Steinbrink Jens, Villringer Arno, Kempf Florian, Haux Daniel, Boden Stefanie, Obrig Hellmuth
Clinic of Neurology, Charité Universitaetsmedizin, 10098 Berlin, Germany.
Magn Reson Imaging. 2006 May;24(4):495-505. doi: 10.1016/j.mri.2005.12.034. Epub 2006 Mar 20.
Functional magnetic resonance imaging (fMRI) is currently combined with electrophysiological methods to identify the relationship between neuronal activity and the blood oxygenation level-dependent (BOLD) signal. Several processes like neuronal activity, synaptic activity, vascular dilation, blood volume and oxygenation changes underlie both response modalities, that is, the electrophysiological signal and the vascular response. However, accessing single process relationships is absolutely mandatory when aiming at a deeper understanding of neurovascular coupling and necessitates studies on the individual building blocks of the vascular response. Combined fMRI and functional near-infrared spectroscopy studies have been performed to validate the correlation of the BOLD signal to the hemodynamic changes in the brain. Here we review the current status of the integration of both technologies and judge these studies in the light of recent findings on neurovascular coupling.
功能磁共振成像(fMRI)目前与电生理方法相结合,以确定神经元活动与血氧水平依赖(BOLD)信号之间的关系。神经元活动、突触活动、血管舒张、血容量和氧合变化等多个过程是两种反应模式(即电生理信号和血管反应)的基础。然而,当旨在更深入地理解神经血管耦合时,了解单个过程之间的关系是绝对必要的,这需要对血管反应的各个组成部分进行研究。已经进行了fMRI与功能近红外光谱相结合的研究,以验证BOLD信号与大脑血流动力学变化的相关性。在此,我们回顾这两种技术整合的现状,并根据神经血管耦合的最新发现对这些研究进行评判。