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超越血氧水平依赖性功能磁共振成像:优化中风人群的功能成像

Beyond BOLD: optimizing functional imaging in stroke populations.

作者信息

Veldsman Michele, Cumming Toby, Brodtmann Amy

机构信息

The Florey Institute for Neuroscience and Mental Health, University of Melbourne, Melbourne, Australia.

出版信息

Hum Brain Mapp. 2015 Apr;36(4):1620-36. doi: 10.1002/hbm.22711. Epub 2014 Dec 2.

Abstract

Blood oxygenation level-dependent (BOLD) signal changes are often assumed to directly reflect neural activity changes. Yet the real relationship is indirect, reliant on numerous assumptions, and subject to several sources of noise. Deviations from the core assumptions of BOLD contrast functional magnetic resonance imaging (fMRI), and their implications, have been well characterized in healthy populations, but are frequently neglected in stroke populations. In addition to conspicuous local structural and vascular changes after stroke, there are many less obvious challenges in the imaging of stroke populations. Perilesional ischemic changes, remodeling in regions distant to lesion sites, and diffuse perfusion changes all complicate interpretation of BOLD signal changes in standard fMRI protocols. Most stroke patients are also older than the young populations on which assumptions of neurovascular coupling and the typical analysis pipelines are based. We present a review of the evidence to show that the basic assumption of neurovascular coupling on which BOLD-fMRI relies does not capture the complex changes arising from stroke, both pathological and recovery related. As a result, estimating neural activity using the canonical hemodynamic response function is inappropriate in a number of contexts. We review methods designed to better estimate neural activity in stroke populations. One promising alternative to event-related fMRI is a resting-state-derived functional connectivity approach. Resting-state fMRI is well suited to stroke populations because it makes no performance demands on patients and is capable of revealing network-based pathology beyond the lesion site.

摘要

血氧水平依赖(BOLD)信号变化通常被认为能直接反映神经活动变化。然而,实际关系是间接的,依赖于众多假设,且受到多种噪声源的影响。在健康人群中,对BOLD对比功能磁共振成像(fMRI)核心假设的偏离及其影响已得到充分描述,但在中风人群中却常常被忽视。除了中风后明显的局部结构和血管变化外,中风人群成像还存在许多不太明显的挑战。病灶周围的缺血变化、远离病灶部位区域的重塑以及弥漫性灌注变化,都使标准fMRI方案中BOLD信号变化的解释变得复杂。大多数中风患者的年龄也大于神经血管耦合假设和典型分析流程所基于的年轻人群。我们综述了相关证据,以表明BOLD-fMRI所依赖的神经血管耦合基本假设无法捕捉中风引发的复杂变化,包括病理变化和与恢复相关的变化。因此,在许多情况下,使用典型血液动力学反应函数来估计神经活动是不合适的。我们综述了旨在更好地估计中风人群神经活动的方法。与事件相关fMRI的一种有前景的替代方法是基于静息态的功能连接方法。静息态fMRI非常适合中风人群,因为它对患者没有行为要求,并且能够揭示病灶部位以外基于网络的病理情况。

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