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Impact of the Transmural Dimension of Infarction Scar on the Dynamics of Spiral Waves in Realistic Models of the Human Heart's Left Ventricle

机译:在人心脏左心室逼真的模型中,梗塞疤痕的透壁尺寸对螺旋波动力学的影响

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Three-dimensional spiral waves (vortices or scroll waves (SWs)) of electrical excitation in the myocardium can induce cardiac arrhythmia. The time-dependent dynamics of an SW determines scenario and type of arrhythmia development. It is known that the structural and functional heterogeneity of myocardial tissue is one of the major factors affecting SW drift, especially if the heterogeneity increases significantly due to tissue remodeling after myocardial infarction (MI). In this work, we investigated SW dynamics in anatomically realistic models of the left ventricle (LV) of the human heart, depending on LV geometry and on the transmural dimension of the MI scar in the LV wall. We built two population models of LV geometry based on echocardiographic LV images: a model of normal LV geometry and a model of pathological LV geometry. In the absence of the MI scar, the SWs were stable independently of the model geometry. In the LV models with MI scars, the dynamics of SWs depended on the LV geometry and transmurality of MI scar. In all cases, the SW drifted toward MI zone. New waves then appeared, which led to three effects: the annihilation of spiral waves, LV fibrillation, the anchoring of spiral waves around the scar area.
机译:心肌中电刺激的三维螺旋波(旋涡或涡旋波(SWs))可引起心律不齐。 SW的时间依赖性动力学决定了心律不齐发展的情况和类型。众所周知,心肌组织的结构和功能异质性是影响SW漂移的主要因素之一,特别是如果异质性由于心肌梗死(MI)后的组织重塑而显着增加时。在这项工作中,我们根据左心室的几何形状和左心室壁MI瘢痕的透壁尺寸,在人心脏左心室(LV)的解剖学模型中研究了SW动力学。我们基于超声心动图左心室图像建立了两个左心室几何模型:正常左心室几何模型和病理性左心室几何模型。在没有MI疤痕的情况下,SW稳定,与模型几何形状无关。在具有MI疤痕的LV模型中,SW的动力学取决于LV几何形状和MI疤痕的透壁性。在所有情况下,西南偏南。然后出现新的波浪,这产生了三种效应:螺旋波的ni灭,LV纤颤,螺旋波在疤痕区域周围的锚固。

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