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人类步态启动的抑制控制:一项脑电图研究。

Inhibitory control of gait initiation in humans: An electroencephalography study.

机构信息

Sorbonne Université, Institut du Cerveau - Paris Brain Institute, Inserm, CNRS, AP-HP, Hôpital de la Pitié Salpêtrière, Paris, France.

Institut du Cerveau, ICM, Inserm U 1127, CNRS UMR 7225, Sorbonne Université, Centre MEG-EEG, CENIR, Paris, France.

出版信息

Psychophysiology. 2024 Nov;61(11):e14647. doi: 10.1111/psyp.14647. Epub 2024 Jul 10.

Abstract

Response inhibition is a crucial component of executive control. Although mainly studied in upper limb tasks, it is fully implicated in gait initiation. Here, we assessed the influence of proactive and reactive inhibitory control during gait initiation in healthy adult participants. For this purpose, we measured kinematics and electroencephalography (EEG) activity (event-related potential [ERP] and time-frequency data) during a modified Go/NoGo gait initiation task in 23 healthy adults. The task comprised Go-certain, Go-uncertain, and NoGo conditions. Each trial included preparatory and imperative stimuli. Our results showed that go-uncertainty resulted in delayed reaction time, without any difference for the other parameters of gait initiation. Proactive inhibition, that is, Go uncertain versus Go certain conditions, influenced EEG activity as soon as the preparatory stimulus. Moreover, both proactive and reactive inhibition influenced the amplitude of the ERPs (central P1, occipito-parietal N1, and N2/P3) and theta and alpha/low beta band activities in response to the imperative-Go-uncertain versus Go-certain and NoGo versus Go-uncertain-stimuli. These findings demonstrate that the uncertainty context; induced proactive inhibition, as reflected in delayed gait initiation. Proactive and reactive inhibition elicited extended and overlapping modulations of ERP and time-frequency activities. This study shows the protracted influence of inhibitory control in gait initiation.

摘要

反应抑制是执行控制的一个关键组成部分。虽然主要在上肢任务中进行研究,但它完全涉及到步态启动。在这里,我们评估了在健康成年参与者中步态启动期间主动和被动抑制控制的影响。为此,我们在 23 名健康成年人中测量了在修改后的 Go/NoGo 步态启动任务期间的运动学和脑电图 (EEG) 活动(事件相关电位 [ERP] 和时频数据)。该任务包括 Go-certain、Go-uncertain 和 NoGo 条件。每个试验都包括预备刺激和指令刺激。我们的结果表明,Go-uncertain 导致反应时间延迟,而步态启动的其他参数没有差异。主动抑制,即 Go-uncertain 与 Go-certain 条件相比,影响 EEG 活动,只要预备刺激出现。此外,主动和被动抑制都影响了 ERP 的幅度(中央 P1、枕顶 N1 和 N2/P3)以及 theta 和 alpha/低频带活动,以响应指令-Go-uncertain 与 Go-certain 和 NoGo 与 Go-uncertain-刺激。这些发现表明,不确定性情境会引发主动抑制,从而导致步态启动延迟。主动和被动抑制引起了 ERP 和时频活动的扩展和重叠调节。这项研究表明抑制控制在步态启动中的持久影响。

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