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Articles

Study on the poroelastic behaviors of the defected articular cartilage

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Pages 1288-1300 | Received 14 Jun 2021, Accepted 13 Nov 2021, Published online: 22 Nov 2021

References

  • Alford JW, Cole BJ. 2005. Cartilage restoration, part 2: techniques, outcomes, and future directions. Am J Sports Med. 33(3):443–460.
  • Armstrong CG, Mow VC. 1982. Variations in the intrinsic mechanical properties of human articular cartilage with age, degeneration, and water content. J Bone Joint Surg Am. 64(1):88–94.
  • Ateshian GA. 2009. The role of interstitial fluid pressurization in articular cartilage lubrication. J Biomech. 42(9):1163–1176.
  • Bedayat H, Taleghani AD. 2016. Anisotropic inhomogeneous poroelastic inclusions: with application to underground energy-related problems. J Energy Resour Technol. 138(3):032905.
  • Benders KEM, Weeren P, Badylak SF, Saris DLBF, Dhert WJA, Malda J. 2013. Extracellular matrix scaffolds for cartilage and bone regeneration. Trends Biotechnol. 31(3):169–176.
  • Braman JP, Bruckner JD, Clark JM, Norman AG, Chansky HA. 2005. Articular cartilage adjacent to experimental defects is subject to atypical strains. Clin Orthop Relat Res. 430(430):202–207.
  • Cahill BR. 1995. Osteochondritis dissecans of the knee: treatment of juvenile and adult forms. J Am Acad Orthop Surg. 3(4):237.
  • Chegini S, Ferguson SJ. 2010. Time and depth dependent Poisson's ratio of cartilage explained by an inhomogeneous orthotropic fiber embedded biphasic model. J Biomech. 43(9):1660–1666.
  • Chen D, Shen J, Zhao W, Wang T, Han L, Hamilton JL, Im HJ. 2017. Osteoarthritis: toward a comprehensive understanding of pathological mechanism. Bone Res. 5:16044.
  • Curl WW, Krome J, Gordon ES, Rushing J, Smith BP, Poehling GG. 1997. Cartilage injuries: a review of 31,516 knee arthroscopies. Arthroscopy. 13(4):456–460.
  • de Windt TS, Bekkers JE, Creemers LB, Dhert WJ, Saris DB. 2009. Patient profiling in cartilage regeneration: prognostic factors determining success of treatment for cartilage defects. Am J Sports Med. 37(1_suppl):58–62S.
  • Flanigan DC, Harris JD, Brockmeier PM, Siston RA. 2010. The effects of lesion size and location on subchondral bone contact in experimental knee articular cartilage defects in a bovine model. Arthroscopy. 26(12):1655–1661.
  • Goodwin M, Workman J, Thambyah A, Vanholsbeeck F. 2021. Impact-induced cartilage damage assessed using polarisation-sensitive optical coherence tomography. J Mech Behav Biomed Mater. 117:104326.
  • Graham BT, Moore AC, Burris DL, Price C. 2018. Mapping the spatiotemporal evolution of solute transport in articular cartilage explants reveals how cartilage recovers fluid within the contact area during sliding. J Biomech. 71:271–276.
  • Gratz KR, Wong BL, Bae WC, Sah RL. 2009. The effects of focal articular defects on cartilage contact mechanics. J Orthop Res. 27(5):584–592.
  • Guettler JH, Demetropoulos CK, Yang KH, Jurist KA. 2004. Osteochondral defects in the human knee: influence of defect size on cartilage rim stress and load redistribution to surrounding cartilage. Am J Sports Med. 32(6):1451–1458.
  • Guo H, Maher SA, Spilker RL. 2013. Biphasic finite element contact analysis of the knee joint using an augmented Lagrangian method. Med Eng Phys. 35(9):1313–1320.
  • Heuijerjans A, Wilson W, Ito K, van Donkelaar CC. 2017. The critical size of focal articular cartilage defects is associated with strains in the collagen fibers. Clin Biomech (Bristol, Avon). 50:40–46.
  • Hubert J, Beil FT, Rolvien T, Butscheidt S, Hischke S, Puschel K, Frosch S, Mussawy H, Ries C, Hawellek T. 2020. Cartilage calcification is associated with histological degeneration of the knee joint: a highly prevalent, age-independent systemic process. Osteoarthritis Cartilage. 28(10):1351–1361.
  • Kiviranta P, Lammentausta E, Toyras J, Kiviranta I, Jurvelin JS. 2008. Indentation diagnostics of cartilage degeneration. Osteoarthritis Cartilage. 16(7):796–804.
  • Knecht S, Vanwanseele B, Stussi E. 2006. A review on the mechanical quality of articular cartilage – implications for the diagnosis of osteoarthritis. Clinical Biomechanics. 21(10):999–1012.
  • Koo S, Andriacchi TP. 2007. A comparison of the influence of global functional loads vs. local contact anatomy on articular cartilage thickness at the knee. J Biomech. 40(13):2961–2966.
  • Liao J, Tian T, Shi S, Xie X, Ma Q, Li G, Lin Y. 2017. The fabrication of biomimetic biphasic CAN–PAC hydrogel with a seamless interfacial layer applied in osteochondral defect repair. Bone Res. 5:17018.
  • Manda K, Eriksson A. 2014. Modeling of constrained articular cartilage growth in an intact knee with focal knee resurfacing metal implant. Biomech Model Mechanobiol. 13(3):599–613.
  • Manda K, Ryd L, Eriksson A. 2011. Finite element simulations of a focal knee resurfacing implant applied to localized cartilage defects in a sheep model. J Biomech. 44(5):794–801.
  • Men YT, Jiang YL, Chen L, Zhang CQ, Ye JD. 2017. On mechanical mechanism of damage evolution in articular cartilage. Mater Sci Eng C Mater Biol Appl. 78:79–87.
  • Meng Q, Jin Z, Wilcox R, Fisher J. 2014. Computational investigation of the time-dependent contact behaviour of the human tibiofemoral joint under body weight. Proc Inst Mech Eng H. 228(11):1193–1207.
  • Minas T. 1999. The role of cartilage repair techniques, including chondrocyte transplantation, in focal chondral knee damage. Instr Course Lect. 48:629–643.
  • Miramini S, Smith DW, Zhang L, Gardiner BS. 2017. The spatio-temporal mechanical environment of healthy and injured human cartilage during sustained activity and its role in cartilage damage. J Mech Behav Biomed Mater. 74:1–10.
  • Mow VC, Holmes MH, Lai WM. 1984. Fluid transport and mechanical properties of articular cartilage: a review. J Biomech. 17(5):377–394.
  • Nerem RM, Alexander RW, Chappell DC, Medford RM, Varner SE, Robert Taylor W. 1998. The study of the influence of flow on vascular endothelial biology. Am J Med Sci. 316(3):169–175.
  • Nieminen HJ, Saarakkala S, Laasanen MS, Hirvonen J, Jurvelin JS, Toyras J. 2004. Ultrasound attenuation in normal and spontaneously degenerated articular cartilage. Ultrasound Med Biol. 30(4):493–500.
  • Owen JR, Wayne JS. 2006. Influence of a superficial tangential zone over repairing cartilage defects: implications for tissue engineering. Biomech Model Mechanobiol. 5(2–3):102–110.
  • Peng Z, Sun H, Bunpetch V, Koh Y, Wen Y, Wu D, Ouyang H. 2021. The regulation of cartilage extracellular matrix homeostasis in joint cartilage degeneration and regeneration. Biomaterials. 268:120555.
  • Un MK, Calik A. 2019. Estimation of depth-dependent material properties of biphasic soft tissues through finite element optimization and sensitivity analysis. Med Eng Phys. 74:73–81.
  • Venalainen MS, Mononen ME, Jurvelin JS, Toyras J, Viren T, Korhonen RK. 2014. Importance of material properties and porosity of bone on mechanical response of articular cartilage in human knee joint – a two-dimensional finite element study. J Biomech Eng. 136(12):121005.
  • Wilson W, van Rietbergen B, van Donkelaar CC, Huiskes R. 2003. Pathways of load-induced cartilage damage causing cartilage degeneration in the knee after meniscectomy. J Biomech. 36(6):845–851.
  • Wu X, Chen K, Wang Z, Wang N, Zhao T, Xue Y, Wang Y, Chen W. 2018. An analytical poroelastic model for laboratorial mechanical testing of the articular cartilage (AC). Appl Math Mech-Engl Ed. 39(6):813–828.
  • Zevenbergen L, Smith CR, Van Rossom S, Thelen DG, Famaey N, Vander Sloten J, Jonkers I. 2018. Cartilage defect location and stiffness predispose the tibiofemoral joint to aberrant loading conditions during stance phase of gait. PLoS One. 13(10):e0205842.

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