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Two aspects of cardiac alternans — Difference and correlation between them

机译:心脏交替素的两个方面-它们之间的差异和相关性

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Cardiac alternans are observed as action potential duration (APD) alternans and/or Ca2+ transient (CaT) alternans. This study aims to investigate the mechanism underlying the genesis of the two types of alternans, their difference and correlation. Two human ventricle models were used for generating cardiac alternans. APD restitution and CaT-SR content curves were constructed to investigate possible different mechanisms. Results showed that alternans produced by the ORd model sustained with significant CaT but no obvious APD alternans, whereas alternans generated by the TP model manifested as obvious APD but insignificant CaT alternans. CaT alternans in the ORd model was correlated with a much steeper CaT-SR content curve, while the APD alternans in the TP model was correlated with a steeper APD restitution curve. Furthermore, ICaL clamp simulations showed the magnitude of ICaL was crucial for generating the CaT alternans as a large ICaL could change its alternating status. Our results suggest that each of the APD or the CaT alternans has its own primary mechanism, and sustained CaT alternans is not necessarily related to APD alternans.
机译:观察到心脏交替素为动作电位持续时间(APD)交替素和/或Ca2 +瞬变(CaT)交替素。这项研究的目的是调查潜在的机制的两种类型的交替,它们的区别和相关性。两个人的心室模型用于生成心脏交替素。构建了APD恢复和CaT-SR含量曲线,以研究可能的不同机制。结果表明,ORd模型产生的交替蛋白具有显着的CaT活性,但没有明显的APD交替蛋白,而TP模型产生的交替蛋白表现为明显的APD但不显着的CaT交替蛋白。 ORd模型中的CaT交替蛋白与更陡峭的CaT-SR含量曲线相关,而TP模型中的APD交替蛋白与更陡峭的APD恢复曲线相关。此外,ICaL钳位模拟显示,由于大的ICaL可以改变其交替状态,因此ICaL的大小对于生成CaT交替链至关重要。我们的结果表明,每个APD或CaT交替蛋白都有其自身的主要机制,持续的CaT交替蛋白不一定与APD交替蛋白相关。

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