Boyce Griffith

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Primary Position: Assistant Professor of Mathematics
  • Assistant Professor, University of North Carolina, Chapel Hill
  • Assistant Professor, New York University
  • PhD, Mathematics, New York University, 2005
  • BS, Computer Science, Rice University, 2000
  • BA, Mathematics and Computational and Applied Mathematics, Rice University, 2000
  • Fully resolved immersed electrohydrodynamics for particle motion, electrolocation, and self-propulsion Bhalla, Amneet Pal Singh; Bale, Rahul; Griffith, Boyce E.; Patankar, Neelesh A. 2014 JAN 1;256:88-108, Journal of computational physics — id: 667212, year: 2014, vol: 256, page: 88, stat: Journal Article,
  • A unified mathematical framework and an adaptive numerical method for fluid-structure interaction with rigid, deforming, and elastic bodies Bhalla, Amneet Pal Singh; Bale, Rahul; Griffith, Boyce E.; Patankar, Neelesh A. 2013 OCT 1;250:446-476, Journal of computational physics — id: 472162, year: 2013, vol: 250, page: 446, stat: Journal Article,
  • A minimally-resolved immersed boundary model for reaction-diffusion problems Bhalla, Amneet Pal Singh; Griffith, Boyce E.; Patankar, Neelesh A.; Donev, Aleksandar 2013 DEC 7;139(21):-, Journal of chemical physics — id: 751572, year: 2013, vol: 139, page: , stat: Journal Article,
  • A forced damped oscillation framework for undulatory swimming provides new insights into how propulsion arises in active and passive swimming Bhalla, Amneet Pal Singh; Griffith, Boyce E; Patankar, Neelesh A 2013 Jun;9(6):e1003097-e1003097 e1003097, PLoS Computational Biology — id: 455772, year: 2013, vol: 9, page: e1003097, stat: Journal Article,
  • Temporal integrators for fluctuating hydrodynamics Delong, Steven; Griffith, Boyce E.; Vanden-Eijnden,; ERic; Donev, Aleksandar 2013 MAR 11;87(3):-, Physical review. E. Statistical, nonlinear, & soft matter physics — id: 288812, year: 2013, vol: 87, page: , stat: Journal Article,
  • IMMERSED BOUNDARY METHOD FOR VARIABLE VISCOSITY AND VARIABLE DENSITY PROBLEMS USING FAST CONSTANT-COEFFICIENT LINEAR SOLVERS I: NUMERICAL METHOD AND RESULTS Fai, Thomas G. ; Griffith, Boyce E. ; Mori, Yoichiro ; Peskin, Charles S. 2013 ;35(5):B1132-B1161, SIAM journal on scientific computing — id: 657912, year: 2013, vol: 35, page: B1132, stat: Journal Article,
  • Electro-mechanical modelling of in-vivo human left ventricle Gao, H; Griffith, B E; Carrick, D; McComb, C; Berry, C; Luo, X Y 2013 July-August 2013;46(4):e26-e26, Journal of electrocardiology — id: 602652, year: 2013, vol: 46, page: e26, stat: Journal Article,
  • Initial experience with a dynamic imaging-derived immersed boundary model of human left ventricle Gao, Hao; Griffith, BE; Carrick, D; McComb, C; Berry, C; Luo, Xiaoyu 2013 ;7th:11-18, Functional imaging & modeling of the heart — id: 563782, year: 2013, vol: 7th, page: 11, stat: Journal Article,
  • Immersed boundary model of aortic heart valve dynamics with physiological driving and loading conditions (vol 28, pg 317, 2012) Griffith, Boyce E. 2013 MAY;29(5):641-643, International journal for numerical methods in biomedical engineering — id: 369922, year: 2013, vol: 29, page: 641, stat: Journal Article,
  • Antihypertensive strategies in the management of aortic diseaseMaddalo, Scott L.; Ward, Alison; Flamini, Vittoria; Griffith, Boyce; Ursomanno, Patricia; DeAnda, Abe 2013 SEP;217(3 S S):S39-S39, Journal of the American College of Surgeons — id: 612142, year: 2013, vol: 217, page: S39, stat: Journal Article,
  • Structure-based finite strain modelling of the human left ventricle in diastole Wang, H M; Gao, H; Luo, X Y; Berry, C; Griffith, B E; Ogden, R W; Wang, T J 2013 Jan;29(1):83-103, International journal for numerical methods in biomedical engineering — id: 214782, year: 2013, vol: 29, page: 83, stat: Journal Article,
  • Image-based fluid-structure interaction model of the human mitral valve Xingshuang Ma; Hao Gao; Griffith, B.E.; Berry, C.; Xiaoyu Luo 2013 30 Jan.;71:417-425, Computers & fluids — id: 629032, year: 2013, vol: 71, page: 417, stat: Journal Article,
  • Staggered schemes for fluctuating hydrodynamics Balboa Usabiaga, F.; Bell, J.B.; Delgado-Buscalioni, R.; Donev, A.; Fai, T.G.; Griffith, B.E.; Peskin, C.S. 2012 ;10(4):1369-1408, Multiscale modeling & simulation : a SIAM interdisciplinary journal — id: 563772, year: 2012, vol: 10, page: 1369, stat: Journal Article,
  • Immersed boundary model of aortic heart valve dynamics with physiological driving and loading conditions Griffith, Boyce E. 2012 MAR;28(3):317-345, International journal for numerical methods in biomedical engineering — id: 165421, year: 2012, vol: 28, page: 317, stat: Journal Article,
  • On the Volume Conservation of the Immersed Boundary Method Griffith, Boyce E. 2012 AUG;12(2):401-432, Communications in computational physics — id: 167735, year: 2012, vol: 12, page: 401, stat: Journal Article,
  • Simulating an Elastic Ring with Bend and Twist by an Adaptive Generalized Immersed Boundary Method Griffith, Boyce E.; Lim, Sookkyung 2012 AUG;12(2):433-461, Communications in computational physics — id: 167736, year: 2012, vol: 12, page: 433, stat: Journal Article,
  • Effect of bending rigidity in a dynamic model of a polyurethane prosthetic mitral valve Luo, X Y; Griffith, B E; Ma, X S; Yin, M; Wang, T J; Liang, C L; Watton, P N; Bernacca, G M 2012 Jul;11(6):815-827, Biomechanics and modeling in mechanobiology — id: 169707, year: 2012, vol: 11, page: 815, stat: Journal Article,
  • Empirical Study of an Adaptive Multiscale Model for Simulating Cardiac Conduction Hand PE; Griffith BE 2011 Dec;73(12):3071-3089, Bulletin of mathematical biology — id: 134479, year: 2011, vol: 73, page: 3071, stat: Journal Article,
  • Parallel and adaptive simulation of cardiac fluid dynamics Griffith BE; Hornung RD; McQueen DM; Peskin CSAdvanced computational infrastructures for parallel and distributed adaptive applications Hoboken NJ : John Wiley, 2010, — id: 5629, year: 2010, vol: , page: ?, stat: Chapter,
  • Adaptive multiscale model for simulating cardiac conductionHand, Paul E; Griffith, Boyce E 2010 Aug 17;107(33):14603-14608, Proceedings of the National Academy of Sciences of the United States of America — id: 111823, year: 2010, vol: 107, page: 14603, stat: Journal Article,
  • The immersed boundary method for advection-electrodiffusion with implicit timestepping and local mesh refinement Lee P; Griffith BE; Peskin CS 2010 Jul 1;229(13):5208-5227, Journal of computational physics — id: 138319, year: 2010, vol: 229, page: 5208, stat: Journal Article,
  • Simulating the fluid dynamics of natural and prosthetic heart valves using the immersed boundary method Griffith, B.E.; Xiaoyu Luo; McQueen, D.M.; Peskin, C.S. 2009 ;1(1):137-177, International Journal of Applied Mechanics — id: 100699, year: 2009, vol: 1, page: 137, stat: Journal Article,
  • An accurate and efficient method for the incompressible Navier-Stokes equations using the projection method as a preconditioner Griffith, BE 2009 ;228(20):7565-7595, Journal of computational physics — id: 122637, year: 2009, vol: 228, page: 7565, stat: Journal Article,
  • Deriving macroscopic myocardial conductivities by homogenization of microscopic models Hand, Paul E; Griffith, Boyce E; Peskin, Charles S 2009 Oct;71(7):1707-1726, Bulletin of mathematical biology — id: 122633, year: 2009, vol: 71, page: 1707, stat: Journal Article,
  • An adaptive, formally second order accurate version of the immersed boundary method Griffith, BE; Hornung, RD; McQueen, DM; Peskin, CS 2007 ;223(1):10-49, Journal of computational physics — id: 122638, year: 2007, vol: 223, page: 10, stat: Journal Article,
  • On the order of accuracy of the immersed boundary method: Higher order convergence rates for sufficiently smooth problems Griffith, BE; Peskin, CS 2005 ;208(1):75-105, Journal of computational physics — id: 122639, year: 2005, vol: 208, page: 75, stat: Journal Article,
  • Recovering quasi-active properties of dendritic neurons from dual potential recordings Cox, S J; Griffith, B E 2001 Sep-Oct;11(2):95-110, Journal of computational neuroscience — id: 104363, year: 2001, vol: 11, page: 95, stat: Journal Article,
  • A faster Galerkin boundary integral algorithm Gray, LJ; Griffith, BE 1998 ;14(12):1109-1117, Communications in numerical methods in engineering — id: 122636, year: 1998, vol: 14, page: 1109, stat: Journal Article,
  • Computational modeling in medicine and biology
  • Fluid-structure interaction
  • Cardiovascular mechanics
  • Cardiac electrophysiology
  • Adaptive numerical methods
  • High-performance computing