Laboratory of Motor Control, Department of Medical Biotechnologies and Translational Medicine, Università degli Studi di Milano, Italy; IRCCS Fondazione Don Carlo Gnocchi, Milano, Italy.
Neurosurgical Oncology Unit, Department of Oncology and Hemato-Oncology, Università degli Studi di Milano, Italy.
Neuroimage. 2022 Mar;248:118839. doi: 10.1016/j.neuroimage.2021.118839. Epub 2021 Dec 25.
In primates, the parietal cortex plays a crucial role in hand-object manipulation. However, its involvement in object manipulation and related hand-muscle control has never been investigated in humans with a direct and focal electrophysiological approach. To this aim, during awake surgery for brain tumors, we studied the impact of direct electrical stimulation (DES) of parietal lobe on hand-muscles during a hand-manipulation task (HMt). Results showed that DES applied to fingers-representation of postcentral gyrus (PCG) and anterior intraparietal cortex (aIPC) impaired HMt execution. Different types of EMG-interference patterns were observed ranging from a partial (task-clumsy) or complete (task-arrest) impairment of muscles activity. Within PCG both patterns coexisted along a medio (arrest)-lateral (clumsy) distribution, while aIPC hosted preferentially the task-arrest. The interference patterns were mainly associated to muscles suppression, more pronounced in aIPC with respect to PCG. Moreover, within PCG were observed patterns with different level of muscle recruitment, not reported in the aIPC. Overall, EMG-interference patterns and their probabilistic distribution suggested the presence of different functional parietal sectors, possibly playing different roles in hand-muscle control during manipulation. We hypothesized that task-arrest, compared to clumsy patterns, might suggest the existence of parietal sectors more closely implicated in shaping the motor output.
在灵长类动物中,顶叶皮层在手-物操作中起着至关重要的作用。然而,人类尚未通过直接和聚焦的电生理学方法研究其在手物操作和相关手部肌肉控制中的作用。为此,我们在脑肿瘤的清醒手术期间,研究了顶叶皮层的直接电刺激(DES)在手操作任务(HMt)期间对手部肌肉的影响。结果表明,施加在后中央回(PCG)和前顶内皮层(aIPC)手指代表区的 DES 会损害 HMt 的执行。观察到不同类型的 EMG 干扰模式,范围从肌肉活动的部分(任务笨拙)或完全(任务停止)受损。在 PCG 中,这两种模式共存于中线(停止)-外侧(笨拙)分布,而 aIPC 则优先发生任务停止。干扰模式主要与肌肉抑制有关,在 aIPC 中比在 PCG 中更为明显。此外,在 PCG 中观察到不同肌肉募集水平的模式,而在 aIPC 中未报告。总的来说,EMG 干扰模式及其概率分布表明存在不同功能的顶叶区域,这些区域在手物操作期间可能在手部肌肉控制中发挥不同的作用。我们假设,与笨拙模式相比,任务停止可能表明存在与塑造运动输出更密切相关的顶叶区域。