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Scientific Reports|September 30, 2023
The simplified Kirchhoff network model (SKNM): a cell-based reaction-diffusion model of excitable tissueKaroline Horgmo Jæger, Aslak TveitoMathematical Biosciences|June 10, 2008
A condition for setting off ectopic waves in computational models of excitable cellsAslak Tveito, Glenn T LinesScientific Reports|May 7, 2026
Wave propagation enhances extracellular signal strength in small excitable tissuesKaroline Horgmo Jæger, Aslak TveitoFrontiers in Physiology|January 24, 2022
Deriving the Bidomain Model of Cardiac Electrophysiology From a Cell-Based Model; Properties and ComparisonsKaroline Horgmo Jæger, Aslak TveitoMathematical Biosciences|January 13, 2009
A note on a method for determining advantageous properties of an anti-arrhythmic drug based on a mathematical model of cardiac cellsAslak Tveito, Glenn T LinesNPJ Systems Biology and Applications|June 14, 2023
Efficient, cell-based simulations of cardiac electrophysiology; The Kirchhoff Network Model (KNM)Karoline Horgmo Jæger, Aslak TveitoPlos Computational Biology|June 12, 2025
Electrodiffusion dynamics in the cardiomyocyte dyad at nano-scale resolution using the Poisson-Nernst-Planck (PNP) equationsKaroline Horgmo Jæger, Aslak TveitoNPJ Systems Biology and Applications|July 23, 2024
A possible path to persistent re-entry waves at the outlet of the left pulmonary veinKaroline Horgmo Jæger, Aslak TveitoFrontiers in Computational Neuroscience|March 2, 2026
Extracellular stimulation and ephaptic coupling of neurons in a fully coupled finite element-based Extracellular-Membrane-Intracellular (EMI) modelKaroline Horgmo Jæger, Aslak TveitoNPJ Systems Biology and Applications|May 2, 2026
Sometimes extracellular recordings fail for good reasonsKaroline Horgmo Jæger, Aslak TveitoPageof 5