Yang Che-Chang, Hsu Yeh-Liang
Department of Mechanical Engineering, Yuan Ze University, Chung-Li, Taiwan, ROC.
Telemed J E Health. 2009 Jan;15(1):62-72. doi: 10.1089/tmj.2008.0060.
Characteristics of physical activity are indicative of one's mobility level, latent chronic diseases, and aging process. Current research has been oriented to provide quantitative assessment of physical activity with ambulatory monitoring approaches. This study presents the design of a portable microprocessor-based accelerometry measuring device to implement real-time physical activity identification. An algorithm was developed to process real-time tri-axial acceleration signals produced by human movement to identify targeted still postures, postural transitions, and dynamic movements. Fall detection was also featured in this algorithm to meet the increasing needs of elderly care in free-living environments. High identification accuracy was obtained in performance evaluation. This device is technically viable for telemonitoring and real-time identification of physical activity, while providing sufficient information to evaluate a person's activity of daily living and her/his status of physical mobility. Limitations regarding real-time processing and implementation of the system for telemonitoring in the home environment were also observed.
身体活动的特征表明了一个人的活动能力水平、潜在的慢性疾病和衰老过程。目前的研究一直致力于通过动态监测方法对身体活动进行定量评估。本研究介绍了一种基于便携式微处理器的加速度测量设备的设计,以实现对身体活动的实时识别。开发了一种算法来处理人体运动产生的实时三轴加速度信号,以识别目标静止姿势、姿势转换和动态运动。该算法还具备跌倒检测功能,以满足在自由生活环境中对老年人护理日益增长的需求。在性能评估中获得了较高的识别准确率。该设备在技术上可行,可用于远程监测和身体活动的实时识别,同时提供足够的信息来评估一个人的日常生活活动及其身体活动状态。研究还观察到了该系统在家庭环境中进行远程监测的实时处理和实施方面的局限性。