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A simplified dynamic model for the p53-Mdm2 feedback loop., , , и . ICCA, стр. 264-267. IEEE, (2013)Transmission of Dynamic Biochemical Signals in a Variable Cross-section Microfluidic Channel*., , , , и . ICCA, стр. 48-51. IEEE, (2018)A hysteresis model for calcium-mediated ciliary beat frequency in airway epithelial cells., , и . ICCA, стр. 750-755. IEEE, (2010)Hemodynamics of ventricular-arterial coupling under enhanced external counterpulsation: An optimized dual-source lumped parameter model., , , , , , , , и . Comput. Methods Programs Biomed., (2024)Dynamic modeling for Ca2+-mediated NFAT Activation in stem cells induced by ATP., , , , и . ICCA, стр. 724-729. IEEE, (2014)Effects of the arterial radius and the center-line velocity on the conductivity and electrical impedance of pulsatile flow in the human common carotid artery., , , и . Medical Biol. Eng. Comput., 57 (2): 441-451 (2019)An On-Chip Microfluidic System for Reproducing Blood Pressure and Wall Shear Stress Waveforms in Human Common Carotid Arteries., , , , и . ICCA, стр. 1529-1534. IEEE, (2020)An in Vitro Circulatory Device for Studying Blood Flow Electrical Impedance in Human Common Carotid Arteries., , , и . ICCA, стр. 1518-1522. IEEE, (2020)Anomalous Confined Diffusion of Nanoparticles in Polymer Solutions., , и . ICCA, стр. 1523-1528. IEEE, (2020)GL-PINN algorithm for inferring velocity and pressure fields from sparse concentration field*., , , , и . ICCA, стр. 326-331. IEEE, (2022)