Literature DB >> 20957731

The medial-lateral force distribution in the ovine stifle joint during walking.

William R Taylor1, Berry M Poepplau, Christian König, Rainald M Ehrig, Stefan Zachow, Georg N Duda, Markus O Heller.   

Abstract

Knowledge of the load distribution in the knee is essential for understanding the interaction between mechanics and biology in both the healthy and diseased joint. While the sheep stifle joint is a predominant model for better understanding regeneration after injury, little is known about the compartmental force distribution between the medial and lateral condyles. By including sheep specific anatomy and gait analyses, we used computational musculoskeletal analyses to estimate the medial-lateral joint contact force distribution in ovine stifle joints during walking by simplifying the system of equations into a 2D problem that was solved directly. Gait analysis was conducted using bone markers in three female Merino-mix sheep. Joint contact forces were computed with respect to the specific anatomy of the ovine tibia, resulting in low (<0.13 bodyweight) mean anteroposterior shear forces throughout the gait cycle, with mean peak contact forces perpendicular to the tibial plateau of 2.2 times bodyweight. The medial-lateral compartmental load distribution across the tibial condyles was determined and revealed loading predominantly on the medial condyle, bearing approximately 75% of the total load during phases of peak loading. By considering the anatomical characteristics of the ovine stifle joint, together with the dynamic forces during gait, this study provides evidence for predominantly medial loading in sheep, somewhat similar to the distribution reported in man. However, the exact conditions under which the loading in the ovine stifle joint is representative of the human situation will need to be elucidated in further studies.
Copyright © 2010 Orthopaedic Research Society.

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Year:  2010        PMID: 20957731     DOI: 10.1002/jor.21254

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  9 in total

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Review 2.  * The Ovine Model for Meniscus Tissue Engineering: Considerations of Anatomy, Function, Implantation, and Evaluation.

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6.  Correlation of meniscal T2* with multiphoton microscopy, and change of articular cartilage T2 in an ovine model of meniscal repair.

Authors:  M F Koff; P Shah; S Pownder; B Romero; R Williams; S Gilbert; S Maher; L A Fortier; S A Rodeo; H G Potter
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7.  Effects of realistic sheep elbow kinematics in inverse dynamic simulation.

Authors:  Baptiste Poncery; Santiago Arroyave-Tobón; Elia Picault; Jean-Marc Linares
Journal:  PLoS One       Date:  2019-03-05       Impact factor: 3.240

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Authors:  Vee San Cheong; Paul Fromme; Melanie J Coathup; Aadil Mumith; Gordon W Blunn
Journal:  Ann Biomed Eng       Date:  2019-09-23       Impact factor: 3.934

9.  Meniscus Injury and its Surgical Treatment Does not Increase Initial Whole Knee Joint Friction.

Authors:  Luisa de Roy; Daniela Warnecke; Steffen Paul Hacker; Ulrich Simon; Lutz Dürselen; Anita Ignatius; Andreas Martin Seitz
Journal:  Front Bioeng Biotechnol       Date:  2021-12-10
  9 in total

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