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老年人经过十次站立平衡训练后,步态稳定性得到改善。

Improvement in gait stability in older adults after ten sessions of standing balance training.

机构信息

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

出版信息

PLoS One. 2022 Jul 27;17(7):e0242115. doi: 10.1371/journal.pone.0242115. eCollection 2022.

Abstract

Balance training aims to improve balance and transfer acquired skills to real-life tasks. How older adults adapt gait to different conditions, and whether these adaptations are altered by balance training, remains unclear. We hypothesized that reorganization of modular control of muscle activity is a mechanism underlying adaptation of gait to training and environmental constraints. We investigated the transfer of standing balance training, shown to enhance unipedal balance control, to gait and adaptations in neuromuscular control of gait between normal and narrow-base walking in twenty-two older adults (72.6 ± 4.2 years). At baseline, after one, and after ten training sessions, kinematics and EMG of normal and narrow-base treadmill walking were measured. Gait parameters and temporal activation profiles of five muscle synergies were compared between time-points and gait conditions. Effects of balance training and an interaction between training and gait condition on step width were found, but not on synergies. After ten training sessions step width decreased in narrow-base walking, while step width variability decreased in both conditions. Trunk center of mass displacement and velocity, and the local divergence exponent, were lower in narrow-base compared to normal walking. Activation duration in narrow-base compared to normal walking was shorter for synergies associated with dominant leg weight acceptance and non-dominant leg stance, and longer for the synergy associated with non-dominant heel-strike. Time of peak activation associated with dominant leg stance occurred earlier in narrow-base compared to normal walking, while it was delayed in synergies associated with heel-strikes and non-dominant leg stance. The adaptations of synergies to narrow-base walking may be interpreted as related to more cautious weight transfer to the new stance leg and enhanced control over center of mass movement in the stance phase. The improvement of gait stability due to standing balance training is promising for less mobile older adults.

摘要

平衡训练旨在提高平衡能力,并将获得的技能转移到实际任务中。老年人如何根据不同的条件调整步态,以及平衡训练是否改变这些适应,目前尚不清楚。我们假设肌肉活动模块化控制的重新组织是步态适应训练和环境约束的机制。我们研究了站立平衡训练的转移,该训练已被证明可以增强单足平衡控制,以步态和神经肌肉控制的适应为目标,在 22 名老年人(72.6 ± 4.2 岁)中进行正常和窄基底行走之间的转移。在基线、一次和十次训练后,测量了正常和窄基底跑步机行走的运动学和肌电图。比较了不同时间点和步态条件下的步态参数和五个肌肉协同作用的时间激活分布。发现平衡训练的效果以及训练和步态条件之间的相互作用对步宽有影响,但对协同作用没有影响。经过十次训练,在窄基底行走时步宽减小,而在两种情况下步宽变异性减小。与正常行走相比,窄基底行走时躯干质心位移和速度以及局部发散指数较低。与主要腿承重和非主要腿站立相关的协同作用与正常行走相比,在窄基底行走时激活持续时间较短,与非主要腿脚跟撞击相关的协同作用较长。与主要腿站立相关的激活峰值时间在窄基底行走时更早发生,而与脚跟撞击和非主要腿站立相关的协同作用时则延迟。协同作用对窄基底行走的适应可以解释为与新站立腿更谨慎的重量转移以及对站立阶段质心运动的增强控制有关。站立平衡训练对运动能力较差的老年人提高步态稳定性的效果是有希望的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb60/9328559/87372b5428ec/pone.0242115.g001.jpg

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