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Robust Step Detection from Different Waist-Worn Sensor Positions: Implications for Clinical Studies

机译:不同腰部磨损传感器位置的强大步骤检测:对临床研究的影响

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Analyzing human gait with inertial sensors provides valuable insights into a wide range of health impairments, including many musculoskeletal and neurological diseases. A representative and reliable assessment of gait requires continuous monitoring over long periods and ideally takes place in the subjects’ habitual environment (real-world). An inconsistent sensor wearing position can affect gait characterization and influence clinical study results, thus clinical study protocols are typically highly proscriptive, instructing all participants to wear the sensor in a uniform manner. This restrictive approach improves data quality but reduces overall adherence. In this work, we analyze the impact of altering the sensor wearing position around the waist on sensor signal and step detection. We demonstrate that an asymmetrically worn sensor leads to additional odd-harmonic frequency components in the frequency spectrum. We propose a robust solution for step detection based on autocorrelation to overcome sensor position variation (sensitivity = 0.99, precision = 0.99). The proposed solution reduces the impact of inconsistent sensor positioning on gait characterization in clinical studies, thus providing more flexibility to protocol implementation and more freedom to participants to wear the sensor in the position most comfortable to them. This work is a first step towards truly position-agnostic gait assessment in clinical settings.
机译:用惯性传感器分析人体步态,提供了对各种健康障碍的有价值的见解,包括许多肌肉骨骼和神经疾病。对步态的代表性和可靠评估需要持续监测长期,理想地发生在受试者习惯性环境(现实世界)中。不一致的传感器佩戴位置可以影响步态表征并影响临床研究结果,因此临床研究方案通常是高度缩写的,指示所有参与者以均匀的方式佩戴传感器。这种限制性方法提高了数据质量,但降低了整体遵守。在这项工作中,我们分析了在传感器信号和步骤检测上改变腰部周围传感器佩戴位置的影响。我们展示了不对称磨损的传感器导致频谱中的额外奇数谐波频率分量。我们提出了一种基于自相关的步进检测的强大解决方案,以克服传感器位置变化(灵敏度= 0.99,精度= 0.99)。该提出的解决方案降低了在临床研究中对步态表征的不一致传感器定位的影响,从而提供了更灵活的协议实施以及更多与参与者的自由,以便在最舒适的位置佩戴传感器。这项工作是迈出临床环境中真正侵害的位置 - 无关的步态评估的第一步。

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