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    • 3. 发明申请
    • DIGITAL MICROSCOPE
    • 数字显微镜
    • WO2012024627A1
    • 2012-02-23
    • PCT/US2011/048488
    • 2011-08-19
    • SAKURA FINETEK U.S.A., INC.HING, PaulROMER, ChristianHENSLER, Sven
    • HING, PaulROMER, ChristianHENSLER, Sven
    • G02B21/36
    • G02B21/367G02B21/361G02B21/365
    • A method and a computer-readable medium containing instructions to perform a method including sensing an image without magnification of a portion of a tissue sample on a substrate with a sensor; displaying the sensed image on a display at a sensor to display pixel ratio greater than one to one; and performing at least one of the following: refreshing the sensed image at a predetermined rate, storing the sensed image, modifying the sensor to display pixel ratio, and sensing a magnified view of an area of the portion of the tissue sample. An apparatus including a digital microscope (150) comprising: at least one image sensor (160); a stage (180) configured to support at least one microscope slide (210); a first optic (168) configured to project an image with a magnification of one or less; a second optic (170) disposed between the at least one sensor and the stage, the second optic configured to project an image with a magnification greater than one; and a light source (195, 196); and a computer (110) coupled to the digital microscope (150) and operable to direct an image capture by the at least one image sensor of a portion of a microslide on the stage projected through the first optic or the second optic.
    • 一种方法和计算机可读介质,其包含用于执行方法的指令,所述方法包括:在传感器的基板上不使组织样本的一部分放大的情况下感测图像; 在传感器的显示器上显示感测图像以显示大于1比1的像素比; 并且执行以下中的至少一个:以预定速率刷新感测到的图像,存储感测图像,修改传感器以显示像素比,以及感测组织样本的该部分区域的放大视图。 一种包括数字显微镜(150)的设备,包括:至少一个图像传感器(160); 构造成支撑至少一个显微镜载玻片(210)的平台(180); 第一光学器件(168),被配置为以一个或更小的放大率投影图像; 设置在所述至少一个传感器和所述台之间的第二光学器件(170),所述第二光学器件被配置为以大于1的倍率投影图像; 和光源(195,196); 以及联接到数字显微镜(150)的计算机(110),并且可操作以将所述至少一个图像传感器引导到通过所述第一光学器件或所述第二光学器件投射的所述台上的微滑块的一部分的图像捕获。