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首页> 外文期刊>American Journal of Sports Medicine >Force measurements on the posterior oblique ligament and superficial medial collateral ligament proximal and distal divisions to applied loads.
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Force measurements on the posterior oblique ligament and superficial medial collateral ligament proximal and distal divisions to applied loads.

机译:在后斜韧带和浅内侧副韧带近端和远端分开处施加力,以进行测量。

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BACKGROUND: There is limited information regarding load responses of the posterior oblique and superficial medial collateral ligaments to applied loads. HYPOTHESES: The degree of knee flexion affects loads experienced by the posterior oblique ligament and both divisions of the superficial medial collateral ligament. The posterior oblique ligament provides significant resistance to valgus and internal rotation forces near knee extension. Different load responses are experienced by proximal and distal divisions of the superficial medial collateral ligament. STUDY DESIGN: Descriptive laboratory study. METHODS: Twenty-four nonpaired, fresh-frozen cadaveric knees were tested. Buckle transducers were applied to the proximal and distal divisions of the superficial medial collateral and posterior oblique ligaments. Applied loads at 0 degrees, 20 degrees, 30 degrees, 60 degrees, and 90 degrees of knee flexion consisted of 10 N m valgus loads, 5 N.m internal and external rotation torques, and 88 N anterior and posterior drawer loads. RESULTS: External rotation torques produced a significantly higher load response on the distal superficial medial collateral ligament than did internal rotation torques at all flexion angles with the largest difference at 90 degrees (96.6 vs 22.5 N). For an applied valgus load at 60 degrees of knee flexion, loads on the superficial medial collateral ligament were significantly higher in the distal division (103.5 N) than the proximal division (71.9 N). The valgus load response of the posterior oblique ligament at 0 degrees of flexion (19.1 N) was significantly higher than at 30 degrees (10.6 N), 60 degrees (7.8 N), and 90 degrees (6.8 N) of flexion. At 0 degrees of knee flexion, the load response to internal rotation on the posterior oblique ligament (45.8 N) was significantly larger than was the response on both divisions of the superficial medial collateral ligament (20 N for both divisions). At 90 degrees of flexion, the load response to internal rotation torques reciprocated between these structures with a significantly higher response in the distal superficial medial collateral ligament division (22.5 N) than the posterior oblique ligament (9.1 N). CONCLUSION: The superficial medial collateral ligament experienced the largest load response to applied valgus and external rotation torques; the posterior oblique ligament observed the highest load response to internal rotation near extension. CLINICAL RELEVANCE: This study provides new knowledge of the individual biomechanical function of the main medial knee structures in an intact knee and will assist in the interpretation of clinical knee motion testing and provide evidence for techniques involving repair or reconstruction of the posterior oblique ligament and both divisions of the superficial medial collateral ligament.
机译:背景:关于后倾斜和浅内侧副韧带对施加载荷的载荷响应的信息有限。假设:膝关节屈曲的程度会影响后斜韧带和浅表内侧副韧带的两个部分所承受的负荷。后斜韧带对膝盖延伸附近的外翻和内部旋转力具有明显的抵抗力。浅表内侧副韧带的近端和远端分裂会经历不同的负荷反应。研究设计:描述性实验室研究。方法:对二十四个未配对的新鲜冷冻尸体膝盖进行了测试。将带扣换能器应用于浅内侧副侧韧带和后斜韧带的近端和远端。膝部弯曲度分别为0度,20度,30度,60度和90度时施加的载荷包括10 N m的外翻载荷,5 N.m的内部和外部旋转扭矩以及88 N的前后抽屉载荷。结果:在所有屈曲角度下,外部旋转扭矩在远端浅表内侧副韧带上产生的负荷响应均比内部旋转扭矩高得多,最大旋转角度为90度(96.6 vs 22.5 N)。对于在膝关节弯曲60度时施加的外翻负荷,远侧区(103.5 N)的近侧内侧副韧带上的负荷明显高于近侧区(71.9 N)。屈曲0度(19.1 N)时后斜韧带的外翻负荷响应明显高于屈曲30度(10.6 N),60度(7.8 N)和90度(6.8 N)时。膝关节屈曲为0度时,后斜韧带对内旋的负载响应(45.8 N)显着大于浅表内侧副韧带的两个分区(两个分区均为20 N)的响应。在90度屈曲时,对内部旋转扭矩的载荷响应在这些结构之间往复运动,远侧浅内侧副韧带分割区(22.5 N)的反应明显高于后斜韧带(9.1 N)。结论:浅表内侧副韧带对外翻力矩和外旋扭矩的最大负荷响应。后斜韧带在伸展时观察到对内部旋转的最大负荷响应。临床相关性:这项研究提供了完整膝盖中主要内侧膝盖结构的个体生物力学功能的新知识,将有助于临床膝关节运动测试的解释,并为涉及后斜韧带修复和重建的技术提供证据,内侧内侧副韧带的分裂。

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