1. Hodgkin A L, Huxley A F. A quantitative description of membrane current and its application to conduction and excitation in nerve [J]. The Journal of Physiology, 1952, 117 (4): 500-544.
2. Noble D. Cardiac action and pacemaker potentials based on the Hodgkin-Huxley equations.[J]. Nature, 1960, 188 (4749): 495-497.
3. Crampin E J , Halstead M , Hunter P , et al. Computational physiology and the physiome project [J]. Experimental Physiology, 2004, 89.
4. Smaill B, Hunter P. Structure and function of the diastolic heart: material properties of passive myocardium [M]//Theory of heart. Springer New York, 1991: 1-29.
5. Alday E A P, Colman M A, Langley P, Zhang H. Novel non-invasive algorithm to identify the origins of re-entry and ectopic foci in the atria from 64-lead ECGs: A computational study [J]. PLoS Computational Biolog. 2017, 13 (3): e1005270.
6. Boyett M R, Li J, Inada S, et al. Imaging the heart: computer three-dimensional anatomical models of the heart [J]. Journal of Electrocardiology, 2005.
7. Nordsletten D, Niederer S, Nash M P, et al. Coupling multi-physics models to cardiac mechanics [J]. Progress in Biophysics & Molecular Biology, 2011, 104 (1): 77-88.
8. Colman M A, Aslanidi O V, Kharche S, et al. Pro゛rrhythmogenic effects of atrial fibrillation﹊nduced electrical remodelling: insights from the threeヾimensional virtual human atria [J]. The Journal of physiology, 2013, 591 (17): 4249-4272.
9. Wang W, Xu L, Cavazos J, Huang HH, Kay M. Fast acceleration of 2D wave propagation simulations using modern computational accelerators. PLoS One. 2014;9 (1):e86484.
10. Kaboudian A, Cherry EM, Fenton FH. Real-time interactie simulations of large-scale systems on personal computers and cell phones: Toward patient-specific heart modeling and other applications. Sci Adv. 2019;5 (3):eaav6019.
11. Garcia-Molla VM, Liberos A, Vidal A, Guillem MS, Millet J, Gonzalez A, et al. Adaptive step ODE algorithms for the 3D simulation of electric heart activity with graphics processing units. Comput Biol Med. 2014;44:15-26.
12.Sachetto Oliveira R, Martins Rocha B, Burgarelli D, Meira W, Jr., Constantinides C, Weber Dos Santos R. Performance evaluation of GPU parallelization, space-time adaptive algorithms, and their combination for simulating cardiac electrophysiology. Int J Numer Method Biomed Eng. 2018;34 (2).