首页> 外文会议>Computers in Cardiology, 2008 >Effects of the intracellular Ca2+ dynamics on restitution properties and stability of reentry in rabbit atrial tissue model
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Effects of the intracellular Ca2+ dynamics on restitution properties and stability of reentry in rabbit atrial tissue model

机译:细胞内Ca2 +动态对兔心房组织模型恢复特性和折返稳定性的影响

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Atrial fibrillation (AF) is commonly associated with rapid excitation of the atria, but mechanisms of its initiation are unknown. Intracellular Ca2+ dynamics has been shown to affect cell restitution properties and, as a result, patterns of rapid reentrant excitation in ventricles at early stages of ventricular fibrillation. We study effects of the intracellular Ca2+ concentration changes on restitution properties and stability of reentry in atrial cell and tissue models. Our simulations show that Ca2+ and action potential alternans caused by such effects are transient, and resultant break-ups of reentrant waves are reversible - but subsequent accumulation of intracellular Ca2+ can lead to self-termination of reentry. Hence, other factors (such as tissue anisotropy) may play more prominent role in break-up of atrial reentry into AF.
机译:心房颤动(AF)通常与心房的快速兴奋有关,但其起始机制尚不清楚。研究表明,细胞内Ca 2 + 动力学会影响细胞的恢复特性,从而影响心室纤颤早期心室中快速折返兴奋的模式。我们研究了细胞内Ca 2 + 浓度变化对心房和组织模型恢复特性和折返稳定性的影响。我们的模拟表明,Ca 2 + 和由这种作用引起的动作电位交替是瞬时的,并且折返波的破坏是可逆的-但随后细胞内Ca 2 + 可能导致重新进入的自我终止。因此,其他因素(例如组织各向异性)可能在使房室折返进入房颤中起更重要的作用。

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