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皮层-皮层联合配对刺激调节初级运动皮层的浅表腹侧前运动皮层连接,影响精确抓握期间运动皮层的活动。

Cortico-cortical paired associative stimulation conditioning superficial ventral premotor cortex-primary motor cortex connectivity influences motor cortical activity during precision grip.

机构信息

IIT@UniFe Center for Translational Neurophysiology, Istituto Italiano di Tecnologia, Ferrara, Italy.

Department of Neuroscience and Rehabilitation, Section of Physiology, Università di Ferrara, Ferrara, Italy.

出版信息

J Physiol. 2023 Sep;601(17):3945-3960. doi: 10.1113/JP284500. Epub 2023 Aug 1.

Abstract

The ventral premotor cortex (PMv) and primary motor cortex (M1) represent critical nodes of a parietofrontal network involved in grasping actions, such as power and precision grip. Here, we investigated how the functional PMv-M1 connectivity drives the dissociation between these two actions. We applied a PMv-M1 cortico-cortical paired associative stimulation (cc-PAS) protocol, stimulating M1 in both postero-anterior (PA) and antero-posterior (AP) directions, in order to induce long-term changes in the activity of different neuronal populations within M1. We evaluated the motor-evoked potential (MEP) amplitude, MEP latency and cortical silent period, in both PA and AP, during the isometric execution of precision and power grip, before and after the PMv-M1 cc-PAS. The repeated activation of the PMv-M1 cortico-cortical network with PA orientation over M1 did not change MEP amplitude or cortical silent period duration during both actions. In contrast, the PMv-M1 cc-PAS stimulation of M1 with an AP direction led to a specific modulation of precision grip motor drive. In particular, MEPs tested with AP stimulation showed a selective increase of corticospinal excitability during precision grip. These findings suggest that the more superficial M1 neuronal populations recruited by the PMv input are involved preferentially in the execution of precision grip actions. KEY POINTS: Ventral premotor cortex (PMv)-primary motor cortex (M1) cortico-cortical paired associative stimulation (cc-PAS) with different coil orientation targets dissociable neural populations. PMv-M1 cc-PAS with M1 antero-posterior coil orientation specifically modulates corticospinal excitability during precision grip. Superficial M1 populations are involved preferentially in the execution of precision grip. A plasticity induction protocol targeting the specific PMv-M1 subpopulation might have important translational value for the rehabilitation of hand function.

摘要

腹侧运动前皮层 (PMv) 和初级运动皮层 (M1) 代表参与抓握动作的顶额叶网络的关键节点,例如力握和精准握。在这里,我们研究了功能 PMv-M1 连接如何驱动这两种动作的分离。我们应用了 PMv-M1 皮质-皮质成对关联刺激 (cc-PAS) 方案,以前后 (PA) 和前后 (AP) 方向刺激 M1,以诱导 M1 内不同神经元群体的活动发生长期变化。我们在等长执行精准握和力握之前和之后,评估了 PA 和 AP 中的运动诱发电位 (MEP) 幅度、MEP 潜伏期和皮质静息期,在 PMv-M1 cc-PAS 前后。用 PA 方向重复激活 PMv-M1 皮质-皮质网络不会改变两种动作过程中的 MEP 幅度或皮质静息期持续时间。相比之下,PMv-M1 用 AP 方向刺激 M1 的 cc-PAS 刺激导致了精准握驱动力的特定调制。具体而言,用 AP 刺激测试的 MEP 显示出在精准握时皮质脊髓兴奋性的选择性增加。这些发现表明,PMv 输入所募集的较浅层 M1 神经元群体更倾向于参与精准握动作的执行。关键点:腹侧运动前皮层 (PMv)-初级运动皮层 (M1) 皮质-皮质成对关联刺激 (cc-PAS) 具有不同的线圈方向,针对不同的神经元群体。PMv-M1 用 M1 前后线圈方向的 cc-PAS 刺激特异性地调节了精准握时皮质脊髓兴奋性。较浅层的 M1 群体更倾向于参与精准握的执行。针对特定 PMv-M1 亚群的诱导可塑性方案可能对手功能康复具有重要的转化价值。

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