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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Liver Microcirculation Analysis by Red Blood Cell Motion Modeling in Intravital Microscopy Images
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Liver Microcirculation Analysis by Red Blood Cell Motion Modeling in Intravital Microscopy Images

机译:活体显微图像中的红细胞运动建模对肝脏的微循环分析

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Intravital microscopy has been used to visualize the microcirculation by imaging fluorescent labeled red blood cells (RBCs). Traditionally, microcirculation has been modeled by computing the mean velocity of a few, randomly selected, manually tracked RBCs. However, this protocol is tedious, time consuming, and subjective with technician related bias. We present a new method for analyzing the microcirculation by modeling the RBC motion through automatic tracking. The tracking of RBCs is challenging as in each image, as many as 200 cells move through a complex network of vessels at a wide range of speeds while deforming in shape. To reliably detect RBCs traveling at a wide range of speeds, a window of temporal template matching is applied. Then, cells appearing in successive frames are corresponded based on the motion behavior constraints in terms of the direction, magnitude, and path. The performance evaluation against a ground truth indicates the detection accuracy up to 84% TP at 6% FP and a correspondence accuracy of 89%. We include an in-depth discussion on comparison of the microcirculation based on motion modeling from the proposed automated method against a mean velocity from manual analysis protocol in terms of precision, objectivity, and sensitivity.
机译:活体显微镜检查已通过对荧光标记的红细胞(RBC)进行成像来可视化微循环。传统上,微循环已通过计算一些随机选择的手动跟踪的RBC的平均速度来建模。但是,该协议繁琐,耗时且主观上带有技术人员相关的偏见。我们提出了一种通过自动跟踪对RBC运动进行建模来分析微循环的新方法。在每幅图像中,RBC的追踪都是具有挑战性的,多达200个细胞以复杂的速度通过复杂的血管网络移动,同时形状发生变形。为了可靠地检测以较大速度行进的RBC,应用了时间模板匹配窗口。然后,基于运动行为约束在方向,大小和路径方面对应于出现在连续帧中的单元。根据基本事实进行的性能评估表明,在6%FP时,TP的检测精度高达84%TP,对应精度为89%。我们就精度,客观性和灵敏度方面的比较,对基于提议的自动方法的运动建模的微循环与来自手动分析协议的平均速度的比较进行了深入的讨论。

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