Laboratory of Motor Control, Department of Medical Biotechnologies and Translational Medicine, Università degli Studi di Milano, Humanitas Reasearch Hospital, IRCCS, Milano, Italy.
Unit of Neurosurgical Oncology, Department of Oncology and Hemato-Oncology, Università degli Studi di Milano, Humanitas Reasearch Hospital, IRCCS, Milano, Italy.
Cereb Cortex. 2020 Jan 10;30(1):391-405. doi: 10.1093/cercor/bhz139.
Dorsal and ventral premotor (dPM and vPM) areas are crucial in control of hand muscles during object manipulation, although their respective role in humans is still debated. In patients undergoing awake surgery for brain tumors, we studied the effect of direct electrical stimulation (DES) of the premotor cortex on the execution of a hand manipulation task (HMt). A quantitative analysis of the activity of extrinsic and intrinsic hand muscles recorded during and in absence of DES was performed. Results showed that DES applied to premotor areas significantly impaired HMt execution, affecting task-related muscle activity with specific features related to the stimulated area. Stimulation of dorsal vPM induced both a complete task arrest and clumsy task execution, characterized by general muscle suppression. Stimulation of ventrocaudal dPM evoked a complete task arrest mainly due to a dysfunctional recruitment of hand muscles engaged in task execution. These results suggest that vPM and dPM contribute differently to the control of hand muscles during object manipulation. Stimulation of both areas showed a significant impact on motor output, although the different effects suggest a stronger relationship of dPM with the corticomotoneuronal circuit promoting muscle recruitment and a role for vPM in supporting sensorimotor integration.
背侧和腹侧运动前区(dPM 和 vPM)在物体操纵过程中对手部肌肉的控制至关重要,尽管它们在人类中的各自作用仍存在争议。在接受清醒开颅手术治疗脑肿瘤的患者中,我们研究了直接电刺激(DES)运动前皮质对手部操作任务(HMt)执行的影响。对记录的外在和内在手部肌肉在 DES 期间和无 DES 时的活动进行了定量分析。结果表明,施加于运动前区的 DES 显著损害了 HMt 的执行,影响了与刺激区相关的特定特征的任务相关肌肉活动。背侧 vPM 的刺激既引起了完全的任务停止,又导致了笨拙的任务执行,其特征是肌肉普遍抑制。腹侧后 dPM 的刺激引起了完全的任务停止,主要是由于参与任务执行的手部肌肉的功能障碍募集。这些结果表明,vPM 和 dPM 在物体操纵过程中对手部肌肉的控制有不同的贡献。刺激这两个区域对运动输出有显著影响,尽管不同的影响表明 dPM 与促进肌肉募集的皮质运动神经元回路有更强的关系,而 vPM 在支持感觉运动整合方面发挥作用。