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Biomechanical evaluation of a bioactive artificial anterior cruciate ligament

Article dans une revue avec comité de lecture
Auteur
ccGUÉRARD, Sandra
MANASSERO, Mathieu
VIATEAU, Véronique
MIGONNEY, Véronique
ccSKALLI, Wafa
MITTON, David

URI
http://hdl.handle.net/10985/9560
DOI
10.12989/aba.2014.1.4.239
Date
2014
Journal
Biomechanical evaluation of a bioactive artificial anterior cruciate ligament

Résumé

This study aimed to assess the biomechanical performance of a new generation of artificial ligament, which can be considered “bioactive” and “biointegrated,” implanted in sheep. Thirty sheep were implanted: 15 sheep received the artificial ligament grafted with a bioactive polymer (grafted) and 15 received the artificial ligament without a bioactive polymer (non-grafted). The animals were sacrificed 3 or 12 months after implantation. The knee kinematics, namely flexion-extension, anterior drawer, and varusvalgus tests, were evaluated using a fully characterized custom-made device. Afterward, the specimens were tested under uniaxial tension until failure. The flexion-extension showed significant differences between (grafted or non-grafted) artificial and native ligaments 3 months after implantation. This difference became non-significant 12 months postoperatively. The anterior tibial drawer was significantly increased 3 months after implantation and remained significantly different only for non-grafted ligament 12 months after implantation. Twelve months after implantation, the differences between grafted and non-grafted ligament biomechanical properties were significant in terms of stiffness. In terms of load to failure, grafted ligaments seem to have had slightly better performance than non-grafted ligaments 12 months postoperatively. Overall these results suggest that grafted artificial ligaments have slightly better biomechanical characteristics than non-grafted artificial ligaments 12 months after implantation in sheep.

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  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)

Documents liés

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  • Biological and Biomechanical Evaluation of the Ligament Advanced Reinforcement System (LARS AC) in a Sheep Model of Anterior Cruciate Ligament Replacement: A 3-Month and 12-Month Study 
    Article dans une revue avec comité de lecture
    VIATEAU, Véronique; MANASSERO, Mathieu; ANAGNOSTOU, Fani; MITTON, David; MIGONNEY, Véronique; ccGUÉRARD, Sandra (WB Saunders, 2013)
    PurposeThe purposes of this study were to assess tissue ingrowth within the Ligament Advanced Reinforcement System (LARS) artificial ligament (LARS AC; LARS, Arc sur Tille, France) and to study the biomechanical characteristics ...
  • The effect of polystyrene sodium sulfonate grafting on polyethylene terephthalate artificial ligaments on in vitro mineralisation and in vivo bone tissue integration 
    Article dans une revue avec comité de lecture
    VAQUETTE, Cédryck; VIATEAU, Véronique; ccGUÉRARD, Sandra; ANAGNOSTOU, Fani; MANASSERO, Mathieu; CASTNER, David G.; MIGONNEY, Véronique (Elsevier, 2013)
    This study investigates the impact of polystyrene sodium sulfonate (PolyNaSS) grafting onto the osseointegration of a polyethylene terephthalate artificial ligament (Ligament Advanced Reinforcement System, LARS ) used for ...
  • 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 ...
  • A wear model to predict damage of reconstructed ACL 
    Article dans une revue avec comité de lecture
    MAEZTU REDIN, Deyo; CAROUX, Julien; ccROHAN, Pierre-Yves; ccPILLET, Helene; CERMOLACCE, Alexia; TRNKA, Julien; MANASSERO, Mathieu; VIATEAU, Véronique; CORTÉ, Laurent (Elsevier BV, 2022-09)
    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 ...
  • Quantification of nonlinear elasticity for the valuation of submillimeter crack length in cortical bone 
    Article dans une revue avec comité de lecture
    HAUPERT, Sylvain; ccGUÉRARD, Sandra; MITTON, David; PEYRIN, Françoise; LAUGIER, Pascal (Elsevier, 2015)
    The objective of this study was to investig ate the sensitivity of the nonlinear elastic properties of cortical bon e to the presence of a single submillime tric crac k. Nonli near elasticity was measured by nonlinear ...

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