Zagorchev Lyubomir, Oses Pierre, Zhuang Zhen W, Moodie Karen, Mulligan-Kehoe Mary Jo, Simons Michael, Couffinhal Thierry
Inserm U828, Plateforme d'Innovation Biotechnologique de Xavier Arnozan, Université Victor Ségalen, Bordeaux 2, Pessac, France.
J Angiogenes Res. 2010 Mar 5;2:7. doi: 10.1186/2040-2384-2-7.
Vascular exploration of small animals requires imaging hardware with a very high spatial resolution, capable of differentiating large as well as small vessels, in both in vivo and ex vivo studies. Micro Computed Tomography (micro-CT) has emerged in recent years as the preferred modality for this purpose, providing high resolution 3D volumetric data suitable for analysis, quantification, validation, and visualization of results. The usefulness of micro-CT, however, can be adversely affected by a range of factors including physical animal preparation, numerical quantification, visualization of results, and quantification software with limited possibilities. Exacerbating these inherent difficulties is the lack of a unified standard for micro-CT imaging. Most micro-CT today is aimed at particular applications and the software tools needed for quantification, developed mainly by imaging hardware manufacturers, lack the level of detail needed to address more specific aims. This review highlights the capabilities of micro-CT for vascular exploration, describes the current state of imaging protocols, and offers guidelines and suggestions aimed at making micro-CT more accurate, replicable, and robust.
对小动物进行血管研究需要具备非常高空间分辨率的成像硬件,这种硬件要能够在体内和体外研究中区分大血管和小血管。近年来,微型计算机断层扫描(micro-CT)已成为实现这一目的的首选方式,它能提供适用于结果分析、量化、验证和可视化的高分辨率三维体积数据。然而,micro-CT的效用可能会受到一系列因素的不利影响,这些因素包括动物的物理准备、数值量化、结果可视化以及功能有限的量化软件。由于缺乏micro-CT成像的统一标准,这些固有困难进一步加剧。如今大多数micro-CT都是针对特定应用的,而主要由成像硬件制造商开发的量化所需软件工具,缺乏解决更具体目标所需的详细程度。本综述强调了micro-CT在血管研究方面的能力,描述了成像方案的现状,并提供了旨在使micro-CT更准确、可重复和可靠的指导方针及建议。