个人移动设备的姿势控制对人体关节运动的影响--个人移动设备新警报系统的原型

Tanaka Toshiaki, Miura Takahiro
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引用次数: 0

摘要

目的:本研究旨在开发一种个人移动(PM)系统原型,该系统具有人机同步运动测量和感官反馈功能,可作为注意力提醒装置,以确保安全进行适合老年人日常生活条件的持续、逐步康复训练。研究方法在受试者和 PM 设备上安装惯性测量单元传感器,测量两种姿势运动(从坐到仰卧和从仰卧到站立)期间的关节运动。此外,在关节运动角度达到某个设定阈值时,会有振动刺激和语音提示。我们分析了受试者和 PM 设备在测量躯干、髋关节、膝关节和踝关节角度时每个关节运动的偏差。结果显示从坐姿到仰卧姿势时,躯干角度偏差较大。从仰卧到站立姿势时,髋关节角度偏差较大。作为一种警报系统,在达到设定阈值后,受试者可在 0.3 秒的延迟时间内收到振动和语音指导。结论如果用关节运动的角度变化值来表示,人与电动轮椅之间的错位超过几十度。我们认为,对于用于康复或日常生活支持的 PM 设备来说,一个能够持续感知并提醒用户用户和 PM 设备是否同步的系统是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of postural control by personal mobility on human joint movements-prototype of a new alert system for personal mobility devices
Purpose: This study aimed to develop a prototype Personal Mobility (PM) system with human-robot synchronous motion measurement and sensory feedback as an attention reminder to ensure the safe performance of sustained, step-by-step rehabilitation tailored to the daily living conditions of elderly individuals. Methods: Five healthy adults were fitted with a simulation tool to experience the elderly, and inertial measurement unit sensors were placed on the subjects and the PM device to measure joint movements during two postural movements (sitting to supine and supine to standing). In addition, vibration stimulation and voice guidance were implemented as alerts at a certain set threshold of the joint motion angle. We analyzed the deviation of each joint motion between the subject and the PM device regarding the angle measurements of the trunk, hip, knee, and ankle joints. Results: Trunk angle misalignment was high in the sitting-to-supine position. Hip angle misalignment was greater in the supine to standing position. As an alert system, vibration and voice guidance could be presented to the subject with a 0.3-second delay after the set threshold was reached. Conclusion: The misalignment between a human and a motorized wheelchair in contact with the human is more than several tens of degrees when expressed as the angle change value of the joint motion. We believe that a system that can constantly sense and alert the user regarding whether the user and the PM device are in sync is necessary for PM devices being used in rehabilitation or as daily life support.
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