在单手和双手运动学习中不同的β和γ活动调制。

IF 4.4 2区 医学 Q1 NEUROSCIENCES
Min Wu, Marleen J Schoenfeld, Carl Lindersson, Sven Braeutigam, Catharina Zich, Charlotte J Stagg
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引用次数: 0

摘要

已经研究了在单手运动中与运动执行和学习相关的β和γ波段的运动相关动力学,但它们在复杂的双手任务中的作用仍未被探索。本研究旨在探讨单手和双手运动中β和γ活动的差异,以及这些神经特征在学习过程中如何演变。我们的运动任务包含了不同水平的双手互动:单手,双手平等和双手不平等。对健康参与者(N = 43,27名女性)在任务执行期间的脑磁图数据进行记录,并对β和γ活动进行量化。正如预期的那样,从单手到双手相等,再到双手不相等的动作,任务复杂性的增加导致了更慢和更不准确的性能。在所有条件下,在运动期间观察到显著的β事件相关不同步(ERD)和γ事件相关同步(ERS),以及运动后的β ERS。与单手运动相比,双手运动表现出更大的β ERD、β ERS和γ ERS。通过练习,参与者表现出更快、更准确的动作,并伴有增强的β - ERS反应。此外,与学习相关的错误减少与β - ERS的增加相关。这些发现表明单手运动和双手运动具有不同的行为和神经需求,并强调了β活动在运动表现和学习中的重要作用。在日常运动行为中占主导地位的双手运动需要两只手之间的精细协调,但在神经生理学水平上仍然知之甚少。使用脑磁图,我们测试了神经反应的一个新的运动任务,包括不同水平的双手相互作用。我们证明,更大的任务复杂性引起增强的运动相关的大脑活动在β和γ频段。运动学习与β运动相关同步的增加有关,这与运动准确性的提高有关。这项研究提供了关于β和γ脑活动如何适应不断增加的运动复杂性和运动学习的新见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential Beta and Gamma Activity Modulation during Unimanual and Bimanual Motor Learning.

Movement-related dynamics in the beta and gamma bands have been studied in relation to motor execution and learning during unimanual movements, but their roles in complex bimanual tasks remain largely unexplored. This study aimed to investigate how beta and gamma activity differs between unimanual and bimanual movements and how these neural signatures evolve during the learning process. Our motor task incorporated varying levels of bimanual interaction: unimanual, bimanual-equal, and bimanual-unequal. Magnetoencephalography data were recorded in healthy participants (N = 43, 27 females) during task performance, and beta and gamma activity was quantified. As expected, increasing task complexity from unimanual to bimanual-equal and then to bimanual-unequal movements resulted in slower and less accurate performance. Across all conditions, significant beta event-related desynchronization (ERD) and gamma event-related synchronization (ERS) were observed during movement, as well as beta ERS after movement. Bimanual movements exhibited greater beta ERD, beta ERS, and gamma ERS compared with unimanual movements. With practice, participants demonstrated faster and more accurate movements, accompanied by enhanced beta ERS responses. Furthermore, learning-related reductions in errors correlated with increases in beta ERS. These findings suggest the distinct behavioral and neural demands of unimanual versus bimanual movements and highlight the important role of beta activity in motor performance and learning.

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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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