首页> 外文期刊>Brain: A journal of neurology >Cognitive motor control in human pre-supplementary motor area studied by subdural recording of discrimination/selection-related potentials.
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Cognitive motor control in human pre-supplementary motor area studied by subdural recording of discrimination/selection-related potentials.

机译:通过硬膜下记录辨别/选择相关电位来研究人类辅助运动区的认知运动控制。

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摘要

To clarify the functional role of human pre-supplementary motor area (pre-SMA) in 'cognitive' motor control as compared with other non-primary motor cortices (SMA-proper and lateral premotor areas) and prefrontal area, we recorded epicortical field potentials by using subdural electrodes in five epileptic patients during presurgical evaluation, whose pre-SMA, SMA-proper, prefrontal and lateral premotor areas were defined by electric cortical stimulation and recent anatomical orientations according to the bicommissural plane and callosal grid system. An S1-Go/NoGo choice and delayed reaction task (S1-choice paradigm) and a warned choice Go/NoGo reaction task (S2-choice paradigm) with inter-stimulus intervals of 2 s were employed. The results showed (i) transient potentials with onset and peak latencies of about 200 and 600 ms, respectively, after S1 in the S1-choice paradigm mainly at pre-SMA and to a lesser degree at the prefrontal and lateral premotor areas, but not in the S2-choice paradigm. At SMA-proper, a similar but much smaller potential was seen after S1 in both S1- and S2-choice paradigms and (ii) slow sustained potentials between S1 and S2 in both S1- and S2-choice paradigms in all of the non-primary motor areas investigated (pre-SMA, SMA-proper and lateral premotor areas) and prefrontal area. It is concluded that pre-SMA plays a more important role in cognitive motor control which involves sensory discrimination and decision making or motor selection for the action after stimuli, whereas SMA-proper is one of the main generators of Bereitschaftspotential preceding self-paced, voluntary movements. In the more general anticipation of and attention to the forthcoming stimuli, non-primary motor cortices including pre-SMA, SMA-proper and lateral premotor area, and the prefrontal area are commonly involved.
机译:为了阐明人类辅助前运动区(pre-SMA)在“认知”运动控制中与其他非主要运动皮质(SMA合适的和横向前运动区)和额叶前区相比的功能作用,我们记录了皮层外场电位在术前评估过程中,通过在五名癫痫患者中使用硬膜下电极,根据双合缝平面和os骨网格系统,通过电皮层刺激和最近的解剖学方向定义了其SMA前,SMA正确,额前和外侧前运动区。使用S1-Go / NoGo选择和延迟反应任务(S1-choice范例)和警告选择的Go / NoGo反应任务(S2-choice范例),刺激间隔为2 s。结果显示(i)在S1选择范式中的S1之后,主要在SMA前阶段出现瞬态电位,其起始和峰值潜伏期分别约为200和600 ms,而在前额和横向前运动区域则较小,但没有在S2选择范例中。在SMA适当的情况下,在S1和S2选择范式中的S1之后观察到相似但小得多的电位,并且(ii)在所有非S1和S2选择范式中S1和S2之间的持续电位减慢。研究的主要运动区域(SMA前,SMA固有和横向前运动区域)和额前区域。结论是,SMA前体在认知运动控制中起着更重要的作用,认知运动控制涉及感觉辨别和决策或刺激后选择动作的运动选择,而SMA-proper是自定速度,自愿的Bereitschaftspot潜在的主要产生者之一。动作。在对即将到来的刺激的更普遍的预期和关注中,通常涉及非主要运动皮质,包括SMA前,SMA固有和横向前运动区以及额前区。

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