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A model based study of a quantitative relation between joint strengthening and the highest achievable speed of human walking

机译:基于模型的联合加固与人类行走最高速度的定量关系研究

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摘要

There is a common belief that muscle strengthening would enhance the capability of fast walking, but the specific impact of different joint's strength on walking speed and the quantitative relation between them is not well explored. While the majority of the previous works in this area are based on experimental methods, it would be very expensive and time consuming to conduct as much experiment as necessary to establish such a quantitative relation. In the current research, instead of experimental methods, a mathematical framework is utilized to solve this problem. The objective of this paper is to briefly introduce this framework and present the obtained results based on that, for the mentioned relation. To achieve the objective of this paper, the highest achievable speed in sagittal plane with normal joint strength was first determined in the mathematical framework for three age groups. Afterward, the highest achievable speed was calculated for different levels of ankle, knee, and hip strength by changing the strength level in the mathematical model in all the studied groups. The results supported the crucial role of plantar flexors in all ages. It was shown that ankle strengthening up to certain critical value affected the speed significantly; whereas increasing the knee and hip strength may only facilitate fast walking without considerable effect on the speed value. Moreover, the critical level of ankle strengthening decreased with age increment. The attained results could be utilized in planning comprehensive joint strengthening exercises in sports and rehabilitation of subjects with lower limb disabilities. (C) 2015 Nalecz Institute of Biocybernetics and Biomedical Engineering. Published by Elsevier Sp. z o.o.. All rights reserved.
机译:常见的信念是,肌肉加强将提高快速行走的能力,但不同关节力量对步行速度的具体影响以及它们之间的定量关系并不顺利。虽然该领域的以前的大部分作品都是基于实验方法,但在确定这种定量关系的必要性时,可以非常昂贵和耗时。在目前的研究中,代替实验方法,使用数学框架来解决这个问题。本文的目的是简要介绍该框架,并根据提到的关系呈现所获得的结果。为实现本文的目的,首先在三龄组的数学框架中确定具有正常关节强度的矢状平面中可实现的最高速度。之后,通过改变所有研究组中的数学模型中的力量水平来计算不同水平的脚踝,膝关节和髋部强度的最高可实现的速度。结果支持Purtorar屈肌在所有年龄段中的关键作用。结果表明,脚踝加强达到某些临界值的速度显着影响;虽然膝盖和臀部强度的增加可能只能促进快速行走,但对速度值相当效果。此外,随着年龄增量的缩小水平的脚踝强化降低。达到的结果可用于规划综合联合加强运动和肢体残疾科目的康复。 (c)2015年纳雷斯省生物庭院研究所和生物医学工程研究所。由elsevier sp发布。 z o.o ..保留所有权利。

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