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A prototype wireless inertial-sensing device for measuring toe clearance

机译:用于测量脚趾间隙的原型无线惯性传感装置

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Tripping and slipping are serious health concerns for the elderly because they result in life threatening injuries i.e., fractures and high medical costs. Our recent work in detection of tripping gait patterns has demonstrated that minimum toe clearance (MTC) is a sensitive falls risk predictor. MTC measurement has previously been done in gait laboratories and on treadmills which potentially imposes controlled walking conditions. In this paper, we describe a prototype design of a wireless device for monitoring vertical toe clearance. The sensors consists of a tri-axis accelerometer and dual-ads gyroscope connected to Crossbow sensor motes for wireless data transmission. Sensor data are transmitted to a laptop and displayed on a Matlab graphic user interface (GUI). We have performed zero base and treadmill experiments to investigate sensor performance to environmental variations and compared the calculated toe clearance against measurements made by an Optotrak motion system. It was found that device outputs were approximately independent of small ambient temperature variations, had a reliable range of 20m indoors and 50m outdoors and a maximum transmission rate of 20 packets/s. Toe clearance measurements were found to follow the Optotrak measurement trend but could be improved further by dealing with double integration errors and improving data transmission rates.
机译:绊倒和滑倒对老年人来说是严重的健康问题,因为它们导致危及生命伤害,即骨折和高医疗费用。我们最近在跳闸步态模式检测的工作表明,最小脚趾间隙(MTC)是一个敏感的下降风险预测因子。 MTC测量以前已经在步态实验室和跑步机上进行过,这可能会施加控制的行走条件。在本文中,我们描述了一种用于监控垂直脚趾间隙的无线设备的原型设计。传感器由三轴加速度计和双ADS陀螺仪组成,连接到弩传感器电机,用于无线数据传输。传感器数据被传输到膝上型计算机并显示在MATLAB图形用户界面(GUI)上。我们已经进行了零基座和跑步机实验,以研究传感器性能,以对环境变化进行比较计算的脚趾间隙对由OptoTrak运动系统进行的测量结果进行比较。结果发现,设备输出大致独立于小环境温度变化,在室内和50米的可靠范围内,户外50米,最大传输速率为20包/秒。发现脚趾清除测量遵循光盘测量趋势,但通过处理双积分误差并提高数据传输速率,可以进一步提高。

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