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Automatic karyotype scanning analyzer CytoVision CX
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Automatic karyotype scanning analyzer CytoVision CX
Introduction:
CytoVision is the one image analysis and management system that provides Cytogenetic laboratories with an integrated, scalable platform for brightfield and fluorescent samples, because only Leica combines the expertise in image analysis, robotics and microscopy needed to deliver and support a truly integrated cytogenetics platform.
A scalable, modular approach to the design and development of the CytoVision platform ensures a future-proof solution for any laboratory – from configurations to support a single application workstation through to fully-networked, multi-application nationwide programs.
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Automatic karyotype scanning analyzer CytoVision GSL 120
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Automatic karyotype scanning analyzer CytoVision GSL 120
Introduction:
CytoVision is the one image analysis and management system that provides Cytogenetic laboratories with an integrated, scalable platform for brightfield and fluorescent samples, because only Leica combines the expertise in image analysis, robotics and microscopy needed to deliver and support a truly integrated cytogenetics platform.
A scalable, modular approach to the design and development of the CytoVision platform ensures a future-proof solution for any laboratory – from configurations to support a single application workstation through to fully-networked, multi-application nationwide programs.
I. Automatic Target Cell Detection, Accurate and Efficient
Leica's exclusive classifier can automatically identify target cells. It prioritizes the identified cells based on their overlapping degree, nuclear size, and the distance between dual nuclei, and selects cells with better results for photographing. The cell database can automatically incorporate customers' images for training, achieving increasing accuracy through continued use.
II. Effortless Micronucleus Analysis, Flexible Mutation Analysis, Convenient and Quick
Classification: Lymphocytes are classified based on the number of micronuclei.
Statistics: Counting the number of cells in each category, the number of micronucleated cells, micronucleated cell rate, micronucleus rate, and lymphocyte conversion rate.
Analysis: Chromosome number and structural abnormalities (such as double-attached, non-attached microbodies, fragments, centromeric rings, reciprocal translocations, etc.).
III. Fully Automated, Unattended Scanning Imaging
Auto-focusing, automatic switching of objectives, and automatic switching of filter cubes.
1.25X objective lens automatically identifies tissue etching areas or cellular regions.
Automatic scanning and capturing of fluorescent signal-bearing cells.
High-throughput capacity of 120 slides, meeting clinical and laboratory needs.
IV. Z-Stack Layer Scanning, Multi-Layer Capture, Complete Signal
Easily capturing multi-focal plane and multi-fluorescence channel images with large depth of field. The full-information image covers all information within the entire slice thickness.
V. High-Definition Imaging, Clear Display of Fluorescent Signals
1-inch CCD and research-grade microscope capture high-resolution fluorescent images. Images under combined fluorescence are restored to true signals under the microscope.
The fluorescent dot counting function can automatically report the number and status of fluorescent dots, as well as perform automatic Z-axis image acquisition for interphase and metaphase FISH fluorescent signals.
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Automatic karyotype scanning analyzer CytoVision GSL 10
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Automatic karyotype scanning analyzer CytoVision GSL 10
Introduction:
CytoVision is the one image analysis and management system that provides Cytogenetic laboratories with an integrated, scalable platform for brightfield and fluorescent samples, because only Leica combines the expertise in image analysis, robotics and microscopy needed to deliver and support a truly integrated cytogenetics platform.
A scalable, modular approach to the design and development of the CytoVision platform ensures a future-proof solution for any laboratory – from configurations to support a single application workstation through to fully-networked, multi-application nationwide programs.
I. Automatic Target Cell Detection, Accurate and Efficient
Leica's exclusive classifier can automatically identify target cells. It prioritizes the identified cells based on their overlapping degree, nuclear size, and the distance between dual nuclei, and selects cells with better results for photographing. The cell database can automatically incorporate customers' images for training, achieving increasing accuracy through continued use.
II. Effortless Micronucleus Analysis, Flexible Mutation Analysis, Convenient and Quick
Classification: Lymphocytes are classified based on the number of micronuclei.
Statistics: Counting the number of cells in each category, the number of micronucleated cells, micronucleated cell rate, micronucleus rate, and lymphocyte conversion rate.
Analysis: Chromosome number and structural abnormalities (such as double-attached, non-attached microbodies, fragments, centromeric rings, reciprocal translocations, etc.).
III. Fully Automated, Unattended Scanning Imaging
Auto-focusing, automatic switching of objectives, and automatic switching of filter cubes.
1.25X objective lens automatically identifies tissue etching areas or cellular regions.
Automatic scanning and capturing of fluorescent signal-bearing cells.
IV. Z-Stack Layer Scanning, Multi-Layer Capture, Complete Signal
Easily capturing multi-focal plane and multi-fluorescence channel images with large depth of field. The full-information image covers all information within the entire slice thickness.
V. High-Definition Imaging, Clear Display of Fluorescent Signals
1-inch CCD and research-grade microscope capture high-resolution fluorescent images. Images under combined fluorescence are restored to true signals under the microscope.
The fluorescent dot counting function can automatically report the number and status of fluorescent dots, as well as perform automatic Z-axis image acquisition for interphase and metaphase FISH fluorescent signals.
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