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Original Articles

The Effect of Perfusion on Soft Tissue Mechanical Properties: A Computational Model

Pages 283-290 | Published online: 15 Sep 2010

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Malka Shilo & Amit Gefen. (2012) Identification of capillary blood pressure levels at which capillary collapse is likely in a tissue subjected to large compressive and shear deformations. Computer Methods in Biomechanics and Biomedical Engineering 15:1, pages 59-71.
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Lauriane Jugé, Patrick Foley, Alice Hatt, Jade Yeung & Lynne E. Bilston. (2023) Ex vivo bovine liver nonlinear viscoelastic properties: MR elastography and rheological measurements. Journal of the Mechanical Behavior of Biomedical Materials 138, pages 105638.
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Jonathan CJ. Wei, Ian D. Cartmill, Mark AF. Kendall & Michael L. Crichton. (2022) In vivo, in situ and ex vivo comparison of porcine skin for microprojection array penetration depth, delivery efficiency and elastic modulus assessment. Journal of the Mechanical Behavior of Biomedical Materials 130, pages 105187.
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Sascha Halvachizadeh, Roman Pfeifer, Yannik Kalbas, Simone Schuerle, Paolo Cinelli & Hans-Christoph Pape. (2022) Assessment of alternative techniques to quantify the effect of injury on soft tissue in closed ankle and pilon fractures. PLOS ONE 17:5, pages e0268359.
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Helge Herthum, Mehrgan Shahryari, Heiko Tzschätzsch, Felix Schrank, Carsten Warmuth, Steffen Görner, Stefan Hetzer, Hennes Neubauer, Josef Pfeuffer, Jürgen Braun & Ingolf Sack. (2021) Real-Time Multifrequency MR Elastography of the Human Brain Reveals Rapid Changes in Viscoelasticity in Response to the Valsalva Maneuver. Frontiers in Bioengineering and Biotechnology 9.
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Bernhard Kreft, Heiko Tzschätzsch, Felix Schrank, Judith Bergs, Kaspar-Josche Streitberger, Stephan Wäldchen, Stefan Hetzer, Jürgen Braun & Ingolf Sack. (2020) Time-Resolved Response of Cerebral Stiffness to Hypercapnia in Humans. Ultrasound in Medicine & Biology 46:4, pages 936-943.
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Lynne E. Bilston. (2018) Soft tissue rheology and its implications for elastography: Challenges and opportunities. NMR in Biomedicine 31:10, pages e3832.
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Lynne Bilston. 2017. Military Injury Biomechanics. Military Injury Biomechanics 159 174 .
Alice C. Pong, Lauriane Jugé, Shaokoon Cheng & Lynne E. Bilston. (2016) Longitudinal measurements of postnatal rat brain mechanical properties in-vivo. Journal of Biomechanics 49:9, pages 1751-1756.
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Azadeh Farnoush, Kristy Tan, Lauriane Juge, Lynne E. Bilston & Shaokoon Cheng. (2016) Effect of endoscopic third ventriculostomy on cerebrospinal fluid pressure in the cerebral ventricles. Journal of Clinical Neuroscience 23, pages 63-67.
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Adam M. Reeve, Martyn P. Nash, Andrew J. Taberner & Poul M. F. Nielsen. (2014) Constitutive Relations for Pressure-Driven Stiffening in Poroelastic Tissues. Journal of Biomechanical Engineering 136:8.
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Kristy Tan, Shaokoon Cheng, Lauriane Jugé & Lynne E. Bilston. (2013) Characterising soft tissues under large amplitude oscillatory shear and combined loading. Journal of Biomechanics 46:6, pages 1060-1066.
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Philippe Garteiser, Sabrina Doblas, Jean-Luc Daire, Mathilde Wagner, Helena Leitao, Valérie Vilgrain, Ralph Sinkus & Bernard E. Van Beers. (2012) MR elastography of liver tumours: value of viscoelastic properties for tumour characterisation. European Radiology 22:10, pages 2169-2177.
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Jason J. Hallman, Narayan Yoganandan & Frank A. Pintar. (2012) Prediction of visceral response to multi-directional loading as measured by the chestband. Medical Engineering & Physics 34:7, pages 906-913.
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Shaokoon Cheng & Lynne E. Bilston. (2010) Computational Model of the Cerebral Ventricles in Hydrocephalus. Journal of Biomechanical Engineering 132:5.
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Cecilia Persson, Jon L. Summers & Richard M. Hall. 2011. Neural Tissue Biomechanics. Neural Tissue Biomechanics 181 201 .
Cecilia Persson, Stewart W. D. McLure, Jon Summers & Richard M. Hall. (2009) The effect of bone fragment size and cerebrospinal fluid on spinal cord deformation during trauma: an ex vivo study. Journal of Neurosurgery: Spine 10:4, pages 315-323.
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Jonathan Vappou, Elodie Breton, Philippe Choquet, Rémy Willinger & André Constantinesco. (2008) Assessment of in vivo and post-mortem mechanical behavior of brain tissue using magnetic resonance elastography. Journal of Biomechanics 41:14, pages 2954-2959.
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Franklin Rivera BuenoSameer B. Shah. (2008) Implications of Tensile Loading for the Tissue Engineering of Nerves. Tissue Engineering Part B: Reviews 14:3, pages 219-233.
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Claire F. Jones, Shannon G. Kroeker, Peter A. Cripton & Richard M. Hall. (2008) The Effect of Cerebrospinal Fluid on the Biomechanics of Spinal Cord. Spine 33:17, pages E580-E588.
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Eran Linder-Ganz & Amit Gefen. (2007) The Effects of Pressure and Shear on Capillary Closure in the Microstructure of Skeletal Muscles. Annals of Biomedical Engineering 35:12, pages 2095-2107.
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A L Darling, P K Yalavarthy, M M Doyley, H Dehghani & B W Pogue. (2007) Interstitial fluid pressure in soft tissue as a result of an externally applied contact pressure. Physics in Medicine and Biology 52:14, pages 4121-4136.
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Richard M. Hall, Robert J. Oakland, Ruth K. Wilcox & David C. Barton. (2006) Spinal cord–fragment interactions following burst fracture: an in vitro model. Journal of Neurosurgery: Spine 5:3, pages 243-250.
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R J Oakland, R M Hall, R K Wilcox & D C Barton. (2006) The Biomechanical Response of Spinal Cord Tissue to Uniaxial Loading. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 220:4, pages 489-492.
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Timothy J. Carter, Maxime Sermesant, David M. Cash, Dean C. Barratt, Christine Tanner & David J. Hawkes. (2005) Application of soft tissue modelling to image-guided surgery. Medical Engineering & Physics 27:10, pages 893-909.
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Rodney J. Fiford & Lynne E. Bilston. (2005) The mechanical properties of rat spinal cord in vitro. Journal of Biomechanics 38:7, pages 1509-1515.
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Amit Gefen & Susan S Margulies. (2004) Are in vivo and in situ brain tissues mechanically similar?. Journal of Biomechanics 37:9, pages 1339-1352.
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Jonathan Wei, Ian D. Cartmill, Mark AF Kendall & Michael L. Crichton. (2022) In Vivo, in Situ and Ex Vivo Comparison of Porcine Skin for Microprojection Array Penetration Depth, Delivery Efficiency and Elastic Modulus Assessment. SSRN Electronic Journal.
Crossref
Jonathan Wei, Ian Cartmill, Mark Kendall & Michael Crichton. (2021) In Vivo, In Situ and Ex Vivo Comparison of Porcine Skin for Microprojection Array Penetration Depth, Delivery Efficiency and Elastic Modulus Assessment. SSRN Electronic Journal.
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