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Research Articles

Assessment of articular cartilage degradation in response to an impact injury using µMRI

, , , , , , , , & ORCID Icon show all
Pages 146-160 | Received 14 Jul 2023, Accepted 09 Feb 2024, Published online: 28 Feb 2024

References

  • Watson PJ, Carpenter TA, Hall LD, Tyler JA. Cartilage swelling and loss in a spontaneous model of osteoarthritis visualized by magnetic resonance imaging. Osteoarthritis Cartilage. 1996;4(3):197–207. doi:10.1016/S1063-4584(96)80016-1.
  • Ghadially FN, Thomas I, Yong N, Lalonde JM. Ultrastructure of rabbit semilunar cartilages. J Anat. 1978;125(Pt 3):499–517.
  • LeRoux MA, Arokoski J, Vail TP, Guilak F, Hyttinen MM, Kiviranta I, Setton LA. Simultaneous changes in the mechanical properties, quantitative collagen organization, and proteoglycan concentration of articular cartilage following canine meniscectomy. J Orthop Res. 2000;18(3):383–392. doi:10.1002/jor.1100180309.
  • Darling EM, Athanasiou KA. Articular cartilage bioreactors and bioprocesses. Tissue Eng. 2003;9(1):9–26. doi:10.1089/107632703762687492.
  • Clark JM. The organisation of collagen fibrils in the superficial zones of articular cartilage. J Anat. 1990;171:117–130.
  • Mow VC, Holmes MH, Lai WM. Fluid transport and mechanical properties of articular cartilage: a review. J Biomech. 1984;17(5):377–394. doi:10.1016/0021-9290(84)90031-9.
  • Hardingham TE, Fosang AJ. Proteoglycans: many forms and many functions. FASEB J. 1992;6(3):861–870. doi:10.1096/fasebj.6.3.1740236.
  • Kuiper NJ, Sharma A. A detailed quantitative outcome measure of glycosaminoglycans in human articular cartilage for cell therapy and tissue engineering strategies. Osteoarthritis Cartilage. 2015;23(12):2233–2241. doi:10.1016/j.joca.2015.07.011.
  • Parry DA, Flint MH, Gillard GC, Craig AS. A role for glycosaminoglycans in the development of collagen fibrils. Febs Lett. 1982;149(1):1–7. doi:10.1016/0014-5793(82)81060-0.
  • Buckwalter JA, Mankin HJ. Articular cartilage: degeneration and osteoarthritis, repair, regeneration, and transplantation. Instr Course Lect. 1998;47:487–504.
  • Schenker ML, Mauck RL, Ahn J, Mehta S. Pathogenesis and prevention of posttraumatic osteoarthritis after intra-articular fracture. J Am Acad Orthop Surg. 2014;22(1):20–28. doi:10.5435/JAAOS-22-01-20.
  • Gelber AC, Hochberg MC, Mead LA, Wang NY, Wigley FM, Klag MJ. Joint injury in young adults and risk for subsequent knee and hip osteoarthritis. Ann Intern Med. 2000;133(5):321–328. doi:10.7326/0003-4819-133-5-200009050-00007.
  • Brown TD, Johnston RC, Saltzman CL, Marsh JL, Buckwalter JA. Posttraumatic osteoarthritis: A first estimate of incidence, prevalence, and burden of disease. J Orthop Trauma. 2006;20(10):739–744. doi:10.1097/01.bot.0000246468.80635.ef.
  • Punzi L, Galozzi P, Luisetto R, Favero M, Ramonda R, Oliviero F, Scanu A. Post-traumatic arthritis: overview on pathogenic mechanisms and role of inflammation. RMD Open. 2016;2(2):e000279. doi:10.1136/rmdopen-2016-000279.
  • Xia Y. Resolution ‘scaling law’ in MRI of articular cartilage. Osteoarthritis Cartilage. 2007;15(4):363–365. doi:10.1016/j.joca.2006.12.004.
  • Xia Y. Relaxation anisotropy in cartilage by nmr microscopy (μMRI) at 14-micron resolution. Magn Reson Med. 1998;39(6):941–949. doi:10.1002/mrm.1910390612.
  • Pond MJ, Nuki G. Experimentally-induced osteoarthritis in the dog. Ann Rheum Dis. 1973;32(4):387–388. doi:10.1136/ard.32.4.387.
  • Cohen-Solal M, Funck-Brentano T, Hay E. Animal models of osteoarthritis for the understanding of the bone contribution. Bonekey Rep. 2013;2:422. doi:10.1038/bonekey.2013.156.
  • Kuyinu EL, Narayanan G, Nair LS, Laurencin CT. Animal models of osteoarthritis: classification, update, and measurement of outcomes. J Orthop Surg Res. 2016;11(1):19. doi:10.1186/s13018-016-0346-5.
  • Blumenkrantz G, Majumdar S. Quantitative magnetic resonance imaging of articular cartilage in osteoarthritis. Eur Cell Mater. 2007;13:76–86. doi:10.22203/eCM.v013a08.
  • Xia Y. MRI of articular cartilage at microscopic resolution. Bone Joint Res. 2013;2(1):9–17. doi:10.1302/2046-3758.21.2000135.
  • Li X, Benjamin Ma C, Link TM, Castillo DD, Blumenkrantz G, Lozano J, Carballido-Gamio J, Ries M, Majumdar S. In vivo t(1rho) and t(2) mapping of articular cartilage in osteoarthritis of the knee using 3 t MRI. Osteoarthritis Cartilage. 2007;15(7):789–797. doi:10.1016/j.joca.2007.01.011.
  • Stahl R, Blumenkrantz G, Carballido-Gamio J, Zhao S, Munoz T, Hellio Le Graverand-Gastineau MP, Li X, Majumdar S, Link TM. MRI-derived T2 relaxation times and cartilage morphometry of the tibio-femoral joint in subjects with and without osteoarthritis during a 1-year follow-up. Osteoarthritis And Cartilage. 2007;15(11):1225–1234. doi:10.1016/j.joca.2007.04.018.
  • Hannila I, Räinä SS, Tervonen O, Ojala R, Nieminen MT. Topographical variation of T2 relaxation time in the young adult knee cartilage at 1.5 t. Osteoarthritis Cartilage. 2009;17(12):1570–1575. doi:10.1016/j.joca.2009.05.011.
  • Li X, Cheng J, Lin K, Saadat E, Bolbos RI, Jobke B, Ries MD, Horvai A, Link TM, Majumdar S. Quantitative MRI using T1ρ and T2 in human osteoarthritic cartilage specimens: correlation with biochemical measurements and histology. Magn Reson Imaging. 2011;29(3):324–334. doi:10.1016/j.mri.2010.09.004.
  • Liess C, Lüsse S, Karger N, Heller M, Glüer CC. Detection of changes in cartilage water content using MRI T2-mapping in vivo. Osteoarthritis Cartilage. 2002;10(12):907–913. doi:10.1053/joca.2002.0847.
  • Alhadlaq HA, Xia Y, Moody JB, Matyas JR. Detecting structural changes in early experimental osteoarthritis of tibial cartilage by microscopic magnetic resonance imaging and polarised light microscopy. Ann Rheum Dis. 2004;63(6):709–717. doi:10.1136/ard.2003.011783.
  • Dunn TC, Lu Y, Jin H, Ries MD, Majumdar S. T2 relaxation time of cartilage at mr imaging: comparison with severity of knee osteoarthritis. Radiology. 2004;232(2):592–598. doi:10.1148/radiol.2322030976.
  • Sweet MB, Thonar EJ, Immelman AR, Solomon L. Biochemical changes in progressive osteoarthrosis. Ann Rheum Dis. 1977;36(5):387–398. doi:10.1136/ard.36.5.387.
  • Baum T, Joseph GB, Arulanandan A, Nardo L, Virayavanich W, Carballido-Gamio J, Nevitt MC, Lynch J, McCulloch CE, Link TM. Association of magnetic resonance imaging-based knee cartilage T2 measurements and focal knee lesions with knee pain: data from the osteoarthritis initiative. Arthritis Care Res (Hoboken). 2012;64(2):248–255. doi:10.1002/acr.20672.
  • Badar F, Lee J, Qu X, Xia Y. Topographical and zonal patterns of T2 relaxation in osteoarthritic tibial cartilage by low- and high-resolution MRI. Magn Reson Imaging. 2021;78:98–108. doi:10.1016/j.mri.2021.01.002.
  • Batool S, Mahar R, Badar F, Tetmeyer A, Xia Y. Quantitative µMRI and plm study of rabbit humeral and femoral head cartilage at sub-10 µm resolutions. J Orthop Res. 2020;38(5):1052–1062. doi:10.1002/jor.24547.
  • Xia Y, Moody JB, Burton-Wurster N, Lust G. Quantitative in situ correlation between microscopic MRI and polarized light microscopy studies of articular cartilage. Osteoarthritis Cartilage. 2001;9(5):393–406. doi:10.1053/joca.2000.0405.
  • Xia Y, Momot K. Biophysics and biochemistry of cartilage by nmr and MRI. Cambridge, UK: Royal Society of Chemistry; 2016.
  • Leucht F, Dürselen L, Hogrefe C, Joos H, Reichel H, Schmitt H, Ignatius A, Brenner RE. Development of a new biomechanically defined single impact rabbit cartilage trauma model for in vivo-studies. J Invest Surg. 2012;25(4):235–241. doi:10.3109/08941939.2011.630123.
  • Zheng S, Xia Y. Multi-components of T2 relaxation in ex vivo cartilage and tendon. J Magn Reson. 2009;198(2):188–196. doi:10.1016/j.jmr.2009.02.005.
  • Xia Y. Magic-angle effect in magnetic resonance imaging of articular cartilage: a review. Invest Radiol. 2000;35(10):602–621. doi:10.1097/00004424-200010000-00007.
  • Lesperance LM, Gray ML, Burstein D. Determination of fixed charge density in cartilage using nuclear magnetic resonance. J Orthop Res. 1992;10(1):1–13. doi:10.1002/jor.1100100102.
  • Bashir A, Gray ML, Burstein D. Gd-dtpa2- as a measure of cartilage degradation. Magn Reson Med. 1996;36(5):665–673. doi:10.1002/mrm.1910360504.
  • Zheng S, Xia Y. The impact of the relaxivity definition on the quantitative measurement of glycosaminoglycans in cartilage by the MRI dGEMRIC method. Magn Reson Med. 2010;63(1):25–32. doi:10.1002/mrm.22169.
  • Lee JH, Xia Y. Quantitative zonal differentiation of articular cartilage by microscopic magnetic resonance imaging, polarized light microscopy, and Fourier-transform infrared imaging. Microsc Res Tech. 2013;76(6):625–632. doi:10.1002/jemt.22209.
  • Lee JH, Badar F, Kahn D, Matyas J, Qu X, Chen CT, Xia Y. Topographical variations of the strain-dependent zonal properties of tibial articular cartilage by microscopic MRI. Connect Tissue Res. 2014;55(3):205–216. doi:10.3109/03008207.2014.894997.
  • Mantebea H, Singh A, Badar F, Abdelmessih G, Sebastian T, Baker K, Newton M, Xia Y. Characteristics of distal femoral articular cartilage in six weeks post-traumatic osteoarthritis by a sub-critical impact. J Orthop Res. 2024. accepted and in press (2024). doi:10.1002/jor.25721.
  • Dijkgraaf LC, de Bont LG, Boering G, Liem RS. Normal cartilage structure, biochemistry, and metabolism: a review of the literature. J Oral Maxillofac Surg. 1995;53(8):924–929. doi:10.1016/0278-2391(95)90283-X.
  • Roughley PJ, Lee ER. Cartilage proteoglycans: structure and potential functions. Microsc Res Tech. 1994;28(5):385–397. doi:10.1002/jemt.1070280505.
  • Hayes WC, Keer LM, Herrmann G, Mockros LF. A mathematical analysis for indentation tests of articular cartilage. J Biomech. 1972;5(5):541–551. doi:10.1016/0021-9290(72)90010-3.
  • Xia Y, Moody JB, Alhadlaq H, Hu J. Imaging the physical and morphological properties of a multi-zone young articular cartilage at microscopic resolution. J Magn Reson Imaging. 2003;17(3):365–374. doi:10.1002/jmri.10269.
  • Calvo E, Palacios I, Delgado E, Ruiz-Cabello J, Hernández P, Sánchez-Pernaute O, Egido J, Herrero-Beaumont G. High-resolution MRI detects cartilage swelling at the early stages of experimental osteoarthritis. Osteoarthritis Cartilage. 2001;9(5):463–472. doi:10.1053/joca.2001.0413.
  • Welsch GH, Mamisch TC, Marlovits S, Glaser C, Friedrich K, Hennig FF, Salomonowitz E, Trattnig S. Quantitative T2 mapping during follow-up after matrix-associated autologous chondrocyte transplantation (mact): full-thickness and zonal evaluation to visualize the maturation of cartilage repair tissue. J Orthop Res. 2009;27(7):957–963. doi:10.1002/jor.20835.
  • DiMicco MA, Patwari P, Siparsky PN, Kumar S, Pratta MA, Lark MW, Kim YJ, Grodzinsky AJ. Mechanisms and kinetics of glycosaminoglycan release following in vitro cartilage injury. Arthritis Rheumatism. 2004;50(3):840–848. doi:10.1002/art.20101.
  • Badar F, Xia Y. Image interpolation improves the zonal analysis of cartilage T2 relaxation in MRI. Quant Imaging Med Surg. 2017;7(2):227–237. doi:10.21037/qims.2017.03.04.
  • Schmalzried TP, Akizuki KH, Fedenko AN, Mirra J. The role of access of joint fluid to bone in periarticular osteolysis. A report of four cases. J Bone Joint Surg Am. 1997;79(3):447–452. doi:10.2106/00004623-199703000-00021.
  • Badar F, Xia Y. The interface region between articular cartilage and bone by μMRI and plm at microscopic resolutions. Microsc Res Tech. 2022;85(4):1483–1493. doi:10.1002/jemt.24011.
  • Kajabi AW, Casula V, Sarin JK, Ketola JH, Nykänen O, Te Moller NCR, Mancini IAD, Visser J, Brommer H, René van Weeren P. Evaluation of articular cartilage with quantitative MRI in an equine model of post-traumatic osteoarthritis. J Orthop Res. 2021;39(1):63–73. doi:10.1002/jor.24780.
  • Korhonen RK, Wong M, Arokoski J, Lindgren R, Helminen HJ, Hunziker EB, Jurvelin JS. Importance of the superficial tissue layer for the indentation stiffness of articular cartilage. Med Eng Phys. 2002;24(2):99–108. doi:10.1016/S1350-4533(01)00123-0.
  • Kajabi AW, Casula V, Ojanen S, Finnilä MA, Herzog W, Saarakkala S, Korhonen RK, Nissi MJ, Nieminen MT. Multiparametric mr imaging reveals early cartilage degeneration at 2 and 8 weeks after acl transection in a rabbit model. J Orthop Res. 2020;38(9):1974–1986. doi:10.1002/jor.24644.
  • Mantebea H, Batool S, Singh A, Hammami M, Badar F, Xia Y. Structural differences between immature and mature articular cartilage of rabbits by microscopic MRI and polarized light microscopy. J Anat. 2022;240(6):1141–1151. doi:10.1111/joa.13620.
  • Olmez N, Schumacher HR Jr. Crystal deposition and osteoarthritis. Curr Rheumatol Rep. 1999;1(2):107–111. doi:10.1007/s11926-999-0006-4.
  • Eming SA, Krieg T, Davidson JM. Inflammation in wound repair: molecular and cellular mechanisms. J Invest Dermatol. 2007;127(3):514–525. doi:10.1038/sj.jid.5700701.

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