首页> 美国卫生研究院文献>Journal of Medical Engineering >A Hybrid Signal Processing of RR Intervals from QTc Variation Searching Arrhythmia and Improving Heart Rate Variability Assessment in Acute Large Artery Ischemic Stroke
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A Hybrid Signal Processing of RR Intervals from QTc Variation Searching Arrhythmia and Improving Heart Rate Variability Assessment in Acute Large Artery Ischemic Stroke

机译:QTc变异搜索心律失常并改善急性大动脉缺血性卒中心率变异性评估的RR间隔的混合信号处理

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摘要

Sudden death caused by abnormal QTc and atrial fibrillation (AF) has been reported in stroke. Heart rate variability (HRV) is reduced with missing beats of RRI during arrhythmic episode and abnormal QTc variation during acute stroke. In this study, we develop a hybrid signal processing by Pan Tompkins QRS detection and Kalman filter estimator for meaningful missing beats and searching AF with prolonged QTc. We use this hybrid model to investigate RRIs of Lead II ECG in thirty acute stroke patients with long QTc and AF (LQTc-AF) and normal QTc without AF (NQTc-nonAF) and then assess them by HRV. In LQTc-AF Kalman, higher mean heart rate with lower mean RRIs compared to NQTc-nonAF Kalman was characterized. LQTc-AF Kalman showed significant increase in SDNN, HF, SD2, SD2/SD1, and sample entropy. SDNN and HF associated with high RMSSD, pNN50, and SD1 reflect predominant parasympathetic drive for sympathovagal balance in LQTc-AF Kalman. Greater SD2, SD2/SD1, and sample entropy indicate more scatter of Poincaré plot. Compared with conventional Labchart, fractal scaling exponent of α1 (DFA) is higher in LQTc-AF Kalman. Remarkable complexity with parasympathetic drive in LQTc-AF Kalman suggests an influence of missing beats during stroke.
机译:据报道,中风患者因QTc异常和房颤(AF)突然死亡。心律变异性(HRV)随心律失常发作期间缺少RRI搏动和急性卒中期间QTc异常而降低。在这项研究中,我们开发了一种由Pan Tompkins QRS检测和Kalman滤波器估计器组成的混合信号处理,可用于有意义的丢失心跳和搜索QTc延长的AF。我们使用这种混合模型来调查30例长QTc和AF(LQTc-AF)和无AF的正常QTc(NQTc-nonAF)的急性卒中患者的Lead II ECG的RRI,然后通过HRV对其进行评估。在LQTc-AF Kalman中,与NQTc-nonAF Kalman相比,具有较高的平均心率和较低的平均RRI。 LQTc-AF Kalman显示SDNN,HF,SD2,SD2 / SD1和样本熵显着增加。与高RMSSD,pNN50和SD1相关的SDNN和HF反映了LQTc-AF Kalman中交感迷走平衡的主要副交感神经驱动力。 SD2,SD2 / SD1和样本熵越大,表示庞加莱图的散布越多。与常规Labchart相比,LQTc-AF Kalman中α1(DFA)的分形缩放指数更高。 LQTc-AF卡尔曼中副交感神经驱动的异常复杂性表明中风时心跳缺失的影响。

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