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Control entropy: A complexity measure for nonstationary signals
A lumped model for blood flow and pressure in the systemic arteries based on an approximate velocity profile function
1. | Department of Biomedical Engineering, Eindhoven University of Technology, University Hospital Maastricht, PO Box 5800, Maastricht, Netherlands, Netherlands |
2. | Department of Biomedical Engineering, Eindhoven University of Technology, PO Box 513, Eindhoven, Netherlands |
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Panagiotes A. Voltairas, Antonios Charalambopoulos, Dimitrios I. Fotiadis, Lambros K. Michalis. A quasi-lumped model for the peripheral distortion of the arterial pulse. Mathematical Biosciences & Engineering, 2012, 9 (1) : 175-198. doi: 10.3934/mbe.2012.9.175 |
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Harry L. Johnson, David Russell. Transfer function approach to output specification in certain linear distributed parameter systems. Conference Publications, 2003, 2003 (Special) : 449-458. doi: 10.3934/proc.2003.2003.449 |
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Scott R. Pope, Laura M. Ellwein, Cheryl L. Zapata, Vera Novak, C. T. Kelley, Mette S. Olufsen. Estimation and identification of parameters in a lumped cerebrovascular model. Mathematical Biosciences & Engineering, 2009, 6 (1) : 93-115. doi: 10.3934/mbe.2009.6.93 |
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Ahmad A. Moreb. Spline technique for modeling roadway profile to minimize earthwork cost. Journal of Industrial and Management Optimization, 2009, 5 (2) : 275-283. doi: 10.3934/jimo.2009.5.275 |
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Kimmo Karhunen, Aku Seppänen, Jari P. Kaipio. Adaptive meshing approach to identification of cracks with electrical impedance tomography. Inverse Problems and Imaging, 2014, 8 (1) : 127-148. doi: 10.3934/ipi.2014.8.127 |
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Hans Weinberger. The approximate controllability of a model for mutant selection. Evolution Equations and Control Theory, 2013, 2 (4) : 741-747. doi: 10.3934/eect.2013.2.741 |
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Azmy S. Ackleh, Jeremy J. Thibodeaux. Parameter estimation in a structured erythropoiesis model. Mathematical Biosciences & Engineering, 2008, 5 (4) : 601-616. doi: 10.3934/mbe.2008.5.601 |
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Pavel Krejčí, Giselle A. Monteiro. Inverse parameter-dependent Preisach operator in thermo-piezoelectricity modeling. Discrete and Continuous Dynamical Systems - B, 2019, 24 (7) : 3051-3066. doi: 10.3934/dcdsb.2018299 |
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