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标记、成像和分析微血管网络复杂结构体系的方法。

Methods to label, image, and analyze the complex structural architectures of microvascular networks.

机构信息

Department of Biomedical Engineering, University of Virginia, Charlottesville, Virginia.

出版信息

Microcirculation. 2019 Jul;26(5):e12520. doi: 10.1111/micc.12520. Epub 2019 Jan 17.

Abstract

Microvascular networks play key roles in oxygen transport and nutrient delivery to meet the varied and dynamic metabolic needs of different tissues throughout the body, and their spatial architectures of interconnected blood vessel segments are highly complex. Moreover, functional adaptations of the microcirculation enabled by structural adaptations in microvascular network architecture are required for development, wound healing, and often invoked in disease conditions, including the top eight causes of death in the Unites States. Effective characterization of microvascular network architectures is not only limited by the available techniques to visualize microvessels but also reliant on the available quantitative metrics that accurately delineate between spatial patterns in altered networks. In this review, we survey models used for studying the microvasculature, methods to label and image microvessels, and the metrics and software packages used to quantify microvascular networks. These programs have provided researchers with invaluable tools, yet we estimate that they have collectively attained low adoption rates, possibly due to limitations with basic validation, segmentation performance, and nonstandard sets of quantification metrics. To address these existing constraints, we discuss opportunities to improve effectiveness, rigor, and reproducibility of microvascular network quantification to better serve the current and future needs of microvascular research.

摘要

微血管网络在氧气运输和营养物质输送中发挥着关键作用,以满足全身不同组织多样化和动态的代谢需求,其相互连接的血管段的空间结构非常复杂。此外,微血管网络结构的适应性结构使微循环能够进行功能适应,这是发育、伤口愈合所必需的,并且在疾病情况下经常被调用,包括美国前 8 大死因。微血管网络结构的有效描述不仅受到可视化微血管的现有技术的限制,还依赖于能够准确区分改变的网络中空间模式的现有定量指标。在这篇综述中,我们调查了用于研究微血管的模型、标记和成像微血管的方法,以及用于量化微血管网络的指标和软件包。这些程序为研究人员提供了非常有价值的工具,但我们估计它们的总体采用率较低,这可能是由于基本验证、分割性能和非标准的量化指标集的限制。为了解决这些现有问题,我们讨论了提高微血管网络量化的有效性、严谨性和可重复性的机会,以更好地满足当前和未来微血管研究的需求。

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