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Modulation of conduction velocity by nonmyocytes in the low coupling regime
Vincent Jacquemet1, Craig S Henriquez
1Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA. vincent.jacquemet@a3.epfl.ch
Abstract:
This paper explores the conditions under which nonmyocytes, when electrically coupled to myocytes, act as a passive load during the depolarization phase. Using theoretical arguments and numerical simulations in a tissue incorporating fibroblasts, the passive load approximation is shown to be accurate at low coupling conductances (< 2 nS). In this case, the effect on conduction velocity can be expressed as a function of the elevation in resting potential and the coupling only.
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