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Tissue perfusability assessment from capillary velocimetry data via the multicompartment Windkessel model

机译:通过多分量温度计模型从毛细管灌注性评估从毛细管灌注性评估

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A method is presented to obtain information on tissue perfusability from capillary velocimetry experiments coupled with venous occlusion probe. The method based on data fitting to developed mathematical model describing the blood flow redistribution caused by the introduced occlusion. Using mathematical modeling, we identify the segment of velocity time courses that corresponds to tissue swelling process and thus allows ones quantify it. We also compared the results of direct measurement of red blood cells (RBCs) velocity with time courses obtained from finger-placed sensors of two types: (ⅰ) photoplethysmographic sensor used in pulsometry and (ⅱ) piezoelectric sensor for sphygmography. The obtained results suggest the measurable contribution of RBCs aggregation process in optical pulse signal formation.
机译:提出了一种方法以获得关于与毛细管梗死探针偶联的毛细管加压实验的组织灌注性的信息。基于数据拟合的方法开发数学模型,其描述引入闭塞引起的血流再分配的数学模型。使用数学建模,我们识别对应于组织膨胀过程的速度时间课程的段,因此允许量化它。还将红细胞(RBCS)速度直接测量的结果与两种类型的手指放置传感器中获得的时间课程进行了比较了:(Ⅰ)用于脉搏测量和(Ⅱ)压电传感器的光电溶血传感器。获得的结果表明RBCS聚集过程在光脉冲信号形成中的可测量贡献。

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