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Distinguishing possible mechanisms for auxin-mediated developmental control in Arabidopsis: Models with two Aux/IAA and ARF proteins, and two target gene-sets (2011)
Journal Article
Bridge, L. J., Mirams, G. R., Kieffer, M. L., King, J. R., & Kepinski, S. (2012). Distinguishing possible mechanisms for auxin-mediated developmental control in Arabidopsis: Models with two Aux/IAA and ARF proteins, and two target gene-sets. Mathematical Biosciences, 235(1), 32-44. https://doi.org/10.1016/j.mbs.2011.10.005

New models of gene transcriptional responses to auxin signalling in Arabidopsis are presented. This work extends a previous model of auxin signalling to include networks of gene-sets which may control developmental responses along auxin gradients. Ke... Read More about Distinguishing possible mechanisms for auxin-mediated developmental control in Arabidopsis: Models with two Aux/IAA and ARF proteins, and two target gene-sets.

A local sensitivity analysis method for developing biological models with identifiable parameters: Application to cardiac ionic channel modelling (2011)
Journal Article
Sher, A. A., Wang, K., Wathen, A., Maybank, P. J., Mirams, G. R., Abramson, D., …Gavaghan, D. J. (2013). A local sensitivity analysis method for developing biological models with identifiable parameters: Application to cardiac ionic channel modelling. Future Generation Computer Systems, 29(2), 591-598. https://doi.org/10.1016/j.future.2011.09.006

Computational cardiac models provide important insights into the underlying mechanisms of heart function. Parameter estimation in these models is an ongoing challenge with many existing models being overparameterised. Sensitivity analysis presents a... Read More about A local sensitivity analysis method for developing biological models with identifiable parameters: Application to cardiac ionic channel modelling.

High-throughput functional curation of cellular electrophysiology models (2011)
Journal Article
Cooper, J., Mirams, G. R., & Niederer, S. A. (2011). High-throughput functional curation of cellular electrophysiology models. Progress in Biophysics and Molecular Biology, 107(1), 11-20. https://doi.org/10.1016/j.pbiomolbio.2011.06.003

Effective reuse of a quantitative mathematical model requires not just access to curated versions of the model equations, but also an understanding of the functional capabilities of the model, and the advisable scope of its application. To enable thi... Read More about High-throughput functional curation of cellular electrophysiology models.

Minimum Information about a Cardiac Electrophysiology Experiment (MICEE): Standardised reporting for model reproducibility, interoperability, and data sharing (2011)
Journal Article
Quinn, T. A., Granite, S., Allessie, M. A., Antzelevitch, C., Bollensdorff, C., Bub, G., …Kohl, P. (2011). Minimum Information about a Cardiac Electrophysiology Experiment (MICEE): Standardised reporting for model reproducibility, interoperability, and data sharing. Progress in Biophysics and Molecular Biology, 107(1), 4-10. https://doi.org/10.1016/j.pbiomolbio.2011.07.001

Cardiac experimental electrophysiology is in need of a well-defined Minimum Information Standard for recording, annotating, and reporting experimental data. As a step towards establishing this, we present a draft standard, called Minimum Information... Read More about Minimum Information about a Cardiac Electrophysiology Experiment (MICEE): Standardised reporting for model reproducibility, interoperability, and data sharing.

Novel approaches to assessing cardiac safety - Proceedings of a workshop: Regulators, industry and academia discuss the future of in silico cardiac modelling to predict the proarrhythmic safety of drugs (2011)
Journal Article
Fletcher, K., Shah, R. R., Thomas, A., Tobin, F., Rodriguez, B., Mirams, G. R., …Noble, D. (2011). Novel approaches to assessing cardiac safety - Proceedings of a workshop: Regulators, industry and academia discuss the future of in silico cardiac modelling to predict the proarrhythmic safety of drugs. Drug Safety, 34(5), 439-443. https://doi.org/10.2165/11591950-000000000-00000

The significant effect of the choice of ionic current integration method in cardiac electro-physiological simulations (2011)
Journal Article
Pathmanathan, P., Mirams, G. R., Southern, J., & Whiteley, J. P. (2011). The significant effect of the choice of ionic current integration method in cardiac electro-physiological simulations. International Journal for Numerical Methods in Biomedical Engineering, 27(11), 1751-1770. https://doi.org/10.1002/cnm.1438

Finite element (FE) cardiac electro-physiology solvers commonly have ionic current determined at mesh nodes but required element interiors. We consider two interpolation approaches: (i) ionic current interpolation (ICI), where nodal ionic currents ar... Read More about The significant effect of the choice of ionic current integration method in cardiac electro-physiological simulations.

Simulation of multiple ion channel block provides improved prediction of compounds’ clinical torsadogenic risk (2011)
Journal Article
Mirams, G. R., Cui, Y., Sher, A., Fink, M., Cooper, J., Heath, B. M., …Noble, D. (2011). Simulation of multiple ion channel block provides improved prediction of compounds’ clinical torsadogenic risk. Cardiovascular Research, 91(1), 53-61. https://doi.org/10.1093/cvr/cvr044

© 2011 The Author. Aims The level of inhibition of the human Ether - go-go-related gene (hERG) channel is one of the earliest preclinical markers used to predict the risk of a compound causing Torsade-de-Pointes (TdP) arrhythmias. While avoiding the... Read More about Simulation of multiple ion channel block provides improved prediction of compounds’ clinical torsadogenic risk.