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

IF 2.9 2区 心理学 Q2 NEUROSCIENCES
Deborah Ziri, Laurent Hugueville, Claire Olivier, Philippe Boulinguez, Harish Gunasekaran, Brian Lau, Marie-Laure Welter, Nathalie George
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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.

人类步态启动的抑制控制:脑电图研究
反应抑制是执行控制的重要组成部分。虽然主要是在上肢任务中进行研究,但它在步态启动中也有充分的作用。在此,我们评估了健康成年参与者在步态启动过程中主动和反应抑制控制的影响。为此,我们测量了 23 名健康成年人在改良的 Go/NoGo 步态启动任务中的运动学和脑电图活动(事件相关电位 [ERP] 和时频数据)。该任务包括 Go-确定、Go-不确定和 NoGo 条件。每个试验都包括准备性刺激和命令性刺激。我们的结果表明,"去-不确定 "会导致反应时间延迟,而步态启动的其他参数则没有任何差异。主动抑制,即 "去 "不确定与 "去 "确定的条件,在准备性刺激开始时就会影响脑电活动。此外,主动抑制和反应性抑制都会影响ERPs(中央P1、枕顶N1和N2/P3)的振幅,以及θ和α/低β波段活动对命令性--去不确定与去确定和不去与去不确定--刺激的反应。这些研究结果表明,不确定情境会诱发主动抑制,这反映在步态启动延迟上。主动和被动抑制引起了ERP和时频活动的扩展和重叠调节。这项研究显示了抑制控制对步态启动的长期影响。
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来源期刊
Psychophysiology
Psychophysiology 医学-神经科学
CiteScore
6.80
自引率
8.10%
发文量
225
审稿时长
2 months
期刊介绍: Founded in 1964, Psychophysiology is the most established journal in the world specifically dedicated to the dissemination of psychophysiological science. The journal continues to play a key role in advancing human neuroscience in its many forms and methodologies (including central and peripheral measures), covering research on the interrelationships between the physiological and psychological aspects of brain and behavior. Typically, studies published in Psychophysiology include psychological independent variables and noninvasive physiological dependent variables (hemodynamic, optical, and electromagnetic brain imaging and/or peripheral measures such as respiratory sinus arrhythmia, electromyography, pupillography, and many others). The majority of studies published in the journal involve human participants, but work using animal models of such phenomena is occasionally published. Psychophysiology welcomes submissions on new theoretical, empirical, and methodological advances in: cognitive, affective, clinical and social neuroscience, psychopathology and psychiatry, health science and behavioral medicine, and biomedical engineering. The journal publishes theoretical papers, evaluative reviews of literature, empirical papers, and methodological papers, with submissions welcome from scientists in any fields mentioned above.
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