Abstract:We conduct a systematic, direct-numerical-simulation (DNS) study, in mathematical models for ventricular tissue, of the dependence of spiral-and scroll-wave dynamics on , the maximal conductance of the delayed rectifier Potassium current ( ) channel, and the parameter , which determines the magnitude and shape of the current for the L-type calcium-current channel, in both square and anatomically realistic, wholeventricle simulation domains. We study canine and human models. In the former, we use a canine-ventr… Show more
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