Dirnberger G, Reumann M, Endl W, Lindinger G, Lang W, Rothwell J C
University Department of Neurology, University of Vienna, AKH Wien, Austria.
Exp Brain Res. 2000 Nov;135(2):231-40. doi: 10.1007/s002210000522.
The EEG activity preceding self-paced voluntary movements (movement-related cortical potential, MRCP) is smaller if subjects make the same movement each time (regular task) compared with when different movements are made each time (random task). To test whether extra activity in the random task is due to increased motor preparation needed to switch between different movements, or to memory/attentional processes needed to select movements randomly, we compared regular and random movements with an additional alternating task. This alternating task required subjects to make different movements each time as in the random task, but since the task was very simple, the memory/attentional load was similar to that in the regular task. The MRCP was equally large over motor areas in both random and alternating tasks, suggesting that the extra activity over sensorimotor areas reflected processes involved in motor preparation rather than memory/attention. We speculate that, in the regular task, some part of the instructions for the previous movement remains intact, reducing the amount of preparation needed for the next repetition. Thus the MRCP is smaller than in the alternating and random tasks. Although the MRCPs in alternating and random tasks were similar over the motor areas, the random task had more activity than the alternating task in contralateral frontal areas. This part of the MRCP may therefore be related to memory/attentional processes required to randomize the sequence of movements. We conclude that the MRCP contains dissociable components related to motor preparation and memory/attention.
与每次进行不同动作(随机任务)相比,如果受试者每次都进行相同的动作(常规任务),那么在自主节奏的随意运动之前的脑电图活动(运动相关皮层电位,MRCP)会更小。为了测试随机任务中的额外活动是由于在不同动作之间切换所需的运动准备增加,还是由于随机选择动作所需的记忆/注意力过程,我们将常规和随机动作与一个额外的交替任务进行了比较。这个交替任务要求受试者每次像在随机任务中一样进行不同的动作,但由于任务非常简单,记忆/注意力负荷与常规任务中的相似。在随机任务和交替任务中,运动区域的MRCP同样大,这表明感觉运动区域的额外活动反映了运动准备过程,而非记忆/注意力过程。我们推测,在常规任务中,前一个动作的部分指令保持不变,从而减少了下一次重复所需的准备量。因此,MRCP比在交替任务和随机任务中更小。虽然在运动区域,交替任务和随机任务中的MRCP相似,但在对侧额叶区域,随机任务比交替任务有更多的活动。因此,MRCP的这一部分可能与使动作序列随机化所需的记忆/注意力过程有关。我们得出结论,MRCP包含与运动准备和记忆/注意力相关的可分离成分。