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    • 1. 发明授权
    • Observation apparatus
    • 观察装置
    • US07344246B2
    • 2008-03-18
    • US10862462
    • 2004-06-08
    • Toru NodaKazuhiko OnumaYasufumi FukumaKoji NishioHidetaka AebaYoshio OkazakiMasaru SatoYasuo Kato
    • Toru NodaKazuhiko OnumaYasufumi FukumaKoji NishioHidetaka AebaYoshio OkazakiMasaru SatoYasuo Kato
    • A61B3/10A61B3/00
    • A61B3/132
    • An observation apparatus is provided. An apex angle of a contact prism is inputted by operating an apex angle setting knob of a control panel. A fining angle of the contact prism is inputted by operating a fitting angle setting knob. A control unit determines the amount of correction for astigmatism of a left observation optical system and the amount of correction for astigmatism of a right observation optical system based on a recognized observation magnification and the inputted apex angle. An axial angle for the astigmatism of the left observation optical system and an axial angle for the astigmatism of the right observation optical system are determined based on the inputted fitting angle. Variable cross cylinder lens rotating drive units are controlled to rotate cylinder lenses of each of the right and left observation optical systems, thereby obtaining the determined axial angle and the determined amount of correction.
    • 提供观察装置。 通过操作控制面板的顶角设置旋钮输入接触棱镜的顶角。 通过操作配合角度设置旋钮输入接触棱镜的澄清角度。 控制单元基于识别的观察倍率和输入的顶角来确定左观察光学系统的像散的校正量和右观察光学系统的散光的校正量。 基于输入的拟合角度来确定左观察光学系统的像散的轴向角度和右侧观察光学系统的像散的轴向角度。 控制可变十字圆柱透镜旋转驱动单元以旋转左右观察光学系统中的每一个的圆柱透镜,从而获得确定的轴向角度和确定的校正量。
    • 4. 发明申请
    • Eye fundus photographing system
    • 眼底拍摄系统
    • US20060139572A1
    • 2006-06-29
    • US11154670
    • 2005-06-17
    • Toru NodaYoshio OkazakiHidetaka AebaYasufumi Fukuma
    • Toru NodaYoshio OkazakiHidetaka AebaYasufumi Fukuma
    • A61B3/14A61B3/10
    • A61B3/14
    • An eye fundus photographing system, wherein a three-dimensional moving picture is photographed and displayed in eye fundus of infrared fluorescent photographing. The photographing system includes an exciter filter for transmitting a specific wavelength region of the illumination light emitted from the light source, an illumination optical system for irradiating the fundus with the illumination light transmitted from the exciter filter, left and right objective lenses for extracting the infrared fluorescent light emitted by an ICG of the eye fundus as a left and right photographing light, a photographing optical system including a barrier filter for transmitting the predetermined infrared wavelength region of the left and right photographic light, infrared TV cameras for photographing this wavelength region with a predetermined frame rate, a synchronizing cable for synchronizing each frame and a displayed three-dimensional moving image obtained by combining a left and right photographic image by the infrared TV camera.
    • 一种眼底照相系统,其中以红外荧光摄影的眼底拍摄并显示三维运动图像。 拍摄系统包括用于传输从光源发射的照明光的特定波长区域的激光器滤光器,用于用从激光滤光器传输的照明光照射眼底的照明光学系统,用于提取红外线的左右物镜 由眼底ICG发出的荧光作为左右拍摄光,拍摄光学系统,包括用于传输左右摄影光的预定红外波长区域的屏障滤光器,用于拍摄该波长区域的红外电视摄像机, 预定的帧速率,用于同步每帧的同步电缆以及通过红外线电视摄像机组合左和右摄影图像而获得的显示的三维运动图像。
    • 5. 发明申请
    • Light source apparatus
    • 光源装置
    • US20060071583A1
    • 2006-04-06
    • US11242891
    • 2005-10-05
    • Yukiharu TagawaYoshio Okazaki
    • Yukiharu TagawaYoshio Okazaki
    • H01J5/16H01J61/40
    • G03B21/2026H01J61/86
    • It is an object of the present invention to provide a light source apparatus capable of reducing the production cost and increasing productivity. A light source apparatus comprises an approximately spherical discharge container, sealing portions continuously formed from both ends of the discharge container respectively, and a concave reflection mirror disposed so as to surround the discharge lamp, wherein the concave reflection mirror has a spheroidal surface or paraboloid of revolution formed from a front opening edge thereof, a sealing portion receiving section is formed at a head section of the concave reflection mirror and has a flat inner bottom surface, in which an end of one of the sealing portions is received, and an end surface of an end portion of the one of the sealing portions and the inner bottom surface of the sealing portion receiving section are brought into contact.
    • 本发明的目的是提供一种能够降低生产成本并提高生产率的光源装置。 一种光源装置,包括近似球形的放电容器,分别从放电容器的两端连续形成的密封部分和设置成围绕放电灯的凹面反射镜,其中凹面反射镜具有球形表面或抛物面 由凹面反射镜的头部形成有密封部容纳部,并且具有平坦的内底表面,其中一个密封部分的一端被容纳在其中,并且端面 的一个密封部分的端部和密封部分接收部分的内底表面接触。
    • 6. 发明申请
    • Observation apparatus
    • 观察装置
    • US20050018134A1
    • 2005-01-27
    • US10862462
    • 2004-06-08
    • Toru NodaKazuhiko OnumaYasufumi FukumaKoji NishioHidetaka AebaYoshio OkazakiMasaru SatoYasuo Kato
    • Toru NodaKazuhiko OnumaYasufumi FukumaKoji NishioHidetaka AebaYoshio OkazakiMasaru SatoYasuo Kato
    • G02B21/20A61B3/12A61B3/13A61B19/00G02B15/14A61B3/10
    • A61B3/132
    • An observation apparatus capable of preferably removing an astigmatism and chromatic aberration which occur in an observation image is provided. An apex angle of a contact prism is inputted by operating an apex angle setting knob of a control panel. A fitting angle of the contact prism is inputted by operating a fitting angle setting knob. A control unit determines the amount of correction for astigmatism of a left observation optical system and the amount of correction for astigmatism of a right observation optical system based on a recognized observation magnification and the inputted apex angle. An axial angle for the astigmatism of the left observation optical system and an axial angle for the astigmatism of the right observation optical system are determined based on the inputted fitting angle. Variable cross cylinder lens rotating drive units are controlled to rotate cylinder lenses of each of the right and left observation optical systems, thereby obtaining the determined axial angle and the determined amount of correction.
    • 提供一种能够优选去除在观察图像中发生的像散和色差的观察装置。 通过操作控制面板的顶角设置旋钮输入接触棱镜的顶角。 通过操作配合角度设置旋钮输入接触棱镜的拟合角度。 控制单元基于识别的观察倍率和输入的顶角来确定左观察光学系统的像散的校正量和右观察光学系统的散光的校正量。 基于输入的拟合角度来确定左观察光学系统的像散的轴向角度和右侧观察光学系统的像散的轴向角度。 控制可变十字圆柱透镜旋转驱动单元以旋转左右观察光学系统中的每一个的圆柱透镜,从而获得确定的轴向角度和确定的校正量。
    • 10. 发明授权
    • Optical device
    • 光学装置
    • US08714777B2
    • 2014-05-06
    • US13428524
    • 2012-03-23
    • Mikio ShimizuYoshio Okazaki
    • Mikio ShimizuYoshio Okazaki
    • F21V7/04F21V13/04
    • F21V7/04F21V7/048F21V13/04
    • An optical device includes a high pressure discharge lamp, a concave condensing mirror placed so as to surround the high pressure discharge lamp while an optical axis stays extended along a direction of an arc of the high pressure discharge lamp, and an aspherical lens that is placed forward the light exit direction of the concave condensing mirror and that is rotationally symmetrical with respect to the optical axis of the concave condensing mirror, in which a reflecting surface of the concave condensing mirror is configured so as to have a shape set in connection with the shape of a light incident surface and the shape of a light exit surface of the aspherical lens.
    • 光学装置包括:高压放电灯,凹状聚光镜,放置在围绕高压放电灯的同时沿着高压放电灯的圆弧方向延伸的光轴;以及非球面透镜 将凹形聚光镜的光出射方向向前延伸,并且相对于凹形聚光镜的光轴旋转对称,其中凹形聚光镜的反射面被构造成具有与 光入射面的形状和非球面透镜的光出射面的形状。