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Atrial fibrillation detection using photoplethysmographic signal: the effect of the observation window

机译:使用光体积描记器信号检测房颤:观察窗的作用

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A correct and early diagnosis of cardiac arrhythmias could improve patients’ quality of life. The aim of this study is to classify the cardiac rhythm (atrial fibrillation, AF, or normal sinus rhythm NSR) from the photoplethysmographic (PPG) signal and assess the effect of the observation window length. Simulated signals are generated with a PPG simulator previously proposed. The different window lengths taken into account are 20, 30, 40, 50, 100, 150, 200, 250 and 300 beats. After systolic peak detection algorithm, 10 features are computed on the inter-systolic interval series, assessing variability and irregularity of the series. Then, feature selection was performed (using the sequential forward floating search algorithm) which identified two variability parameters (Mean and rMSSD) as the best selection. Finally, the classification by linear support vector machine was performed. Using only two features, accuracy was very high for all the analyzed observation window lengths, going from 0.913±0.055 for length equal to 20 to 0.995±0.011 for length equal to 300 beats.Clinical relevance These preliminary results show that short PPG signals (20 beats) can be used to correctly detect AF.
机译:对心律不齐进行正确的早期诊断可以改善患者的生活质量。这项研究的目的是根据光电容积描记(PPG)信号对心律(心房颤动,AF或正常窦性心律NSR)进行分类,并评估观察窗长度的影响。用先前提出的PPG模拟器产生模拟信号。考虑的不同窗口长度是20、30、40、50、100、150、200、250和300拍。经过收缩峰值检测算法后,对收缩间隔间隔序列计算10个特征,评估该序列的变异性和不规则性。然后,执行特征选择(使用顺序前向浮动搜索算法),该特征选择两个可变性参数(均值和rMSSD)作为最佳选择。最后,通过线性支持向量机进行分类。仅使用两个功能,所有分析观察窗长度的准确性都非常高,长度等于20时从0.913±0.055变为等于300次搏动时为0.995±0.011。临床相关性这些初步结果表明,PPG信号短(20节拍)可用于正确检测AF。

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