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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Computational prediction of the effect of D172N KCNJ2 mutation on ventricular pumping during sinus rhythm and reentry
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Computational prediction of the effect of D172N KCNJ2 mutation on ventricular pumping during sinus rhythm and reentry

机译:D172N KCNJ2突变对窦性心律和再入性室外泵送效应的计算预测

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The understanding of cardiac arrhythmia under genetic mutations has grown in interest among researchers. Previous studies focused on the effect of the D172N mutation on electrophysiological behavior. In this study, we analyzed not only the electrophysiological activity but also the mechanical responses during normal sinus rhythm and reentry conditions by using computational modeling. We simulated four different ventricular conditions including normal case of ten Tusscher model 2006 (TTM), wild-type (WT), heterozygous (WT/D172N), and homozygous D172N mutation. The 2D simulation result (in wire-shaped mesh) showed the WT/D172N and D172N mutation shortened the action potential duration by 14%, and by 23%, respectively. The 3D electrophysiological simulation results showed that the electrical wavelength between TTM and WT conditions were identical. Under sinus rhythm condition, the WT/D172N and D172N reduced the pumping efficacy with a lower left ventricle (LV) and aortic pressures, stroke volume, ejection fraction, and cardiac output. Under the reentry conditions, the WT condition has a small probability of reentry. However, in the event of reentry, WT has shown the most severe condition. Furthermore, we found that the position of the rotor or the scroll wave substantially influenced the ventricular pumping efficacy during arrhythmia. If the rotor stays in the LV, it will cause very poor pumping performance.
机译:在遗传突变下对心律失常的理解已经涉及研究人员的兴趣。以前的研究重点是D172N突变对电生理行为的影响。在这项研究中,我们不仅通过使用计算建模来分析了正常窦性心律和再入性条件期间的机械反应。我们模拟了四种不同的心室条件,包括十个毒素模型2006(TTM),野生型(WT),杂合(WT / D172N)和纯合D172N突变的正常情况。 2D仿真结果(在线形网格中)显示WT / D172N和D172N突变分别缩短动作潜在持续时间14%,分别为23%。 3D电生理仿真结果表明,TTM和WT条件之间的电波长是相同的。在鼻窦条件下,WT / D172N和D172N以较低的左心室(LV)和主动脉压力,行程体积,喷射分数和心输出减少了泵浦功效。在再入条件下,WT条件具有很小的再入概率。然而,在再入的情况下,WT表明了最严重的条件。此外,我们发现转子或涡旋波的位置基本上影响了心律失常期间的心室泵浦功效。如果转子停留在LV中,它会导致泵送性能非常差。

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