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Original Articles

Electromechanical response of articular cartilage in indentation—considerations on the determination of cartilage properties during arthroscopy

Pages 83-91 | Published online: 19 Aug 2006

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

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Yutao Men, Yucheng Ren, Zhonghai Zhao, Xin Wang & Lu Liu. (2023) Numerical analysis of streaming potential induced by loads in micro-pores of articular cartilage. Computer Methods in Biomechanics and Biomedical Engineering 26:14, pages 1761-1771.
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Andrew E. Anderson, Benjamin J. Ellis & Jeffrey A. Weiss. (2007) Verification, validation and sensitivity studies in computational biomechanics. Computer Methods in Biomechanics and Biomedical Engineering 10:3, pages 171-184.
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Articles from other publishers (11)

Maryam Talebi Jouybari, Nesa Fani, Shahrbanoo Jahangir, Fatemeh Bagheri, Reihaneh Golru & Leila Taghiyar. 2023. Cartilage: From Biology to Biofabrication. Cartilage: From Biology to Biofabrication 491 527 .
LePing Li & Sahand Ahsanizadeh. 2021. Computational Modelling of Biomechanics and Biotribology in the Musculoskeletal System. Computational Modelling of Biomechanics and Biotribology in the Musculoskeletal System 187 226 .
Abdul Razzaq FarooqiRainer BaderUrsula van Rienen. (2019) Numerical Study on Electromechanics in Cartilage Tissue with Respect to Its Electrical Properties. Tissue Engineering Part B: Reviews 25:2, pages 152-166.
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M. Taffetani, R. Gottardi, D. Gastaldi, R. Raiteri & P. Vena. (2014) Poroelastic response of articular cartilage by nanoindentation creep tests at different characteristic lengths. Medical Engineering & Physics 36:7, pages 850-858.
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Mariea A. BradyReva VazeHarsh D. AminDarryl R. OverbyC. Ross Ethier. (2014) The Design and Development of a High-Throughput Magneto-Mechanostimulation Device for Cartilage Tissue Engineering. Tissue Engineering Part C: Methods 20:2, pages 149-159.
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L.P. Li & S. Ahsanizadeh. 2014. Computational Modelling of Biomechanics and Biotribology in the Musculoskeletal System. Computational Modelling of Biomechanics and Biotribology in the Musculoskeletal System 205 243 .
Li-Lan Gao, Chun-Qiu Zhang, Li-Min Dong & Yun-Wei Jia. (2012) Description of depth-dependent nonlinear viscoelastic behavior for articular cartilage in unconfined compression. Materials Science and Engineering: C 32:2, pages 119-125.
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Steve A. Maas, Benjamin J. Ellis, Gerard A. Ateshian & Jeffrey A. Weiss. (2012) FEBio: Finite Elements for Biomechanics. Journal of Biomechanical Engineering 134:1.
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Petro Julkunen, Rami K. Korhonen, Walter Herzog & Jukka S. Jurvelin. (2008) Uncertainties in indentation testing of articular cartilage: A fibril-reinforced poroviscoelastic study. Medical Engineering & Physics 30:4, pages 506-515.
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L.P. Li, R.K. Korhonen, J. Iivarinen, J.S. Jurvelin & W. Herzog. (2008) Fluid pressure driven fibril reinforcement in creep and relaxation tests of articular cartilage. Medical Engineering & Physics 30:2, pages 182-189.
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L.P. Li & W. Herzog. (2006) Arthroscopic evaluation of cartilage degeneration using indentation testing—Influence of indenter geometry. Clinical Biomechanics 21:4, pages 420-426.
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