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ODoST: Automatic Hardware Acceleration for Biomedical Model Integration.

, , and . ACM Trans. Reconfigurable Technol. Syst., 9 (4): 27:1-27:24 (2016)

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ODoST: Automatic Hardware Acceleration for Biomedical Model Integration., , and . ACM Trans. Reconfigurable Technol. Syst., 9 (4): 27:1-27:24 (2016)A finite-element approach to the direct computation of relative cardiovascular pressure from time-resolved MR velocity data., , , , , , , , , and . Medical Image Anal., 16 (5): 1029-1037 (2012)The computational performance of a high-order coupled FEM/BEM procedure in electropotential problems., , and . IEEE Trans. Biomed. Eng., 48 (11): 1238-1250 (2001)Effect of Global Cardiac Ischemia on Human Ventricular Fibrillation: Insights from a Multi-scale Mechanistic Model of the Human Heart., , , , , , , and . PLoS Comput. Biol., (2014)FieldML., , , , , and . Encyclopedia of Computational Neuroscience, Springer, (2014)Performance optimisation strategies for automatically generated FPGA accelerators for biomedical models., , , and . Concurr. Comput. Pract. Exp., 28 (5): 1480-1506 (2016)FieldML, a proposed open standard for the Physiome project for mathematical model representation., , , , , , , , and . Medical Biol. Eng. Comput., 51 (11): 1191-1207 (2013)Hardware acceleration of biomedical models with OpenCMISS and CellML., , and . FPT, page 370-373. IEEE, (2013)