首页> 外文会议>2010 4th International Conference on Bioinformatics and Biomedical Engineering >Noninvasive Characterization of Velocity Profiles and Shear Rates within Microcirculation System Using a Novel Micro-Ultrasound Imaging Technique
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Noninvasive Characterization of Velocity Profiles and Shear Rates within Microcirculation System Using a Novel Micro-Ultrasound Imaging Technique

机译:使用新型微超声成像技术对微循环系统中的流速分布和剪切速率进行非侵入性表征

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We have recently developed a novel contrast-based micro echo particle imaging technique (Micro-EPIV) for non-invasively measuring multi-component flow vectors and flow-induced shear stress in microscale tube flow or in vivo small blood flows. In this study, the measuring principle and system characterization are first introduced. Then, the Micro-EPIV technique is applied to examine flows in several small tubes of different geometric shapes, and detailed velocity vector and contour distribution, and shear distribution are obtained. The results are verified by ultrasound Doppler technique and analytical solutions, and are confirmed by the results from several previous literatures.
机译:我们最近开发了一种新颖的基于对比度的微回波粒子成像技术(Micro-EPIV),用于无创测量多分量流矢量和微尺度管流或体内小血流中的流致切应力。在这项研究中,首先介绍了测量原理和系统表征。然后,采用Micro-EPIV技术检查几个不同几何形状的小管中的流动,并获得详细的速度矢量和轮廓分布以及剪切分布。该结果已通过超声多普勒技术和分析解决方案进行了验证,并已得到一些先前文献的结果证实。

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