Stippich Christoph, Ochmann Henrik, Sartor Klaus
Department of Neuroradiology, University of Heidelberg Medical School, Im Neuenheimer Feld 400, 69120, Heidelberg, Germany.
Neurosci Lett. 2002 Oct 4;331(1):50-4. doi: 10.1016/s0304-3940(02)00826-1.
The human primary sensorimotor cortex was investigated for somatotopic organization during motor imagery (IM) which was compared to motor execution (EM). Block designed BOLD (blood oxygen level dependent)-functional magnetic resonance imaging at 1.5 Tesla was applied in 14 right handed volunteers during imagined and executed tongue, finger and toe movements. BOLD-clusters were assessed for anatomically correct sensorimotor localization. Euklidian coordinates, relative signal change and correlation to the applied reference function were determined. Statistical means were calculated. IM recruited somatotopically organized primary sensorimotor representations of the precentral gyrus that reflected the homunculus and overlapped in part with EM representations. Mean BOLD-signals ranged from 1.93 to 3.18% for EM, and from 0.73 to 1.47% for IM. The results support the hypothesis that the primary sensorimotor cortex is active during IM and that IM and EM share common functional circuits.
在运动想象(IM)过程中,对人类初级感觉运动皮层的躯体定位组织进行了研究,并与运动执行(EM)进行了比较。在14名右利手志愿者想象和执行舌头、手指和脚趾运动时,采用1.5特斯拉的块设计血氧水平依赖(BOLD)功能磁共振成像。对BOLD簇进行解剖学上正确的感觉运动定位评估。确定了欧几里得坐标、相对信号变化以及与应用参考函数的相关性。计算了统计平均值。运动想象激活了中央前回中按躯体定位组织的初级感觉运动表征,这些表征反映了小人像,并且部分与运动执行表征重叠。运动执行的平均BOLD信号范围为1.93%至3.18%,运动想象的平均BOLD信号范围为0.73%至1.47%。结果支持了以下假设:在运动想象过程中初级感觉运动皮层是活跃的,并且运动想象和运动执行共享共同的功能回路。