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Related Experiment Video

Updated: Jan 30, 2026

Visualization and Analysis of Blood Flow and Oxygen Consumption in Hepatic Microcirculation: Application to an Acute Hepatitis Model
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[Dynamic Visible Microcirculation and Activating Blood Removing Stasis Research].

Na Kou, Mei Xue, Ming-Ming Wang

    Zhongguo Zhong Xi Yi Jie He Za Zhi Zhongguo Zhongxiyi Jiehe Zazhi = Chinese Journal of Integrated Traditional and Western Medicine
    |January 17, 2019
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    Dynamic visualization microcirculation technology observes microvascular changes. Researchers studied Chinese herbs

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    Area of Science:

    • Physiology
    • Pharmacology
    • Biomedical Engineering

    Background:

    • Dynamic visualization microcirculation technology enables real-time observation of microcirculatory changes.
    • This technology integrates fluorescence labeling, high-speed video, and electron microscopy for dynamic visual graphics.

    Purpose of the Study:

    • To review the application of dynamic visualization microcirculation technology in studying the effects of Chinese herbs.
    • To highlight the advancements in microcirculation detection technologies.
    • To propose future research directions for evaluating Chinese herbs and drug interactions.

    Main Methods:

    • Utilizing dynamic visualization microcirculation technology to observe microcirculatory parameters.
    • Employing fluorescence labeling, high-speed video, and electron microscopy.
    • Investigating the effects of activating blood removing stasis (ABRS) monomers, single herbs, and compounds.

    Main Results:

    • Observed effects on arteriole/venule diameter and red blood cell velocity.
    • Assessed white blood cell adhesion, platelet aggregation, and microvascular permeability.
    • Quantified superoxide production and plasma albumin leakage.

    Conclusions:

    • Dynamic visualization microcirculation is a powerful tool for understanding microcirculation.
    • Systematic evaluation of Chinese herbs' multi-target mechanisms and herb-drug interactions is crucial.
    • Future research should leverage this technology to elucidate complex pharmacological actions.