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Micro-particle image velocimetry measurement of blood flow: validation and analysis of data pre-processing and processing methods

机译:微粒图像测速仪测量血流量:数据预处理和处理方法的验证和分析

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摘要

The intent of this paper is to investigate the application of a pre-processing method previously validated on glycerol to blood flows in microchannels and to compare the accuracy of results obtained when applied to a non-homogeneous fluid such as blood with results from previously applied processing methods for blood data. Comparisons of common processing methods are desired for a clear measure of accuracy in order to make recommendations for various flows. It is hypothesized that increasing the correlation window overlap improves the profile prediction. The amount of correlation window overlap and window shape in the processing of data have a significant effect on the results. Image pre-processing is explored to improve the correlation using the 'image overlapping' which is extended to the case of blood and the blood-specific pre-processing 'base-clipping' or 'thresholding' technique currently applied to blood. Both pre-processing methods are tested with multiple processing methods for two channel geometries: a straight rectangular channel and a Y-channel resulting in a controlled shear flow. The resulting profiles and calculations demonstrate that 'image-overlapping' is found to achieve a profile closer to the predicted theoretical profile than current blood pre-processing methods when both are applied to the same set of data and both are superior to conventional cross-correlation on its own. In all cases, pre-processing decreases the smoothness of the predicted profile. The use of 'image-overlapping' is shown to have greater accuracy when calculating the shear rate at the wall of the channel as well.
机译:本文的目的是研究先前在甘油上验证的预处理方法在微通道血流中的应用,并比较将其应用于非均质流体(例如血液)时获得的结果的准确性与先前应用的处理结果的准确性血液数据的方法。需要对常用处理方法进行比较以明确准确性,以便对各种流程提出建议。假设增加相关窗口重叠可以改善轮廓预测。数据处理中相关窗口重叠的数量和窗口形状对结果有重大影响。探索了图像预处理,以使用“图像重叠”扩展到血液情况,并使用当前针对血液的特定于血液的预处理“基础剪切”或“阈值”技术来改善相关性。两种预处理方法都针对两种通道几何形状使用多种处理方法进行了测试:直矩形通道和Y通道导致剪切流受控。所得的轮廓和计算结果表明,当将两种图像应用于同一组数据并且均优于常规互相关时,发现“图像重叠”的轮廓比当前的血液预处理方法更接近于预测的理论轮廓。在其自己的。在所有情况下,预处理都会降低预测轮廓的平滑度。当计算通道壁的剪切速率时,“图像重叠”的使用也显示出更高的准确性。

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