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A wear model to predict damage of reconstructed ACL

Article dans une revue avec comité de lecture
Auteur
MAEZTU REDIN, Deyo
1157 Centre des Matériaux [MAT]
CAROUX, Julien
1157 Centre des Matériaux [MAT]
ccROHAN, Pierre-Yves
ccPILLET, Helene
1001017 Institut de Biomécanique Humaine Georges Charpak [IBHGC]
CERMOLACCE, Alexia
TRNKA, Julien
34256 École nationale vétérinaire d'Alfort [ENVA]
MANASSERO, Mathieu
1002372 Biologie, Bioingénierie et Bioimagerie Ostéo-articulaires [B3OA (UMR 7052 / U1271)]
34256 École nationale vétérinaire d'Alfort [ENVA]
VIATEAU, Véronique
34256 École nationale vétérinaire d'Alfort [ENVA]
1002372 Biologie, Bioingénierie et Bioimagerie Ostéo-articulaires [B3OA (UMR 7052 / U1271)]
CORTÉ, Laurent
1157 Centre des Matériaux [MAT]

URI
http://hdl.handle.net/10985/22575
DOI
10.1016/j.jmbbm.2022.105426
Date
2022-09
Journal
Journal of the Mechanical Behavior of Biomedical Materials

Résumé

Impingement with surrounding tissues is a major cause of failure of anterior cruciate ligament reconstruction. However, the complexity of the knee kinematics and anatomical variations make it difficult to predict the occurrence of contact and the extent of the resulting damage. Here we hypothesise that a description of wear between the reconstructed ligament and adjacent structures captures the in vivo damage produced with physiological loadings. To test this, we performed an in vivo study on a sheep model and investigated the role of different sources of damage: overstretching, excessive twist, excessive compression, and wear. Seven sheep underwent cranial cruciate ligament reconstruction using a tendon autograft. Necropsy observations and pull-out force measurements performed postoperatively at three months showed high variability across specimens of the extent and location of graft damage. Using 3D digital models of each stifle based on X-ray imaging and kinematics measurements, we determined the relative displacements between the graft and the surrounding bones and computed a wear index describing the work of friction forces underwent by the graft during a full flexion-extension movement. While tensile strain, angle of twist and impingement volume showed no correlation with pull-out force (ρ = −0.321, p = 0.498), the wear index showed a strong negative correlation (r = −0.902, p = 0.006). Moreover, contour maps showing the distribution of wear on the graft were consistent with the observations of damage during the necropsy. These results demonstrate that wear is a good proxy of graft damage. The proposed wear index could be used in implant design and surgery planning to minimise the risk of implant failure. Its application to sheep can provide a way to increase preclinical testing efficiency.

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  • Institut de Biomécanique Humaine Georges Charpak (IBHGC)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Functional evaluation of anterior cruciate ligagment autografts in pre-clinical animal models 
    Communication sans acte
    ccSKALLI, Wafa; TRNKA, Julien; MANASSERO, Mathieu; VIATEAU, Véronique; CAROUX, Julien; CORTÉ, Laurent; ccROHAN, Pierre-Yves; ccPILLET, Helene (2017)
    Introduction Rupture of the Anterior Cruciate Ligament (ACL) affects about 1 person over 3000 every year. The current standard care is based on ligament reconstruction by autograft from tendon tissues and is considered as ...
  • Simulating the Remodelling of Bone around Implants 
    Communication sans acte
    FRAME, Jamie C.; CORTÉ, Laurent; ALLENA, Rachele; ccROHAN, Pierre-Yves (2017)
    Introduction Improper osseointegration of implants leading to poor mechanical anchoring or embrittlement of neighboring bone is a major concern in orthopedic surgery [1?]. This integration is known to depend on the complex ...
  • A mechano-biological model of multi-tissue evolution in bone 
    Article dans une revue avec comité de lecture
    FRAME, Jamie C.; CORTÉ, Laurent; ALLENA, Rachele; ccROHAN, Pierre-Yves (Springer Verlag, 2019)
    Successfully simulating tissue evolution in bone is of significant importance in predicting various biological processes such as bone remodeling, fracture healing and osseointegration of implants. Each of these processes ...
  • Optimal bone structure is dependent on the interplay between mechanics and cellular activities 
    Article dans une revue avec comité de lecture
    FRAME, Jamie C.; CORTÉ, Laurent; ALLENA, Rachele; ccROHAN, Pierre-Yves (Elsevier, 2018)
    Bone is a tissue with the remarkable capacity to adapt its structure to an optimized microstructural form depending on variations in the loading conditions. The remodeling process in bone produces distinct tissue distributions ...
  • Effect of the ischial support on muscle force estimation during transfemoral walking 
    Article dans une revue avec comité de lecture
    ccFOUGERON, Nolwenn; ccBONNET, Xavier; ccPANHELLEUX, Brieuc; ROSE, Jean-Loïc; ccROHAN, Pierre-Yves; PILLET, Hélène; ccPILLET, Helene (Ovid Technologies (Wolters Kluwer Health), 2024-04)
    Background: Transmission of loads between the prosthetic socket and the residual limb is critical for the comfort and walking ability of people with transfemoral amputation. This transmission is mainly determined ...

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