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    • 4. 发明授权
    • Method of controlling endoscope and endoscope
    • 内窥镜和内窥镜控制方法
    • US08936548B2
    • 2015-01-20
    • US12890357
    • 2010-09-24
    • Satoshi OzawaAkihiko ErikawaAzuchi Endo
    • Satoshi OzawaAkihiko ErikawaAzuchi Endo
    • A61B1/06A61B6/00A61B1/05
    • 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。
    • 5. 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。
    • 7. 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。
    • 8. 发明授权
    • Endoscope apparatus
    • 内窥镜装置
    • US09232883B2
    • 2016-01-12
    • US13017349
    • 2011-01-31
    • Satoshi OzawaTakayuki IidaYasuhiro MinetomaAkihiko Erikawa
    • Satoshi OzawaTakayuki IidaYasuhiro MinetomaAkihiko Erikawa
    • A61B1/06A61B1/00A61B1/04A61B1/07
    • A61B1/00188A61B1/043A61B1/063A61B1/0638A61B1/0653A61B1/0684A61B1/07
    • To provide an endoscope apparatus in which the observation image can be varied continuously as the observation magnification is varied by a zoom magnification varying manipulation so that an observation image suitable for an endoscope diagnosis is obtained at each observation magnification, and to thereby prevent the operator from feeling uncomfortable and increase the accuracy of a diagnosis. An endoscope apparatus is equipped with illuminating unit having plural light sources which generate light beams having different spectra, for illuminating an observation subject; imaging unit for imaging the observation subject; observation magnification varying unit for varying observation magnification of the imaging of the imaging unit; and light quantity ratio varying unit for continuously varying an emission light quantity ratio between the plural light sources according to the observation magnification that is set by the observation magnification varying unit.
    • 为了提供一种内窥镜装置,其中,随着观察倍率通过变焦倍率变化操作而变化,观察图像可以连续变化,从而在每个观察放大倍数下获得适合于内窥镜诊断的观察图像,从而防止操作者 感觉不舒服,提高了诊断的准确性。 一种内窥镜装置具备:具有多个光源的照明单元,该光源产生具有不同光谱的光束,用于照明观察对象物; 用于对观察对象成像的成像单元; 用于改变所述成像单元的成像的观察倍率的观察倍率变化单元; 以及光量比变化单元,用于根据由观察倍率变化单元设定的观察倍率连续地改变多个光源之间的发射光量比。