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Laser speckle imaging of blood flow in microcirculation

机译:激光散斑成像微循环中的血流

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Monitoring the spatio-temporal characteristics of microcirculation is crucial for studying the functional activities of biotissue and the mechanism of disease. However, conventional methods used to measure blood flow suffer from limited spatial resolution or the injection of exogenous substances or the need of scanning to obtain the dynamic of regional blood flow. Laser speckle imaging (LSI) technique makes up these disadvantages by obtaining the regional blood flow distribution with high spatio-temporal resolution without the need to scan. In this paper, LSI was introduced to investigate the dynamic responses of the rat mesenteric microcirculation to an incremental dose of phentolamine. The results showed that when the dose of phentolamine was less than 4 μg ml~(-1), local application of phentolamine on the mesentery would increase the blood perfusion as the concentration increased. When the dose increased further, the improvement decreased. At a dose of 200 μg ml~(-1), a microcirculation impediment was caused. At the same time, different responses between veinules and arterioles were manifested. These suggested that LSI is promising to be a useful contribution to drug development and testing.
机译:监测微循环的时空特征对于研究生物组织的功能活动和疾病机理至关重要。然而,用于测量血流的常规方法遭受有限的空间分辨率或外源物质的注入或需要进行扫描以获得局部血流的动态的需求。激光散斑成像(LSI)技术通过无需扫描即可获得具有高时空分辨率的局部血流分布,从而弥补了这些缺点。在本文中,引入LSI来研究大鼠肠系膜微循环对苯妥拉明剂量增加的动态响应。结果表明,当酚妥拉明剂量小于4μgml〜(-1)时,在肠系膜局部施用酚妥拉明会随着血药浓度的增加而增加血流灌注。当剂量进一步增加时,改善降低。在200μgml〜(-1)的剂量下会引起微循环障碍。同时,在静脉和小动脉之间表现出不同的反应。这些表明LSI有望为药物开发和测试做出有益的贡献。

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