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    • 1. 发明授权
    • Inverted microscope
    • 倒置显微镜
    • US06940640B2
    • 2005-09-06
    • US10365965
    • 2003-02-13
    • Minoru SukekawaSusumu HondaAtsuhiro TsuchiyaMiwa KojimaKeisuke Tamura
    • Minoru SukekawaSusumu HondaAtsuhiro TsuchiyaMiwa KojimaKeisuke Tamura
    • G02B21/00
    • G02B21/0088
    • The inverted microscope comprises a microscope main body, a stage configured to place a specimen thereon, a stage fixing part arranged between the stage and the microscope main body and configured to fix the stage to the microscope main body, an objective lens configured to observe the specimen from below the stage, an observation optical system configured to observe a specimen image taken by the objective lens with an eyepiece, and a reflection member configured to reflect an image in vicinity of the objective lens from vicinity of the eyepiece, the reflection member being arranged below the stage fixing part of the microscope main body and arranged on an axis which is almost parallel to an optical axis of the observation optical system passing the eyepiece and passes vicinity of the eyepiece.
    • 倒置显微镜包括显微镜主体,被配置为将样本放置在其上的台架固定部,布置在台架和显微镜主体之间并且将台架固定到显微镜主体的台架固定部件,被配置为观察 被配置为用目镜观察由物镜拍摄的标本图像的观察光学系统,以及被配置为从目镜附近反射物镜附近的图像的反射构件,反射构件为 布置在显微镜主体的台架固定部的下方,并且配置在与通过目镜的观察光学系统的光轴几乎平行的轴上并通过目镜附近。
    • 2. 发明申请
    • Examination Apparatus, Fluoroscopy Apparatus, Examination Method, And Experimental Method
    • 检查装置,荧光检查装置,检查方法和实验方法
    • US20070273877A1
    • 2007-11-29
    • US10594311
    • 2005-03-29
    • Yoshihiro KawanoKeiji ShimizuMinoru SukekawaTsuyoshi MochizukiSusumu HondaKazuhiro Hayashi
    • Yoshihiro KawanoKeiji ShimizuMinoru SukekawaTsuyoshi MochizukiSusumu HondaKazuhiro Hayashi
    • G01J3/30G02B21/36
    • G01N21/6458G02B21/248
    • Even when the magnifying power is reduced, an image can be obtained at high resolution without significantly reducing the numerical aperture, and examination accuracy is improved. There is provided a microscope examination apparatus including a light source for emitting excitation light or illumination light to a specimen placed on a stage; an objective lens opposing the stage and capable of focusing fluorescence or reflected light from the specimen; an image-forming lens for forming an image of the specimen obtained by the objective lens; and an image-capturing unit for capturing the image of the specimen forming by the image-forming lens, wherein a plurality of the objective lenses having different magnifying powers is provided, and an objective-lens switching mechanism for switching among the objective lenses is provided, and wherein a plurality of the image-forming lenses having different magnifying powers is provided, and an image-forming-lens switching mechanism for switching among the image-forming lenses 5a and 5b is provided.
    • 即使放大倍数减小,也能够以高分辨率获得图像,而不会显着降低数值孔径,提高了检查精度。 提供了一种显微镜检查装置,其包括用于向放置在台架上的样本发射激发光或照明光的光源; 与舞台相对并且能够聚焦来自样本的荧光或反射光的物镜; 用于形成由所述物镜获得的所述样本的图像的图像形成透镜; 以及图像捕获单元,用于捕获由图像形成透镜形成的样本的图像,其中提供具有不同放大倍率的多个物镜,并且提供用于在物镜之间切换的物镜切换机构 并且其中提供了具有不同放大倍率的多个图像形成透镜,并且提供了用于在成像透镜5a和5b之间切换的图像形成透镜切换机构。
    • 5. 发明授权
    • Illumination apparatus for a microscope
    • 显微镜的照明装置
    • US06384967B1
    • 2002-05-07
    • US09394445
    • 1999-09-09
    • Akira WatanabeMinoru SukekawaShunichi KubotaShinji Matsushita
    • Akira WatanabeMinoru SukekawaShunichi KubotaShinji Matsushita
    • G02B2106
    • G02B21/082G02B21/248
    • An illumination apparatus of the present invention used for a microscope to guide illumination light to an objective lens attached to a revolving nosepiece comprises a light source for radiating the illumination light, an optical system for guiding the illumination light radiated from the light source, to the objective lens, an aperture diaphragm switching section provided in the optical system and having a plurality of aperture diaphragms and a light shielding portion, for switching the aperture diaphragm on the illumination light, linked with motion of the revolving nosepiece, when switching an observation method or the objective lens, and a control circuit for controlling operation of at least one of the aperture diaphragm switching section and the revolving nosepiece such that amount of light entering into the objective lens is prevented from undesirably increasing, when the observation method or the objective lens is switched.
    • 本发明的照明装置用于将照明光引导到安装在旋转鼻梁上的物镜的显微镜,其特征在于,包括用于照射照明光的光源,将从所述光源照射的照明光引导到所述光源的光学系统 物镜,设置在光学系统中并且具有多个孔径光阑和遮光部分的孔径光阑切换部分,用于在切换观察方法时切换与旋转物镜的运动相关的照明光上的孔径光阑; 物镜,以及用于控制孔径光阑切换部和旋转喷嘴中的至少一个的操作的控制电路,使得当观察方法或物镜为...时,防止进入物镜的光量不期望地增加 切换
    • 6. 发明授权
    • Microscope controller and microscope system comprising microscope controller
    • 显微镜控制器和显微镜系统,包括显微镜控制器
    • US08699131B2
    • 2014-04-15
    • US12956537
    • 2010-11-30
    • Tetsuya ShirotaKatsuyoshi YamaguchiMinoru Sukekawa
    • Tetsuya ShirotaKatsuyoshi YamaguchiMinoru Sukekawa
    • G02B21/00
    • G02B21/368G02B21/24
    • In a microscope controller by which is performed an operation for controlling an operation of each of a plurality of electric units included in a microscope system, the control unit establishes a plurality of functional areas in the display region of the touch panel as regions for making operable the plurality of electric units. When an input to any of the functional areas is detected, the control unit generates a control instruction signal for controlling an electric unit corresponding to this functional area. The communication control unit transmits the control instruction signal to an external device controlling an operation of a corresponding electric unit. When an input to a predetermined functional area is detected, the control unit then reestablishes a plurality of functional areas within the display region of the touch panel so as to enlarge this functional area or a plurality of specific functional areas including this functional area.
    • 在显微镜控制器中,执行用于控制显微镜系统中包括的多个电单元中的每一个的操作的操作,控制单元在触摸面板的显示区域中建立多个功能区域,作为用于使可操作的区域 多个电气单元。 当检测到任何功能区域的输入时,控制单元产生用于控制对应于该功能区域的电单元的控制指令信号。 通信控制单元将控制指令信号发送到控制相应电气单元的操作的外部设备。 当检测到预定功能区域的输入时,控制单元然后重新建立触摸面板的显示区域内的多个功能区域,以扩大该功能区域或包括该功能区域的多个特定功能区域。
    • 7. 发明申请
    • MICROSCOPE CONTROLLER AND MICROSCOPE SYSTEM COMPRISING MICROSCOPE CONTROLLER
    • MICROSCOPE控制器和包含微阵列控制器的显微系统
    • US20110134517A1
    • 2011-06-09
    • US12956537
    • 2010-11-30
    • Tetsuya ShirotaKatsuyoshi YamaguchiMinoru Sukekawa
    • Tetsuya ShirotaKatsuyoshi YamaguchiMinoru Sukekawa
    • G02B21/00G02B21/26G02B21/06
    • G02B21/368G02B21/24
    • In a microscope controller by which is performed an operation for controlling an operation of each of a plurality of electric units included in a microscope system, the control unit establishes a plurality of functional areas in the display region of the touch panel as regions for making operable the plurality of electric units. When an input to any of the functional areas is detected, the control unit generates a control instruction signal for controlling an electric unit corresponding to this functional area. The communication control unit transmits the control instruction signal to an external device controlling an operation of a corresponding electric unit. When an input to a predetermined functional area is detected, the control unit then reestablishes a plurality of functional areas within the display region of the touch panel so as to enlarge this functional area or a plurality of specific functional areas including this functional area.
    • 在显微镜控制器中,执行用于控制显微镜系统中包括的多个电单元中的每一个的操作的操作,控制单元在触摸面板的显示区域中建立多个功能区域,作为用于使可操作的区域 多个电气单元。 当检测到任何功能区域的输入时,控制单元产生用于控制对应于该功能区域的电单元的控制指令信号。 通信控制单元将控制指令信号发送到控制相应电气单元的操作的外部设备。 当检测到预定功能区域的输入时,控制单元然后重新建立触摸面板的显示区域内的多个功能区域,以扩大该功能区域或包括该功能区域的多个特定功能区域。
    • 9. 发明申请
    • MICROSCOPE
    • 显微镜
    • US20090161209A1
    • 2009-06-25
    • US12343208
    • 2008-12-23
    • Kazuhiro HAYASHIMinoru SukekawaTakayuki Kono
    • Kazuhiro HAYASHIMinoru SukekawaTakayuki Kono
    • G02B21/06
    • G02B21/14G01J1/04G01J1/0411G01J1/0414G01J1/0444G01J1/0462G01J1/08G02B26/007
    • Provided are an illuminating optical system which illuminates a sample, an illumination-side pupil modulating device which is arranged on a side of the illuminating optical system, an illumination-side turret which holds the illumination-side pupil modulating device, an illumination-side-turret revolving mechanism which revolves the illumination-side turret to move the illumination-side pupil modulating device along an orbital circumference on a plane perpendicular to an optical axis, a relaying optical system which relays a pupil of an objective lens; an imaging-side pupil modulating device which is arranged on a side of the relaying optical system, an imaging-side turret which holds the imaging-side pupil modulating device, and an imaging-side-turret revolving mechanism which revolves the imaging-side turret to move the imaging-side pupil modulating device along the orbital circumference on a plane perpendicular to the optical axis.
    • 本发明提供一种照射样品的照明光学系统,配置在照明光学系统一侧的照明侧光瞳调制装置,保持照明侧光瞳调制装置的照明侧转塔,照明侧光瞳调制装置, 转台旋转机构,其使照明侧转台沿着与光轴垂直的平面上的轨道圆周移动照明侧光瞳调制装置,中继光学系统,其中继物镜的光瞳; 配置在中继光学系统的一侧的成像侧光瞳调制装置,保持摄像侧光瞳调制装置的成像侧转塔和成像侧转盘旋转的成像侧转塔旋转机构 以沿垂直于光轴的平面上的轨道圆周移动成像侧光瞳调制装置。