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1
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29844454698
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Biofluid Mechanics of the Pulmonary System
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Bertram, C.D.1
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2
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Physiological and Medical Aspects of Flow in Collapsible Tubes
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Shapiro, A.H.1
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3
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0017526543
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Steady Flow in Collapsible Tubes
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Shapiro, A.H.1
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4
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33744525143
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Wave Propagation in Physiological Collapsible Tubes and a Proposal for a Shapiro Number
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Fluid Velocity Greater Than Wavespeed and the Transition From Supercritical to Subcritical Flow in Elastic Tubes
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Elliott, E. A., and Dawson, S. V., 1979, "Fluid Velocity Greater Than Wavespeed and the Transition From Supercritical to Subcritical Flow in Elastic Tubes," Med. Biol. Eng. Comput., 17, pp. 192-198.
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Flows in Deformable Tubes and Channels - Theoretical Models and Biological Applications
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Heil, M.1
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7
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The Effects of Wall Inertia on Flow in a Two-Dimensional Collapsible Channel
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Flutter and Long-Wave Instabilities in Compliant Channels Conveying Developing Flows
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Bertram, C. D., and Butcher, K. S. A., 1992, Possible Sources of Discrepancy Between Sphygmomanometer Cuff Pressure and Blood Pressure Quantified in a Collapsible-Tube Analog, ASME J. Biomech. Eng., 114, pp. 68-77, printer's errata corrected in 114, 201.
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Bertram, C. D., and Butcher, K. S. A., 1992, "Possible Sources of Discrepancy Between Sphygmomanometer Cuff Pressure and Blood Pressure Quantified in a Collapsible-Tube Analog," ASME J. Biomech. Eng., 114, pp. 68-77, printer's errata corrected in 114, 201.
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10
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0036027059
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Numerical Simulation of Steady Flow in a Compliant Tube or Channel With Tapered Wall Thickness
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Shim, E. B., and Kamm, R. D., 2002, "Numerical Simulation of Steady Flow in a Compliant Tube or Channel With Tapered Wall Thickness," J. Fluids Struct., 16(8), pp. 1009-1027.
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Steady Finite-Reynolds-Number Flows in Three-Dimensional Collapsible Tubes
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Transverse Flows in Rapidly Oscillating, Elastic Cylindrical Shells
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15
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Chaotic Oscillations in a Simple Collapsible-Tube Model
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Jensen, O. E., 1992, "Chaotic Oscillations in a Simple Collapsible-Tube Model," ASME J. Biomech. Eng., 114(1), pp. 55-59.
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17
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Laser Doppler Measurements of Velocities Just Downstream of a Collapsible Tube During Flow-Induced Oscillations
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Bertram, C. D., Diaz de Tuesta, G., and Nugent, A. H., 2001, "Laser Doppler Measurements of Velocities Just Downstream of a Collapsible Tube During Flow-Induced Oscillations," ASME J. Biomech. Eng., 123(5), pp. 493-499.
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The Flow Field Downstream of an Oscillating Collapsed Tube
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Bertram, C. D., and Nugent, A. H., 2005, "The Flow Field Downstream of an Oscillating Collapsed Tube," ASME J. Biomech. Eng., 127(1), pp. 39-45.
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The Onset of Flow-Rate Limitation and Flow-Induced Oscillations in Collapsible Tubes
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Bertram, C. D., and Tscherry, J., 2006, "The Onset of Flow-Rate Limitation and Flow-Induced Oscillations in Collapsible Tubes," J. Fluids Struct., 22(8), pp. 1029-1045.
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Ultrasonic Transit-Time System for Arterial Diameter Measurement
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Mapping of Instabilities For Flow Through Collapsed Tubes of Differing Length
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Area and Pressure Profiles for Collapsible Tube Oscillations of Three Types
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How Rapidly Oscillating Collapsible Tubes Extract Energy From a Viscous Mean Flow
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On the Discrimination Between Band-Limited Coherent and Random Apparent Stresses in Transitional Pulsatile Flow
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Lieber, B. B., Giddens, D. P., Kitney, R. I., and Talhami, H., 1989, "On the Discrimination Between Band-Limited Coherent and Random Apparent Stresses in Transitional Pulsatile Flow," ASME J. Biomech. Eng., 111, pp. 42-46.
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Lieber, B.B.1
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