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Heritability of ECG Biomarkers in the Netherlands Twin Registry Measured from Holter ECGs

机译:从动态心电图测量荷兰双注册表中心电图生物标志物的遗传力

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>Introduction: The resting ECG is the most commonly used tool to assess cardiac electrophysiology. Previous studies have estimated heritability of ECG parameters based on these snapshots of the cardiac electrical activity. In this study we set out to determine whether analysis of heart rate specific data from Holter ECGs allows more complete assessment of the heritability of ECG parameters.>Methods and Results: Holter ECGs were recorded from 221 twin pairs and analyzed using a multi-parameter beat binning approach. Heart rate dependent estimates of heritability for QRS duration, QT interval, Tpeak–Tend and Theight were calculated using structural equation modeling. QRS duration is largely determined by environmental factors whereas repolarization is primarily genetically determined. Heritability estimates of both QT interval and Theight were significantly higher when measured from Holter compared to resting ECGs and the heritability estimate of each was heart rate dependent. Analysis of the genetic contribution to correlation between repolarization parameters demonstrated that covariance of individual ECG parameters at different heart rates overlap but at each specific heart rate there was relatively little overlap in the genetic determinants of the different repolarization parameters.>Conclusions: Here we present the first study of heritability of repolarization parameters measured from Holter ECGs. Our data demonstrate that higher heritability can be estimated from the Holter than the resting ECG and reveals rate dependence in the genetic—environmental determinants of the ECG that has not previously been tractable. Future applications include deeper dissection of the ECG of participants with inherited cardiac electrical disease.
机译:>简介:静息心电图是评估心脏电生理的最常用工具。先前的研究基于这些心脏电活动的快照估计了ECG参数的遗传性。在这项研究中,我们着手确定是否可以通过对Holter ECG进行的心率特定数据分析来更完整地评估ECG参数的遗传性。>方法和结果:从221对双胞胎中记录了Holter ECG并进行了分析使用多参数节拍合并方法。使用结构方程模型计算QRS持续时间,QT间隔,Tpeak–Tend和Theight的心率依赖性遗传力估计值。 QRS持续时间主要由环境因素决定,而复极化主要由遗传决定。当从Holter进行测量时,与静息ECG相比,QT间期和Theight的遗传力估计值均明显更高,并且每种遗传力估计值均与心率有关。对重新极化参数之间相关性的遗传贡献分析表明,不同心率的单个ECG参数的协方差重叠,但在每个特定心率下,不同重新极化参数的遗传决定因素的重叠相对较少。>结论:在这里,我们对用Holter ECG测量的复极化参数的遗传力进行了首次研究。我们的数据表明,可以通过动态心电图估算出比静息ECG更高的遗传力,并揭示了心电图的遗传-环境决定因素中的速率依赖性,这在以前是很难解决的。未来的应用包括对患有遗传性心脏电疾病的参与者的心电图进行更深入的解剖。

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