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Bulletin of Mathematical Biology|May 3, 2011
Empirical study of an adaptive multiscale model for simulating cardiac conductionPaul E Hand, Boyce E GriffithProceedings of the National Academy of Sciences of the United States of America|July 31, 2010
Adaptive multiscale model for simulating cardiac conductionPaul E Hand, Boyce E GriffithBulletin of Mathematical Biology|May 5, 2009
Deriving macroscopic myocardial conductivities by homogenization of microscopic modelsPaul E Hand, Boyce E Griffith, Charles S PeskinInternational Journal for Numerical Methods in Biomedical Engineering|April 2, 2015
Immersed boundary model of aortic heart valve dynamics with physiological driving and loading conditionsBoyce E GriffithJournal of Computational Physics|January 15, 2026
Composite B-spline regularized delta functions for the immersed boundary method: Divergence-free interpolation and gradient-preserving force spreadingCole Gruninger, Boyce E GriffithChaos (Woodbury, N.Y.)|October 2, 2017
Incorporating inductances in tissue-scale models of cardiac electrophysiologySimone Rossi, Boyce E GriffithInternational Journal for Numerical Methods in Biomedical Engineering|April 21, 2017
Hybrid finite difference/finite element immersed boundary methodBoyce E Griffith, Xiaoyu LuoCommunications on Pure and Applied Mathematics|October 14, 2022
ElectrophysiologyBoyce E Griffith, Charles S PeskinAnnual Review of Fluid Mechanics|October 5, 2020
Immersed Methods for Fluid-Structure InteractionBoyce E Griffith, Neelesh A PatankarJournal of Computational Physics|March 18, 2022
On the Lagrangian-Eulerian Coupling in the Immersed Finite Element/Difference MethodJae H Lee, Boyce E GriffithPageof 7