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Simulating the effects of growth and fiber dispersion on the electromechanical response of a cardiac ventricular wedge affected from concentric hypertrophy

机译:模拟生长和纤维分散对同心肥大影响的心室楔形机电响应的影响

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In this paper, we analyze the epicardial electromechanical response of an in silico cardiac ventricular wedge under both healthy and concentric hypertrophic conditions. This is achieved by taking into account the growth of the wedge thickness and the fiber dispersion that may follow. The electromechanical response is described in terms of some macroscopic measures, i.e. the action potential duration, the conduction velocity, the contractility and the contraction force. Our results suggest that growth reduces the action potential duration and conduction velocity, whilst it increases the contractility and contraction force, yielding an overall negative effect. In presence of fiber dispersion, the action potential duration and conduction velocity are not affected further, whilst the effect on the contractility and contraction force is enhanced.
机译:在本文中,我们分析了健康和同心肥厚条件下硅质心室楔形的心外膜机电响应。这是通过考虑楔形厚度的增长和随后可能发生的纤维色散来实现的。机电响应是根据一些宏观测量来描述的,即动作电位持续时间,传导速度,收缩性和收缩力。我们的结果表明,生长减少了动作电位的持续时间和传导速度,同时增加了收缩力和收缩力,产生了总体负面影响。在纤维分散的情况下,动作电位的持续时间和传导速度不再受到影响,而对收缩性和收缩力的影响增强。

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