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视觉剥夺会伴随着地面反作用力的主动变化,以尽量减少行走过程中平衡和稳定性的恶化。

Visual deprivation is met with active changes in ground reaction forces to minimize worsening balance and stability during walking.

作者信息

Shoja Otella, Farsi Alireza, Towhidkhah Farzad, Feldman Anatol G, Abdoli Behrouz, Bahramian Alireza

机构信息

Department of Behavioral and Cognitive Sciences in Sport, Faculty of Sport Sciences and Health, Shahid Beheshti University, Tehran, Iran.

Department of Biomedical Engineering, Amirkabir University of Technology, Tehran, Iran.

出版信息

Exp Brain Res. 2020 Feb;238(2):369-379. doi: 10.1007/s00221-020-05722-0. Epub 2020 Jan 11.

Abstract

Previous studies suggest that visual information is essential for balance and stability of locomotion. We investigated whether visual deprivation is met with active reactions tending to minimize worsening balance and stability during walking in humans. We evaluated effects of vision on kinetic characteristics of walking on a treadmill-ground reaction forces (GRFs) and shifts in the center of mass (COM). Young adults (n = 10) walked on a treadmill at a comfortable speed. We measured three orthogonal components of GRFs and COM shifts during no-vision (NV) and full-vision (FV) conditions. We also computed the dynamic balance index (D)-the perpendicular distance from the projection of center of mass (pCOM) to the inter-foot line (IFL) normalized to half of the foot length. Locally weighted regression smoothing with alpha-adjusted serial T tests was used to compare GRFs and D between two conditions during the entire stance phase. Results showed significant differences in GRFs between FV and NV conditions in vertical and ML directions. Variability of peak forces of all three components of GRF increased in NV condition. We also observed significant increase in D for NV condition in eight out of ten subjects. The pCOM was kept within BOS during walking, in both conditions, suggesting that body stability was actively controlled by adjusting three components of GRFs during NV walking to minimize stability loss and preserve balance.

摘要

先前的研究表明,视觉信息对于运动的平衡和稳定性至关重要。我们研究了在人类行走过程中,视觉剥夺是否会引发积极反应,以尽量减少平衡和稳定性的恶化。我们评估了视觉对在跑步机上行走的动力学特征——地面反作用力(GRFs)和质心(COM)位移的影响。年轻成年人(n = 10)以舒适的速度在跑步机上行走。我们测量了无视觉(NV)和全视觉(FV)条件下GRFs的三个正交分量和COM位移。我们还计算了动态平衡指数(D)——质心投影(pCOM)到脚间线(IFL)的垂直距离,并将其归一化为脚长的一半。使用带有α调整的序列T检验的局部加权回归平滑法,比较整个站立阶段两种条件下的GRFs和D。结果显示,FV和NV条件下GRFs在垂直和ML方向上存在显著差异。在NV条件下,GRF所有三个分量的峰值力变异性增加。我们还观察到,在十名受试者中有八名在NV条件下D显著增加。在两种条件下,行走过程中pCOM都保持在支撑面内,这表明在NV行走过程中,通过调整GRFs的三个分量来积极控制身体稳定性,以尽量减少稳定性损失并保持平衡。

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