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Exposure with the id: severi_fantini_charawi_difrancesco_2012
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These are models actively being developed under platform 1 for the MBIE 12 Labours grant. These will be mixed with CellML, python, Matlab and any other coding language that is required. Where possible, standards agreed by the Computational Modeling in Biology Network (COMBINE) are preferred.
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Kidney epithelial model developed by Leyla Noroozbabaee (l.noroozbabaee@auckland.ac.nz).
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A simplified "0D" version of our 3D Cardiac Electromechanical Model based on the Bestel-Clément-Sorine equations of myocardial tissue, Mooney-Rivlin equations of passive material and Windkessel model for cardiac afterload.
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In this workspace, we have the workflow and configuration files needed to produce the 3D human whole-body scaffold with embedded organs and integrated musculoskeletal and vasculature systems for the SPARC project.
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This model accurately reproduces the results as shown in the original paper, and contains semantically relevant annotations.
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The model is implemented using a Hodgkin-Huxley type formulation. The cell membrane lipid bilayer is represented as a capacitance (Cm), and the ion channels in the membrane are represented as conductance. The change in the transmembrane potential (Vm) over time depends on the sum of the individual i...
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Exposure with the id: 785
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The present computational model reproduces the electrophysiology of human cardiac Purkinje cells. Model design, calibration, optimization, and validation is presented (open access) in: C. Trovato, E. Passini, N. Nagy, et al., Human Purkinje in silico model enables mechanistic investigations int...
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The present computational model reproduces the electrophysiology of human cardiac ventricular cells. Model design, calibration, optimization, and validation is presented (open access) in: Tomek, Jakub, et al. "Development, calibration, and validation of a novel human ventricular myocyte model in h...
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