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迈向何处?站立腿肌梭传入对年轻人和老年人平衡控制中足内外侧位置规划的贡献。

Where to Step? Contributions of Stance Leg Muscle Spindle Afference to Planning of Mediolateral Foot Placement for Balance Control in Young and Old Adults.

作者信息

Arvin Mina, Hoozemans Marco J M, Pijnappels Mirjam, Duysens Jacques, Verschueren Sabine M, van Dieën Jaap H

机构信息

Department of Human Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, Amsterdam, Netherlands.

Department of Movement Sciences, Faculty of Kinesiology and Rehabilitation Sciences, KU Leuven, Leuven, Belgium.

出版信息

Front Physiol. 2018 Aug 21;9:1134. doi: 10.3389/fphys.2018.01134. eCollection 2018.

Abstract

Stable gait requires active control of the mediolateral (ML) kinematics of the body center of mass (CoM) and the base of support (BoS) in relation to each other. Stance leg hip abductor (HA) muscle spindle afference may be used to guide contralateral swing foot placement and adequately position the BoS in relation to the CoM. We studied the role of HA spindle afference in control of ML gait stability in young and older adults by means of muscle vibration. Healthy young ( = 12) and older (age > 65 years, = 18) adults walked on a treadmill at their preferred speed. In unperturbed trials, individual linear models using each subject's body CoM position and velocity at mid-swing as inputs accurately predicted foot placement at the end of the swing phase in the young [mean = 0.73 ( 0.11)], but less so in the older adults [mean = 0.60 ( 0.14)]. In vibration trials, HA afference was perturbed either left or right by vibration (90 Hz) in a random selection of 40% of the stance phases. After vibrated stance phases, but not after unvibrated stance phases in the same trials, the foot was placed significantly more inward than predicted by individual models for unperturbed gait. The effect of vibration was stronger in young adults, suggesting that older adults rely less on HA spindle afference. These results show that HA spindle afference in the stance phase of gait contributes to the control of subsequent ML foot placement in relation to the kinematics of the CoM, to stabilize gait in the ML direction and that this pocess is impaired in older adults.

摘要

稳定的步态需要对身体重心(CoM)和支撑面(BoS)的内外侧(ML)运动学进行主动控制,使二者相互关联。支撑腿髋外展肌(HA)肌梭传入信息可用于引导对侧摆动脚的放置,并使支撑面相对于重心进行适当定位。我们通过肌肉振动研究了HA肌梭传入信息在年轻人和老年人ML步态稳定性控制中的作用。健康的年轻成年人(n = 12)和老年人(年龄> 65岁,n = 18)以他们偏好的速度在跑步机上行走。在无干扰试验中,使用每个受试者摆动中期的身体重心位置和速度作为输入的个体线性模型能够准确预测年轻人摆动阶段结束时的脚的放置位置[平均r = 0.73(±0.11)],但在老年人中预测效果较差[平均r = 0.60(±0.14)]。在振动试验中,在随机选择的40%的站立阶段,HA传入信息通过振动(90 Hz)向左或向右受到干扰。在振动的站立阶段之后,但在同一试验中未振动的站立阶段之后,脚的放置位置比无干扰步态的个体模型预测的明显更向内。振动的影响在年轻人中更强,这表明老年人对HA肌梭传入信息的依赖较少。这些结果表明,步态站立阶段的HA肌梭传入信息有助于控制随后与重心运动学相关的ML脚的放置,以稳定ML方向的步态,并且这一过程在老年人中受损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f470/6110888/38fd9706087e/fphys-09-01134-g001.jpg

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