Pillai J J, Mikulis D J
From the Division of Neuroradiology (J.J.P.), Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, Maryland
Department of Medical Imaging (D.J.M.), The University of Toronto, The University Health Network, The Toronto Western Hospital, Toronto, Ontario, Canada.
AJNR Am J Neuroradiol. 2015 Jan;36(1):7-13. doi: 10.3174/ajnr.A3941. Epub 2014 Apr 30.
This review article explains the methodology of breath-hold cerebrovascular reactivity mapping, both in terms of acquisition and analysis, and reviews applications of this method to presurgical mapping, particularly with respect to blood oxygen level-dependent fMRI. Its main application in clinical fMRI is for the assessment of neurovascular uncoupling potential. Neurovascular uncoupling is potentially a major limitation of clinical fMRI, particularly in the setting of mass lesions in the brain such as brain tumors and intracranial vascular malformations that are associated with alterations in regional hemodynamics on either an acquired or congenital basis. As such, breath-hold cerebrovascular reactivity mapping constitutes an essential component of quality control analysis in clinical fMRI, particularly when performed for presurgical mapping of eloquent cortex. Exogenous carbon dioxide challenges used for cerebrovascular reactivity mapping will also be discussed, and their applications to the evaluation of cerebrovascular reserve and cerebrovascular disease will be described.
这篇综述文章解释了屏气脑血管反应性图谱的方法,包括采集和分析方面,并回顾了该方法在术前图谱绘制中的应用,特别是在血氧水平依赖性功能磁共振成像方面。其在临床功能磁共振成像中的主要应用是评估神经血管解偶联潜力。神经血管解偶联可能是临床功能磁共振成像的一个主要限制,特别是在脑内存在占位性病变的情况下,如脑肿瘤和颅内血管畸形,这些病变在后天或先天性基础上与局部血流动力学改变有关。因此,屏气脑血管反应性图谱是临床功能磁共振成像质量控制分析的重要组成部分,特别是在进行明确皮层术前图谱绘制时。还将讨论用于脑血管反应性图谱绘制的外源性二氧化碳激发,并描述其在评估脑血管储备和脑血管疾病中的应用。