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首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Modelling tissue electrophysiology with multiple cell types: applications of the extended bidomain framework
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Modelling tissue electrophysiology with multiple cell types: applications of the extended bidomain framework

机译:用多种细胞类型建模组织电生理学:扩展的双域框架的应用

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摘要

The bidomain framework has been extensively used to model tissue electrophysiology in a variety of applications. One limitation of the bidomain model is that it describes the activity of only one cell type interacting with the extracellular space. If more than one cell type contributes to the tissue electrophysiology, then the bidomain model is not sufficient. Recently, evidence has suggested that this is the case for at least two important applications: cardiac and gastrointestinal tissue electrophysiology. In the heart, fibroblasts ubiquitously interact with myocytes and are believed to play an important role in the organ electrophysiology. Along the GI tract, interstitial cells of Cajal (ICC) generate electrical waves that are passed on to surrounding smooth muscle cells (SMC), which are interconnected with the ICC and with each other. Because of the contribution of more than one cell type to the overall organ electrophysiology, investigators in different fields have independently proposed similar extensions of the bidomain model to incorporate multiple cell types and tested it on simplified geometries. In this paper, we provide a general derivation of such an extended bidomain framework applicable to any tissue and provide a generic and efficient implementation applicable to any geometry. Proof-of-concept results of tissue electrophysiology on realistic 3D organ geometries using the extended bidomain framework are presented for the heart and the stomach.
机译:双域框架已被广泛用于在各种应用中对组织电生理进行建模。双结构域模型的局限性在于它仅描述了一种与细胞外空间相互作用的细胞类型的活性。如果一种以上的细胞类型有助于组织电生理,那么双域模型是不够的。最近,有证据表明,至少两个重要应用就是这种情况:心脏和胃肠组织电生理学。在心脏中,成纤维细胞普遍与肌细胞相互作用,并被认为在器官电生理中起重要作用。沿着胃肠道,Cajal的间质细胞(ICC)产生电波,该电波传递到周围的平滑肌细胞(SMC),后者与ICC相互连接。由于一种以上细胞类型对整个器官电生理的贡献,不同领域的研究人员独立提出了双域模型的相似扩展,以合并多种细胞类型并在简化的几何结构上对其进行了测试。在本文中,我们提供了适用于任何组织的这种扩展双域框架的一般派生,并提供了适用于任何几何形状的通用有效实现。针对心脏和胃部,提出了使用扩展的双域框架在逼真的3D器官几何结构上进行组织电生理学的概念验证结果。

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