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Correntropy-Based Pulse Rate Variability Analysis in Children with Sleep Disordered Breathing

机译:睡眠障碍呼吸儿童的基于熵的脉搏频率变异性分析

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摘要

Pulse rate variability (PRV), an alternative measure of heart rate variability (HRV), is altered during obstructive sleep apnea. Correntropy spectral density (CSD) is a novel spectral analysis that includes nonlinear information. We recruited 160 children and recorded SpO 2 and photoplethysmography (PPG), alongside standard polysomnography. PPG signals were divided into 1-min epochs and apnea/hypoapnea (A/H) epochs labeled. CSD was applied to the pulse-to-pulse interval time series (PPIs) and five features extracted: the total spectral power (TP: 0.01–0.6 Hz), the power in the very low frequency band (VLF: 0.01–0.04 Hz), the normalized power in the low and high frequency bands (LFn: 0.04–0.15 Hz, HFn: 0.15–0.6 Hz), and the LF/HF ratio. Nonlinearity was assessed with the surrogate data technique. Multivariate logistic regression models were developed for CSD and power spectral density (PSD) analysis to detect epochs with A/H events. The CSD-based features and model identified epochs with and without A/H events more accurately relative to PSD-based analysis (area under the curve (AUC) 0.72 vs. 0.67) due to the nonlinearity of the data. In conclusion, CSD-based PRV analysis provided enhanced performance in detecting A/H epochs, however, a combination with overnight SpO 2 analysis is suggested for optimal results.
机译:脉搏率变异性(PRV)是心率变异性(HRV)的另一种测量方法,在阻塞性睡眠呼吸暂停期间会改变。熵频谱密度(CSD)是一种新颖的频谱分析,其中包含非线性信息。我们招募了160名儿童,并记录了SpO 2和光电容积描记法(PPG),以及标准的多导睡眠图。 PPG信号分为1分钟和标记为呼吸暂停/低呼吸暂停(A / H)的时间段。将CSD应用于脉冲间隔时间序列(PPI),并提取了五个特征:总频谱功率(TP:0.01–0.6 Hz),非常低频段的功率(VLF:0.01–0.04 Hz) ,低频带和高频带(LFn:0.04-0.15 Hz,HFn:0.15-0.6 Hz)的归一化功率以及LF / HF比。使用替代数据技术评估了非线性。针对CSD和功率谱密度(PSD)分析开发了多元逻辑回归模型,以检测具有A / H事件的时期。相对于基于PSD的分析(基于曲线下的面积(AUC)为0.72对0.67),基于CSD的特征和模型可以更准确地识别具有A / H事件的时期(由于数据的非线性)。总之,基于CSD的PRV分析在检测A / H时期方面提供了增强的性能,但是,建议与通宵SpO 2分析结合使用以获得最佳结果。

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