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Detection of physical activities using a physical activity monitor system for wheelchair users

机译:使用身体活动监测系统为轮椅使用者检测身体活动

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Availability of physical activity monitors for wheelchair users can potentially assist these individuals to track regular physical activity (PA), which in turn could lead to a healthier and more active lifestyle. Therefore, the aim of this study was to develop and validate algorithms for a physical activity monitoring system (PAMS) to detect wheelchair based activities. The PAMS consists of a gyroscope based wheel rotation monitor (G-WRM) and an accelerometer device (wocket) worn on the upper arm or on the wrist. A total of 45 persons with spinal cord injury took part in the study, which was performed in a structured university-based laboratory environment, a semi-structured environment at the National Veterans Wheelchair Games, and in the participants' home environments. Participants performed at least ten PAs, other than resting, taken from a list of PAs. The classification performance for the best classifiers on the testing dataset for PAMS-Arm (G-WRM and wocket on upper arm) and PAMS-Wrist (G-WRM and wocket on wrist) was 89.26% and 88.47%, respectively. The outcomes of this study indicate that multi-modal information from the PAMS can help detect various types of wheelchair-based activities in structured laboratory, semi-structured organizational, and unstructured home environments. (C) 2014 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:为轮椅使用者提供体育锻炼监测器可能会帮助这些人追踪定期的体育锻炼(PA),这反过来又可能导致更健康,更积极的生活方式。因此,本研究的目的是开发和验证用于检测轮椅活动的身体活动监测系统(PAMS)的算法。 PAMS包括一个基于陀螺仪的车轮旋转监控器(G-WRM)和一个戴在上臂或手腕上的加速度计设备(行李箱)。总共45名脊髓损伤患者参加了该研究,该研究是在以大学为基础的结构化实验室环境,在美国国家退伍军人轮椅运动会的半结构化环境以及参与者的家庭环境中进行的。参与者除了休息以外,还执行了至少十次PA,这些PA来自于PA列表。 PAMS-Arm(上臂的G-WRM和wocket)和PAMS-Wrist(G-WRM和手腕的wocket)的测试数据集中最佳分类器的分类性能分别为89.26%和88.47%。这项研究的结果表明,来自PAMS的多模式信息可以帮助检测结构化实验室,半结构化组织和非结构化家庭环境中各种类型的轮椅活动。 (C)2014年IPEM。由Elsevier Ltd.出版。保留所有权利。

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