Program of Motor Neuroscience, Department of Kinesiology and Sport Management, Texas A&M University, College Station, TX, 77843, USA.
Sci Rep. 2023 Nov 28;13(1):20968. doi: 10.1038/s41598-023-48070-z.
The primary motor cortex (M1) is broadly acknowledged for its crucial role in executing voluntary movements. Yet, its contributions to cognitive and sensory functions remain largely unexplored. Transcranial direct current stimulation (tDCS) is a noninvasive neurostimulation method that can modify brain activity, thereby enabling the establishment of a causal link between M1 activity and behavior. This study aimed to investigate the online effects of tDCS over M1 on cognitive-motor and sensory-motor functions. Sixty-four healthy participants underwent either anodal or sham tDCS while concurrently performing a set of standardized robotic tasks. These tasks provided sensitive and objective assessments of brain functions, including action selection, inhibitory control, cognitive control of visuomotor skills, proprioceptive sense, and bimanual coordination. Our results revealed that anodal tDCS applied to M1 enhances decision-making capacity in selecting appropriate motor actions and avoiding distractors compared to sham stimulation, suggesting improved action selection and inhibitory control capabilities. Furthermore, anodal tDCS reduces the movement time required to accomplish bimanual movements, suggesting enhanced bimanual performance. However, we found no impact of anodal tDCS on cognitive control of visuomotor skills and proprioceptive sense. This study suggests that augmenting M1 activity via anodal tDCS influences cognitive-motor and sensory-motor functions in a task-dependent manner.
初级运动皮层(M1)广泛被认为在执行自主运动中起着至关重要的作用。然而,其在认知和感觉功能方面的贡献仍在很大程度上尚未得到探索。经颅直流电刺激(tDCS)是一种非侵入性的神经刺激方法,可以改变大脑活动,从而在 M1 活动和行为之间建立因果关系。本研究旨在调查 M1 区经颅直流电刺激(tDCS)对认知运动和感觉运动功能的在线影响。64 名健康参与者在同时进行一系列标准化机器人任务时接受了阳极或假 tDCS。这些任务提供了对大脑功能的敏感和客观评估,包括动作选择、抑制控制、视觉运动技能的认知控制、本体感觉和双手协调。我们的结果表明,与假刺激相比,应用于 M1 的阳极 tDCS 增强了在选择适当运动动作和避免干扰方面的决策能力,表明动作选择和抑制控制能力得到了提高。此外,阳极 tDCS 减少了完成双手运动所需的运动时间,表明双手表现得到了提高。然而,我们没有发现阳极 tDCS 对视觉运动技能和本体感觉的认知控制有影响。本研究表明,通过阳极 tDCS 增强 M1 活动会以任务依赖的方式影响认知运动和感觉运动功能。