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Velocity field measurements of blood flows using a synchrotron x-ray imaging technique

机译:使用同步X射线成像技术的血液流的速度场测量

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The x-ray PIV technique was employed to measure instantaneous velocity fields of blood flow in an opaque microchannel. Generally, it is difficult for conventional clinical instruments to visualize detailed transport of blood cells or to acquire quantitative hemodynamic information due to poor spatial resolution. On the other hand, although conventional PIV techniques have higher spatial resolution, they can be applicable only to transparent fluids inside a clear conduit. In addition, seeding particles indispensable for PIV measurements can affect the biochemical characteristics of blood. In order to resolve these problems, we established an x-ray PIV technique by using a permeable x-ray beam as a light source of PIV technique. For acquiring good x-ray images of red blood cells from which velocity vectors can be extracted, the sample-detector distance and the thickness of sample fluid were optimized. By applying 2-frame PIV algorithm to the acquired x-ray images of red blood cells, the quantitative velocity field information was obtained. The measured velocity data of blood flow show typical flow characteristics in a macrochannel.
机译:使用X射线PIV技术来测量不透明的微通道中血流的瞬时速度场。通常,常规临床仪器难以可视化血细胞的详细运输或由于空间分辨率差而获得定量血液动力学信息。另一方面,虽然传统的PIV技术具有更高的空间分辨率,但它们可以仅适用于透明导管内的透明流体。此外,PIV测量不可或缺的播种颗粒可能影响血液的生化特征。为了解决这些问题,我们通过使用可渗透的X射线束作为PIV技术的光源建立了X射线PIV技术。为了获取可以提取速度载体的红细胞的良好X射线图像,优化样品检测器距离和样品流体的厚度。通过将2帧PIV算法应用于红细胞的获取X射线图像,获得了定量速度场信息。血液流量的测量速度数据显示了宏观通道中的典型流动特性。

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