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揭示安静直立站立控制中的间歇性:超越自动行为。

Unveiling Intermittency in the Control of Quiet Upright Standing: Beyond Automatic Behavior.

作者信息

Stins John F, Roerdink Melvyn

机构信息

Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, Netherlands.

出版信息

Front Neurol. 2018 Oct 10;9:850. doi: 10.3389/fneur.2018.00850. eCollection 2018.

Abstract

The control of posture, as in quiet upright standing, is distributed among postural reflexes and higher (cortical) centers. According to the theory of "intermittent control," the control of posture involves a rapid succession of brief periods of postural stability, during which the body dwells relatively motionless in a particular posture, and postural instability, during which the body rapidly transits to a new stable point. This theory assumes a combination of stiffness control, keeping the body in the same position, and top-down ballistic control, moving the body to a new reference position. We tested the prediction that exerting ballistic control consumes more attention, relative to stiffness control, using variations in reaction time as our index of attention load. Slower reactions to external stimulus events were expected if these events happen to coincide with ballistic control regimes compared to stiffness regimes, as unveiled from local features of the posturogram. Thirty-two participants stood on a force plate, and were instructed to press a hand-held button as soon as they heard a stimulus tone. About 40 stimuli were presented at random instances during a 3-min trial. Postural control regimes were characterized using sway-density analysis for each stimulus-response interval, by computing local dwell times from the corresponding center-of-pressure samples. We correlated stimulus-response durations with the corresponding local dwell times, and also with local velocity and local eccentricity (distance from the origin). As predicted, an overall negative correlation was observed, meaning that shorter dwell times are associated with longer stimulus-response intervals, as well as a positive correlation with local center-of-pressure velocity. The correlation between reaction times and local eccentricity was not significant. Thus, by mapping stimulus-response intervals to local center-of-pressure features we demonstrated attentional fluctuations in the control of quiet upright standing, thereby validating a core assumption underlying the notion of intermittent postural control.

摘要

姿势控制,如安静直立站立时的姿势控制,分布于姿势反射和更高层次(皮层)的中枢之间。根据“间歇性控制”理论,姿势控制涉及一系列快速交替的短暂姿势稳定期,在此期间身体相对静止地保持在特定姿势,以及姿势不稳定期,在此期间身体迅速过渡到新的稳定点。该理论假定了刚度控制(使身体保持在同一位置)和自上而下的弹道控制(将身体移动到新的参考位置)的结合。我们以反应时间的变化作为注意力负荷的指标,测试了相对于刚度控制,实施弹道控制消耗更多注意力这一预测。正如从姿势图的局部特征所揭示的那样,如果外部刺激事件与弹道控制模式同时发生,相比于刚度控制模式,预计对这些事件的反应会更慢。32名参与者站在一个测力板上,并被指示一听到刺激音就按下手持按钮。在3分钟的试验期间,大约40次刺激在随机时刻呈现。通过从相应的压力中心样本计算局部停留时间,使用摇摆密度分析对每个刺激 - 反应间隔的姿势控制模式进行表征。我们将刺激 - 反应持续时间与相应的局部停留时间、局部速度和局部偏心率(距原点的距离)进行关联。正如预测的那样,观察到了总体负相关,这意味着较短的停留时间与较长的刺激 - 反应间隔相关,同时与局部压力中心速度呈正相关。反应时间与局部偏心率之间的相关性不显著。因此,通过将刺激 - 反应间隔映射到局部压力中心特征,我们证明了安静直立站立控制中的注意力波动,从而验证了间歇性姿势控制概念背后的一个核心假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e17/6191479/a8ee8932fed5/fneur-09-00850-g0001.jpg

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