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认知负荷和光流对年轻人和老年人行走过程中拮抗肌腿部肌肉共同激活的影响。

The effects of cognitive load and optical flow on antagonist leg muscle coactivation during walking for young and older adults.

作者信息

Acuña Samuel A, Francis Carrie A, Franz Jason R, Thelen Darryl G

机构信息

Department of Mechanical Engineering, University of Wisconsin-Madison, United States.

Department of Mathematics & Engineering, University of Northwestern-St. Paul, United States.

出版信息

J Electromyogr Kinesiol. 2019 Feb;44:8-14. doi: 10.1016/j.jelekin.2018.11.003. Epub 2018 Nov 8.

Abstract

The purpose of this study was to compare how healthy aging interacts with environments that challenge cognitive load and optical flow to affect antagonist leg muscle coactivation during walking. We measured leg muscle activity in sixteen older adults (70.4 ± 4.2 years) and twelve young adults (23.6 ± 3.9 years) walking on a treadmill at their preferred speed while watching a speed-matched virtual hallway. Cognitive load was challenged using a dual-task to interfere with available attentional resources. Optical flow was challenged using perturbations designed to create a perception of lateral imbalance. We found antagonist coactivation increased with aging, independent of condition. We also found that, compared to unperturbed walking, only in the presence of optical flow perturbations did the older adults increase their antagonist coactivation. Antagonist coactivation in the young adults was not affected by either condition. Our findings provide evidence that antagonist leg muscle coactivation in healthy older adults is more sensitive to walking environments that challenge optical flow than environments that challenge cognitive load. As increased antagonist coactivation may indicate compromised balance, these findings may be relevant in the design of living environments to reduce falls risk.

摘要

本研究的目的是比较健康衰老如何与挑战认知负荷和光流的环境相互作用,以影响步行过程中拮抗肌腿部肌肉的共同激活。我们测量了16名老年人(70.4±4.2岁)和12名年轻人(23.6±3.9岁)在跑步机上以他们喜欢的速度行走时腿部肌肉的活动,同时观看速度匹配的虚拟走廊。使用双任务来挑战认知负荷,以干扰可用的注意力资源。使用旨在营造横向不平衡感的扰动来挑战光流。我们发现,与条件无关,拮抗肌共同激活随衰老而增加。我们还发现,与无扰动步行相比,仅在存在光流扰动的情况下,老年人会增加其拮抗肌共同激活。年轻人的拮抗肌共同激活不受任何一种条件的影响。我们的研究结果表明,健康老年人的拮抗肌腿部肌肉共同激活对挑战光流的步行环境比挑战认知负荷的环境更敏感。由于拮抗肌共同激活增加可能表明平衡受损,这些发现可能与降低跌倒风险的生活环境设计相关。

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