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Mobile Computing Technologies for Health and Mobility Assessment: Research Design and Results of the Timed Up and Go Test in Older Adults

机译:用于健康和流动性评估的移动计算技术:老年人定时出门测试的研究设计和结果

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摘要

Due to the increasing age of the European population, there is a growing interest in performing research that will aid in the timely and unobtrusive detection of emerging diseases. For such tasks, mobile devices have several sensors, facilitating the acquisition of diverse data. This study focuses on the analysis of the data collected from the mobile devices sensors and a pressure sensor connected to a Bitalino device for the measurement of the Timed-Up and Go test. The data acquisition was performed within different environments from multiple individuals with distinct types of diseases. Then this data was analyzed to estimate the various parameters of the Timed-Up and Go test. Firstly, the pressure sensor is used to extract the reaction and total test time. Secondly, the magnetometer sensors are used to identify the total test time and different parameters related to turning around. Finally, the accelerometer sensor is used to extract the reaction time, total test time, duration of turning around, going time, return time, and many other derived metrics. Our experiments showed that these parameters could be automatically and reliably detected with a mobile device. Moreover, we identified that the time to perform the Timed-Up and Go test increases with age and the presence of diseases related to locomotion.
机译:由于欧洲人口年龄的增长,人们对进行研究的兴趣日益浓厚,这些研究将有助于及时,毫不干扰地发现新兴疾病。对于此类任务,移动设备具有多个传感器,有助于采集各种数据。这项研究的重点是分析从移动设备传感器和连接到Bitalino设备的压力传感器收集的数据,以测量Timed-Up and Go测试。数据采集​​是在具有不同类型疾病的多个人的不同环境中进行的。然后,对这些数据进行分析,以估计“计时并开始”测试的各种参数。首先,使用压力传感器提取反应和总测试时间。其次,磁力计传感器用于识别总测试时间以及与转弯相关的不同参数。最后,加速度传感器用于提取反应时间,总测试时间,转弯持续时间,运行时间,返回时间以及许多其他派生指标。我们的实验表明,可以使用移动设备自动可靠地检测这些参数。此外,我们发现,随着年龄的增长以及与运动有关的疾病的存在,进行定时和围棋测试的时间会增加。

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