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Accuracy of estimates of cardiac action potential duration from extracellular waveforms simulated by the Bidomain model

机译:根据Bidomain模型模拟的细胞外波形估算心脏动作电位持续时间的准确性

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The goal of the present work is to provide an extensive quantitative analysis of the accuracy of activation - recovery intervals (ARIs) derived from unipolar electrograms (EGs) and hybrid monophasic action potentials (HMAPs) under normal and ischemic conditions. ARIs are compared with the gold standard action potential durations (APDs) based on the transmembrane action potential (TAP). This study is based on large scale parallel 3D numerical simulations of the action potential propagation modeled by the anisotropic Bidomain system coupled with the Luo-Rudy I membrane model. The results show a very good overall accuracy of ARI estimates of APD, with quite low mean discrepancies and standard deviations. The correlation coefficients between ARI and APDs are not as good as the ones of the associated repolarization time (RT) markers, but are always greater than 0.90 except for some homogeneous and ischemic slabs. While highly reliable repolarization sequences can be derived from extracellular RT markers, ARI spatial distributions are not always locally accurate and well correlated estimates of the associated APD spatial distributions. In particular, EG-based ARIs can fail near the borders of the ischemic region (e.g. in presence of linear ST ramp or in absence of a T wave), and in such cases HMAP-based ARIs may offer reliable alternatives for estimating APDs.
机译:本工作的目的是对正常和缺血条件下源自单极电描记图(EG)和混合单相动作电位(HMAP)的激活-恢复间隔(ARI)的准确性进行广泛的定量分析。将ARI与基于跨膜动作电位(TAP)的金标准动作电位持续时间(APD)进行比较。这项研究基于各向异性Bidomain系统与Luo-Rudy I膜模型耦合建模的动作电位传播的大规模并行3D数值模拟。结果显示,APD的ARI估计值的总体准确性非常好,平均差异和标准偏差都非常低。 ARI和APD之间的相关系数不及相关的复极时间(RT)标记,但除某些均质和缺血性平板外,其相关系数始终大于0.90。尽管可以从细胞外RT标记中获得高度可靠的复极化序列,但ARI空间分布并不总是局部准确的,并且关联的APD空间分布的估计值相关性很好。尤其是,基于EG的ARI可能会在缺血区域的边界附近失效(例如,存在线性ST斜波或没有T波),在这种情况下,基于HMAP的ARI可能为估计APD提供可靠的替代方法。

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