Theta burst stimulation on the fronto-cerebellar connective network promotes cognitive processing speed in the simple cognitive task

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Ning Zhao, Jing Tao, Clive Wong, Jing-song Wu, Jiao Liu, Li-dian Chen, Tatia M. C. Lee, Yanwen Xu, Chetwyn C. H. Chan
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Abstract

BackgroundThe fronto-cerebellar functional network has been proposed to subserve cognitive processing speed. This study aims to elucidate how the long-range frontal-to-cerebellar effective connectivity contributes to faster speed.MethodsIn total, 60 healthy participants were randomly allocated to three five-daily sessions of transcranial magnetic stimulation conditions, namely intermittent theta-burst stimulation (iTBS, excitatory), continuous theta-burst stimulation (CTBS, inhibitory), or a sham condition. The sites of the stimulations were the right pre-supplementary motor area (RpSMA), medial cerebellar vermis VI (MCV6), and vertex, respectively. Performances in two reaction time tasks were recorded at different time points.ResultsPost-stimulation speeds revealed marginal decreases in the simple but not complex task. Nevertheless, participants in the excitatory RpSMA and inhibitory MCV6 conditions showed direct and negative path effects on faster speeds compared to the sham condition in the simple reaction time (SRT) task (β = −0.320, p = 0.045 and β = −0.414, p = 0.007, respectively). These path effects were not observed in the SDMT task.DiscussionRpSMA and MCV6 were involved in promoting the path effects of faster reaction times on simple cognitive task. This study offers further evidence to support their roles within the long-range frontal-to-cerebellar connectivity subserving cognitive processing speed. The enhancement effects, however, are likely limited to simple rather than complex mental operations.
对前小脑连接网络的θ脉冲刺激可提高简单认知任务中的认知处理速度
背景前额-小脑功能网络被认为是认知处理速度的辅助网络。本研究旨在阐明长程额叶-小脑有效连接如何有助于提高速度。方法:60 名健康参与者被随机分配到三种经颅磁刺激条件下,即间歇θ-脉冲刺激(iTBS,兴奋性)、连续θ-脉冲刺激(CTBS,抑制性)或假刺激条件下,每天三次,每次五次。刺激部位分别为右侧补充运动前区(RpSMA)、小脑内侧蚓部VI(MCV6)和顶点。结果 刺激后,简单任务的速度略有下降,复杂任务的速度则没有下降。然而,在简单反应时间(SRT)任务中,兴奋性 RpSMA 和抑制性 MCV6 条件下的参与者与假条件下的参与者相比,在速度更快方面表现出直接的负路径效应(分别为 β = -0.320,p = 0.045 和 β = -0.414,p = 0.007)。讨论RpSMA和MCV6参与了促进简单认知任务中更快反应时间的路径效应。这项研究提供了进一步的证据来支持它们在长程额叶到小脑连接中为认知处理速度服务的作用。不过,这种增强效应可能仅限于简单而非复杂的心理操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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