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认知与动作:采用潜在变量分析法研究执行功能对老年人动作控制的贡献

Cognition and action: a latent variable approach to study contributions of executive functions to motor control in older adults.

机构信息

Movement Control and Neuroplasticity Research Group, Department of Movement Sciences, KU Leuven, Flanders, Belgium.

KU Leuven Brain Institute (LBI), KU Leuven, Flanders, Belgium.

出版信息

Aging (Albany NY). 2021 Jun 24;13(12):15942-15963. doi: 10.18632/aging.203239.

Abstract

Aging is associated with profound alterations in motor control that may be exacerbated by age-related executive functioning decline. Executive functions span multiple facets including inhibition (suppressing unwanted response tendencies), shifting (switching between cognitive operations), and updating (managing working memory content). However, comprehensive studies regarding the contributions of single facets of executive functioning to movement control in older adults are still lacking. A battery of nine neuropsychological tasks was administered to = 92 older adults in order to derive latent factors for inhibition, shifting, and updating by structural equation modeling. A bimanual task was used to assess complex motor control. A sample of = 26 young adults served as a control group to verify age-related performance differences. In older adults, structural equation models revealed that performance on the most challenging condition of the complex motor task was best predicted by the updating factor and by general executive functioning performance. These data suggest a central role for working memory updating in complex motor performance and contribute to our understanding of how individual differences in executive functioning relate to movement control in older adults.

摘要

衰老与运动控制的深刻变化有关,而与年龄相关的执行功能下降可能会加剧这种变化。执行功能涵盖多个方面,包括抑制(抑制不必要的反应倾向)、转换(在认知操作之间切换)和更新(管理工作记忆内容)。然而,关于执行功能的单个方面对老年人运动控制的贡献的综合研究仍然缺乏。通过结构方程建模,对 92 名老年人进行了 9 项神经心理学任务的测试,以得出抑制、转换和更新的潜在因素。使用双手任务来评估复杂的运动控制。一组 26 名年轻成年人作为对照组,以验证与年龄相关的表现差异。在老年人中,结构方程模型表明,在复杂运动任务的最具挑战性条件下的表现,最好由更新因素和一般执行功能表现来预测。这些数据表明,工作记忆更新在复杂运动表现中起着核心作用,并有助于我们理解执行功能的个体差异如何与老年人的运动控制相关。

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