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离散耦合减弱对可兴奋介质中纤维张力的影响。

Effects of reduced discrete coupling on filament tension in excitable media.

机构信息

Physikalisch-Technische Bundesanstalt, Abbestrasse 2-12, 10587 Berlin, Germany.

出版信息

Chaos. 2011 Mar;21(1):013118. doi: 10.1063/1.3551500.

Abstract

Wave propagation in the heart has a discrete nature, because it is mediated by discrete intercellular connections via gap junctions. Although effects of discreteness on wave propagation have been studied for planar traveling waves and vortexes (spiral waves) in two dimensions, its possible effects on vortexes (scroll waves) in three dimensions are not yet explored. In this article, we study the effect of discrete cell coupling on the filament dynamics in a generic model of an excitable medium. We find that reduced cell coupling decreases the line tension of scroll wave filaments and may induce negative filament tension instability in three-dimensional excitable lattices.

摘要

心脏中的波传播具有离散性,因为它是通过间隙连接介导的离散细胞间连接。尽管离散性对平面行波和二维涡旋(螺旋波)传播的影响已经进行了研究,但对三维涡旋(-scroll 波)的可能影响尚未探索。在本文中,我们研究了离散细胞耦合对激发介质通用模型中涡旋丝动力学的影响。我们发现,细胞耦合的减少降低了-scroll 波丝的线张力,并可能在三维激发晶格中引起负丝张力不稳定性。

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