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A Novel Non-Parametric Approach Of Tremor Detection Using Wrist-Based Photoplethysmograph

机译:使用腕基光电仪描图的震颤检测的一种新型非参数方法

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Pervasive detection and quantification of tremor for Parkinson’s Disease (PD) patients, using Commercial Off-the-self (COTS) wrist-wearable device is an important problem to investigate. Parkinsonian tremor is one of the earliest and major surrogate biomarker which indicates the progress or status of the disease for patients under treatment using drugs or deep brain stimulation (DBS) therapy. However, it is a challenging issue as tremor occurs at the minor extremities like fingers in some cases such as pill-rolling symptom, the effect of the same on a wrist-worn motion sensor system is not significant enough to be captured. In this paper, we explore the possibility of using the wrist-based photoplethysmography (PPG) as a novel sensor modality in detecting tremor at rest. Our preliminary results gathered from healthy cohorts performing simulations of Parkinsonian tremor elucidates the merit of the proposed method. Also, since PPG acquisition is power-hungry, we have leveraged a conceptual method of compressive sensing to reduce the overall power requirement of the application.
机译:帕金森病(PD)患者震颤的普遍检测和量化,采用商业离心(婴儿床)腕带式设备是调查的重要问题。 PARKINSONIAN TEMROR是最早和主要的代理生物标志物之一,表明使用药物或深脑刺激(DBS)治疗治疗患者的疾病的进展或状态。然而,由于在诸如药丸滚动症状等手指中的次末末端发生震颤,这是一个具有挑战性的问题,如丸卷症状,在腕带磨损运动传感器系统上的效果不足以被捕获。在本文中,我们探讨了使用基于腕部的光电精测描绘(PPG)作为一种在休息时检测颤抖的新型传感器模式。我们从健康队列聚集的初步结果表演帕金森震颤的模拟阐明了所提出的方法的优点。此外,由于PPG采集是令人发电的,我们利用了一种概念性的压缩感测方法来降低应用的整体功率要求。

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