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Issues
February 1984
ISSN 0148-0731
EISSN 1528-8951
In this Issue
Research Papers
Mechanics of Single Cells
J Biomech Eng. February 1984, 106(1): 1.
doi: https://doi.org/10.1115/1.3138450
Analytical Solutions for Shear Deformation and Flow of Red Cell Membrane
J Biomech Eng. February 1984, 106(1): 2–9.
doi: https://doi.org/10.1115/1.3138452
Topics:
Erythrocytes
,
Flow (Dynamics)
,
Membranes
,
Shear deformation
,
Deformation
,
Materials properties
Continuum Mechanical Model of Leukocytes During Protopod Formation
J Biomech Eng. February 1984, 106(1): 10–18.
doi: https://doi.org/10.1115/1.3138448
Topics:
Leukocytes
,
Polymerization
,
Cell membranes
,
Membranes
,
Plasmas (Ionized gases)
,
Brownian motion
,
Deformation
,
Displacement
,
Elasticity
,
Shear (Mechanics)
Tissue Culture Cells on Deformable Substrata: Biomechanical Implications
J Biomech Eng. February 1984, 106(1): 19–24.
doi: https://doi.org/10.1115/1.3138449
Topics:
Biological tissues
,
Biomechanics
,
Rubber
,
Cell membranes
,
Fluids
,
Shear (Mechanics)
,
Silicone rubber
,
Silicones
,
Siloxanes
Passive Stiffness of Rat Cardiac Myocytes
J Biomech Eng. February 1984, 106(1): 25–30.
doi: https://doi.org/10.1115/1.3138451
Topics:
Stiffness
,
Membranes
,
Muscle
,
Tension
,
Cell membranes
,
Detergents
,
Elasticity
,
Fittings
,
Myocardium
,
Principal component analysis
Effects of Fluid Flow on Living Vascular Cells
J Biomech Eng. February 1984, 106(1): 31–35.
doi: https://doi.org/10.1115/1.3138453
Topics:
Fluid dynamics
,
Flow (Dynamics)
,
Shear (Mechanics)
,
Shear stress
,
Endothelial cells
,
Fluids
Models of Cell Interaction Based on Differential Adhesion
J Biomech Eng. February 1984, 106(1): 36–41.
doi: https://doi.org/10.1115/1.3138454
Topics:
Adhesion
,
Algorithms
,
Biological cells
,
Stress
,
Tension
On Nonlinear Viscoelastic Properties of Arterial Tissue
J Biomech Eng. February 1984, 106(1): 42–47.
doi: https://doi.org/10.1115/1.3138455
Effect of Mild Atherosclerosis on Flow Resistance in a Coronary Artery Casting of Man
J Biomech Eng. February 1984, 106(1): 48–53.
doi: https://doi.org/10.1115/1.3138456
Topics:
Atherosclerosis
,
Casting
,
Coronary arteries
,
Flow (Dynamics)
,
Reynolds number
,
Hemorheology
,
Physiology
,
Poiseuille flow
,
Pressure drop
,
Pulsatile flow
Dynamical Relations for Left Ventricular Ejection: Flow Rate, Momentum, Force and Impulse
J Biomech Eng. February 1984, 106(1): 54–61.
doi: https://doi.org/10.1115/1.3138457
Topics:
Flow (Dynamics)
,
Impulse (Physics)
,
Momentum
,
Blood
,
Computers
,
Coronary arteries
,
Diseases
,
Image processing
,
Numerical analysis
The Distribution of Pressure Behind a Soft Contact Lens
J Biomech Eng. February 1984, 106(1): 62–65.
doi: https://doi.org/10.1115/1.3138458
Topics:
Lenses (Optics)
,
Pressure
,
Cornea
,
Shapes
,
Equilibrium (Physics)
,
Fittings
,
Membranes
,
Polynomials
Comparative Study of the Amount of Backflow Produced by Four Types of Aortic Valve Prostheses
J Biomech Eng. February 1984, 106(1): 66–71.
doi: https://doi.org/10.1115/1.3138459
Topics:
Prostheses
,
Valves
,
Pressure
,
Disks
,
Flow (Dynamics)
,
Leakage
,
Artificial limbs
,
Clearances (Engineering)
,
Hemodynamics
,
Pumps
A Pulsed Wire Probe for the Measurement of Velocity and Flow Direction in Slowly Moving Air
J Biomech Eng. February 1984, 106(1): 72–78.
doi: https://doi.org/10.1115/1.3138460
Topics:
Flow (Dynamics)
,
Probes
,
Wire
,
Air flow
,
Convection
,
Pipes
,
Resolution (Optics)
Comparison of Steady and Pulsatile Flow Near the Ventral and Dorsal Walls of Casts of Human Aortic Bifurcations
J Biomech Eng. February 1984, 106(1): 79–82.
doi: https://doi.org/10.1115/1.3138461
Topics:
Bifurcation
,
Pulsatile flow
,
Flow (Dynamics)
,
Cycles
,
Fluids
,
Lasers
Modeling Technique of Prosthetic Heart Valves
J Biomech Eng. February 1984, 106(1): 83–88.
doi: https://doi.org/10.1115/1.3138463
Topics:
Heart valve prostheses
,
Modeling
,
Flow (Dynamics)
,
Valves
,
Artificial hearts
,
Cycles
,
Differential equations
,
Fluids
,
Hemodynamics
,
Pressure
Technical Briefs
Variational Solution for Pulsatile Flow in Rigid Tubes
J Biomech Eng. February 1984, 106(1): 89–90.
doi: https://doi.org/10.1115/1.3138464
Topics:
Pulsatile flow
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