Xue Joel, Gao Weihua, Chen Yao, Han Xiaodong
Diagnostic Cardiology, GE Healthcare, Wauwatosa, WI, USA.
J Electrocardiol. 2008 Nov-Dec;41(6):581-7. doi: 10.1016/j.jelectrocard.2008.07.027. Epub 2008 Sep 19.
Increase of heart repolarization heterogeneity has been linked to severe or even life-threatening arrhythmia like torsades de pointes and other forms of ventricular tachycardia. Although electrocardiography (ECG) still remains as the most convenient and cost-effective method of monitoring electrical activity of the heart, the link between ECG morphology and repolarization heterogeneity is not clear. Previous attempts of using QT interval dispersion from multiple leads to assess the heterogeneity changes were not successful either.
The aim of this study is to use a cell-to-ECG model to study ECG morphology changes while varying transmural heterogeneity. The heterogeneity is simulated by increasing the difference of M cell Ikr block factors from either endocardial or epicardial cells. The model-simulated ECGs were processed and measured. The ECG parameters studied include QT interval dispersion of standard 12-lead ECG, QT peak dispersion, and T-peak to T-end interval (TpTe). An ECG vector magnitude signal based on 12-lead ECG was formed to estimate the global QT interval (vs lead-by-lead QT interval used for calculating QT dispersion) and also the global TpTe (TpTe_VM).
The results based on the model simulation show that the TpTe_VM is highly correlated with transmural dispersion of repolarization (TDR), with a correlation coefficient of 0.97. The correlation coefficients of QT interval dispersion and QT peak dispersion with TDR are 0.44 and 0.80, respectively.
In conclusion, the cell-to-ECG model provides a unique way to study electrophysiology and to link physiologic factors to ECG morphology changes. The simulation results suggest that global TpTe can be a strong indicator of TDR.
心脏复极异质性增加与严重甚至危及生命的心律失常有关,如尖端扭转型室速和其他形式的室性心动过速。尽管心电图(ECG)仍然是监测心脏电活动最方便且最具成本效益的方法,但ECG形态与复极异质性之间的联系尚不清楚。此前尝试使用多导联QT间期离散度来评估异质性变化也未成功。
本研究的目的是使用细胞到心电图模型,在改变跨壁异质性的同时研究ECG形态变化。通过增加M细胞Ikr阻滞因子在心内膜或心外膜细胞两端的差异来模拟异质性。对模型模拟的ECG进行处理和测量。研究的ECG参数包括标准12导联ECG的QT间期离散度、QT峰离散度以及T峰到T终末间期(TpTe)。基于12导联ECG形成一个ECG向量幅度信号,以估计整体QT间期(与用于计算QT离散度的逐导联QT间期相对)以及整体TpTe(TpTe_VM)。
基于模型模拟的结果表明,TpTe_VM与复极跨壁离散度(TDR)高度相关,相关系数为0.97。QT间期离散度和QT峰离散度与TDR的相关系数分别为0.44和0.80。
总之,细胞到心电图模型为研究电生理学以及将生理因素与ECG形态变化联系起来提供了一种独特的方法。模拟结果表明整体TpTe可能是TDR的一个有力指标。