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The application of large amplitude oscillatory stress in a study of fully formed fibrin clots
Author(s) -
Tunde F. Lamer,
B. R. Thomas,
Daniel J. Curtis,
Nafiseh Badiei,
P. R. Williams,
Karl Hawkins
Publication year - 2017
Publication title -
physics of fluids
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.188
H-Index - 180
eISSN - 1089-7666
pISSN - 1070-6631
DOI - 10.1063/1.4999991
Subject(s) - viscoelasticity , fibrin , amplitude , shear stress , waveform , stress (linguistics) , nonlinear system , shear (geology) , mechanics , physics , biomedical engineering , materials science , composite material , medicine , optics , linguistics , philosophy , immunology , quantum mechanics , voltage
The suitability of controlled stress large amplitude oscillatory shear (LAOStress) for the characterisation of the nonlinear viscoelastic properties of fully formed fibrin clots is investigated. Capturing the rich nonlinear viscoelastic behaviour of the fibrin network is important for understanding the structural behaviour of clots formed in blood vessels which are exposed to a wide range of shear stresses. We report, for the first time, that artefacts due to ringing exist in both the sample stress and strain waveforms of a LAOStress measurement which will lead to errors in the calculation of nonlinear viscoelastic properties. The process of smoothing the waveforms eliminates these artefacts whilst retaining essential rheological information. Furthermore, we demonstrate the potential of LAOStress for characterising the nonlinear viscoelastic properties of fibrin clots in response to incremental increases of applied stress up to the point of fracture. Alternating LAOStress and small amplitude oscillatory s...

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