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Digital pathology sectioning is a technology that combines modern digital systems with traditional optical magnification devices. It is to scan and collect traditional glass pathological slices through a fully automatic microscope or optical magnification system to obtain high-resolution digital images, and then use a computer to automatically perform high-precision multi-field seamless stitching and processing on the obtained images to obtain high-quality visual data for application In various fields of pathology.

一、Advantages of digital pathology slice system

 
  1 .Easy to save and manage. Use it to establish a large-capacity digital pathology section library, save precious pathology section data, solve the problems of glass sections that are difficult to store and keep, easy to fade, easy to damage, easy to lose, and difficult to retrieve, and to achieve the same section. Can be viewed by many people in different locations at the same time.
  2 .Convenient browsing and transmission. The user can browse any area of the microscopic section at different magnifications (2x, 4x, 10x, 20x, 40x, 100x) anytime and anywhere, and the data transmission does not have to be restricted by time and space. When browsing, it is optical magnification rather than digital magnification, so there is no problem of image information distortion and unclear details. This is essentially different from ordinary computer browsing picture zooming which only changes the image size but cannot change the resolution.
  3 .Provide convenience for remote reading of digital pathology. The system can select any position of the slice under the operation of the mouse to complete stepless zooming and continuous zooming, and provide panoramic navigation of the slice, so that the image under the high-power lens and the position under the low-power lens form a good correspondence. It can also realize post-processing such as quantitative analysis and labeling of slices.
  4 .High speed, high efficiency and high throughput. The digital slice system with advanced technology can achieve high-throughput slice scanning.
  5 .Further improve the resolution and clarity. In the 20X and 40X modes, each pixel can reach the level of 0.2 microns, and possess the characteristics of high-fidelity images.
  6 .The scanning of fluorescent slices is realized. It only needs to add a corresponding fluorescent light source and replace the filter to scan the fluorescent section, which overcomes the shortcomings that the glass fluorescent section is easy to fade and cannot be stored for a long time.

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