上側面)LED6e,第6(下側面)LED6f,第7(左側面)LED6g及び第8(右側面)LED6hを設けるように構成してもよい。 In the present embodiment, the LEDs are provided on the distal end surface of the insertion portion 5 and the inclined surface of the distal end side portion. However, the present invention is not limited to this, and as shown in FIG. Four LEDs, LED 6a, second (lower) LED 6b, third (left) LED 6c, and fourth (right) LED 6d, are provided on the slope of the distal end side portion of adapter 70 that can be attached to and removed from distal end portion 4 of insertion portion 5. 5 (upper side) LED 6e, sixth (lower side) LED 6f, seventh (left side) LED 6g, and eighth (right side) LED 6h may be provided.
図13ないし図17は本発明の実施例3に係わり、図13は内視鏡装置の構成を示す構成図、図14は図13のテーブルメモリに格納されるテーブルデータを示す図、図15は図13の制御部の機能構成を示すブロック図、図16は図15の制御部の処理の流れを示すフローチャート、図17は図16のLED輝度制御処理の処理の流れを示すフローチャートである。 13 to 17 relate to the third embodiment of the present invention, FIG. 13 is a configuration diagram showing the configuration of the endoscope apparatus, FIG. 14 is a diagram showing table data stored in the table memory of FIG. 13, and FIG. 13 is a block diagram showing a functional configuration of the control unit in FIG. 13, FIG. 16 is a flowchart showing a process flow of the control unit in FIG. 15, and FIG. 17 is a flowchart showing a process flow of the LED luminance control process in FIG.
実施例3は、実施例1とほとんど同じであるので、異なる点のみ説明し、同一の構成には同じ符号をつけ説明は省略する。 Since the third embodiment is almost the same as the first embodiment, only different points will be described, and the same components are denoted by the same reference numerals and description thereof will be omitted.
図13に示すように、本実施例の内視鏡装置1bは、挿入部3の先端面に、例えば第1(上)LED6aに隣接して検査箇所(注目部位)の照度を検出する照度センサ52と、先端部4内部のCCD7の近傍の温度を検出する温度センサ51が設けられている。 As shown in FIG. 13, the endoscope apparatus 1b of the present embodiment is an illuminance sensor that detects the illuminance of the examination location (target region) adjacent to the first (upper) LED 6a, for example, on the distal end surface of the insertion portion 3. 52 and a temperature sensor 51 for detecting the temperature in the vicinity of the CCD 7 inside the tip 4.
また、信号処理装置2は、実施例1の構成に加え、温度センサ51からの検出信号をデジタル信号の温度データに変換し制御部20に出力するA/D変換器53と、照度センサ52からの検出信号をデジタル信号の照度データに変換し制御部20に出力するA/D変換器54を設けている。 In addition to the configuration of the first embodiment, the signal processing device 2 includes an A / D converter 53 that converts a detection signal from the temperature sensor 51 into temperature data of a digital signal and outputs it to the control unit 20, and an illuminance sensor 52. An A / D converter 54 that converts the detected signal into illuminance data of a digital signal and outputs it to the control unit 20 is provided.
さらに、信号処理装置2は、湾曲ドライバ12から湾曲データ(引っ張られた4本の湾曲ワイヤ9の長さデータ)を検出し、湾曲部5の湾曲方向及び湾曲量等の湾曲状態データを制御部20に出力する湾曲検出部55を有している。 Further, the signal processing device 2 detects the bending data (length data of the pulled four bending wires 9) from the bending driver 12, and controls the bending state data such as the bending direction and the bending amount of the bending portion 5. 20 has a curvature detection unit 55 that outputs to 20.
また、信号処理装置2は、上記の温度データ、照度データ及び湾曲状態データに基づいて、4つのLED、すなわち、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを図14に示すようなテーブルデータとして格納しているテーブルメモリ56を有している。 In addition, the signal processing device 2 has four LEDs, that is, a first (upper) LED 6a, a second (lower) LED 6b, a third (left) LED 6c, based on the temperature data, illuminance data, and curve state data. It has a table memory 56 that stores the luminance data of the fourth (right) LED 6d as table data as shown in FIG.
制御部20は、図15に示すように、実施例1で説明したシステム制御部20a、湾曲方向判定部20b、湾曲駆動制御部20c及びLED駆動制御部20dに加えて、A/D変換器53からの温度データを検出する温度検知手段としての温度データ検出部20eと、A/D変換器54からの照度データを検出する照度検知手段としての照度データ検出部20fと、湾曲検出部55からの湾曲部5の湾曲状態データを検出する湾曲検知手段としての湾曲状態検出部20g、テーブルメモリ56から温度データ、照度データ及び湾曲状態データに基づいて、テーブルメモリ56に格納されているテーブルデータより第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを抽出するテーブルデータ抽出部20hをさらに備えて構成されている。その他の構成は実施例1と同じである。 As shown in FIG. 15, the control unit 20 includes an A / D converter 53 in addition to the system control unit 20a, the bending direction determination unit 20b, the bending drive control unit 20c, and the LED drive control unit 20d described in the first embodiment. A temperature data detection unit 20e as temperature detection means for detecting temperature data from the illuminance data detection unit 20f as illuminance detection means for detecting illuminance data from the A / D converter 54, and a curvature detection unit 55 Based on the temperature data, the illuminance data, and the bending state data from the table memory 56, the bending state detection unit 20g as a bending detection means for detecting the bending state data of the bending portion 5, and the table data stored in the table memory 56 Table that extracts luminance data of 1 (upper) LED 6a, second (lower) LED 6b, third (left) LED 6c, and fourth (right) LED 6d It is configured by further comprising a data extraction unit 20h. Other configurations are the same as those of the first embodiment.
このように構成された本実施例の作用を、図16及び図17のフローチャートを用いて説明する。 The operation of this embodiment configured as described above will be described with reference to the flowcharts of FIGS.
内視鏡装置1による管腔内の検査が開始されると、制御部20のシステム制御部20aにより制御プログラムが起動し、図16に示すように、制御部20のLED駆動制御部20dは、ステップS1にてLEDドライバ11を制御し、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dを所定の輝度レベルであるLevel1で点灯させる。 When the inspection of the lumen by the endoscope apparatus 1 is started, the control program is started by the system control unit 20a of the control unit 20, and as shown in FIG. 16, the LED drive control unit 20d of the control unit 20 In step S1, the LED driver 11 is controlled to light the first (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d at Level 1, which is a predetermined luminance level.
そして、ステップS2にて、制御部20の湾曲方向判定部20bは、湾曲上方向指示ボタン15が押下されたかどうか判断する。湾曲上方向指示ボタン15が押下されていないと判断するとステップS5に進む。 In step S2, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending upward direction instruction button 15 has been pressed. If it is determined that the curved upward direction instruction button 15 is not pressed, the process proceeds to step S5.
一方、湾曲方向判定部20bが湾曲上方向指示ボタン15が押下されたと判断すると、ステップS3にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の上部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を上方向に湾曲させる。 On the other hand, if the bending direction determination unit 20b determines that the bending up direction instruction button 15 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S3, and the upper portion of the plurality of bending pieces 8 is controlled. By driving the bending wire 9 connected to the bending portion 5, the bending portion 5 is bent upward.
続いて、ステップS4bにて制御部20は、温度データ、照度データ及び湾曲状態データに基づき、テーブルメモリ56に格納されているテーブルデータより第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを抽出してLEDドライバ11を制御する、後述するLED輝度制御処理を実行して、ステップS5に進む。 Subsequently, in step S4b, the control unit 20 determines the first (upper) LED 6a, the second (lower) LED 6b, and the second from the table data stored in the table memory 56 based on the temperature data, the illuminance data, and the bending state data. The brightness | luminance data of 3 (left) LED6c and 4th (right) LED6d are extracted, the LED brightness control process mentioned later which controls the LED driver 11 is performed, and it progresses to step S5.
そして、ステップS5にて、制御部20の湾曲方向判定部20bは、湾曲下方向指示ボタン16が押下されたかどうか判断する。湾曲下方向指示ボタン16が押下されていないと判断するとステップS8に進む。 In step S5, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending downward direction instruction button 16 has been pressed. If it is determined that the curved downward direction instruction button 16 is not pressed, the process proceeds to step S8.
一方、湾曲方向判定部20bが湾曲下方向指示ボタン16が押下されたと判断すると、ステップS6にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の下部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を下方向に湾曲させる。続いて、ステップS7bにてステップS4bと同様に、温度データ、照度データ及び湾曲状態データに基づき、テーブルメモリ56に格納されているテーブルデータより第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを抽出してLEDドライバ11を制御する、後述するLED輝度制御処理を実行して、ステップS8に進む。 On the other hand, when the bending direction determination unit 20b determines that the bending down direction instruction button 16 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S6, and the lower portions of the plurality of bending pieces 8 are controlled. By driving the bending wire 9 connected to the bending portion 5, the bending portion 5 is bent downward. Subsequently, in step S7b, similarly to step S4b, based on the temperature data, illuminance data, and curve state data, the first (upper) LED 6a, the second (lower) LED 6b, The brightness | luminance data of 3rd (left) LED6c and 4th (right) LED6d are extracted, the LED brightness control process mentioned later which controls the LED driver 11 is performed, and it progresses to step S8.
ステップS8では、制御部20の湾曲方向判定部20bは、湾曲左方向指示ボタン17が押下されたかどうか判断する。湾曲左方向指示ボタン17が押下されていないと判断するとステップS11に進む。 In step S8, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending left direction instruction button 17 has been pressed. If it is determined that the curved left direction instruction button 17 has not been pressed, the process proceeds to step S11.
一方、湾曲方向判定部20bが湾曲左方向指示ボタン17が押下されたと判断すると、ステップS9にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の左部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を左方向に湾曲させる。続いて、ステップS10bにてステップS4bと同様に、温度データ、照度データ及び湾曲状態データに基づき、テーブルメモリ56に格納されているテーブルデータより第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを抽出してLEDドライバ11を制御する、後述するLED輝度制御処理を実行して、ステップS11に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending left direction instruction button 17 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S9, and the left of the plurality of bending pieces 8 is left. The bending portion 5 is bent leftward by driving the bending wire 9 connected to the portion. Subsequently, in step S10b, similarly to step S4b, based on the temperature data, illuminance data, and bending state data, the first (upper) LED 6a, the second (lower) LED 6b, The brightness | luminance data of 3rd (left) LED6c and 4th (right) LED6d are extracted, the LED brightness control process mentioned later which controls the LED driver 11 is performed, and it progresses to step S11.
ステップS11では、制御部20の湾曲方向判定部20bは、湾曲右方向指示ボタン18が押下されたかどうか判断する。湾曲右方向指示ボタン18が押下されていないと判断するとステップS14に進む。 In step S11, the bending direction determination unit 20b of the control unit 20 determines whether or not the bending right direction instruction button 18 has been pressed. If it is determined that the curved right direction instruction button 18 is not pressed, the process proceeds to step S14.
一方、湾曲方向判定部20bが湾曲右方向指示ボタン18が押下されたと判断すると、ステップS12にて制御部20の湾曲駆動制御部20cは、湾曲ドライバ12を制御し、複数の湾曲コマ8の右部に連結されている湾曲ワイヤ9を駆動することで、湾曲部5を右方向に湾曲させる。続いて、ステップS13bにてステップS4bと同様に、温度データ、照度データ及び湾曲状態データに基づき、テーブルメモリ56に格納されているテーブルデータより第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを抽出してLEDドライバ11を制御する、後述するLED輝度制御処理を実行して、ステップS14に進む。 On the other hand, if the bending direction determination unit 20b determines that the bending right direction instruction button 18 has been pressed, the bending drive control unit 20c of the control unit 20 controls the bending driver 12 in step S12, and the right of the plurality of bending pieces 8 is controlled. The bending portion 5 is bent in the right direction by driving the bending wire 9 connected to the portion. Subsequently, in step S13b, similarly to step S4b, based on the temperature data, illuminance data, and bending state data, the first (upper) LED 6a, the second (lower) LED 6b, The brightness | luminance data of 3rd (left) LED6c and 4th (right) LED6d are extracted, the LED brightness control process mentioned later which controls the LED driver 11 is performed, and it progresses to step S14.
そして、ステップS14にて湾曲動作が停止した(湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18の操作が中止された)かどうか判断し、湾曲動作が停止したと判断するとステップS1に戻り、湾曲動作が停止していないと判断するとステップS2に戻る。 In step S14, it is determined whether or not the bending operation has been stopped (the operation of the bending upward direction button 15, the bending downward direction button 16, the bending left direction button 17 and the bending right direction button 18 has been stopped). If it is determined that the bending operation has stopped, the process returns to step S1, and if it is determined that the bending operation has not stopped, the process returns to step S2.
次に上記ステップS4b、ステップS7b、ステップS10b及びステップS13bにおける温度データ、照度データ及び湾曲状態データに基づくLED輝度制御処理について説明する。 Next, the LED brightness control process based on the temperature data, the illuminance data, and the bending state data in step S4b, step S7b, step S10b, and step S13b will be described.
このLED輝度制御処理では、図17に示すように、制御部20は、ステップS21にて温度データ検出部20eにより挿入部3の先端内部の温度データを検出すると共に、ステップS22にて照度データ検出部20fにより検査箇所(注目部位)の照度を検出する。さらに制御部20は、ステップS23にて湾曲状態検出部20gにより湾曲部5の湾曲状態データを検出する。そして、制御部20は、ステップS24にてテーブルデータ抽出部20hにより、検出した温度データ、照度データ及び湾曲状態データに基づき、テーブルメモリ56に格納している図14に示したテーブルデータより第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度データを抽出し、ステップS25にて抽出した輝度データで第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dを発光させるようにLEDドライバ11を制御し、LEDを点灯駆動する。 In this LED luminance control process, as shown in FIG. 17, the control unit 20 detects temperature data inside the distal end of the insertion unit 3 by the temperature data detection unit 20e in step S21, and detects illuminance data in step S22. The illuminance at the inspection location (target region) is detected by the unit 20f. Furthermore, the control part 20 detects the bending state data of the bending part 5 by the bending state detection part 20g in step S23. And the control part 20 is 1st from the table data shown in FIG. 14 stored in the table memory 56 based on the temperature data, illumination intensity data, and curvature state data which were detected by the table data extraction part 20h in step S24. The luminance data of the (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d is extracted, and the first (upper) LED 6a, second is extracted from the luminance data extracted in step S25. (Lower) The LED driver 11 is controlled so that the LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d emit light, and the LED is driven to light.
このように本実施例では、実施例1の効果に加え、温度データ、照度データ及び湾曲状態データに基づいて第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度を設定するので、より適切な輝度制御が可能となる。 As described above, in this embodiment, in addition to the effects of the first embodiment, the first (upper) LED 6a, the second (lower) LED 6b, the third (left) LED 6c, and the first are based on the temperature data, the illuminance data, and the bending state data. Since the brightness of the 4 (right) LED 6d is set, more appropriate brightness control is possible.
また、本実施例では、湾曲部5の湾曲状態を検出しているので、湾曲上方向指示ボタン15、湾曲下方向指示ボタン16、湾曲左方向指示ボタン17及び湾曲右方向指示ボタン18が押下されて、湾曲ドライバ12が湾曲部5を湾曲させている場合に、例えば先端部4が体腔内壁に当接し湾曲動作が停止した場合には、図14に示したように、第1(上)LED6a,第2(下)LED6b,第3(左)LED6c及び第4(右)LED6dの輝度を同一輝度で発光させるので、画像の中心部が最も明るいエリアとして照明することができる。 In the present embodiment, since the bending state of the bending portion 5 is detected, the bending upward direction button 15, the bending downward direction button 16, the bending left direction button 17, and the bending right direction button 18 are pressed. Thus, when the bending driver 12 is bending the bending portion 5, for example, when the distal end portion 4 comes into contact with the inner wall of the body cavity and the bending operation is stopped, as shown in FIG. 14, the first (upper) LED 6 a , The second (lower) LED 6b, the third (left) LED 6c, and the fourth (right) LED 6d emit light with the same luminance, so that the center of the image can be illuminated as the brightest area.
なお、上記ステップS4b、S7b、S10b及びS13bにおいてのLED輝度制御処理による第1ないし第4のLEDの輝度レベルの設定においては、制御部20は、第1実施例で説明した理由と同様に、この4つのLED全体の消費電力を一定に保つように輝度設定の制御を行うようになっている。 In the setting of the luminance levels of the first to fourth LEDs by the LED luminance control processing in steps S4b, S7b, S10b and S13b, the control unit 20 has the same reason as described in the first embodiment. The brightness setting is controlled so that the power consumption of the four LEDs as a whole is kept constant.
本発明は、上述した実施例に限定されるものではなく、本発明の要旨を変えない範囲において、種々の変更、改変等が可能である。 The present invention is not limited to the above-described embodiments, and various changes and modifications can be made without departing from the scope of the present invention.
1…内視鏡装置、
2…信号処理装置、
3…挿入部、
4…先端部、
5…湾曲部、
6a…第1(上)LED、
6b…第2(下)LED、
6c…第3(左)LED、
6d…第4(右)LED、
7…CCD、
8…湾曲コマ、
9…湾曲ワイヤ、
10…対物光学系、
11…LEDドライバ、
12…湾曲ドライバ、
13…信号処理部、
14…表示部、
15…湾曲上方向指示ボタン、
16…湾曲下方向指示ボタン、
17…湾曲左方向指示ボタン、
18…湾曲右方向指示ボタン、
19…主メモリ、
20…制御部、
20a…システム制御部、
20b…湾曲方向判定部、
20c…湾曲駆動制御部、
20d…LED駆動制御部。
1 ... Endoscopic device,
2 ... Signal processing device,
3 ... insertion part,
4 ... the tip,
5 ... curved part,
6a ... 1st (upper) LED,
6b ... 2nd (lower) LED,
6c ... 3rd (left) LED,
6d ... 4th (right) LED,
7 ... CCD,
8 ... curved pieces,
9: curved wire,
10 ... Objective optical system,
11 ... LED driver,
12 ... curved driver,
13 ... Signal processing unit,
14 ... display part,
15 ... Curve up direction instruction button,
16: Curved downward direction button,
17 ... Curved left direction button,
18: curved right direction button,
19 ... Main memory,
20 ... control unit,
20a ... system control unit,
20b ... bending direction determination unit,
20c: bending drive control unit,
20d: LED drive control unit.
Claims (7)
前記挿入部が挿入される前記管腔内の被検部位を撮像する撮像手段と、
前記撮像手段からの撮像信号を信号処理し前記被検部位の画像を表示手段に表示させる信号処理手段と、
前記湾曲部の湾曲動作を指示する湾曲指示手段と、
を有する内視鏡装置において、
前記挿入部の先端より前記被検部位を照明する照明光を発光する光源手段と、
前記挿入部の先端内部の前記撮像手段の近傍の温度を検出する温度検出手段と、
温度データに基づく前記光源手段の輝度データを格納した輝度データ格納部と、
前記温度データに基づき、前記輝度データ格納部に格納されている輝度データより前記光源手段の輝度を制御する輝度制御手段と、
を備えたことを特徴とする内視鏡装置。 An insertion part to be inserted into the lumen, having an objective optical system at the distal end and having an elongated and curved part;
Imaging means for imaging a test site in the lumen into which the insertion unit is inserted;
Signal processing means for performing signal processing on an imaging signal from the imaging means and displaying an image of the test site on a display means;
A bending instruction means for instructing a bending operation of the bending portion;
In an endoscope apparatus having
Light source means for emitting illumination light for illuminating the test site from the tip of the insertion portion;
Temperature detecting means for detecting the temperature in the vicinity of the imaging means inside the distal end of the insertion portion;
A luminance data storage unit storing luminance data of the light source means based on temperature data;
A luminance control means for controlling the luminance of the light source means from the luminance data stored in the luminance data storage unit based on the temperature data;
An endoscope apparatus comprising:
前記光源手段の照明光が照明された前記被検部位の照度を検出する照度検出手段をさらに備え、
前記輝度データ格納部は、
温度データと照度データとに基づく前記光源手段の輝度データを格納し、
前記輝度制御手段は、
前記温度データと前記照度データとに基づき、前記輝度データ格納部に格納されている輝度データより前記光源手段の輝度を制御する
ことを特徴とする請求項1に記載の内視鏡装置。 The endoscope apparatus is
Illuminance detection means for detecting the illuminance of the test site illuminated by the illumination light of the light source means,
The luminance data storage unit
Storing brightness data of the light source means based on temperature data and illuminance data;
The brightness control means includes
The endoscope apparatus according to claim 1, wherein the brightness of the light source unit is controlled based on the brightness data stored in the brightness data storage unit based on the temperature data and the illuminance data.
前記湾曲指示手段の湾曲指示に基づき前記湾曲部を湾曲させる湾曲制御手段と、
前記湾曲指示手段により制御手段が湾曲させた湾曲部の湾曲状態を検出する湾曲検出手段と、をさらに備え、
前記輝度データ格納部は、
温度データと湾曲状態データとに基づく前記光源手段の輝度データを格納し、
前記輝度制御手段は、
前記温度データと前記湾曲状態データとに基づき、前記輝度データ格納部に格納されている輝度データより前記光源手段の輝度を制御する
ことを特徴とする請求項1に記載の内視鏡装置。 The endoscope apparatus is
Bending control means for bending the bending portion based on a bending instruction from the bending instruction means;
Bending detection means for detecting a bending state of the bending portion bent by the control means by the bending instruction means;
The luminance data storage unit
Storing brightness data of the light source means based on temperature data and curvature state data;
The brightness control means includes
The endoscope apparatus according to claim 1, wherein brightness of the light source means is controlled based on brightness data stored in the brightness data storage unit based on the temperature data and the bending state data.
前記光源手段の照明光が照明された前記被検部位の照度を検出する照度検出手段と、
前記湾曲指示手段の湾曲指示に基づき前記湾曲部を湾曲させる湾曲制御手段と、
前記湾曲指示手段により制御手段が湾曲させた湾曲部の湾曲状態を検出する湾曲検出手段と、をさらに備え、
前記輝度データ格納部は、
温度データと照度データと湾曲状態データとに基づく前記光源手段の輝度データを格納し、
前記輝度制御手段は、
前記温度データと前記照度データと前記湾曲状態データとに基づき、前記輝度データ格納部に格納されている輝度データより前記光源手段の輝度を制御する
ことを特徴とする請求項1に記載の内視鏡装置。 The endoscope apparatus is
Illuminance detection means for detecting the illuminance of the test site illuminated by the illumination light of the light source means;
Bending control means for bending the bending portion based on a bending instruction from the bending instruction means;
Bending detection means for detecting a bending state of the bending portion bent by the control means by the bending instruction means;
The luminance data storage unit
Storing brightness data of the light source means based on temperature data, illuminance data and bending state data;
The brightness control means includes
2. The internal view according to claim 1, wherein the brightness of the light source unit is controlled based on the brightness data stored in the brightness data storage unit based on the temperature data, the illuminance data, and the bending state data. Mirror device.
前記湾曲部の湾曲動作に連動して前記光源手段の輝度を制御する
ことを特徴とする請求項1乃至請求項4のいずれか1項に記載の内視鏡装置。 The brightness control means includes
The endoscope apparatus according to any one of claims 1 to 4, wherein brightness of the light source means is controlled in conjunction with a bending operation of the bending portion.
前記湾曲部の湾曲動作停止に連動して前記光源手段による照明光の最も明るいエリアが表示手段に表示される画像の中心部となるよう設定する
ことを特徴とする請求項5に記載の内視鏡装置。 The brightness control means includes
6. The endoscopy according to claim 5, wherein the brightest area of the illumination light by the light source means is set to be the center of the image displayed on the display means in conjunction with the stop of the bending operation of the bending part. Mirror device.
前記挿入部の先端面に配置され、前記挿入部の先端前方を照明する複数の発光素子から構成される
ことを特徴とする請求項1乃至請求項6のいずれか1項に記載の内視鏡装置。 The light source means includes
The endoscope according to any one of claims 1 to 6, wherein the endoscope is configured by a plurality of light emitting elements that are disposed on a distal end surface of the insertion portion and illuminate a front end of the insertion portion. apparatus.
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| JPH11225952A (en) * | 1998-02-12 | 1999-08-24 | Olympus Optical Co Ltd | Endoscope device |
| JP2001075020A (en) * | 1999-09-06 | 2001-03-23 | Olympus Optical Co Ltd | Electronic endoscope |
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| JPS61138241A (en) * | 1984-12-10 | 1986-06-25 | Olympus Optical Co Ltd | Endoscope device |
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Free format text: JAPANESE INTERMEDIATE CODE: R250 |
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| R250 | Receipt of annual fees |
Free format text: JAPANESE INTERMEDIATE CODE: R250 |
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| LAPS | Cancellation because of no payment of annual fees |