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Room 707, Block F, Jiahua Building, No. 9 Shangdi 3rd Street, Haidian District, Beijing
Beijing Yaxin Liyi Technology Co., Ltd
Room 707, Block F, Jiahua Building, No. 9 Shangdi 3rd Street, Haidian District, Beijing
The Plant Fluorescence Imaging Analysis System is a high-level chlorophyll fluorescence imaging analysis platform independently developed and produced by Beijing Yaxin Liyi Technology Co., Ltd. (hereinafter referred to as our company). System integration of high-sensitivity image sensing module, professional grade industrial optical lens, and all-optical adjustable lensLEDArray light sources, intelligent control units, and professional data analysis software enable multi-dimensional visual monitoring and quantitative analysis of plant photosynthetic physiological processes.
Thanks to the iterative evolution of high-sensitivity digital imaging technology, breakthroughs in modern electronic integration processes, and ultra-high brightnessLEDThe development of light sources has enabled the engineering application of chlorophyll fluorescence imaging technology. Based on our continuous cultivation of cutting-edge optical biosensing technology and more than ten years of accumulation in the field of chlorophyll fluorescence detection, our company has officially launched this plant fluorescence imaging analysis system.
The system supports real-time capture and dynamic analysis of chlorophyll fluorescence images, and outputs imaging maps including fluorescence intensity distribution and multiple fluorescence parameters, providing users with spatiotemporal heterogeneity information of plant physiological status. Suitable for various sample types such as leaves of higher plants, mosses, and planktonic algae, it is widely used in research and teaching scenarios such as photosynthesis mechanism research, stress resistance screening, high-efficiency breeding, ecological environment assessment, and biological stress response.
Compared to traditional point based fluorescence detection equipment, this system achieves“Single point measurement”to“two-dimensional imaging”The technological breakthrough reveals the fluorescence distribution characteristics of different regions of leaves through spatially resolved fluorescence signals. The temporal imaging function further supports tracking of fluorescence dynamic changes, suitable for physiological response localization and process monitoring under biotic and abiotic stress.



