Optimisation des prothèses totales de genou postéro-stabilisées par la méthode des éléments finis

Revue de Chirurgie Orthopédique et Traumatologique - Tập 109 - Trang S121-S131 - 2023
Louis Dagneaux1,2, François Canovas1, Franck Jourdan2
1Service de chirurgie orthopédique et traumatologie du membre inférieur, hôpital Lapeyronie, CHU de Montpellier, 371, avenue Gaston-Giraud, 34295 Montpellier cedex 5, France
2Laboratoire de mécanique et génie civil (LMGC), Montpellier University of Excellence (MUSE), université de Montpellier, 860, rue de St-Priest, 34090 Montpellier, France

Tài liệu tham khảo

American Joint Replacement Registry (AJRR) 2022 ANNUAL REPORT, available at https://www.aaos.org/registries/publications/ajrr-annual-report/n.d. Bori, 2020, Development and validation of an in-silico virtual testing rig for analyzing total knee arthroplasty performance during passive deep flexion: A feasibility study, Med Eng Phys, 84, 21, 10.1016/j.medengphy.2020.07.020 Guess, 2005, Computational modeling of a dynamic knee simulator for reproduction of knee loading, J Biomech Eng, 127, 1216, 10.1115/1.2073676 Erdemir, 2012, Considerations for reporting finite element analysis studies in biomechanics, J Biomech, 45, 625, 10.1016/j.jbiomech.2011.11.038 Erdemir, 2015, Open knee: open source modeling and simulation in knee biomechanics, J Knee Surg, 29, 107, 10.1055/s-0035-1564600 Benos, 2020, A review on finite element modeling and simulation of the anterior cruciate ligament reconstruction, Front Bioeng Biotechnol, 8, 967, 10.3389/fbioe.2020.00967 Brekelmans, 1972, A new method to analyse the mechanical behaviour of skeletal parts, Acta Orthop Scand, 43, 301, 10.3109/17453677208998949 Brekelmans, 1973, Theoretical and experimental investigation of the stress and strain situation on a femur, Acta Orthop Belg, 39, 3 Prendergast, 1997, Finite element models in tissue mechanics and orthopaedic implant design, Clin Biomech, 12, 343, 10.1016/S0268-0033(97)00018-1 Sauer, 2021, The influence of mathematical definitions on patellar kinematics representations, Materials, 14, 7644, 10.3390/ma14247644 Bernakiewicz, 2002, The role of parameter identification in finite element contact analyses with reference to orthopaedic biomechanics applications, J Biomech, 35, 61, 10.1016/S0021-9290(01)00163-4 Oefner, 2021, Reporting checklist for verification and validation of finite element analysis in orthopedic and trauma biomechanics, Med Eng Phys, 92, 25, 10.1016/j.medengphy.2021.03.011 Kang, 2018, Influence of increased posterior tibial slope in total knee arthroplasty on knee joint biomechanics: a computational simulation study, J Arthroplasty, 33, 572, 10.1016/j.arth.2017.09.025 Anijs, 2022, Computational tibial bone remodeling over a population after total knee arthroplasty: a comparative study, J Biomed Mater Res B Appl Biomater, 110, 776, 10.1002/jbm.b.34957 Yang, 2022, Impact of patient, surgical, and implant design factors on predicted tray–bone interface micromotions in cementless total knee arthroplasty, J Orthop Res, jor.25344 Suh, 2017, Computational study on the effect of malalignment of the tibial component on the biomechanics of total knee arthroplasty: a Finite Element Analysis, Bone Jt Res, 6, 623, 10.1302/2046-3758.611.BJR-2016-0088.R2 Zhao, 2015, Kinematic analysis of a posterior-stabilized knee prosthesis, Chin Med J (Engl), 128, 216, 10.4103/0366-6999.149205 Argenson J-NA, 2005, In vivo kinematic evaluation and design considerations related to high flexion in total knee arthroplasty, J Biomech, 38, 277, 10.1016/j.jbiomech.2004.02.027 Du, 2022, Tibio-femoral contact force distribution of knee before and after total knee arthroplasty: combined finite element and gait analysis, Orthop Surg, 14, 1836, 10.1111/os.13361 Christen, 2014, Bone remodelling in humans is load-driven but not lazy, Nat Commun, 5, 4855, 10.1038/ncomms5855 Cho, 2022, Biomechanical effect of anatomical tibial component design on load distribution of medial proximal tibial bone in total knee arthroplasty: finite element analysis indicating anatomical design prevents stress-shielding, Bone Jt Res, 11, 252, 10.1302/2046-3758.115.BJR-2021-0537.R1 Park, 2021, A three-dimensional finite element analysis on the effects of implant materials and designs on periprosthetic tibial bone resorption, PLOS ONE, 16, e0246866, 10.1371/journal.pone.0246866 Srinivasan, 2017, Strain shielding in trabecular bone at the tibial cement-bone interface, J Mech Behav Biomed Mater, 66, 181, 10.1016/j.jmbbm.2016.11.006 Fitzpatrick, 2013, Mechanics of post-cam engagement during simulated dynamic activity, J Orthop Res, 31, 1438, 10.1002/jor.22366 Koh, 2018, Effect of geometric variations on tibiofemoral surface and post-cam design of normal knee kinematics restoration, J Exp Orthop, 5, 53, 10.1186/s40634-018-0167-z Koh, 2018, Effect of post-cam design for normal knee joint kinematic, ligament, and quadriceps force in patient-specific posterior-stabilized total knee arthroplasty by using finite element analysis, BioMed Res Int, 2018, 1, 10.1155/2018/2438980 Lee, 2021, Effect of post-cam design on the kinematics and contact stress of posterior-stabilized total knee arthroplasty, Biomed Mater Eng, 32, 323 Watanabe, 2017, Post-cam design and contact stress on tibial posts in posterior-stabilized total knee prostheses: comparison between a rounded and a squared design, J Arthroplasty, 32, 3757, 10.1016/j.arth.2017.07.010 Koh, 2018, Patient-specific design for articular surface conformity to preserve normal knee mechanics in posterior stabilized total knee arthroplasty, Biomed Mater Eng, 29, 401 Shi, 2008, The effect of polyethylene thickness in fixed- and mobile-bearing total knee replacements, Proc Inst Mech Eng [H], 222, 657, 10.1243/09544119JEIM336 Morra, 2012, Preclinical computational models: predictors of tibial insert damage patterns in total knee arthroplasty: AAOS exhibit selection, J Bone Jt Surg-Am Vol, 94, e137, 10.2106/JBJS.K.00914 Barink, 2008, A mechanical comparison of high-flexion and conventional total knee arthroplasty, Proc Inst Mech Eng [H], 222, 297, 10.1243/09544119JEIM353 Koh, 2019, Optimal design of patient-specific total knee arthroplasty for improvement in wear performance, J Clin Med, 8, 2023, 10.3390/jcm8112023 Innocenti, 2020, Change in knee biomechanics during squat and walking induced by a modification in TKA size, J Orthop, 22, 463, 10.1016/j.jor.2020.10.006 Filip, 2022, Tibial stem extension versus standard configuration in total knee arthroplasty: a biomechanical assessment according to bone properties, Medicina (Mex), 58, 634, 10.3390/medicina58050634 Rivière, 2018, Current concepts for aligning knee implants: patient-specific or systematic ?, EFORT Open Rev, 3, 1, 10.1302/2058-5241.3.170021 Rivière, 2021, What you need to know about kinematic alignment for total knee arthroplasty, Orthop Traumatol Surg Res, 107, 102773, 10.1016/j.otsr.2020.102773 Winnock De Grave, 2022, Inverse kinematic alignment for total knee arthroplasty, Orthop Traumatol Surg Res, 108, 103305, 10.1016/j.otsr.2022.103305 Ishikawa, 2015, Kinematic alignment produces near-normal knee motion but increases contact stress after total knee arthroplasty: a case study on a single implant design, The Knee, 22, 206, 10.1016/j.knee.2015.02.019 Li, 2019, Finite-element analysis of the proximal tibial sclerotic bone and different alignment in total knee arthroplasty, BMC Musculoskelet Disord, 20, 617, 10.1186/s12891-019-3008-z Kang, 2017, Malpositioning of prosthesis: patient-specific total knee arthroplasty versus standard off-the-shelf total knee arthroplasty, JAAOS Glob Res Rev, 1, e020, 10.5435/JAAOSGlobal-D-17-00020 Dong, 2020, An optimization method for implantation parameters of individualized TKA tibial prosthesis based on finite element analysis and orthogonal experimental design, BMC Musculoskelet Disord, 21, 165, 10.1186/s12891-020-3189-5 Kang, 2016, Measuring the effect of femoral malrotation on knee joint biomechanics for total knee arthroplasty using computational simulation, Bone Jt Res, 5, 552, 10.1302/2046-3758.511.BJR-2016-0107.R1 Ishikawa, 2015, Kinematic alignment produces near-normal knee motion but increases contact stress after total knee arthroplasty: a case study on a single implant design, The Knee, 22, 206, 10.1016/j.knee.2015.02.019 Nakamura, 2017, Superior-inferior position of patellar component affects patellofemoral kinematics and contact forces in computer simulation, Clin Biomech, 45, 19, 10.1016/j.clinbiomech.2017.04.005 Latypova, 2019, Patellar bone strain after total knee arthroplasty is correlated with bone mineral density and body mass index, Med Eng Phys, 68, 17, 10.1016/j.medengphy.2019.03.017 Huang, 2014, Patellofemoral kinematics during deep knee flexion after total knee replacement: a computational simulation, Knee Surg Sports Traumatol Arthrosc, 22, 3047, 10.1007/s00167-013-2819-y Ali, 2018, In vivo comparison of medialized dome and anatomic patellofemoral geometries using subject-specific computational modeling, J Orthop Res, 36, 1910, 10.1002/jor.23865 Fitzpatrick, 2011, Development of a statistical shape model of the patellofemoral joint for investigating relationships between shape and function, J Biomech, 44, 2446, 10.1016/j.jbiomech.2011.06.025 Heegaard, 1995, The biomechanics of the human patella during passive knee flexion, J Biomech, 28, 1265, 10.1016/0021-9290(95)00059-Q Innocenti, 2011, Contact forces in several TKA designs during squatting: a numerical sensitivity analysis, J Biomech, 44, 1573, 10.1016/j.jbiomech.2011.02.081 Suh, 2017, Computational study on the effect of malalignment of the tibial component on the biomechanics of total knee arthroplasty: a Finite Element Analysis, Bone Jt Res, 6, 623, 10.1302/2046-3758.611.BJR-2016-0088.R2 Bischoff, 2009, Patellofemoral interactions in walking, stair ascent, and stair descent using a virtual patella model, J Biomech, 42, 1678, 10.1016/j.jbiomech.2009.04.018 Abolghasemian, 2014, Effect of patellar thickness on knee flexion in total knee arthroplasty: a biomechanical and experimental study, J Arthroplasty, 29, 80, 10.1016/j.arth.2013.04.026 Huang, 2017, Stress distribution of the patellofemoral joint in the anatomic V-shape and curved dome-shape femoral component: a comparison of resurfaced and unresurfaced patellae, Knee Surg Sports Traumatol Arthrosc, 25, 263, 10.1007/s00167-014-3485-4 Bori, 2020, Development and validation of an in-silico virtual testing rig for analyzing total knee arthroplasty performance during passive deep flexion: a feasibility study, Med Eng Phys, 84, 21, 10.1016/j.medengphy.2020.07.020 Gheorghiu, 2021, A finite element analysis for predicting outcomes of cemented total knee arthroplasty, Exp Ther Med, 21, 267, 10.3892/etm.2021.9698 Gibbons, 2019, Development of a statistical shape-function model of the implanted knee for real-time prediction of joint mechanics, J Biomech, 88, 55, 10.1016/j.jbiomech.2019.03.010