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Biphasic Creep and Stress-Relaxation of Articular-Cartilage in Compression - Theory and Experiments

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This article is published in Journal of Biomechanical Engineering-transactions of The Asme.The article was published on 1980-02-01. It has received 2376 citations till now. The article focuses on the topics: Stress relaxation & Creep.

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Effect of surface roughness on squeeze film poroelastic bearings with special reference to synovial joints.

TL;DR: A simplified mathematical model has been developed for understanding the combined effects of surface roughness and couple stresses on lubrication aspects of synovial joints.
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Trachea Mechanics for Tissue Engineering Design

TL;DR: A clear picture of native tracheal mechanics at the tissue and organ level is presented, as well as loading conditions to establish design criteria for trachea replacements, and the implications of failing to match native properties with regards to implant collapse, stenosis, and infection are explored.
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Pathomechanic determinants of posttraumatic arthritis.

TL;DR: Time-variant contact stresses in two ankles with an anterolateral stepoff were measured during quasiphysiologic motion and loading to estimate pathomechanic loads that accumulate over the entire motion cycle.
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Non-linear finite element analysis of mechanical electrochemical phenomena in hydrated soft tissues based on triphasic theory

TL;DR: In this paper, a non-linear finite element analysis formulation is proposed by applying a weighted residual method to the reformulated governing equations of triphasic theory reformulated in the imaginary reference configuration, with the displacement of the solid, fluid flows, ionic molar flows, hydrostatic pressure, and electrical potential as the unknown variables.
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Solute transport across a contact interface in deformable porous media

TL;DR: This contact algorithm is the first to address solute transport across deformable interfaces, and is made available in the public domain, open-source finite element code FEBio (http://www.febio.org).
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