A mathematical model for creep, relaxation and strain stiffening in parallel-fibered collagenous tissues.

scientific article published on 31 May 2011

A mathematical model for creep, relaxation and strain stiffening in parallel-fibered collagenous tissues. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.MEDENGPHY.2011.04.012
P698PubMed publication ID21622018

P2093author name stringRaffaella De Vita
Ratchada Sopakayang
P433issue9
P921main subjectmathematical modelQ486902
P304page(s)1056-1063
P577publication date2011-05-31
P1433published inMedical Engineering and PhysicsQ15749231
P1476titleA mathematical model for creep, relaxation and strain stiffening in parallel-fibered collagenous tissues.
P478volume33

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cites work (P2860)
Q37376312A New Hybrid Viscoelastic Soft Tissue Model based on Meshless Method for Haptic Surgical Simulation
Q51674086A model for the compressible, viscoelastic behavior of human amnion addressing tissue variability through a single parameter.
Q88789960Energy dissipation in quasi-linear viscoelastic tissues, cells, and extracellular matrix
Q38692651Mechanobiological modelling of tendons: Review and future opportunities
Q40379464Micro-structural and Biaxial Creep Properties of the Swine Uterosacral-Cardinal Ligament Complex
Q38726176Modelling approaches for evaluating multiscale tendon mechanics
Q37460677Tissue loading created during spinal manipulation in comparison to loading created by passive spinal movements

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