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公开(公告)号:US12041340B2
公开(公告)日:2024-07-16
申请号:US17610462
申请日:2020-05-12
发明人: Stefan Fabris , Patric Pelzer , Marco Bingel
摘要: A controller for providing an operational setting of an imaging device is configured to provide a user with a preferred operational setting for acquiring an image. The controller is also configured to receive a user input and generate a response information based on the user input, the response information indicating whether or not the image generated by the imaging device is accepted by the user. The controller is further configured to update the preferred operational setting using a machine learning algorithm based on the response information.
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公开(公告)号:US11933960B2
公开(公告)日:2024-03-19
申请号:US17413579
申请日:2019-12-12
发明人: Werner Wittke , Patric Pelzer
CPC分类号: G02B21/365 , G02B21/06 , G02B21/368
摘要: A microscope system includes: at least one microscope component with electrically adjustable component parameters; a controller for generating electrical signals and transmitting the electrical signals to the at least one microscope component to set the electrically adjustable component parameters; and a computer having at least one display unit, the computer generating an input unit having a graphical user interface on the at least one display unit, at least three setting parameters being adjustable by the graphical user interface. The input unit has an input pointer that is positionable in an input area so as to set a respective value for the at least three setting parameters. A coordinate axis is defined in the input area for each of the at least three setting parameters, with at least one coordinate axis not being perpendicular to another coordinate axis. Values of the at least three setting parameters are determined by the coordinates.
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公开(公告)号:US11841494B2
公开(公告)日:2023-12-12
申请号:US17082320
申请日:2020-10-28
发明人: Kai Ritschel , Marco Bingel , Patric Pelzer
CPC分类号: G02B21/367 , G02B21/365 , G06T7/37 , G06T7/80 , G06T2207/10056 , G06T2207/20221
摘要: An optical imaging device for a microscope comprises a first optical system configured to form a first optical image corresponding to a first region of a sample in accordance with a first imaging mode, a second optical system configured to form a second optical image corresponding to a second region of said sample, wherein said first and second regions spatially coincide in a target region of said sample and said first and second imaging modes are different from each other, a memory storing first distortion correction data suitable for correcting a first optical distortion caused by said first optical system in said first optical image, second distortion correction data suitable for correcting a second optical distortion caused by said second optical system in said second optical image, and transformation data suitable for correcting positional misalignment between said first and second optical images, and a processor which is configured to process first image data representing said first optical image based on said first distortion correction data for generating first distortion corrected image data, to process second image data representing said second optical image based on said second distortion correction data for generating second distortion corrected image data; and to combine said first and second distortion corrected image data based on said transformation data for generating combined image data representing a combined image which corresponds to said target region of said object.
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