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内侧半月板在力传递和稳定性中的作用。

Function of the medial meniscus in force transmission and stability.

作者信息

Walker Peter S, Arno Sally, Bell Christopher, Salvadore Gaia, Borukhov Ilya, Oh Cheongeun

机构信息

Department of Orthopaedic Surgery, New York University - Hospital for Joint Diseases, 301 East 17th Street New York, NY 10003 USA.

Department of Orthopaedic Surgery, New York University - Hospital for Joint Diseases, 301 East 17th Street New York, NY 10003 USA.

出版信息

J Biomech. 2015 Jun 1;48(8):1383-8. doi: 10.1016/j.jbiomech.2015.02.055. Epub 2015 Mar 18.

Abstract

We studied the combined role of the medial meniscus in distributing load and providing stability. Ten normal knees were loaded in combinations of compressive and shear loading as the knee was flexed over a full range. A digital camera tracked the motion, from which femoral-tibial contacts were determined by computer modelling. Load transmission was determined from the Tekscan for the anterior horn, central body, posterior horn, and the uncovered cartilage in the centre of the meniscus. For the three types of loading; compression only, compression and anterior shear, compression and posterior shear; between 40% and 80% of the total load was transmitted through the meniscus. The overall average was 58%, the remaining 42% being transmitted through the uncovered cartilage. The anterior horn was loaded only up to 30 degrees flexion, but played a role in controlling anterior femoral displacement. The central body was loaded 10-20% which would provide some restraint to medial femoral subluxation. Overall the posterior horn carried the highest percentage of the shear load, especially after 30 degrees flexion when a posterior shear force was applied, where the meniscus was estimated to carry 50% of the shear force. This study added new insights into meniscal function during weight bearing conditions, particularly its role in early flexion, and in transmitting shear forces.

摘要

我们研究了内侧半月板在分担负荷和提供稳定性方面的综合作用。在膝关节全范围屈伸过程中,对10个正常膝关节施加压缩和剪切负荷的组合。用数码相机跟踪运动,通过计算机建模确定股骨与胫骨的接触点。通过Tekscan测定半月板前角、中央体、后角以及半月板中央未覆盖软骨处的负荷传递情况。对于仅压缩、压缩与前向剪切、压缩与后向剪切这三种加载类型,总负荷的40%至80%通过半月板传递。总体平均值为58%,其余42%通过未覆盖的软骨传递。前角仅在屈膝30度时承受负荷,但在控制股骨向前移位方面发挥作用。中央体承受10% - 20%的负荷,这对股骨内侧半脱位有一定的限制作用。总体而言,后角承受的剪切负荷百分比最高,尤其是在施加后向剪切力且屈膝超过30度时,据估计半月板承受了50%的剪切力。这项研究为负重条件下半月板的功能,特别是其在早期屈膝以及传递剪切力方面的作用提供了新的见解。

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