Software control system for multicolor microscopic imaging of scanning light field and method thereof

A micro-imaging and software-controlled technology, which is applied to color TV parts, microscopes, optical components, etc., to achieve the effects of simplifying the control process, speeding up the experimental process, and reducing the complexity of operations
CN111479053AActive Publication Date: 2020-07-31TSINGHUA UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
TSINGHUA UNIV
Publication Date
2020-07-31

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Abstract

The invention discloses a software control system for multi-color microscopic imaging of a scanning light field and a method thereof, and the system comprises a camera control module which controls the on-off of a camera according to the internal parameters of the camera; a storage control module is used for storing a light field picture of a biological sample of the asynchronous camera; a pixel rearrangement module is used for carrying out corresponding pixel rearrangement on the acquired image to obtain a rough imaging result of the biological sample; a multi-channel control module is used for sending different channels to different display channels of the display so as to rearrange image pixels of the multiple channels at the same time to obtain an image preview effect; and a hardware board card control module is used for transmitting the control signal to the hardware board card so as to carry out synchronous control. The system provided by the embodiment of the invention can preview the multi-view results shot by the current light field camera in real time, and merge and display the multi-color results of the system at the same time.
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Description

technical field

[0001] The invention relates to the technical field of computer photography, in particular to a software control system and method for scanning light field multicolor microscopic imaging. Background technique

[0002] In recent years, microscopic science has been greatly developed. From the initial simple microscope to the current electron microscope, great efforts have been made in the direction of improving the resolution of the microscope. In order to observe biological samples more clearly, the resolution in the four dimensions (horizontal resolution (X direction and Y direction), axial resolution (Z direction) and time resolution (t)) that scientists are most concerned about is also Continuously improve in the development of science and technology. However, limited by the existing imaging equipment and the influence of optical factors such as phase difference and diffraction, it is difficult for a single imaging method to take into account the sample re...

Claims

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