Mathematical models of biofluid flows in compliant ducts
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Mohamed Gad-el-Hak | Natalya Kizilova | Mahmoud Hamadiche | M. Gad-el-Hak | M. Hamadiche | N. Kizilova
[1] A. Hazel,et al. Fluid-Structure Interaction in Internal Physiological Flows , 2011 .
[2] M. Gad-el-Hak,et al. Suppression of absolute instabilities in the flow inside a compliant tube , 2009 .
[3] T. Pedley,et al. High-Reynolds-number steady flow in a collapsible channel , 2006, Journal of Fluid Mechanics.
[4] X. Luob,et al. A fluid – beam model for flow in a collapsible channel , 2003 .
[5] J. Grotberg,et al. BIOFLUID MECHANICS IN FLEXIBLE TUBES , 2001 .
[6] J. Womersley,et al. An Elastic Tube Theory of Pulse Transmission and Oscillatory Flow in Mammalian Arteries , 1957 .
[7] Timothy J. Pedley,et al. Multiple solutions and flow limitation in collapsible channel flows , 2000, Journal of Fluid Mechanics.
[8] Experiment-based numerical simulation of unsteady viscous flow in stenotic collapsible tubes , 2001 .
[9] D. J. Griffiths. Urethral elasticity and micturition hydrodynamics in females , 2006, Medical and biological engineering.
[10] A. D. Garrad,et al. The hydrodynamic stability of flow over Kramer-type compliant surfaces. Part 2. Flow-induced surface instabilities , 1986, Journal of Fluid Mechanics.
[11] Timothy J. Pedley,et al. The cascade structure of linear instability in collapsible channel flows , 2008, Journal of Fluid Mechanics.
[12] Timothy J. Pedley,et al. A numerical simulation of steady flow in a 2-D collapsible channel , 1995 .
[13] J. H. Olsen,et al. Large-amplitude unsteady flow in liquid-filled elastic tubes , 1967, Journal of Fluid Mechanics.
[14] O. Jensen. Instabilities of flow in a collapsed tube , 1990, Journal of Fluid Mechanics.
[15] M. Gad-el-Hak,et al. TEMPORAL STABILITY OF FLOW THROUGH VISCOELASTIC TUBES , 2002 .
[16] M. Hamadiche. Flux d'énergie d'un écoulement de Poiseuille vers la paroi d'un tube élastique, a. Modes d'instabilité axisymétrique , 1999 .
[17] M. Gad-el-Hak,et al. Spatiotemporal Stability of Flow through Collapsible, Viscoelastic Tubes , 2004 .
[18] Christopher D. Bertram,et al. Experimental Studies of Collapsible Tubes , 2003 .
[19] T. J. Pedley,et al. Flows in Deformable Tubes and Channels Theoretical Models and Biological Applications , 2002 .
[20] R. W. Brower,et al. Experimental evidence on the mechanism for the instability of flow in collapsible vessels , 1975, Medical and biological engineering.
[22] M. Heil,et al. Sloshing and slamming oscillations in a collapsible channel flow , 2010, Journal of Fluid Mechanics.
[23] Christopher D. Bertram,et al. Flow-induced oscillation of collapsed tubes and airway structures , 2008, Respiratory Physiology & Neurobiology.
[24] V. Oruç,et al. Theoretical approximations to analyse the onset of self-excited oscillations in flow through collapsible tubes , 2010 .
[25] R. Ogden,et al. Hyperelastic modelling of arterial layers with distributed collagen fibre orientations , 2006, Journal of The Royal Society Interface.
[26] S. A. Regirer,et al. Flow of a viscous liquid in a porous tube with a deformable wall , 1971 .
[27] D. M. McQueen,et al. Note on the oscillations of collapsible tubes , 1978, Medical and Biological Engineering and Computing.
[28] T. J. Pedley,et al. Flow past highly compliant boundaries and in collapsible tubes : Proceedings of the IUTAM Symposium held at the University of Warwick, United Kingdom, 26-30 March, 2001 , 2003 .
[29] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[30] E. Starling,et al. The influence of variations in temperature and blood‐pressure on the performance of the isolated mammalian heart , 1912, The Journal of physiology.
[31] N. Chesler,et al. Mechanical properties of rat middle cerebral arteries with and without myogenic tone. , 2004, Journal of biomechanical engineering.
[32] Y C Fung,et al. Determination of the mechanical properties of the different layers of blood vessels in vivo. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[33] Oliver E. Jensen,et al. Predicting the onset of high-frequency self-excited oscillations in elastic-walled tubes , 2010, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[34] K. Parker,et al. A mathematical model of flow through a collapsible tube--I. Model and steady flow results. , 1989, Journal of biomechanics.
[35] W. Bayliss. On the local reactions of the arterial wall to changes of internal pressure , 1902, The Journal of physiology.
[36] T J Pedley,et al. Blood pressure and flow rate in the giraffe jugular vein. , 1996, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[37] Dalin Tang,et al. Simulating cyclic artery compression using a 3D unsteady model with fluid–structure interactions , 2002 .
[38] R. Vito,et al. Blood vessel constitutive models-1995-2002. , 2003, Annual review of biomedical engineering.
[39] Sarah L. Waters,et al. Transverse flows in rapidly oscillating elastic cylindrical shells , 2006, Journal of Fluid Mechanics.
[40] N. Gavriely,et al. Flutter in flow-limited collapsible tubes: a mechanism for generation of wheezes. , 1989, Journal of applied physiology.
[41] How rapidly oscillating collapsible tubes extract energy from a viscous mean flow , 2008, Journal of Fluid Mechanics.
[42] Oliver E. Jensen,et al. The energetics of flow through a rapidly oscillating tube. Part 1. General theory , 2010, Journal of Fluid Mechanics.
[43] C D Bertram,et al. A mathematical model of unsteady collapsible tube behaviour. , 1982, Journal of Biomechanics.
[44] Charles S. Peskin,et al. Fluid Flow in Collapsible Elastic Tubes: A Three-Dimensional Numerical Model , 2001 .
[45] P. Canham,et al. Measurements from light and polarised light microscopy of human coronary arteries fixed at distending pressure. , 1989, Cardiovascular research.
[46] R. Ogden,et al. Nonlinear axisymmetric deformations of an elastic tube under external pressure , 2010 .
[47] D. J. Griffiths. Hydrodynamics of male micturition—II Measurements of stream parameters and urethral elasticity , 1971, Medical and biological engineering.
[48] Dalin Tang,et al. A numerical simulation of viscous flows in collapsible tubes with stenoses , 2000 .
[49] Timothy J. Pedley,et al. The fluid mechanics of large blood vessels , 1980 .
[50] Yong Zhao,et al. A general method for simulation of fluid flows with moving and compliant boundaries on unstructured grids , 2003 .
[51] X L Yang,et al. Fluid-structure interaction in a pulmonary arterial bifurcation. , 2007, Journal of biomechanics.
[52] J B Grotberg,et al. Flutter in collapsible tubes: a theoretical model of wheezes. , 1989, Journal of applied physiology.
[53] W. Conrad,et al. Pressure--flow relationships in collapsible tubes. , 1969, IEEE transactions on bio-medical engineering.
[54] P. Abbrecht,et al. Digital computer simulation of human systemic arterial pulse wave transmission: a nonlinear model. , 1972, Journal of biomechanics.
[55] Lixi Huang,et al. VISCOUS FLUTTER OF A FINITE ELASTIC MEMBRANE IN POISEUILLE FLOW , 2001 .
[56] Timothy J. Pedley,et al. Modelling Flow and Oscillations in Collapsible Tubes , 1998 .
[57] D. J. Griffiths. Hydrodynamics of male micturition—I Theory of steady flow through elastic-walled tubes , 1971, Medical and biological engineering.
[58] Gerhard A Holzapfel,et al. Comparison of a multi-layer structural model for arterial walls with a fung-type model, and issues of material stability. , 2004, Journal of biomechanical engineering.
[59] Timothy J. Pedley,et al. Mathematical modelling of arterial fluid dynamics , 2003 .
[60] A. Shapiro. Steady Flow in Collapsible Tubes , 1977 .
[61] Christopher D. Bertram,et al. The onset of flow-rate limitation and flow-induced oscillations in collapsible tubes , 2006 .
[62] Instabilités absolue et convective de l'écoulement de Poiseuille en conduite viscoélastique , 2002 .
[63] Y. Chen,et al. Flow through a collapsible tube. Experimental analysis and mathematical model. , 1969, Biophysical journal.
[64] Timothy J. Pedley,et al. The effects of wall inertia on flow in a two-dimensional collapsible channel , 1998, Journal of Fluid Mechanics.
[65] T J Pedley,et al. Longitudinal tension variation in collapsible channels: a new mechanism for the breakdown of steady flow. , 1992, Journal of biomechanical engineering.
[66] A. Marzoa,et al. Three-dimensional collapse and steady flow in thick-walled flexible tubes , 2005 .
[67] M. Gad-el-Hak,et al. Flow in Compliant Tubes: Control and Stabilization by Multilayered Coatings , 2009 .
[68] Timothy J. Pedley,et al. A separated-flow model for collapsible-tube oscillations , 1985, Journal of Fluid Mechanics.
[69] M. Heil,et al. High-frequency self-excited oscillations in a collapsible-channel flow , 2003, Journal of Fluid Mechanics.
[70] Oliver E. Jensen,et al. The energetics of flow through a rapidly oscillating tube. Part 2. Application to an elliptical tube , 2010, Journal of Fluid Mechanics.
[71] Christopher D. Bertram,et al. FLOW LIMITATION IN UNIFORM THICK-WALLED COLLAPSIBLE TUBES☆ , 1999 .
[72] Marc Bonis,et al. Etude de quelques proprits de l'coulement dans une conduite collabable , 1978 .
[73] Oliver E. Jensen,et al. The existence of steady flow in a collapsed tube , 1989, Journal of Fluid Mechanics.
[74] J. Hartman. Structural changes within the media of coronary arteries related to intimal thickening. , 1977, The American journal of pathology.
[75] J. Boyle,et al. Self-excited oscillations in three-dimensional collapsible tubes: simulating their onset and large-amplitude oscillations , 2010, Journal of Fluid Mechanics.
[76] V. Kumaran. Hydrodynamic Stability of Flow Through Compliant Channels and Tubes , 2003 .