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Correlation of Force to Deformation of the Anterior Bundle of the Medial Collateral Ligament Through Consideration of Band Laxity

机译:通过考虑带状松弛的力与内侧侧束前束的变形的相关性

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ABSTRACT The anterior bundle of the medial collateral ligament (AMCL) resists the loads that arise at the elbow during overhand throwing and has commonly been divided into posterior and anterior bands. While these anterior and posterior bands have been thought to bear the load at different flexion angles, any transition of the load distribution between the two bands is poorly understood and has not considered laxity (slack). This study considers the AMCL as three bands and quantifies the mechanical response to vertical distraction, simulating valgusload joint opening, through the sequential superposition of the band responses after the elimination of inherent laxity. Eight cadaveric elbow specimens were used for the study. The intact AMCL of each specimen was tested under vertical distraction in a specialized load frame at four elbow flexion angles and then subsequently retested after two longitudinal transections. The greatest laxity at full extension and full flexion belonged to the posterior (1.9 mm) and anterior (2.4 mm) band, respectively. At the lesser and higher flexion angles, the greatest structural stiffness belonged to the anterior and middle band. The overall AMCL was the most structurally stiff at 60? with approximately 150 N of force required for 2% elongation. This study shows that the different bands of the AMCL may have different load bearing properties at different flexion angles, causing each band to support different proportions of an imposed load. The presence of the laxity may impose a loadbearing delay, causing loadbearing in each band to begin asynchronously. ?2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 37:20272034, 2019
机译:摘要内侧辅助韧带(AMCL)的前束抵抗弯管期间在肘部的载荷上产生的负载,并且通常被分成后部带。虽然已经认为这些前部和后部带以不同的屈曲角度承受负载,但是两个带之间的负载分布的任何转变都很易于理解并且尚未考虑松弛(松弛)。本研究将AMCL视为三个带,并通过在消除固有的松弛之后通过带响应的顺序叠加来定量对垂直分散的机械响应,模拟valgusload接头开口。使用八个尸体弯头标本进行研究。在四个弯头屈曲角度在专用负载框架中垂直分散测试在每个样本的完整AMCL在四个肘部屈曲角度测试,然后在两个纵向横断后重新测试。完全延伸的最大松弛和完全屈曲分别属于后(1.9毫米)和前(2.4 mm)带。在较小的屈曲角度,最大的结构刚度属于前部和中间带。整体AMCL在60岁时是最具结构上僵硬的? 2%伸长率需要大约150万吨力。该研究表明,AMCL的不同条带可以具有不同的屈曲角度的不同负载轴承性能,使得每个频带支持施加的载荷的不同比例。松弛的存在可能施加负载困难的延迟,导致每个频带中的负载串行以异步开始。 ?2019年骨科研究会。由Wiley Hearyicals,Inc.J orthop Res 37:20272034,2019出版

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