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Issues
February 1980
ISSN 0148-0731
EISSN 1528-8951
In this Issue
Research Papers
A Finite Element Model for Macroscopic Deformation of the Lung
J Biomech Eng. February 1980, 102(1): 1–7.
doi: https://doi.org/10.1115/1.3138193
Topics:
Deformation
,
Finite element model
,
Lung
,
Surface tension
,
Elasticity
,
Stress
,
Weight (Mass)
Collapse of Arteries Subjected to an External Band of Pressure
J Biomech Eng. February 1980, 102(1): 8–22.
doi: https://doi.org/10.1115/1.3138203
Topics:
Collapse
,
Pressure
,
Vessels
,
Reynolds number
,
Blood flow
,
Stress
,
Biomedicine
,
Blood
,
Compressibility
,
Diseases
Shock Waves in Fluid-Filled Distensible Tubes
J Biomech Eng. February 1980, 102(1): 23–27.
doi: https://doi.org/10.1115/1.3138194
Topics:
Fluids
,
Shock waves
,
Shock (Mechanics)
,
Flow (Dynamics)
,
Energy dissipation
,
Flow separation
,
Pressure
,
Separation (Technology)
,
Aorta
,
Waves
The Meaning of the Point of Maximum Oscillations in Cuff Pressure in the Indirect Measurement of Blood Pressure—Part II
J Biomech Eng. February 1980, 102(1): 28–33.
doi: https://doi.org/10.1115/1.3138195
Topics:
Blood pressure measurement
,
Oscillations
,
Pressure
,
Compression
,
Elasticity
The Design, Fabrication and Evaluation of a Trileaflet Prosthetic Heart Valve
J Biomech Eng. February 1980, 102(1): 34–41.
doi: https://doi.org/10.1115/1.3138196
Topics:
Design
,
Heart valve prostheses
,
Manufacturing
,
Valves
Controlled Destruction and Temperature Distributions in Biological Tissues Subjected to Monoactive Electrocoagulation
J Biomech Eng. February 1980, 102(1): 42–49.
doi: https://doi.org/10.1115/1.3138197
Topics:
Biological tissues
,
Temperature distribution
,
Temperature
,
Blood
,
Electrodes
,
Inertia (Mechanics)
,
Approximation
,
Electricity (Physics)
,
Geometry
,
Heat
Human Joint Performance and the Roughness of Articular Cartilage
J Biomech Eng. February 1980, 102(1): 50–56.
doi: https://doi.org/10.1115/1.3138198
Topics:
Cartilage
,
Surface roughness
,
Stress
,
Deflection
,
Instrumentation
,
Lubrication
,
Separation (Technology)
Visco-Elasticity of Passive Cardiac Muscle
J Biomech Eng. February 1980, 102(1): 57–61.
doi: https://doi.org/10.1115/1.3138199
Topics:
Elasticity
,
Myocardium
,
Relaxation (Physics)
,
Mechanical behavior
,
Muscle
,
Biological tissues
,
Constitutive equations
,
Stress
Some Mechanical Considerations in the Selection and Testing of Papillary Muscles
J Biomech Eng. February 1980, 102(1): 62–66.
doi: https://doi.org/10.1115/1.3138200
Topics:
Muscle
,
Testing
,
Deformation
,
Machinery
,
Mechanical testing
,
Shapes
Shear-Induced Augmentation of Oxygen Transfer in Blood
J Biomech Eng. February 1980, 102(1): 67–72.
doi: https://doi.org/10.1115/1.3138201
Topics:
Blood
,
Oxygen
,
Shear (Mechanics)
,
Shear rate
,
Diffusion (Physics)
,
Fluids
,
Laminar flow
,
Membranes
,
Modeling
Biphasic Creep and Stress Relaxation of Articular Cartilage in Compression: Theory and Experiments
J Biomech Eng. February 1980, 102(1): 73–84.
doi: https://doi.org/10.1115/1.3138202
Topics:
Cartilage
,
Compression
,
Creep
,
Relaxation (Physics)
,
Stress
,
Biological tissues
,
Permeability
,
Fluids
,
Energy dissipation
,
Deformation
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Four-Dimensional Visualization of Topological Fixed Points in Pulsatile Cardiovascular Flows
J Biomech Eng (May 2025)