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周围抑制可以通过改变注意力焦点来即时调节。

Surround inhibition can instantly be modulated by changing the attentional focus.

机构信息

Movement and Sport Sciences, Department of Medicine, University of Fribourg, Fribourg, Switzerland.

Department of Sport Science, University of Freiburg, Freiburg, Germany.

出版信息

Sci Rep. 2018 Jan 18;8(1):1085. doi: 10.1038/s41598-017-19077-0.

Abstract

To further investigate the mechanism of surround inhibition (SI) and to determine whether adopting different attentional strategies might have an impact on the modulation of SI, the effects of adopting an external (EF) or internal focus of attention (IF) on SI and motor performance were investigated. While performing an index flexion with either an EF or IF, transcranial magnetic stimulation was applied at various time points in 14 healthy subjects. When adopting an EF compared to an IF, the results show an improved motor performance (+14.7% in MVC) and a reduced bEMG in the adjacent APB (-22.3%) during maximal index flexion. This was accompanied by an increased SI in the APB with an EF (+26.4%). Additionally, the decrease in bEMG correlated with the magnitude of SI in APB. The current results demonstrate an efficient way to modulate SI by changing the attentional focus in healthy subjects and might, at least in part, explain the better motor performance being associated with an EF. The present findings help to better understand the positive mechanisms of an EF on SI in the healthy motor system and may also points towards a treatment strategy in pathologies with disturbed SI such as focal hand dystonia.

摘要

为了进一步研究周围抑制(SI)的机制,并确定采用不同的注意策略是否会对 SI 的调节产生影响,研究了采用外部(EF)或内部注意焦点(IF)对 SI 和运动表现的影响。在 14 名健康受试者中,以 EF 或 IF 进行索引弯曲时,在不同时间点应用经颅磁刺激。与 IF 相比,当采用 EF 时,结果显示在最大索引弯曲期间运动表现提高(MVC 增加 14.7%),相邻 APB 的 bEMG 减少(-22.3%)。这伴随着 EF 时 APB 的 SI 增加(+26.4%)。此外,bEMG 的减少与 APB 中 SI 的幅度相关。目前的结果表明,通过改变健康受试者的注意力焦点,是一种有效调节 SI 的方法,这至少部分解释了 EF 与更好的运动表现相关的原因。本研究结果有助于更好地理解 EF 对健康运动系统中 SI 的积极机制,也可能为 SI 紊乱的疾病(如局限性手部肌张力障碍)提供一种治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15e6/5773585/f77364efb239/41598_2017_19077_Fig1_HTML.jpg

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