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Smartwatch PPG Peak Detection Method for Sinus Rhythm and Cardiac Arrhythmia

机译:用于窦性心律和心律不齐的Smartwatch PPG峰检测方法

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The aim of our work herein was to design a photoplethysmographic (PPG) peak detection algorithm which automatically detect and discriminate various cardiac rhythms—normal sinus rhythms (NSR), premature atrial contraction (PAC), premature ventricle contraction (PVC), and atrial fibrillation (AF)—for PPG signals collected on smartwatch. Compared with peak detection algorithm designed for NSR, the novelty is that our proposed peak detection algorithm can accurately estimate heart rates (HR) among various arrhythmias, which enhances the accuracy of AF screening. Our peak detection method is composed of a sequential series of algorithms that are combined to discriminate various arrhythmias, as described above. Moreover, a novel Poincaré plot scheme is used to discriminate AF with Rapid Ventricular Response (RVR) from normal basal heart rate AF. Moreover, the method is also able to differentiate PAC/PVC from NSR and AF. Our results show that the proposed peak detection algorithm provides significantly lower average beat-to-beat estimation error (> 40% lower) and mean heart rate estimation error (> 50% lower) when compared to a traditional peak detection algorithm that is known to be accurate for NSR. Our new approach allows more accurate HR estimation as it can account for various arrhythmias which previous PPG peak detection algorithms were designed solely for NSR.
机译:我们在此工作的目的是设计一种光电容积描记(PPG)峰值检测算法,该算法可自动检测和区分各种心律-正常窦性心律(NSR),房性早搏(PAC),心室早搏(PVC)和房颤(AF)-用于在智能手表上收集的PPG信号。与为NSR设计的峰值检测算法相比,新颖之处在于我们提出的峰值检测算法可以准确估计各种心律不齐之间的心率(HR),从而提高了AF筛查的准确性。如上所述,我们的峰值检测方法由一系列相继的算法组成,这些算法结合起来可以区分各种心律不齐。此外,使用新颖的庞加莱绘图方案将具有快速心室反应(RVR)的房颤与正常基础心率房颤区分开。此外,该方法还能够区分PAC / PVC和NSR和AF。我们的结果表明,与传统的峰值检测算法相比,提出的峰值检测算法与传统的峰值检测算法相比,可显着降低平均逐次搏动估计误差(降低40%以上)和平均心率估计误差(降低50%以上)。对NSR准确无误。我们的新方法可以更准确地估计心率,因为它可以解决各种心律不齐,而以前的PPG峰值检测算法是专门为NSR设计的。

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