Kober Frank, Duhamel Guillaume, Callot Virginie
Centre de Résonance Magnétique Biologique et Médicale (CRMBM), UMR 6612, CNRS, Université de la Méditerranée, 13385 Marseille Cedex 05, France.
Methods Mol Biol. 2011;771:117-38. doi: 10.1007/978-1-61779-219-9_6.
Perfusion MRI is a tool to assess the spatial distribution of microvascular blood flow. Arterial spin labeling (ASL) is shown here to be advantageous for quantification of cerebral microvascular blood flow (CBF) in rodents. This technique is today ready for assessment of a variety of murine models of human pathology including those associated with diffuse microvascular dysfunction. This chapter provides an introduction to the principles of CBF measurements by MRI along with a short overview over applications in which these measurements were found useful. The basics of commonly employed specific arterial spin-labeling techniques are described and theory is outlined in order to give the reader the ability to set up adequate post-processing tools. Three typical MR protocols for pulsed ASL on two different MRI systems are described in detail along with all necessary sequence parameters and technical requirements. The importance of the different parameters entering theory is discussed. Particular steps for animal preparation and maintenance during the experiment are given, since CBF regulation is sensitive to a number of experimental physiological parameters and influenced mainly by anesthesia and body temperature.
灌注磁共振成像(MRI)是一种评估微血管血流空间分布的工具。本文展示了动脉自旋标记(ASL)在定量啮齿动物脑微血管血流(CBF)方面具有优势。如今,该技术已可用于评估多种人类病理学的小鼠模型,包括那些与弥漫性微血管功能障碍相关的模型。本章介绍了通过MRI测量CBF的原理,并简要概述了这些测量被证明有用的应用。描述了常用的特定动脉自旋标记技术的基础知识,并概述了理论,以使读者能够建立适当的后处理工具。详细描述了在两种不同MRI系统上进行脉冲ASL的三种典型MR协议,以及所有必要的序列参数和技术要求。讨论了进入理论的不同参数的重要性。给出了实验期间动物准备和维护的具体步骤,因为CBF调节对许多实验生理参数敏感,并且主要受麻醉和体温影响。