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Original Articles

On the implementation of a wrinkling, hyperelastic membrane model for skin and other materials

Pages 319-332 | Received 11 Jul 2008, Accepted 12 Oct 2008, Published online: 27 Apr 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Alireza Karimi, Mahdi Navidbakhsh, Maedeh Haghighatnama & Afsaneh Motevalli Haghi. (2015) Determination of the axial and circumferential mechanical properties of the skin tissue using experimental testing and constitutive modeling. Computer Methods in Biomechanics and Biomedical Engineering 18:16, pages 1768-1774.
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N. F. Adull Manan, J. Mahmud & M. H. Ismail. (2014) Biomechanical testing of bovine skin using various sample specifications. Materials Research Innovations 18:sup6, pages S6-389-S6-394.
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D. Chamoret, S. Roth, Z.-Q. Feng, X.-T. Yan, S. Gomes & F. Peyraut. (2013) A novel approach to modelling and simulating the contact behaviour between a human hand model and a deformable object. Computer Methods in Biomechanics and Biomedical Engineering 16:2, pages 130-140.
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R. B. Groves, S. A. Coulman, J. C. Birchall & S. L. Evans. (2012) Quantifying the mechanical properties of human skin to optimise future microneedle device design. Computer Methods in Biomechanics and Biomedical Engineering 15:1, pages 73-82.
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RaymondH. Plaut. (2010) Two-Dimensional Analysis of Peeling Adhesive Tape from Human Skin. The Journal of Adhesion 86:11, pages 1086-1110.
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Articles from other publishers (31)

Syed Adil Imam, Angus C. Hughes, Matthew J. Carré, Heather Driscoll, Keith Winwood, Prabhuraj Venkatraman & Tom Allen. (2023) Finite element model to simulate impact on a soft tissue simulant. Sports Engineering 26:1.
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Sairam Pamulaparthi Venkata, Valentina Balbi, Michel Destrade, Dino Accoto & Giuseppe Zurlo. (2023) Programmable wrinkling for functionally-graded auxetic circular membranes. Extreme Mechanics Letters 63, pages 102045.
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A. Spagnoli, R. Alberini, E. Raposio & M. Terzano. (2022) Simulation and optimization of reconstructive surgery procedures on human skin. Journal of the Mechanical Behavior of Biomedical Materials 131, pages 105215.
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R. Alberini, A. Spagnoli & M. Terzano. (2021) Numerical modelling of wrinkled hyperelastic membranes with topologically complex internal boundary conditions. International Journal of Mechanical Sciences 212, pages 106816.
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Gurpreet Singh & Arnab Chanda. (2021) Mechanical properties of whole-body soft human tissues: a review. Biomedical Materials 16:6, pages 062004.
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J.F.J. Soetens, M. van Vijven, D.L. Bader, G.W.M. Peters & C.W.J. Oomens. (2018) A model of human skin under large amplitude oscillatory shear. Journal of the Mechanical Behavior of Biomedical Materials 86, pages 423-432.
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E. Jacquet, S. Joly, J. Chambert, K. Rekik & P. Sandoz. (2017) Ultra-light extensometer for the assessment of the mechanical properties of the human skin in vivo. Skin Research and Technology 23:4, pages 531-538.
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Xiaoming Zhang. (2017) A surface wave elastography technique for measuring tissue viscoelastic properties. Medical Engineering & Physics 42, pages 111-115.
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Cees W.J. Oomens, Marc van Vijven & Gerrit W.M. Peters. 2017. Biomechanics of Living Organs. Biomechanics of Living Organs 347 357 .
Sylwia Łagan & Aneta Liber-Kneć. 2017. Innovations in Biomedical Engineering. Innovations in Biomedical Engineering 145 152 .
Alireza Karimi, Maedeh Haghighatnama, Ahmad Shojaei, Mahdi Navidbakhsh, Afsaneh Motevalli Haghi & Seyed Jafar Adnani Sadati. (2015) Measurement of the viscoelastic mechanical properties of the skin tissue under uniaxial loading. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 230:2, pages 418-425.
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Allen L. Feng, James H. Clark, Nishant Agrawal, Walied Moussa & Jeremy D. Richmon. (2015) Neck incision planning for total laryngectomy: A finite element analysis. Journal of Biomechanics 48:15, pages 4149-4154.
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Maria F. Leyva-Mendivil, Anton Page, Neil W. Bressloff & Georges Limbert. (2015) A mechanistic insight into the mechanical role of the stratum corneum during stretching and compression of the skin. Journal of the Mechanical Behavior of Biomedical Materials 49, pages 197-219.
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Y. Shiihara, M. Sato, Y. Hara, I. Iwai & N. Yoshikawa. (2015) Microrelief suppresses large wrinkling appearance: an in silico study . Skin Research and Technology 21:2, pages 184-191.
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Jamaluddin Mahmud. (2015) Keynote Speech on Skin Biomechanics: An Experimental-Numerical Integration. Journal of Medical and Bioengineering 4:1, pages 24-30.
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ALIREZA KARIMI, RAHIM FATURECHI, MAHDI NAVIDBAKHSH & SEYYED ATAOLLAH HASHEMI. (2014) A NONLINEAR HYPERELASTIC BEHAVIOR TO IDENTIFY THE MECHANICAL PROPERTIES OF RAT SKIN UNDER UNIAXIAL LOADING. Journal of Mechanics in Medicine and Biology 14:05, pages 1450075.
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Bernard QuerleuxGeorges Limbert. 2014. Computational Biophysics of the Skin. Computational Biophysics of the Skin 95 131 .
Cormac Flynn, Andrew J. Taberner, Poul M.F. Nielsen & Sidney Fels. (2013) Simulating the three-dimensional deformation of in vivo facial skin. Journal of the Mechanical Behavior of Biomedical Materials 28, pages 484-494.
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Linasuriani Mahmud, Nor Fazli Adull Manan, Muhammad Hussain Ismail & Jamaluddin Mahmud. (2013) Characterisation of soft tissues biomechanical properties using 3D Numerical Approach. Characterisation of soft tissues biomechanical properties using 3D Numerical Approach.
Theresa K. Tonge, Lorre S. Atlan, Liming M. Voo & Thao D. Nguyen. (2013) Full-field bulge test for planar anisotropic tissues: Part I – Experimental methods applied to human skin tissue. Acta Biomaterialia 9:4, pages 5913-5925.
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Rachel B. Groves, Sion A. Coulman, James C. Birchall & Sam L. Evans. (2013) An anisotropic, hyperelastic model for skin: Experimental measurements, finite element modelling and identification of parameters for human and murine skin. Journal of the Mechanical Behavior of Biomedical Materials 18, pages 167-180.
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Nor Fazli Adull Manan, Jamaluddin Mahmud & Muhammad Hussain Ismail. (2013) Quantifying the Biomechanical Properties of Bovine Skin under Uniaxial Tension. Journal of Medical and Bioengineering 2:1, pages 45-48.
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Aisling Ní Annaidh, Karine Bruyère, Michel Destrade, Michael D. Gilchrist, Corrado Maurini, Melanie Otténio & Giuseppe Saccomandi. (2012) Automated Estimation of Collagen Fibre Dispersion in the Dermis and its Contribution to the Anisotropic Behaviour of Skin. Annals of Biomedical Engineering 40:8, pages 1666-1678.
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N. F. A. Manan, M. H. M. Ramli, M. N. A. A. Patar, C. Holt, S. Evans, M. Chizari & J. Mahmud. (2012) Determining hyperelastic parameters of human skin using 2D finite element modelling and simulation. Determining hyperelastic parameters of human skin using 2D finite element modelling and simulation.
J. Mahmud, S. L. Evans & C. A. Holt. (2012) An Innovative Tool to Measure Human Skin Strain Distribution in Vivo using Motion Capture and Delaunay Mesh. Journal of Mechanics 28:2, pages 309-317.
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Jamaluddin Mahmud, Cathy Holt, Sam Evans, Nor Fazli Adull Manan & Mahmoud Chizari. (2012) A Parametric Study and Simulations in Quantifying Human Skin Hyperelastic Parameters. Procedia Engineering 41, pages 1580-1586.
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Cormac Flynn, Andrew Taberner & Poul Nielsen. (2010) Mechanical characterisation of in vivo human skin using a 3D force-sensitive micro-robot and finite element analysis. Biomechanics and Modeling in Mechanobiology 10:1, pages 27-38.
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Cormac Flynn. (2010) Finite element models of wound closure. Journal of Tissue Viability 19:4, pages 137-149.
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Jamaluddin Mahmud, Cathy A. Holt & Sam L. Evans. (2010) An innovative application of a small-scale motion analysis technique to quantify human skin deformation in vivo. Journal of Biomechanics 43:5, pages 1002-1006.
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Cormac Flynn & Brendan A.O. McCormack. (2010) Simulating the wrinkling and aging of skin with a multi-layer finite element model. Journal of Biomechanics 43:3, pages 442-448.
Crossref
S L Evans & C A Holt. (2009) Measuring the mechanical properties of human skin <i>in vivo</i> using digital image correlation and finite element modelling. The Journal of Strain Analysis for Engineering Design 44:5, pages 337-345.
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