Wildgruber D, Erb M, Klose U, Grodd W
Section Experimental MR of the CNS, Department of Neuroradiology, University of Tübingen, Germany.
Neurosci Lett. 1997 May 23;227(3):161-4. doi: 10.1016/s0304-3940(97)00329-7.
The 'Bereitschaftspotential' attributed to activation of the supplementary motor area (SMA) precedes the 'motor potential' of the primary motor cortex (Ml) about 500-1000 ms during self-initiated movements. A measurement procedure is reported to evaluate the sequence of hemodynamic activation within both motor areas by functional magnetic resonance imaging (fMRI). The fMRI-data were averaged across multiple trials of single voluntary finger movements and analyzed with respect to the onset-time of signal increase. All participants showed a sequential hemodynamic response with SMA preceding M1 activation. The mean latency between hemodynamic activation of SMA and M1 amounted to 0.8 s. These findings suggest that the vascular response parallels the electrical events and that a sufficient temporal resolution can be achieved by fMRI to detect sequential hemodynamic activation of functionally connected cortical areas.
在自主发起的运动中,归因于辅助运动区(SMA)激活的“准备电位”比初级运动皮层(M1)的“运动电位”提前约500 - 1000毫秒。据报道,一种测量程序可通过功能磁共振成像(fMRI)评估两个运动区内血流动力学激活的顺序。fMRI数据是在单个自愿手指运动的多次试验中进行平均的,并根据信号增加的起始时间进行分析。所有参与者均显示出SMA先于M1激活的顺序性血流动力学反应。SMA和M1血流动力学激活之间的平均延迟为0.8秒。这些发现表明血管反应与电活动平行,并且fMRI能够实现足够的时间分辨率来检测功能连接的皮层区域的顺序性血流动力学激活。