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Medial Collateral Ligament Deficiency of the Elbow Joint: A Computational Approach

机译:肘关节内侧副韧带缺陷:一种计算方法

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Computational elbow joint models, capable of simulating medial collateral ligament deficiency, can be extremely valuable tools for surgical planning and refinement of therapeutic strategies. The objective of this study was to investigate the effects of varying levels of medial collateral ligament deficiency on elbow joint stability using subject-specific computational models. Two elbow joint models were placed at the pronated forearm position and passively flexed by applying a vertical downward motion on humeral head. The models included three-dimensional bone geometries, multiple ligament bundles wrapped around the joint, and the discretized cartilage representation. Four different ligament conditions were simulated: All intact ligaments, isolated medial collateral ligament (MCL) anterior bundle deficiency, isolated MCL posterior bundle deficiency, and complete MCL deficiency. Minimal kinematic differences were observed for isolated anterior and posterior bundle deficient elbows. However, sectioning the entire MCL resulted in significant kinematic differences and induced substantial elbow instability. Joint contact areas were nearly similar for the intact and isolated posterior bundle deficiency. Minor differences were observed for the isolated anterior bundle deficiency, and major differences were observed for the entire MCL deficiency. Complete elbow dislocations were not observed for any ligament deficiency level. As expected, during isolated anterior bundle deficiency, the remaining posterior bundle experiences higher load and vice versa. Overall, the results indicate that either MCL anterior or posterior bundle can provide anterior elbow stability, but the anterior bundle has a somewhat bigger influence on joint kinematics and contact characteristics than posterior one. A study with a larger sample size could help to strengthen the conclusion and statistical significant.
机译:能够模拟内侧副韧带缺乏的计算肘关节模型,对于外科手术计划和治疗策略的完善可能是非常有价值的工具。这项研究的目的是使用特定于对象的计算模型来研究不同水平的内侧副韧带不足对肘关节稳定性的影响。将两个肘关节模型放置在前臂的旋前位置,并通过在肱骨头上垂直向下运动来被动弯曲。该模型包括三维骨骼几何形状,围绕关节包裹的多个韧带束以及离散的软骨表示。模拟了四种不同的韧带状况:所有完整韧带,孤立的内侧副韧带(MCL)前束缺损,孤立的MCL后束缺损以及完全MCL缺损。对于孤立的前,后束缺肘,观察到最小的运动学差异。但是,对整个MCL进行切片会导致明显的运动学差异,并导致严重的肘关节不稳定。对于完整和孤立的后束缺乏症,关节接触面积几乎相似。对于孤立的前束缺损观察到微小差异,对于整个MCL缺损观察到主要差异。韧带缺乏水平未观察到完全肘关节脱位。如预期的那样,在孤立的前束不足时,其余的后束承受较高的负荷,反之亦然。总体而言,结果表明,MCL前束或后束均可提供前肘稳定性,但前束对关节运动学和接触特性的影响要大于后束。样本量较大的研究可以帮助加强结论和统计学意义。

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