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Research Article

Influence of tibial bearing curvatures of a customised total knee implant on squatting motion and loads

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Pages 43-55 | Received 24 Sep 2019, Accepted 09 Aug 2020, Published online: 25 Aug 2020

References

  • Ardestani MM, Moazen M, Jin Z. 2015. Contribution of geometric design parameters to knee implant performance: conflicting impact of conformity on kinematics and contact mechanics. Knee. 22(3):217–224.
  • Baldwin MA, Clary CW, Fitzpatrick CK, Deacy JS, Maletsky LP, Rullkoetter PJ. 2012. Dynamic finite element knee simulation for evaluation of knee replacement mechanics. J Biomech. 45(3):474–483.
  • Belvedere C, Leardini A, Giannini S, Ensini A, Bianchi L, Catani F. 2011. Does medio-lateral motion occur in the normal knee? An in-vitro study in passive motion. J Biomech. 44(5):877–884.
  • Bersini S, Sansone V, Frigo CA. 2016. A dynamic multibody model of the physiological knee to predict internal loads during movement in gravitational field. Comput Methods Biomech Biomed Eng. 19(5):571–579.
  • Blankevoort L, Huiskes R. 1991. Ligament-bone interaction in a three-dimensional model of the knee. J Biomech Eng. 113(3):263–269.
  • Carr BC, Goswami T. 2009. Knee implants – review of models and biomechanics. Mater Des. 30(2):398–413.
  • Chu T. 1999. An investigation on contact stresses of New Jersey Low Contact Stress (NJLCS) knee using finite element method. J Syst Integrat. 9(2):187–199.
  • Clary CW, Fitzpatrick CK, Maletsky LP, Rullkoetter PJ. 2013. The influence of total knee arthroplasty geometry on mid-flexion stability: an experimental and finite element study. J Biomech. 46(7):1351–1357.
  • Fedorov A, Beichel R, Kalpathy-Cramer J, Finet J, Fillion-Robin J-C, Pujol S, Bauer C, Jennings D, Fennessy F, Sonka M, et al. 2012. 3D Slicer as an image computing platform for the quantitative imaging network. Magn Reson Imaging. 30(9):1323–1341.
  • Fregly BJ, Besier TF, Lloyd DG, Delp SL, Banks SA, Pandy MG, D'Lima DD. 2012. Grand challenge competition to predict in vivo knee loads. J Orthop Res. 30(4):503–513.
  • Matsuda S, Ishinishi T, White SE, Whiteside LA. 1997. Patellofemoral joint after total knee arthroplasty effect on contact area and contact Stress. J Arthroplas. 12(7):790–797.
  • Murakami K, Hamai S, Okazaki K, Gondo H, Wang Y, Ikebe S, Higaki H, Shimoto T, Mizu-Uchi H, Akasaki Y, et al. 2018. Knee kinematics in bi-cruciate stabilized total knee arthroplasty during squatting and stair-climbing activities. J Orthop. 15(2):650–654.
  • Murakami K, Hamai S, Okazaki K, Ikebe S, Shimoto T, Hara D, Mizu-Uchi H, Higaki H, Iwamoto Y. 2016. In vivo kinematics of healthy male knees during squat and golf swing using image-matching techniques. Knee. 23(2):221–226.
  • Naghibi Beidokhti H, Janssen D, van de Groes S, Hazrati J, Van den Boogaard T, Verdonschot N. 2017. The influence of ligament modelling strategies on the predictive capability of finite element models of the human knee joint.pdf. J Biomech. 65:1–11.
  • Nordin M, Frankel VH. 2001. Basic biomechanics of the musculoskeletal system. 3rd ed. Philadelphia (PA): Lippincott Williams & Wilkins.
  • O’Brien TD, Reeves ND, Baltzopoulos V, Jones DA, Maganaris CN. 2010. Mechanical properties of the patellar tendon in adults and children. J Biomech. 43(6):1190–1195.
  • Patil S, Bunn A, Bugbee WD, Colwell CW, D'Lima DD. 2015. Patient-specific implants with custom cutting blocks better approximate natural knee kinematics than standard TKA without custom cutting blocks. Knee. 22(6):624–629.
  • Ries MD, Weaver K, Rose RM, Gunther J, Sauer W, Beals N. 1996. Fatigue strength of polyethylene after sterilization by gamma irradiation or ethylene oxide. Clin Orthopaed Relat Res. 333:87–95.
  • Shi J. 2007. Finite element analysis of total knee replacement considering gait cycle load and malalignment. Wolverhampton, UK: University of Wolverhampton; http://wlv.openrepository.com/wlv/handle/2436/14404.
  • Simpson DJ, Gray H, D'Lima D, Murray DW, Gill HS. 2008. The effect of bearing congruency, thickness and alignment on the stresses in unicompartmental knee replacements. Clin Biomech (Bristol, Avon)). 23(9):1148–1157.
  • Stylianou AP, Guess TM, Kia M. 2013. Multibody muscle driven model of an instrumented prosthetic knee during squat and Toe Rise motions. J Biomech Eng. 135(4):041008.
  • Taylor M, Barrett DS. 2003. Explicit finite element simulation of eccentric loading in total knee replacement. Clin Orthopaed Relat Res. 414:162–171.
  • Taylor WR, Schütz P, Bergmann G, List R, Postolka B, Hitz M, Dymke J, Damm P, Duda G, Gerber H, et al. 2017. A comprehensive assessment of the musculoskeletal system: the CAMS-knee data set. J Biomech. 65:32–39.
  • Walker PS. 2015. The design and pre-clinical evaluation of knee replacements for osteoarthritis. J Biomech. 48(5):742–749.
  • Walker PS, Lowry MT, Kumar A. 2014. The effect of geometric variations in posterior-stabilized knee designs on motion characteristics measured in a knee loading machine. Clin Orthop Relat Res. 472(1):238–247.
  • Wang L, Wang CJ. 2019. Preliminary study of a customised total knee implant with musculoskeletal and dynamic squatting simulation. Proc Inst Mech Eng H. 233(10):1010–1023.
  • Willing R, Kim IY. 2011. Design optimization of a total knee replacement for improved constraint and flexion kinematics. J Biomech. 44(6):1014–1020.
  • Zeller IM, Sharma A, Kurtz WB, Anderle MR, Komistek RD. 2017. Customized versus patient-sized cruciate-retaining total knee arthroplasty: an in vivo kinematics study using mobile fluoroscopy. J Arthroplas. 32(4):1344–1350.

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