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eQuilibrium: A Prototype of a Sensor-Based Balance Training and Monitoring System

机译:均衡:基于传感器的平衡训练和监控系统的原型

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Integrated sensor devices are becoming a valuable tool for monitoring, evaluation, and real-time feedback during various exercises in sports, physical rehabilitation, and injury prevention. In this paper, we present the design and development of an inertial sensor system integrated into a fitness ball called eQuilibrium. The main application of this system would be balance training, analysis, and monitoring. The sensor system is composed of an inertial measurement unit sensor with a microcontroller and a WiFi communication module. The wireless sensor device is sending data to LabView application running on a laptop computer. The gyroscope and accelerometer provide a variety of signals, and we defined and evaluated three possible metrics to match the signals with the actual execution of the exercises. The metrics include i) angle rotation range, ii) mean absolute angular velocity, mean absolute acceleration deviation, and iv) mean absolute acceleration gradient. For the initial evaluation of the system, we specified test protocol and tasks that were executed by test subjects and monitored by a trained tester. There are four tasks in the protocol, and each task was being executed for at least 5 seconds. The first task was a reference task, standing on the feet of both legs. In the remaining tasks, the subject was standing on the tips of the toes (both legs, single leg), with the heels as high as possible off the ground. We conducted initial tests to analyze the operation of the system and obtain the initial measurement results. Our preliminary results indicate that several scalar metrics derived from motion sensor data can be used to evaluate motion intensity in the control of body balance. Rotation angle range, mean absolute rotation speed, mean absolute acceleration standard deviation, and mean absolute acceleration gradient are scalar values and independent of sensor axis orientation. In the future, we plan to perform more test executions and compare the sensor results with subjective self-reports of the test subjects, as well as the physical rehabilitation expert evaluations.
机译:集成传感器设备正在成为监测,评估和实时反馈的有价值的工具,在体育,身体康复和伤害预防中的各种练习中进行监测,评估和实时反馈。在本文中,我们介绍了集成到称为均衡的健身球中的惯性传感器系统的设计和开发。该系统的主要应用将是平衡培训,分析和监控。传感器系统由具有微控制器和WiFi通信模块的惯性测量单元传感器组成。无线传感器设备将数据发送到在便携式计算机上运行的LabVIEW应用程序。陀螺仪和加速度计提供了各种信号,我们定义并评估了三种可能的指标,以将信号与练习的实际执行相匹配。度量包括I)角度旋转范围,ii)平均绝对角速度,平均绝对加速度偏差和IV)平均绝对加速梯度。对于系统的初始评估,我们指定了由测试对象执行的测试协议和任务,并由培训的测试仪监控。协议中有四个任务,每个任务都已执行至少5秒。第一个任务是一个参考任务,站在双腿的脚上。在剩下的任务中,主题站在脚趾(双腿,单腿)的尖端上,鞋跟尽可能高。我们进行了初步测试,以分析系统的运行并获得初始测量结果。我们的初步结果表明,来自运动传感器数据的几个标量度量可用于评估体平衡控制中的运动强度。旋转角度范围,平均绝对旋转速度,平均绝对加速标准偏差,并且平均绝对加速梯度是标量值,并且独立于传感器轴方向。在未来,我们计划执行更多的测试执行,并将传感器结果与测试对象的主观自我报告相比,以及物理康复专家评估。

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