John Jeremy Rice
According to our database1,
John Jeremy Rice
authored at least 19 papers
between 2004 and 2020.
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Bibliography
2020
IEEE Access, 2020
2019
Proceedings of the 41st Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2019
2018
Decomposition of complex movements into primitives for Parkinson's disease assessment.
IBM J. Res. Dev., 2018
2017
Estimating the probabilities of rare arrhythmic events in multiscale computational models of cardiac cells and tissue.
PLoS Comput. Biol., 2017
Sensitivity Analysis of the QT and JTpeak Intervals from a High-resolution Human Left-ventricular Wedge Model.
Proceedings of the Computing in Cardiology, 2017
2015
Understanding the limits of animal models as predictors of human biology: lessons learned from the sbv IMPROVER Species Translation Challenge.
Bioinform., 2015
A crowd-sourcing approach for the construction of species-specific cell signaling networks.
Bioinform., 2015
T-wave Morphology Depends on Transmural Heterogeneity in a High- Resolution Human Left- Ventricular Wedge Model.
Proceedings of the Computing in Cardiology, 2015
Proceedings of the Computing in Cardiology, 2015
2013
Strengths and limitations of microarray-based phenotype prediction: lessons learned from the IMPROVER Diagnostic Signature Challenge.
Bioinform., 2013
2012
Industrial methodology for process verification in research (IMPROVER): toward systems biology verification.
Bioinform., 2012
Toward real-time modeling of human heart ventricles at cellular resolution: simulation of drug-induced arrhythmias.
Proceedings of the SC Conference on High Performance Computing Networking, 2012
2011
Performance of Hybrid Programming Models for Multiscale Cardiac Simulations: Preparing for Petascale Computation.
IEEE Trans. Biomed. Eng., 2011
Petascale computation performance of lightweight multiscale cardiac models using hybrid programming models.
Proceedings of the 33rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2011
2008
Spatially-Compressed Cardiac Myofilament Models Generate Hysteresis that Is Not Found in Real Muscle.
Proceedings of the Biocomputing 2008, 2008
2006
A spatially detailed myofilament model as a basis for large-scale biological simulations.
IBM J. Res. Dev., 2006
2005
Bioinform., 2005
2004
Genes@Work: an efficient algorithm for pattern discovery and multivariate feature selection in gene expression data.
Bioinform., 2004