在肢体间协调过程中,小脑半球对视觉运动学习动态的贡献:来自rTMS研究的见解。

IF 2.4 3区 医学 Q3 NEUROSCIENCES
Akiyoshi Matsugi, Keisuke Tani, Satoru Nishishita, Naoki Yoshida, Nobuhiko Mori, Koichi Hosomi
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引用次数: 0

摘要

本研究探讨了右小脑重复经颅磁刺激(rTMS)对视觉运动适应和肢体间协调学习的影响。具体来说,我们研究了在干扰条件下小脑刺激对获得新的视觉运动转换和随后的适应的影响。共有42名健康成年人执行了一项双手视觉运动跟踪任务,其中左手和右手分别控制光标的水平和垂直运动。实验包括两个阶段:(1)初始学习阶段,涉及对视觉运动变换的适应;(2)干扰适应阶段,定义为在先前学习的变换的干扰下适应新的视觉运动映射,其中只有右手映射被改变。在任务开始前,参与者在右小脑半球接受了活跃或假的1Hz rTMS。使用跟踪误差和肢间误差结构测量来评估性能。在两个学习阶段的试验中,跟踪错误都减少了。虽然rTMS在初始学习阶段没有显著影响,但在干扰适应阶段显著降低了跟踪误差。在主动rtms组中,四肢间误差相关性和方向误差斜率在试验期间也有所下降,表明跨肢干扰减少,协调灵活性增强。这些发现表明,小脑rTMS通过调节肢体间协调,促进了视觉运动映射改变的适应,特别是在干扰适应过程中。研究结果支持了一种假设,即双手协调依赖于运动学习过程中动态交互的模块化内部模型。本研究强调了小脑在优化肢间适应(尤其是干扰适应)中的重要作用,并强调了小脑神经调节在运动康复中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cerebellar Hemispheric Contribution to the Dynamics of Visuomotor Learning during Interlimb Coordination: Insights from an rTMS Study.

This study investigated the effects of repetitive transcranial magnetic stimulation (rTMS) over the right cerebellar hemisphere on visuomotor adaptation and interlimb coordination learning. Specifically, we examined the impact of cerebellar stimulation on the acquisition of new visuomotor transformations and subsequent adaptation under interference conditions during a bimanual tracking task. A total of 42 healthy adults performed a bimanual visuomotor tracking task in which the left and right hands controlled horizontal and vertical cursor movements, respectively. The experiment consisted of two phases: (1) an Initial learning phase involving adaptation to a visuomotor transformation, and (2) an Interference adaptation phase, defined as adaptation to a new visuomotor mapping under interference from the previously learned transformation, in which only the right-hand mapping was altered. Participants received either active or sham 1Hz rTMS over the right cerebellar hemisphere before the task. Performance was assessed using tracking error and interlimb error structure measures. Tracking errors decreased over trials in both learning phases. While rTMS had no significant effect during the Initial learning phase, it significantly reduced tracking errors during the Interference adaptation phase. In the active-rTMS group, interlimb error correlation and the directional error slope also declined across trials, suggesting reduced cross-limb interference and enhanced coordination flexibility. These findings suggest that cerebellar rTMS facilitates the adaptation of altered visuomotor mappings, particularly during interference adaptation, by modulating interlimb coordination. The results support the hypothesis that bimanual coordination relies on modular internal models that dynamically interact during motor learning. This study underscores the cerebellum's essential role in optimizing interlimb adaptation, especially under interference adaptation, and highlights the potential of cerebellar neuromodulation for motor rehabilitation.

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来源期刊
Cerebellum
Cerebellum 医学-神经科学
CiteScore
6.40
自引率
14.30%
发文量
150
审稿时长
4-8 weeks
期刊介绍: Official publication of the Society for Research on the Cerebellum devoted to genetics of cerebellar ataxias, role of cerebellum in motor control and cognitive function, and amid an ageing population, diseases associated with cerebellar dysfunction. The Cerebellum is a central source for the latest developments in fundamental neurosciences including molecular and cellular biology; behavioural neurosciences and neurochemistry; genetics; fundamental and clinical neurophysiology; neurology and neuropathology; cognition and neuroimaging. The Cerebellum benefits neuroscientists in molecular and cellular biology; neurophysiologists; researchers in neurotransmission; neurologists; radiologists; paediatricians; neuropsychologists; students of neurology and psychiatry and others.
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