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Bereitschaftspotential作为辅助运动区和运动皮层运动准备的指标。

Bereitschaftspotential as an indicator of movement preparation in supplementary motor area and motor cortex.

作者信息

Deecke L

机构信息

Neurologische Universitätsklinik, Vienna, Austria.

出版信息

Ciba Found Symp. 1987;132:231-50. doi: 10.1002/9780470513545.ch14.

Abstract

Topographical studies in humans of the Bereitschaftspotential (BP, or readiness potential, as averaged from the electroencephalogram) and the Bereitschaftsmagnetfeld (BM, or readiness magnetic field, as averaged from the magnetoencephalogram) revealed a widespread distribution of motor preparation over both hemispheres even before unilateral movement. This indicates the existence of several generators responsible for the BP, including generators in the ipsilateral hemisphere, which is in agreement with measurements of regional cerebral blood flow or regional cerebral energy metabolism. Nevertheless, two principal generators seem to prevail: (1) An early generator, starting its activity 1s or more before the motor act, with its maximum at the vertex. For this and other reasons, early BP generation probably stems from cortical tissue representing or including the supplementary motor area (SMA). (2) A later generator, starting its activity about 0.5s before the onset of movement and biased towards the contralateral hemisphere (contralateral preponderance of negativity, CPN). For unilateral finger movements the CPN succeeds the BP's initial bilateral symmetry in the later preparation period. Thus, this lateralized BP component probably stems from the primary motor area, MI (area 4, hand representation). While regional cerebral blood flow or regional cerebral energy metabolism show that the SMA is active in conjunction with motor acts, these data do not permit the conclusion that SMA activity precedes motor acts. This can only be shown by the Bereitschaftspotential, which proves that SMA activity occurs before the onset of movement and, what is more, before the onset of MI activity. This important order of events (first SMA, then MI activation) has been elucidated by our BP studies. It gives the SMA an important functional role: the initiation of voluntary movement. The recording of movement-related potentials associated with manual hand-tracking and motor learning points to the SMA and frontal cortex having an important role in these functions.

摘要

对人类 Bereitschaft 电位(BP,即从脑电图平均得出的准备电位)和 Bereitschaft 磁场(BM,即从脑磁图平均得出的准备磁场)进行的地形学研究表明,即使在单侧运动之前,运动准备在两个半球上也有广泛分布。这表明存在多个负责 BP 的发生器,包括同侧半球中的发生器,这与局部脑血流或局部脑能量代谢的测量结果一致。然而,似乎有两个主要的发生器:(1)一个早期发生器,在运动动作前 1 秒或更早就开始活动,其最大值位于头顶。由于这个以及其他原因,早期 BP 的产生可能源于代表或包括辅助运动区(SMA)的皮质组织。(2)一个较晚的发生器,在运动开始前约 0.5 秒开始活动,并偏向对侧半球(对侧负性优势,CPN)。对于单侧手指运动,CPN 在后期准备阶段接替了 BP 最初的双侧对称性。因此,这种侧化的 BP 成分可能源于初级运动区,MI(4 区,手部代表区)。虽然局部脑血流或局部脑能量代谢表明 SMA 在运动动作时会一起活跃,但这些数据并不能得出 SMA 活动先于运动动作的结论。这只能通过 Bereitschaft 电位来证明,它证明 SMA 活动在运动开始之前发生,而且更重要的是,在 MI 活动开始之前发生。我们对 BP 的研究已经阐明了这一重要的事件顺序(首先是 SMA,然后是 MI 激活)。这赋予了 SMA 一个重要的功能作用:启动自主运动。与手动跟踪和运动学习相关的运动相关电位的记录表明,SMA 和额叶皮质在这些功能中具有重要作用。

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