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Effect of Nonuniform Interstitial Space Properties on Impulse Propagation: A Discrete Multidomain Model

机译:非均匀间隙空间特性对脉冲传播的影响:离散多域模型

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摘要

This work presents a discrete multidomain model that describes ionic diffusion pathways between connected cells and within the interstitium. Unlike classical models of impulse propagation, the intracellular and extracellular spaces are represented as spatially distinct volumes with dynamic/static boundary conditions that electrically couple neighboring spaces. The model is used to investigate the impact of nonuniform geometrical and electrical properties of the interstitial space surrounding a fiber on conduction velocity and action potential waveshape. Comparison of the multidomain and bidomain models shows that although the conduction velocity is relatively insensitive to cases that confine 50% of the membrane surface by narrow extracellular depths (≥2 nm), the action potential morphology varies greatly around the fiber perimeter, resulting in changes in the magnitude of extracellular potential in the tight spaces. Results also show that when the conductivity of the tight spaces is sufficiently reduced, the membrane adjacent to the tight space is eliminated from participating in propagation, and the conduction velocity increases. Owing to its ability to describe the spatial discontinuity of cardiac microstructure, the discrete multidomain can be used to determine appropriate tissue properties for use in classical macroscopic models such as the bidomain during normal and pathophysiological conditions.
机译:这项工作提出了一个离散的多域模型,该模型描述了连接的细胞之间和间质内的离子扩散途径。与经典的脉冲传播模型不同,细胞内和细胞外空间被表示为具有动态/静态边界条件的空间不同体积,该边界条件将相邻空间电耦合。该模型用于研究纤维周围间隙空间的不均匀几何和电学性质对传导速度和动作电位波形的影响。多域和双域模型的比较表明,尽管传导速度对狭窄的细胞外深度(≥2 nm)限制膜表面50%的情况相对不敏感,但动作电位形态在纤维周长周围变化很大,从而导致变化紧密空间中细胞外电位的大小结果还表明,当紧密空间的电导率充分降低时,与紧密空间相邻的膜就不会参与传播,并且传导速度增加。由于其能够描述心脏微结构的空间不连续性,因此离散多域可用于确定适当的组织特性,以用于经典的宏观模型,例如正常和病理生理情况下的双域。

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