Hassall Cameron D, MacLean Stephane, Krigolson Olave E
a Psychology and Neuroscience , Dalhousie University , Halifax , Nova Scotia.
J Mot Behav. 2014;46(6):381-7. doi: 10.1080/00222895.2014.918021. Epub 2014 Sep 10.
Motor error evaluation appears to be a hierarchically organized process subserved by 2 distinct systems: a higher level system within medial-frontal cortex responsible for movement outcome evaluation (high-level error evaluation) and a lower level posterior system(s) responsible for the mediation of within-movement errors (low-level error evaluation). While a growing body of evidence suggests that a reinforcement learning system within medial-frontal cortex plays a crucial role in the evaluation of high-level errors made during discrete reaching movements and continuous motor tracking, the role of this system in postural control is currently unclear. Participants learned a postural control task via a feedback-driven trial-and-error shaping process. In line with previous findings, electroencephalographic recordings revealed that feedback about movement outcomes elicited a feedback error-related negativity: a component of the human event-related brain potential associated with high-level outcome evaluation within medial-frontal cortex. Thus, the data provide evidence that a high-level error-evaluation system within medial-frontal cortex plays a key role in learning to control our body posture.
内侧前额叶皮质内的一个高级系统负责运动结果评估(高级误差评估),以及一个较低级的后部系统负责运动内误差的调节(低级误差评估)。虽然越来越多的证据表明内侧前额叶皮质内的强化学习系统在离散伸手动作和连续运动跟踪过程中对高级误差的评估中起着关键作用,但该系统在姿势控制中的作用目前尚不清楚。参与者通过反馈驱动的试错塑造过程学习姿势控制任务。与之前的研究结果一致,脑电图记录显示,关于运动结果的反馈引发了与反馈误差相关的负波:这是人类事件相关脑电位的一个成分,与内侧前额叶皮质内的高级结果评估有关。因此,这些数据提供了证据,表明内侧前额叶皮质内的高级误差评估系统在学习控制身体姿势方面起着关键作用。