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微血管中逐场血流的时空分析

Spatial Temporal Analysis of Fieldwise Flow in Microvasculature.

作者信息

Clendenon Sherry G, Fu Xiao, Von Hoene Robert A, Clendenon Jeffrey L, Sluka James P, Winfree Seth, Mang Henry, Martinez Michelle, Filson Adele, Klaunig James E, Glazier James A, Dunn Kenneth W

机构信息

Biocomplexity Institute, Indiana University; Department of Intelligent Systems Engineering, Indiana University.

Biocomplexity Institute, Indiana University; Department of Physics, Indiana University.

出版信息

J Vis Exp. 2019 Nov 18(153). doi: 10.3791/60493.

Abstract

Changes in blood flow velocity and distribution are vital in maintaining tissue and organ perfusion in response to varying cellular needs. Further, appearance of defects in microcirculation can be a primary indicator in the development of multiple pathologies. Advances in optical imaging have made intravital microscopy (IVM) a practical approach, permitting imaging at the cellular and subcellular level in live animals at high-speed over time. Yet, despite the importance of maintaining adequate tissue perfusion, spatial and temporal variability in capillary flow is seldom documented. In the standard approach, a small number of capillary segments are chosen for imaging over a limited time. To comprehensively quantify capillary flow in an unbiased way we developed Spatial Temporal Analysis of Fieldwise Flow (STAFF), a macro for FIJI open-source image analysis software. Using high-speed image sequences of full fields of blood flow within capillaries, STAFF produces images that represent motion over time called kymographs for every time interval for every vascular segment. From the kymographs STAFF calculates velocities from the distance that red blood cells move over time, and outputs the velocity data as a sequence of color-coded spatial maps for visualization and tabular output for quantitative analyses. In normal mouse livers, STAFF analyses quantified profound differences in flow velocity between pericentral and periportal regions within lobules. Even more unexpected are the differences in flow velocity seen between sinusoids that are side by side and fluctuations seen within individual vascular segments over seconds. STAFF is a powerful new tool capable of providing novel insights by enabling measurement of the complex spatiotemporal dynamics of capillary flow.

摘要

血流速度和分布的变化对于响应不同的细胞需求来维持组织和器官灌注至关重要。此外,微循环缺陷的出现可能是多种病理发展的主要指标。光学成像技术的进步使活体显微镜检查(IVM)成为一种实用方法,能够在活体动物中对细胞和亚细胞水平进行高速实时成像。然而,尽管维持充足的组织灌注很重要,但毛细血管血流的空间和时间变异性却很少被记录。在标准方法中,在有限的时间内选择少量毛细血管段进行成像。为了以无偏倚的方式全面量化毛细血管血流,我们开发了逐场血流时空分析(STAFF),这是一种用于FIJI开源图像分析软件的宏。利用毛细血管内全血流场的高速图像序列,STAFF为每个血管段的每个时间间隔生成代表随时间运动的图像,即波状图。STAFF从波状图中根据红细胞随时间移动的距离计算速度,并将速度数据输出为一系列颜色编码的空间图,用于可视化和表格输出以进行定量分析。在正常小鼠肝脏中,STAFF分析量化了小叶内中央周围区域和门静脉周围区域之间血流速度的显著差异。更出乎意料的是,相邻肝血窦之间的血流速度差异以及单个血管段在数秒内出现的波动。STAFF是一种强大的新工具,能够通过测量毛细血管血流的复杂时空动态提供新的见解。

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