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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Mechanics of the passive knee joint. Part 2: interaction between the ligaments and the articular surfaces in guiding the joint motion
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Mechanics of the passive knee joint. Part 2: interaction between the ligaments and the articular surfaces in guiding the joint motion

机译:被动膝关节的力学。第2部分:韧带与关节表面之间的相互作用,以引导关节运动

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The aim of this study was to examine how the interaction between ligament tensions and contact forces guides the knee joint through its specific pattern of passive motion. A computer model was built based on cadaver data. The passive motion and the ligament lengthening and force patterns predicted by the model were verified with data from the literature. The contribution of each ligament and contact force was measured in terms of the rotational moment that it produced about the tibial medial plateau and the anterior-posterior (AP) force that it exerted on the tibia. The high tension of the anterior cruciate ligament (ACL) and the geometric constraints of the anterior horns of the menisci were found to be key features that stabilized the knee at full extension. The mutual effect of the cruciates was found as the reason for the screw-home mechanism at early flexion. Past 30°, the AP component of contact force on the convex geometry of the lateral tibial plateau and tension of the lateral collateral ligament (LCL) were identified as elements that control the joint motion. From 60° to 90°, reduction in the tension of the ACL was determined as a reason for continuation of the tibial anterior translation. From 90° to 120°, increase in the tension of the posterior cruciate ligament and the AP component of the contact force on the convex geometry of the lateral tibial plateau pushed the tibia more anteriorly. This anterior translation was limited by the constraining effects of the ACL tension and the AP component of the contact force on the medial meniscus. The important guiding role observed for the LCL suggests that it should not be overlooked in knee models.
机译:这项研究的目的是研究韧带张力和接触力之间的相互作用如何通过其特定的被动运动模式引导膝关节。基于尸体数据建立了计算机模型。该模型所预测的被动运动以及韧带的伸长和受力模式已得到了来自文献的数据的验证。根据每个韧带在胫骨内侧平台周围产生的旋转力矩和施加在胫骨上的前后力(AP)来衡量每个韧带的贡献。发现前交叉韧带(ACL)的高张力和半月板前角的几何约束是使膝盖完全伸展稳定的关键特征。发现十字形的相互影响是早期弯曲时螺丝归位机构的原因。超过30°时,在胫骨外侧平台的凸形几何结构上的接触力的AP分量和外侧副韧带(LCL)的张力被确定为控制关节运动的要素。从60°到90°,ACL张力的降低被确定为持续进行胫骨前移的原因。从90°到120°,后十字韧带的张力增加,并且在胫骨外侧平台的凸形几何结构上的接触力的AP分量将胫骨推向更前方。该前向平移受ACL张力和接触力的AP分量对内侧半月板的约束作用所限制。 LCL的重要指导作用表明,在膝关节模型中不应忽略它。

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