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Ventricular fibrillation mechanism and global fibrillatory organization are determined by gap junction coupling and fibrosis pattern

机译:室面式原纤化机制和全球性纤维化组织由间隙结耦合和纤维化模式决定

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Aims Conflicting data exist supporting differing mechanisms for sustaining ventricular fibrillation (VF), ranging from disorganized multiple-wavelet activation to organized rotational activities (RAs). Abnormal gap junction (GJ) coupling and fibrosis are important in initiation and maintenance of VF. We investigated whether differing ventricular fibrosis patterns and the degree of GJ coupling affected the underlying VF mechanism.
机译:目的存在相互矛盾的数据,支持维持心室颤动(VF)的不同机制,从无序的多小波激活到有组织的旋转活动(RAs)。异常缝隙连接(GJ)耦合和纤维化在心室颤动的发生和维持中起重要作用。我们研究了不同的心室纤维化模式和GJ耦合程度是否影响潜在的心室颤动机制。

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