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A Novel In Vivo Vascular Imaging Approach for Hierarchical Quantification of Vasculature Using Contrast Enhanced Micro-Computed Tomography

机译:一种新颖的体内血管成像方法使用对比增强型微计算机断层扫描技术对血管进行分层定量

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摘要

The vasculature of body tissues is continuously subject to remodeling processes originating at the micro-vascular level. The formation of new blood vessels (angiogenesis) is essential for a number of physiological and pathophysiological processes such as tissue regeneration, tumor development and the integration of artificial tissues. There are currently no time-lapsed in vivo imaging techniques providing information on the vascular network at the capillary level in a non-destructive, three-dimensional and high-resolution fashion. This paper presents a novel imaging framework based on contrast enhanced micro-computed tomography (micro-CT) for hierarchical in vivo quantification of blood vessels in mice, ranging from largest to smallest structures. The framework combines for the first time a standard morphometric approach with densitometric analysis. Validation tests showed that the method is precise and robust. Furthermore, the framework is sensitive in detecting different perfusion levels after the implementation of a murine ischemia-reperfusion model. Correlation with both histological data and micro-CT analysis of vascular corrosion casts confirmed accuracy of the method. The newly developed time-lapsed imaging approach shows high potential for in vivo monitoring of a number of different physiological and pathological conditions in angiogenesis and vascular development.
机译:人体组织的脉管系统不断受到源自微血管水平的重塑过程的影响。新血管的形成(血管生成)对于许多生理和病理生理过程(例如组织再生,肿瘤发展和人造组织的整合)至关重要。当前没有延时的体内成像技术以无损,三维和高分辨率的方式在毛细血管水平上提供有关血管网络的信息。本文提出了一种基于对比增强型微计算机断层扫描(micro-CT)的新颖成像框架,用于对小鼠血管进行分级体内定量,范围从最大到最小。该框架首次将标准形态计量学方法与光密度法分析结合在一起。验证测试表明该方法准确,可靠。此外,在实施鼠缺血-再灌注模型后,该框架对于检测不同的灌注水平很敏感。与组织学数据和血管腐蚀铸件的显微CT分析的相关性证实了该方法的准确性。新开发的延时成像方法显示出在体内监测血管生成和血管发育中许多不同生理和病理状况的巨大潜力。

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