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Detailed Introduction to Microscopic Optical Imaging System
Date: 2025-11-25Read: 2
  Microscopic optical imaging systemIt is a comprehensive device that combines optical microscopy and digital imaging technology for observing, recording, and analyzing microscopic samples.
  Microscopic optical imaging systemDetailed introduction:
1、 Core functions
Multi scale observation: supports sample observation from micrometer to nanometer levels, meeting the research needs of different fields for microstructure.
Multiple imaging modes: integrated fluorescence, bright field, polarization and other imaging modes, can adapt to the observation needs of different samples. For example, fluorescence imaging mode can be used to observe cell structures labeled with fluorescent dyes, while bright field imaging mode is suitable for observing the morphology of transparent or semi transparent samples.
Automated task support: Supports highly automated tasks such as live cell imaging and 3D reconstruction to improve observation efficiency and accuracy.
2、 Technical principles
Optical microscope component: uses a lens combination to magnify the sample image, collects the sample light through the objective lens, and forms a magnified image.
Digital camera technology: converts optical images into digital signals for computer processing and analysis.
Advanced imaging technologies, such as optical microscopy imaging, enhance axial resolution through thin film illumination and reduce phototoxicity in imaging of living samples.
3、 Application Fields
Biological research: used for subcellular structure detection, live cell imaging, etc., to help researchers gain a deeper understanding of the internal structure and function of cells.
Geological research: Achieving digital analysis collaboration of specimens, facilitating geologists to observe and analyze rock, mineral and other samples in detail.
Medical field: Used for 3D reconstruction of tumor microenvironment and high-speed scanning of pathological sections, providing doctors with more accurate diagnostic basis. For example, a large number of slides can be processed in a single day, improving the efficiency of pathological diagnosis.
Industrial inspection: plays an important role in industrial visual applications such as PCB circuit board inspection and IC quality control to ensure product quality.
4、 Advantages
High precision: Some systems can achieve a single scan accuracy of 0.22 μ m/pixel, meeting the requirements of high-precision observation.
High efficiency: Supports unmanned continuous scanning to improve observation efficiency. For example, some systems can complete the observation and analysis of a large number of samples in a short period of time.
Intelligence: Equipped with professional image processing software, it provides functions such as large image stitching, Z-axis depth extension, and fluorescence co localization analysis module, which can calculate molecular interaction parameters. At the same time, it supports multi device linkage control, with automatic focus compensation and image distortion correction algorithms to ensure cross scale imaging data consistency.