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Characterization of Parkinsonian Hand Tremor and Validation of a High-Order Tremor Estimator

机译:帕金森氏手震的表征和高阶震颤估计器的验证

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摘要

Recent progress in wearable technology has made wearable tremor suppression devices (WTSDs) for Parkinson’s patients a potentially viable alternative solution for tremor management. So far, in contrast to wrist and elbow tremor, finger tremors have not been studied in depth despite the huge impact that they have on a patient’s daily life. In addition, more evidence has been found showing that the performance of current tremor estimators may be limited by their model order due to the multiple harmonics present in tremor. The aim of this paper is to characterize finger and wrist tremor in both the time and frequency domains, and to propose a high-order tremor estimation algorithm. Tremor magnitudes are reported in the forms of linear acceleration, angular velocity, and angular displacement. The activation of forearm flexor and extensor muscles is also investigated. The frequency analysis shows that Parkinsonian tremors produce oscillations of the hand with pronounced harmonics. At last, a high-order weighted-frequency Fourier linear combiner (WFLC)-based Kalman filter is proposed. The percentage estimation accuracy achieved from the proposed estimator is 96.3 ± 1.7%, showing average improvements of 28.5% and 48.9% over its lower-order counterpart and the WFLC. The proposed estimator shows promise for use in a WTSD.
机译:可穿戴技术的最新进展已使帕金森氏病患者的可穿戴震颤抑制设备(WTSD)成为震颤管理的潜在可行替代解决方案。到目前为止,与手腕和肘部震颤相反,尽管手指震颤会对患者的日常生活产生巨大影响,但尚未深入研究。此外,已发现更多证据表明,由于震颤中存在多个谐波,当前震颤估计量的性能可能会受到其模型阶数的限制。本文的目的是在时域和频域上表征手指和腕部的震颤,并提出一种高阶震颤估计算法。震颤幅度以线性加速度,角速度和角位移的形式报告。还研究了前臂屈肌和伸肌的激活。频率分析表明,帕金森氏震颤会产生具有明显谐波的手部振动。最后,提出了一种基于高阶加权频率傅立叶线性组合器(WFLC)的卡尔曼滤波器。拟议的估算器实现的百分比估算精度为96.3±1.7%,与低阶估算器和WFLC相比,平均改进了28.5%和48.9%。提议的估算器显示出有望在WTSD中使用。

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