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Life Sciences

Category: Life Sciences

Release time: 2025-11-17

Summary:

What kind of synergy will emerge between Changguang Chenspu’s hyperspectral technology and the biomedical community?

 

Products such as linear gradient filters, biochemical filters, and fluorescence filters from Changguang Chenspu are widely used in biomedical and life science instruments. They serve as critical components of analytical systems and play a pivotal role in numerous fields, including organic chemistry, clinical diagnostics, drug screening, biochemistry, molecular biology, immunobiology, cell biology, environmental analysis, food safety testing, and materials science.

Medical Instrument Applications—

It is an important spectral analysis component in instruments such as biochemical analyzers, ELISA readers, urine analyzers, and fluorescence microscopes.

 

 

Applications in the medical aesthetics field—

The medical cosmetic spectroscope can be used for tongue coating detection, wisdom tooth examination, skin analysis, and mole identification. It features fast detection speed, accurate results, and convenient data collection.

Distribution maps of tongue coating moisture content for patients k0074, k0082, and k0090, respectively.

K0074: The patient has a high water content and excessive salivation, suggesting that the patient is not mentally alert—a hallmark of chronic kidney disease.

Facial Mole Recognition

Medical Screening and Identification Application—

It can be applied to the identification of tumor cells, differentiation of hemorrhagic polyps, recognition of leukoplakia, screening for lymphocytic leukemia, distinction between cytoplasm and nucleus, and counting of cell numbers, among other applications.

 

Rapid Identification of Hemorrhagic Polyps and Leukoplakia Areas in the Laryngeal Mucosa Based on Microscopic Hyperspectral Imaging (Red Areas)

High-spectral microscopic identification of tumor location and the spread of abnormal cells under a 20x eyepiece.

Based on microscopic hyperspectral imaging, rapid differentiation of nuclei, cytoplasm, and other cellular components is achieved. The number of cells (a total of 402) is calculated according to the centroid positions of the cytoplasm.

Keywords: Life Sciences

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