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Atrial Rotor Modulation by Localized Dofetilide Application: An In Silico Study

机译:通过局部化的DoFetilide应用中的心房转子调节:在硅研究中

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The rotor ablation has gained favor in recent years to treat chronic atrial fibrillation (CAF). However, it may cause complications in patients and the results remain suboptimal. Besides, antiarrhythmic drugs for the management of AF are not sufficiently effective and can cause significant cardiac and extracardiac side effects. To reduce the risk and increase the effectiveness, a rotor modulation via the localized release of dofetilide is proposed through an in silico study. A computational model of two-dimensional atrial tissue was implemented using human cell model under CAF conditions. Dofetilide was modeled blocking the ionic currents I_(Kr) and I_(KACh) using Hill's equation. A CAF episode, sustained by a rotor, was simulated. Different concentrations of dofetilide were applied in specific distributions based on the rotor tip location, detected by phase map analysis. Non-localized application of dofetilide resulted in the benefit of CAF progression. In contrast, localized dofetilide liberation terminated the CAF episode. These results could have therapeutic implications in novel treatments of CAF.
机译:近年来,转子烧蚀已经有利于治疗慢性心房颤动(CAF)。然而,它可能导致患者的并发症,结果仍然是次优。此外,用于管理AF的抗心律失常药物并不充分有效,可引起显着的心肌和肢体副作用。为了降低风险并提高效果,通过在硅研究中提出通过局部释放的局部释放转子调节。在CAF条件下使用人细胞模型实施二维心房组织的计算模型。使用Hill的方程,模拟嵌入离子电流I_(KR)和I_(KACH)的模拟。模拟了由转子持续的CAF剧集。基于通过相位映射分析检测的转子尖端位置,在特定分布中施加不同浓度的二象。非局部化施用二氟丙酯导致CAF进展的益处。相比之下,局部的多样性溶解终止了CAF发作。这些结果可能对CAF的新疗法进行治疗意义。

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