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机器人辅助靶向步态训练

ROBOT-ASSISTED TARGETED GAIT TRAINING.

作者信息

Chambers Vaughn, Johnson Madison, Artemiadis Panagiotis

机构信息

Mechanical Engineering Department at the University of Delaware, USA.

出版信息

J Kinesiol Exerc Sci. 2024 Feb 22;34(105):11-22. doi: 10.5604/01.3001.0053.9679. Epub 2023 Oct 26.

Abstract

BACKGROUND

Millions of people are affected yearly by "runner's knee" and osteoarthritis, which is thought to be related to impact force. Millions are also affected by chronic falling, who are usually both difficult to identify and train. While at first glance, these topics seem to be entirely disconnected, there appears to be a need for a device that would address both issues. This paper proposes and investigates the use of the Variable Stiffness Treadmill (VST) as a targeted training device for the different populations described above.

MATERIALS AND METHODS

The VST is the authors' unique robotic split-belt treadmill that can reduce the vertical ground stiffness of the left belt, while the right belt remains rigid. In this work, heart rate and energy expenditure are measured for healthy subjects in the challenging asymmetric environment created by the VST and compared to a traditional treadmill setting.

RESULTS

This study shows that this asymmetric environment results in an increase in heart rate and energy expenditure, an increase in activity in the muscles about the hip and knee, and a decrease in impact force at heel strike.

CONCLUSIONS

Compliant environments, like those created on the VST, may be a beneficial tool as they can: reduce high-impact forces during running and walking, significantly engage the muscles surrounding the hip and knee allowing for targeted training and rehabilitation, and assist in identifying and training high fall-risk individuals.

摘要

背景

每年有数百万人受“跑步膝”和骨关节炎影响,人们认为这与冲击力有关。还有数百万人受慢性跌倒影响,而这类人群通常既难以识别又难以训练。乍一看,这些话题似乎完全不相关,但似乎需要一种能解决这两个问题的设备。本文提出并研究了可变刚度跑步机(VST)作为针对上述不同人群的定向训练设备的用途。

材料与方法

VST是作者独特的机器人分体式跑步机,它可以降低左跑带的垂直地面刚度,而右跑带保持刚性。在这项研究中,在VST营造的具有挑战性的不对称环境中,对健康受试者的心率和能量消耗进行测量,并与传统跑步机设置进行比较。

结果

本研究表明,这种不对称环境会导致心率和能量消耗增加,髋部和膝部周围肌肉的活动增加,足跟触地时的冲击力减小。

结论

像VST营造的那种顺应性环境可能是一种有益的工具,因为它们可以:在跑步和行走过程中降低高冲击力,显著调动髋部和膝部周围的肌肉,实现定向训练和康复,并有助于识别和训练高跌倒风险个体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/265c/11104734/155e8b58a32a/nihms-1991938-f0001.jpg

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