首页> 外文期刊>Microvascular Research: An International Journal >Experimental estimation of blood flow velocity through simulation of intravital microscopic imaging in micro-vessels by different image processing methods.
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Experimental estimation of blood flow velocity through simulation of intravital microscopic imaging in micro-vessels by different image processing methods.

机译:通过使用不同的图像处理方法模拟微血管中的活体显微成像来估算血流速度。

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摘要

Quantization of red blood cell (RBC) velocity in micro-vessel is one of the techniques for dynamic observation of microvascular mechanisms. The flow measurement of RBC in micro-vessels is still a challenge nowadays. Image processing for velocity measurement using a frame by frame analysis is a common approach. The accuracy of the calculations, which is algorithm dependant, has rarely been examined. In this paper, we evaluated the accuracy of the existing methods, which includes cross correlation method, Hough transform method, and optical flow method, by applying these methods to simulated micro-vessel image sequences. Simulated experiments in various micro-vessels with random RBC motion were applied in the evaluation. The blood flow variation in the same micro-vessels with different RBC densities and velocities was considered in the simulations. The calculation accuracy of different flow patterns and vessel shapes were also examined, respectively. Based on the comparison, the use of an optical flow method, which is superior to a cross-correlation method or a Hough transform method, is proposed for measuring RBC velocity. The study indicated that the optical flow method is suitable for accurately measuring the velocity of the RBCs in small or large micro-vessels.
机译:量化微血管中的红细胞(RBC)速度是动态观察微血管机制的技术之一。如今,微血管中RBC的流量测量仍然是一个挑战。使用逐帧分析进行速度测量的图像处理是一种常见方法。取决于算法的计算准确性很少被检查。在本文中,我们通过将这些方法应用于模拟的微血管图像序列,评估了现有方法(包括互相关方法,霍夫变换方法和光流方法)的准确性。在评估中采用了具有随机RBC运动的各种微血管中的模拟实验。在模拟中考虑了具有不同RBC密度和速度的相同微血管中的血流变化。还分别检查了不同流型和容器形状的计算精度。在比较的基础上,提出了一种优于互相关法或霍夫变换法的光流法来测量RBC速度。研究表明,光流法适用于准确测量大小微血管中红细胞的速度。

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