首页> 外文期刊>American Journal of Physiology >Simulation and prediction of functional block in the presence of structural and ionic heterogeneity.
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Simulation and prediction of functional block in the presence of structural and ionic heterogeneity.

机译:在结构和离子异质性存在的情况下功能块的仿真和预测。

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摘要

Inhomogeneities in myocardial structure and action potential duration (APD) lead to dispersion of APD throughout the heart. APD gradients in the range of 20-125 ms/cm have been reported to produce functional block. In this study, a multicellular fiber model was used to examine the effect of structural and ionic inhomogeneities on the likelihood of premature stimuli to produce functional block. With the use of both the Fenton-Karma and Luo-Rudy phase II membrane models, functional block is found to occur in tissue with a maximum gradient <45 ms/cm and depends on the spatial extent. In general, the narrower the extent the larger the magnitude needed for block. A simple relationship for predicting block is presented that only requires information about the conduction velocity (CV) restitution properties of the tissue and the APD gradients. Analysis reveals that the effects of a steep CV restitution slope may be beneficial in overcoming intrinsic cellular heterogeneity for a single premature beat.
机译:心肌结构和动作电位持续时间(APD)的不均匀性会导致APD在整个心脏内分散。据报道,APD梯度在20-125 ms / cm的范围内可产生功能性阻滞。在这项研究中,使用多细胞纤维模型检查结构和离子不均匀性对过早刺激产生功能性阻断的可能性的影响。通过同时使用Fenton-Karma和Luo-Rudy II期膜模型,发现功能障碍发生在组织中,最大梯度<45 ms / cm且取决于空间范围。通常,范围越窄,阻塞所需的幅度就越大。提出了用于预测块的简单关系,该关系仅需要有关组织的传导速度(CV)恢复特性和APD梯度的信息。分析表明,陡峭的CV恢复斜率的影响可能有助于克服单个早搏的固有细胞异质性。

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