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    • 5. 发明授权
    • Composing microscope
    • 组成显微镜
    • US06320174B1
    • 2001-11-20
    • US09442172
    • 1999-11-16
    • Triantafyllos TafasPetros Tsipouras
    • Triantafyllos TafasPetros Tsipouras
    • G02B606
    • G02B26/105G02B6/06G02B21/002G02B21/361G02B21/364
    • The present invention provides a composing microscope for scanning a large area of a specimen in a minimal amount of time. In a first embodiment, the composing microscope has a plurality of optical sensors and a plurality of optical projecting systems arranged adjacent to each other. Each of the projecting systems acquires an image from one location of a specimen and projects the image on one of the optical sensors for digitalizing the image. An image acquisition device is connected to the optical sensors for simultaneously storing the digitalized images with information of their locations on the specimen. In a second embodiment, a composing microscope has an optical sensor and a plurality of optical projecting systems arranged adjacent to each other in rows. Each of the optical projecting systems has a first end for acquiring an image at one location of a specimen and a second end. An optical reflector moveable with respect to the second ends of the optical projecting systems receives the images from a row of the optical projecting systems at the second ends and projects the images on the optical sensor, and the optical sensor simultaneously digitalizes the images. An image acquisition device simultaneously receives and stores the digitalized images with information of their locations on the specimen. In a third embodiment, a composing microscope has an optical sensor and a plurality of optical projecting systems arranged adjacent to each other. The projecting system has a first end and a second end connected to the optical sensor. Each of the optical projecting systems acquires an image of one location of a specimen at the first end and projects the image on the optical sensor for digitalizing the image. An image acquisition device is connected to the optical sensor for storing the digitalized images with information of their locations on the specimen.
    • 本发明提供了一种用于以最小的时间扫描大面积的样本的组合显微镜。 在第一实施例中,构图显微镜具有彼此相邻布置的多个光学传感器和多个光学投影系统。 每个投影系统从样本的一个位置获取图像,并将图像投影在其中一个光学传感器上,以使图像数字化。 图像获取装置连接到光学传感器,用于将数字化图像与其位置的信息同时存储在样本上。 在第二实施例中,构图显微镜具有光学传感器和多个彼此相邻布置的光学投影系统。 每个光学投影系统具有用于在样本的一个位置处获取图像的第一端和第二端。 相对于光学投影系统的第二端可移动的光学反射器在第二端处接收来自一系列光学投影系统的图像,并将图像投射在光学传感器上,并且光学传感器同时对图像进行数字化。 图像采集装置同时接收并存储具有它们在样本上的位置的信息的数字化图像。 在第三实施例中,构图显微镜具有彼此相邻布置的光学传感器和多个光学投影系统。 投影系统具有连接到光学传感器的第一端和第二端。 每个光学投影系统获取在第一端处的样本的一个位置的图像,并将图像投影在用于数字化图像的光学传感器上。 图像获取装置连接到光学传感器,用于将数字化图像存储在样本上的位置信息。