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基于刹车的地面步态康复装置,用于改变推进冲量对称性。

A Brake-Based Overground Gait Rehabilitation Device for Altering Propulsion Impulse Symmetry.

机构信息

Department of Mechanical Engineering & Applied Mechanics, GRASP Laboratory, University of Pennsylvania, Philadelphia, PA 19104, USA.

Haptic Intelligence Department, Max Planck Institute for Intelligent Systems, 70569 Stuttgart, Germany.

出版信息

Sensors (Basel). 2021 Oct 5;21(19):6617. doi: 10.3390/s21196617.

Abstract

This paper introduces a new device for gait rehabilitation, the gait propulsion trainer (GPT). It consists of two main components (a stationary device and a wearable system) that work together to apply periodic stance-phase resistance as the user walks overground. The stationary device provides the resistance forces via a cable that tethers the user's pelvis to a magnetic-particle brake. The wearable system detects gait events via foot switches to control the timing of the resistance forces. A hardware verification test confirmed that the GPT functions as intended. We conducted a pilot study in which one healthy adult and one stroke survivor walked with the GPT with increasing resistance levels. As hypothesized, the periodic stance-phase resistance caused the healthy participant to walk asymmetrically, with greatly reduced propulsion impulse symmetry; as GPT resistance increased, the walking speed also decreased, and the propulsion impulse appeared to increase for both legs. In contrast, the stroke participant responded to GPT resistance by walking faster and more symmetrically in terms of both propulsion impulse and step length. Thus, this paper shows promising results of short-term training with the GPT, and more studies will follow to explore its long-term effects on hemiparetic gait.

摘要

本文介绍了一种新的步态康复设备,即步态推进训练器(GPT)。它由两个主要部分(一个固定装置和一个可穿戴系统)组成,共同作用以在用户在地面上行走时施加周期性的站立相阻力。固定装置通过将用户的骨盆系到磁粉制动器的电缆来提供阻力。可穿戴系统通过脚踏开关检测步态事件以控制阻力的时机。硬件验证测试证实 GPT 按预期运行。我们进行了一项初步研究,其中一名健康成年人和一名中风幸存者在增加阻力的情况下使用 GPT 行走。正如假设的那样,周期性的站立相阻力使健康参与者以不对称的方式行走,推进冲量的对称性大大降低;随着 GPT 阻力的增加,行走速度也降低,两条腿的推进冲量似乎都增加了。相比之下,中风参与者通过更快地行走并在推进冲量和步长方面更对称地响应 GPT 阻力。因此,本文展示了使用 GPT 进行短期训练的有希望的结果,后续将进行更多研究以探索其对偏瘫步态的长期影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/628a/8512803/803698220e69/sensors-21-06617-g001.jpg

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