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    • 1. 发明申请
    • ENDOSCOPE SYSTEM, ENDOSCOPE, AND DRIVING METHOD
    • 内窥镜系统,内窥镜和驱动方法
    • US20100317923A1
    • 2010-12-16
    • US12787269
    • 2010-05-25
    • Azuchi EndoTakayuki IidaTakao OzakiTakayuki NakamuraOsamu Kuroda
    • Azuchi EndoTakayuki IidaTakao OzakiTakayuki NakamuraOsamu Kuroda
    • A61B1/07
    • A61B1/042A61B1/0008A61B1/00188A61B1/0053A61B1/0653
    • An endoscope includes an elongated tube. An objective lens system is disposed in the elongated tube, for passing image light from an object. A fiber optic image guide includes plural optical fibers bundled together, has a distal tip, is inserted through the elongated tube, for transmitting the image light focused on the distal tip by the objective lens system in a proximal direction. A displacing device displaces the distal tip laterally and periodically upon receiving entry of the image light being focused by use of a piezoelectric actuator positioned outside the distal tip. An image sensor creates images in plural set positions of the distal tip. First to fourth images among the plural images created consecutively are combined to form a first synthesized image. Then second to fifth images among the plural images without use of the first image are combined to form a second synthesized image.
    • 内窥镜包括细长管。 物镜系统设置在细长管中,用于使来自物体的图像光通过。 纤维光学图像引导件包括捆扎在一起的多个光纤,具有远端,通过细长管插入,用于通过物镜系统沿近端方向透射聚焦在远端上的图像光。 移位装置在通过使用定位在远侧末端外侧的压电致动器接收到被聚焦的图像光的进入时侧向和周期性地移位。 图像传感器创建远端尖端的多个设定位置的图像。 连续创建的多个图像中的第一至第四图像被组合以形成第一合成图像。 然后,不使用第一图像的多个图像中的第二至第五图像被组合以形成第二合成图像。
    • 3. 发明授权
    • Electronic endoscope
    • 电子内窥镜
    • US08767059B2
    • 2014-07-01
    • US12892712
    • 2010-09-28
    • Azuchi EndoAkihiko ErikawaTakayuki Iida
    • Azuchi EndoAkihiko ErikawaTakayuki Iida
    • A61B1/04A61B1/06
    • A61B5/0071A61B1/00186A61B1/043A61B1/045A61B1/063A61B1/0638A61B1/0653A61B5/0084
    • An electronic endoscope includes an illumination unit, an imaging unit and an image generating unit. The illumination unit switches among plural light beams having different spectra so as to illuminate a subject. The light beams include white light and excitation light for exciting the subject to produce fluorescence. The imaging unit includes a solid-state imaging device, and an objective optical system. The objective optical system guides, to the solid-state imaging device, light returning from the subject which the illumination unit illuminates. The image generating unit generates image data based on image signals output from the imaging unit. The solid-state imaging device further includes a sensitivity adjusting unit that only lowers sensitivity, to the excitation light, of pixels which are sensitive to the fluorescence among a plurality of pixels of the solid-state imaging device. The light guided by the objective optical system is incident directly onto the solid-state imaging device.
    • 电子内窥镜包括照明单元,成像单元和图像生成单元。 照明单元切换具有不同光谱的多个光束以照射被摄体。 光束包括白光和激发光,用于激发受试者产生荧光。 成像单元包括固态成像装置和物镜光学系统。 物镜光学系统向固态成像装置引导从照明单元照亮的被摄体返回的光。 图像生成单元基于从成像单元输出的图像信号生成图像数据。 固态成像装置还包括灵敏度调整单元,其仅降低对固态成像装置的多个像素中对荧光敏感的像素的激发光的灵敏度。 由物镜光学系统引导的光直接入射到固态成像装置上。
    • 7. 发明申请
    • METHOD OF CONTROLLING ENDOSCOPE AND ENDOSCOPE
    • 控制内镜和内镜的方法
    • US20110071353A1
    • 2011-03-24
    • US12890357
    • 2010-09-24
    • Satoshi OZAWAAkihiko ErikawaAzuchi Endo
    • Satoshi OZAWAAkihiko ErikawaAzuchi Endo
    • A61B1/04A61B1/06
    • A61B1/0638A61B1/05A61B1/063A61B1/0646A61B1/0653
    • An endoscope 100 includes a first light source 45 that emits white illumination light, a second light source 47 that emits narrow-band light and an imaging section that has an imaging device 21 having plural detection pixels and images a region to be observed. The imaging section is caused to output a captured image signal including both a return light component of the white illumination light from the region to be observed by and a return light component of the narrow-band light the white illumination light. From the captured image signal, the return light component of the narrow-band light is selectively extracted, and a brightness level of the extracted return light component of the narrow-band light is changed by changing a light amount of light emitted from the second light source 47.
    • 内窥镜100包括发射白色照明光的第一光源45,发射窄带光的第二光源47和具有多个检测像素的成像装置21和要观察的区域的图像的摄像部。 使得成像部分输出包括来自待观察区域的白色照明光的返回光分量和窄带光的白光照明光的返回光分量的捕获图像信号。 从拍摄图像信号中,选择性地提取窄带光的返回光分量,并且通过改变从第二光发射的光的光量来改变所提取的窄带光的返回光分量的亮度水平 来源47。
    • 8. 发明授权
    • Method of and apparatus for producing hard copy of color picture
adaptive to variations in characteristics of fluorescent screen of
recorder CRT
    • 适用于记录仪CRT荧光屏特性变化的彩色图像硬拷贝的方法和装置
    • US4740820A
    • 1988-04-26
    • US911383
    • 1986-09-25
    • Azuchi Endo
    • Azuchi Endo
    • H04N9/79G03B15/00G03B27/73H04N1/407H04N1/50G03B27/72G03B27/80
    • H04N1/508G03B15/003G03B27/735H04N1/4072
    • An apparatus for producing a hard copy of a color picture includes a cathode ray tube for displaying a picture component on a screen thereof upon reception of a video signal which is associated with a separated-color component, and a recorder which includes a plurality of separated-color filters to expose a recording medium to the picture component being displayed on the screen through any of the filters. The recorder exposes the recording medium to picture components of individual separated colors by additive color photography to record a color picture. A photodetector is provided for measuring brightness of the screen through any one of the filters while a controller controls the cathode ray tube and the photodetector. The controller, before recording the picture components of the individual separated-color components on the recording medium, adjust at least one of luminance and contrast of the tube and an exposure time of the recording medium, based on the brightness measured.
    • 用于制造彩色图像的硬拷贝的装置包括:阴极射线管,用于在接收到与分离颜色分量相关联的视频信号时在其屏幕上显示图像分量;以及记录器,其包括多个分离的 彩色滤光片,以通过任何滤光片将记录介质曝露在屏幕上显示的图像组件中。 记录仪将记录介质通过加色彩色摄影将各个分离颜色的图像分量曝光,以记录彩色图像。 提供一种光电检测器,用于通过任何一个滤光片测量屏幕的亮度,同时控制器控制阴极射线管和光电检测器。 控制器在记录介质上记录各个分离颜色分量的图像分量之前,基于所测量的亮度来调节管的亮度和对比度以及记录介质的曝光时间中的至少一个。