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双任务导致的认知资源竞争对姿势运动成分的不规则性和控制的影响。

The Effect of Cognitive Resource Competition Due to Dual-Tasking on the Irregularity and Control of Postural Movement Components.

作者信息

Haid Thomas, Federolf Peter

机构信息

Department of Sport Science, University of Innsbruck, 6020 Innsbruck, Austria.

出版信息

Entropy (Basel). 2019 Jan 15;21(1):70. doi: 10.3390/e21010070.

Abstract

Postural control research suggests a non-linear, n-shaped relationship between dual-tasking and postural stability. Nevertheless, the extent of this relationship remains unclear. Since kinematic principal component analysis has offered novel approaches to study the control of movement components (PM) and n-shapes have been found in measures of sway irregularity, we hypothesized (H1) that the irregularity of PMs and their respective control, and the control tightness will display the n-shape. Furthermore, according to the minimal intervention principle (H2) different PMs should be affected differently. Finally, (H3) we expected stronger dual-tasking effects in the older population, due to limited cognitive resources. We measured the kinematics of forty-one healthy volunteers (23 aged 26 ± 3; 18 aged 59 ± 4) performing 80 s tandem stances in five conditions (single-task and auditory n-back task; n = 1-4), and computed sample entropies on PM time-series and two novel measures of control tightness. In the PM most critical for stability, the control tightness decreased steadily, and in contrast to H3, decreased further for the younger group. Nevertheless, we found n-shapes in most variables with differing magnitudes, supporting H1 and H2. These results suggest that the control tightness might deteriorate steadily with increased cognitive load in critical movements despite the otherwise eminent n-shaped relationship.

摘要

姿势控制研究表明,双重任务与姿势稳定性之间存在非线性的n形关系。然而,这种关系的程度仍不明确。由于运动主成分分析提供了研究运动成分控制(PM)的新方法,并且在摆动不规则性测量中发现了n形,我们假设(H1)运动成分的不规则性及其各自的控制以及控制紧密性将呈现n形。此外,根据最小干预原则(H2),不同的运动成分应受到不同的影响。最后,(H3)由于认知资源有限,我们预计老年人群中双重任务效应更强。我们测量了41名健康志愿者(23名年龄26±3岁;18名年龄59±4岁)在五种条件下(单任务和听觉n-back任务;n = 1 - 4)进行80秒串联站立时的运动学,并计算了运动成分时间序列的样本熵以及两种新的控制紧密性测量指标。在对稳定性最为关键的运动成分中,控制紧密性稳步下降,与H3相反,年轻组下降得更多。然而,我们在大多数变量中发现了不同程度的n形,支持了H1和H2。这些结果表明,尽管存在显著的n形关系,但在关键运动中,随着认知负荷的增加,控制紧密性可能会稳步恶化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f27/7514179/f1afaa597560/entropy-21-00070-g001.jpg

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