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    • 2. 发明授权
    • Microscope and ghosting elimination method
    • 显微镜和重影消除法
    • US09465211B2
    • 2016-10-11
    • US14741651
    • 2015-06-17
    • Sony Corporation
    • Norihiro TanabeTakashi Yamamoto
    • G02B27/00G02B21/18G02B21/24
    • G02B27/0018G02B21/18G02B21/245G02B21/247
    • A microscope includes a first imaging optical system that images sample transmitted light transmitted through a sample provided on a stage, and a second imaging optical system that images a part of the sample transmitted light branched from the first imaging optical system. Here, the second imaging optical system includes a light beam branching element that branches the part of the sample transmitted light from the first imaging optical system, and has a thickness of a predetermined threshold or more, an imaging element that images a phase difference image of the branched sample transmitted light, one or a plurality of optical elements that images an image of the phase difference image of the branched sample transmitted light on the imaging element, and a filter that shields a part of the branched sample transmitted light imaged on the imaging element.
    • 显微镜包括:第一成像光学系统,其对通过设置在台架上的样本透射的透射光进行成像;第二成像光学系统,其对从第一成像光学系统分支的透射光进行成像。 这里,第二成像光学系统包括光束分支元件,其将来自第一成像光学系统的样本透射光的一部分分支,并具有预定阈值或更大的厚度;成像元件,其对 分支样本透射光,将成像元件上的分支样本透射光的相位差图像的图像成像的一个或多个光学元件和屏蔽成像在成像上的分支样本透射光的一部分的滤光器 元件。
    • 3. 发明申请
    • MICROSCOPE AND GHOSTING ELIMINATION METHOD
    • 微阵列和消除消除方法
    • US20150286052A1
    • 2015-10-08
    • US14741651
    • 2015-06-17
    • Sony Corporation
    • Norihiro TanabeTakashi Yamamoto
    • G02B27/00G02B21/24G02B21/18
    • G02B27/0018G02B21/18G02B21/245G02B21/247
    • A microscope includes a first imaging optical system that images sample transmitted light transmitted through a sample provided on a stage, and a second imaging optical system that images a part of the sample transmitted light branched from the first imaging optical system. Here, the second imaging optical system includes a light beam branching element that branches the part of the sample transmitted light from the first imaging optical system, and has a thickness of a predetermined threshold or more, an imaging element that images a phase difference image of the branched sample transmitted light, one or a plurality of optical elements that images an image of the phase difference image of the branched sample transmitted light on the imaging element, and a filter that shields a part of the branched sample transmitted light imaged on the imaging element.
    • 显微镜包括:第一成像光学系统,其对通过设置在台架上的样本透射的透射光进行成像;第二成像光学系统,其对从第一成像光学系统分支的透射光进行成像。 这里,第二成像光学系统包括光束分支元件,其将来自第一成像光学系统的样本透射光的一部分分支,并且具有预定阈值或更大的厚度;成像元件,其对 分支样本透射光,将成像元件上的分支样本透射光的相位差图像的图像成像的一个或多个光学元件和屏蔽成像在成像上的分支样本透射光的一部分的滤光器 元件。
    • 4. 发明申请
    • DIGITAL MICROSCOPE APPARATUS, METHOD OF SEARCHING FOR IN-FOCUS POSITION THEREOF, AND PROGRAM
    • 数字显微镜设备,搜索其焦点位置的方法和程序
    • US20140267673A1
    • 2014-09-18
    • US14200835
    • 2014-03-07
    • Sony Corporation
    • Takashi YamamotoTakuya OshimaRyu NarusawaTakamichi YamakoshiNorihiro Tanabe
    • G02B21/36G02B7/28
    • G02B21/365G02B7/34G02B21/245G02B21/247G02B21/361
    • A digital microscope apparatus includes a first imaging unit including a first imaging device and a first optical system including an objective lens configured to enlarge first and second images of a preparation that holds a sample, the first image being formed on the first device through the first system, a second imaging unit including a second optical system that is branched from the first system and has a depth of field larger than the first system and a second imaging device on which the second image is formed through the second system, and a controller configured to calculate a provisional in-focus position of the lens based on the second image, determine an area of the first device, from which the first image is read, and search for, based on the read image, an in-focus position of the lens in a predetermined range based on the provisional in-focus position.
    • 数字显微镜装置包括:第一成像单元,包括第一成像装置和第一光学系统,所述第一光学系统包括被配置为放大保持样品的准备物的第一和第二图像的物镜,所述第一图像通过第一 系统,包括从第一系统分支并具有大于第一系统的景深的第二光学系统的第二成像单元和通过第二系统形成第二图像的第二成像设备,以及控制器配置 基于第二图像来计算透镜的临时对焦位置,基于所读取的图像来确定从其读取第一图像的第一装置的区域,并搜索第一图像的对焦位置 透镜基于临时对焦位置在预定范围内。
    • 7. 发明申请
    • DIGITAL MICROSCOPE APPARATUS, INFORMATION PROCESSING METHOD, AND INFORMATION PROCESSING PROGRAM
    • 数字显微镜设备,信息处理方法和信息处理程序
    • US20140267676A1
    • 2014-09-18
    • US14200810
    • 2014-03-07
    • Sony Corporation
    • Norihiro TanabeRyu NarusawaNobuhiro HayashiTakamichi YamakoshiTakashi Yamamoto
    • G02B21/36
    • G02B21/365
    • A digital microscope apparatus includes an illumination optical system configured to emit illumination light; a stage having an opening capable of transmitting the light therethrough, on which a preparation can be placed in accordance with a position of the opening; an enlarging imaging unit including an objective lens configured to enlarge an image and disposed to face the system with the stage disposed therebetween, and an imaging device configured to capture an image enlarged by the lens; a white image acquiring unit configured to open the opening, to cause the system to emit the light in a state where an image point of the system is aligned with a focal point of the lens, and to acquire, as a white image, an image formed on an imaging surface of the device; and a calculation unit configured to use the captured white image to calculate a shading correction coefficient.
    • 一种数字显微镜装置,包括配置为发射照明光的照明光学系统; 具有能够透过光的开口的台阶,根据开口的位置可以在其上放置准备物; 一种放大成像单元,包括物镜,被配置为放大图像并且被布置成与设置在其间的台面相对的系统;以及被配置为捕获由所述透镜放大的图像的成像装置; 白色图像获取单元,被配置为打开所述开口,以使所述系统在所述系统的图像点与所述透镜的焦点对准的状态下发射所述光,并且获取作为白色图像的图像 形成在所述装置的成像表面上; 以及计算单元,被配置为使用所捕获的白色图像来计算阴影校正系数。
    • 9. 发明申请
    • IMAGING APPARATUS, IMAGING CONTROL PROGRAM, AND IMAGING METHOD
    • 成像设备,成像控制程序和成像方法
    • US20130215251A1
    • 2013-08-22
    • US13755966
    • 2013-01-31
    • Sony Corporation
    • Takashi Yamamoto
    • G02B21/36
    • G02B21/36G02B21/367
    • An imaging apparatus includes: a first imaging area setting unit configured to divide an imaging range that includes a sample into a plurality of areas and set each of the plurality of areas as a first imaging area; a first imaging unit configured to capture a first image at an in-focus position of the first imaging area; a second imaging area setting unit configured to set an area that extends over adjacent first imaging areas as a second imaging area in a case where in-focus positions of the adjacent first imaging areas are so different from each other that the difference exceeds a predetermined value; a second imaging unit configured to capture a second image at an in-focus position of the second imaging area; and an image combining unit configured to combine the first image with the second image.
    • 一种成像装置,包括:第一成像区域设定单元,被配置为将包括样本的成像范围分割成多个区域,并将多个区域中的每一个区域设置为第一成像区域; 第一成像单元,被配置为捕获第一成像区域的对焦位置处的第一图像; 第二成像区域设定单元,被配置为在相邻的第一成像区域的对焦位置彼此不同的情况下,将在相邻的第一成像区域上延伸的区域设置为第二成像区域,使得该差异超过预定值 ; 第二成像单元,被配置为在所述第二成像区域的对焦位置捕获第二图像; 以及图像组合单元,被配置为将第一图像与第二图像组合。