Export 14 results:
Search results for biblio_year:2017
Filters: 1 is biblio_year:2019 and Author is Andrew J. McCammon [Reset Search]
Filters: 1 is biblio_year:2019 and Author is Andrew J. McCammon [Reset Search]
Predicting the effects of dATP on cardiac contraction using multiscale modeling of the sarcomere." Archives of Biochemistry and Biophysics (2020).
"A Stochastic Multiscale Model of Cardiac Thin Filament Activation Using Brownian-Langevin Dynamics." Biophysical Journal 117, no. 12 (2019): 2255-2272.
"A Markov-State Model for the Regulation of the Sarcoplasmic Reticulum Ca2+ ATPase by Phospholamban In Annual meeting in Biophysical society. Vol. 106. Elsevier, 2014.
Molecular and Subcellular-Scale Modeling of Nucleotide Diffusion in the Cardiac Myofilament Lattice." Biophysical Journal 105 (2013): 2130.
"Finite-Element Estimation of Protein-ligand Association Rates With Post-Encounter Effects: Applications to Calcium Binding in Troponin C and SERCA." Computational Science & Discovery 5 (2012): 014015.
"Modeling Calcium Dynamics in Realistic Rabbit Ventricular Myocytes With Several Transverse Tubules., 2012.
Modeling Calcium Sparks in a Three-Dimensional Reconstruction of a Cardiac Calcium Release Unit., 2012.
Modeling Cardiac Calcium Sparks in a Three-Dimensional Reconstruction of a Calcium Release Unit." The Journal of Physiology 590 (2012): 4403-4422.
Simula.simula.1318.pdf (1.43 MB)
"
Modeling Effects of L-Type Ca2+ Current and Na+-Ca2+ Exchanger on Ca2+ Trigger Flux in Rabbit Myocytes With Realistic T-Tubule Geometries." Frontiers in Physiology 3 (2012): 351.
"Multi-Scale Continuum Modeling of Biological Processes: From Molecular Electro-Diffusion to Sub-Cellular Signaling Transduction." Computational Science & Discovery 5 (2012): 015002.
"Numerical Analysis of Ca2+ Signaling in Rat Ventricular Myocytes With Realistic Transverse-Axial Tubular Geometry and Inhibited Sarcoplasmic Reticulum." PLoS Computational Biology 6 (2010): e1000972.
"Computational Analysis of the Interactions Between the Angiogenesis Inhibitor PD173074 and Fibroblast Growth Factor Receptor 1." Journal of Theoretical and Computational Chemistry 2 (2003): 43-56.
"