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1000 Titel
  • Using Musculoskeletal Models to Estimate in vivo Total Knee Replacement Kinematics and Loads: Effect of Differences Between Models
1000 Autor/in
  1. Curreli, Cristina |
  2. Di Puccio, Francesca |
  3. Davico, Giorgio |
  4. Modenese, Luca |
  5. Viceconti, Marco |
1000 Verlag
  • Frontiers Media S.A.
1000 Erscheinungsjahr 2021
1000 Publikationstyp
  1. Artikel |
1000 Online veröffentlicht
  • 2021-07-28
1000 Erschienen in
1000 Quellenangabe
  • 9:703508
1000 Copyrightjahr
  • 2021
1000 Embargo
  • 2022-01-30
1000 Lizenz
1000 Verlagsversion
  • https://doi.org/10.3389/fbioe.2021.703508 |
  • https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8357266/ |
1000 Publikationsstatus
1000 Begutachtungsstatus
1000 Abstract/Summary
  • <jats:p>Total knee replacement (TKR) is one of the most performed orthopedic surgeries to treat knee joint diseases in the elderly population. Although the survivorship of knee implants may extend beyond two decades, the poor outcome rate remains considerable. A recent computational approach used to better understand failure modes and improve TKR outcomes is based on the combination of musculoskeletal (MSK) and finite element models. This combined multiscale modeling approach is a promising strategy in the field of computational biomechanics; however, some critical aspects need to be investigated. In particular, the identification and quantification of the uncertainties related to the boundary conditions used as inputs to the finite element model due to a different definition of the MSK model are crucial. Therefore, the aim of this study is to investigate this problem, which is relevant for the model credibility assessment process. Three different generic MSK models available in the OpenSim platform were used to simulate gait, based on the experimental data from the fifth edition of the “Grand Challenge Competitions to Predict <jats:italic>in vivo</jats:italic> Knee Loads.” The outputs of the MSK analyses were compared in terms of relative kinematics of the knee implant components and joint reaction (JR) forces and moments acting on the tibial insert. Additionally, the estimated knee JRs were compared with those measured by the instrumented knee implant so that the “global goodness of fit” was quantified for each model. Our results indicated that the different kinematic definitions of the knee joint and the muscle model implemented in the different MSK models influenced both the motion and the load history of the artificial joint. This study demonstrates the importance of examining the influence of the model assumptions on the output results and represents the first step for future studies that will investigate how the uncertainties in the MSK models propagate on disease-specific finite element model results.</jats:p>
1000 Sacherschließung
lokal joint contact forces
lokal Bioengineering and Biotechnology
lokal musculoskeletal modeling
lokal knee implant kinematics
lokal total knee replacement
lokal model credibility assessment
1000 Liste der Beteiligten
  1. https://frl.publisso.de/adhoc/uri/Q3VycmVsaSwgQ3Jpc3RpbmE=|https://frl.publisso.de/adhoc/uri/RGkgUHVjY2lvLCBGcmFuY2VzY2E=|https://frl.publisso.de/adhoc/uri/RGF2aWNvLCBHaW9yZ2lv|https://frl.publisso.de/adhoc/uri/TW9kZW5lc2UsIEx1Y2E=|https://frl.publisso.de/adhoc/uri/VmljZWNvbnRpLCBNYXJjbw==
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1000 Erstellt am 2024-05-21T15:01:53.618+0200
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