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首页> 外文期刊>Journal of Electrocardiology: An International Publication for the Study of the Electrical Activities of the Heart >Effect of resistive barrier location on the relationship between T-wave alternans and cellular repolarization alternans: a 1-D modeling study.
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Effect of resistive barrier location on the relationship between T-wave alternans and cellular repolarization alternans: a 1-D modeling study.

机译:电阻屏障位置对T波交替蛋白和细胞复极化交替蛋白之间关系的影响:一维建模研究。

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摘要

Structural inhomogeneities in cardiac tissue have been associated with increased cellular repolarization alternans in animal experiments and increased T-wave alternans (TWA) in clinical studies. However, the effect of structural inhomogeneities on the relationship between cellular alternans and TWA has not been thoroughly investigated. We created 1-dimensional multicellular fiber models with and without a resistive barrier in various fiber regions and paced each model to induce cellular alternans. The models demonstrate that a resistive barrier in one fiber region substantially alters cellular repolarization alternans throughout the fiber. A midmyocardial or subepicardial barrier increase both TWA amplitude and maximum cellular alternans magnitude, relative to a fiber without a barrier. In addition, a direct relationship exists between TWA amplitude and maximum cellular alternans magnitude, which was highly dependent on barrier location. These results suggest that the position of a structural inhomogeneity within the myocardium may have substantial effects on dynamic repolarization instability and arrhythmogenicity.
机译:在动物实验中,心脏组织的结构不均匀性与增加的细胞复极化交替素有关,在临床研究中与增加的T波交替素(TWA)相关。但是,尚未彻底研究结构不均匀性对细胞交替素与TWA之间关系的影响。我们创建了一维多细胞纤维模型,该模型在各个纤维区域中具有和不具有电阻性屏障,并对每个模型进行步调以诱导细胞交替素。这些模型表明,一根纤维区域中的电阻性屏障会实质上改变整个纤维的细胞复极化交替形式。相对于没有屏障的纤维,心肌中膜或心外膜屏障会同时增加TWA幅度和最大细胞交替幅度。此外,TWA振幅和最大细胞交替量之间存在直接关系,这与障碍物的位置高度相关。这些结果表明,心肌内结构不均匀的位置可能对动态复极不稳定性和心律不齐产生重大影响。

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