Lab for Clinical and Integrative Neuroscience, Trinity College Institute for Neuroscience, School of Psychology, Trinity College Dublin, D02 PN40, Ireland; Global Brain Health Institute, Trinity College Dublin, D02 PN40, Ireland.
Lab for Clinical and Integrative Neuroscience, Trinity College Institute for Neuroscience, School of Psychology, Trinity College Dublin, D02 PN40, Ireland; School of Psychology, Trinity College Institute for Neuroscience, School of Psychology, Trinity College Dublin, D02 PN40, Ireland; Global Brain Health Institute, Trinity College Dublin, D02 PN40, Ireland.
Prog Neuropsychopharmacol Biol Psychiatry. 2023 Jul 13;125:110766. doi: 10.1016/j.pnpbp.2023.110766. Epub 2023 Apr 11.
Brain stimulation has been used in motor learning studies with success in improving aspects of task learning, retention, and consolidation. Using a variety of motor tasks and stimulus parameters, researchers have produced an array of literature supporting the efficacy of brain stimulation to modulate motor task learning. We discuss the use of transcranial direct current stimulation, transcranial alternating current stimulation, and peripheral nerve stimulation to modulate motor learning. In a novel approach, we review literature of motor learning modulation in terms of learning stage, categorizing learning into acquisition, consolidation, and retention. We endeavour to provide a current perspective on the stage-specific mechanism behind modulation of motor task learning, to give insight into how electrical stimulation improves or hinders motor learning, and how mechanisms differ depending on learning stage. Offering a look into the effectiveness of peripheral nerve stimulation for motor learning, we include potential mechanisms and overlapping features with transcranial stimulation. We conclude by exploring how peripheral stimulation may contribute to the results of studies that employed brain stimulation intracranially.
脑刺激已成功地应用于运动学习研究,改善了任务学习、保持和巩固的各个方面。研究人员使用各种运动任务和刺激参数,产生了一系列文献,支持脑刺激调节运动任务学习的有效性。我们讨论了使用经颅直流电刺激、经颅交流电刺激和周围神经刺激来调节运动学习。在一种新的方法中,我们根据学习阶段,将运动学习的调节文献进行分类,将学习分为获得、巩固和保持。我们努力提供一种关于运动任务学习调节背后的特定阶段机制的当前视角,深入了解电刺激如何改善或阻碍运动学习,以及机制如何因学习阶段而异。我们探讨了周围神经刺激对运动学习的有效性,包括潜在的机制和与经颅刺激的重叠特征。最后,我们探讨了周围刺激如何有助于那些采用颅内脑刺激的研究结果。