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首页> 外文期刊>American Journal of Sports Medicine >Medial collateral ligament injuries and subsequent load on the anterior cruciate ligament: a biomechanical evaluation in a cadaveric model.
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Medial collateral ligament injuries and subsequent load on the anterior cruciate ligament: a biomechanical evaluation in a cadaveric model.

机译:内侧副韧带损伤和前交叉韧带的后续负荷:尸体模型中的生物力学评估。

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摘要

BACKGROUND: Numerous studies have documented the effect of complete medial collateral ligament injury on anterior cruciate ligament loads; few have addressed how partial medial collateral ligament disruption affects knee kinematics. PURPOSE: To determine knee kinematics and subsequent change in anterior cruciate ligament load in a partial and complete medial collateral ligament injury model. STUDY DESIGN: Controlled laboratory study. METHODS: Ten human cadaveric knees were sequentially tested by a robot with the medial collateral ligament intact, in a partial injury model, and in a complete injury model with a universal force-moment sensor measuring system. Tibial translation, rotation, and anterior cruciate ligament load were measured under 3 conditions: anterior load (125 N), valgus load (10 N x m), and internal-external rotation torque (4 N x m; all at 0 degrees and 30 degrees of flexion). RESULTS: Anterior and posterior translation did not statistically increase with a partial or complete medial collateral ligament injury at 0 degrees and 30 degrees of flexion. In response to a 125 N anterior load, at 0 degrees , the anterior cruciate ligament load increased 8.7% (from 99.5 to 108.2 N; P = .006) in the partial injury and 18.3% (117.7 N; P < .001) in the complete injury; at 30 degrees , anterior cruciate ligament load was increased 12.3% (from 101.7 to 114.2 N; P = .001) in the partial injury and 20.6% (122.7 N; P < .001) in the complete injury. In response to valgus torque (10 N x m) at 30 degrees , anterior cruciate ligament load was increased 55.3% (30.4 to 47.2 N; P = .044) in the partial injury model and 185% (86.8 N; P = .001) in the complete injury model. In response to internal rotation torque (4 N.m) at 30 degrees , anterior cruciate ligament load was increased 29.3% (27.6 to 35.7 N; P = .001) in the partial injury model and 65.2% (45.6 N; P < .001) in the complete injury model. The amount of internal rotation at 30 degrees of flexion was significantly increased in the complete injury model (22.8 degrees ) versus the intact state (19.5 degrees ; P < .001). CONCLUSION: Partial and complete medial collateral ligament tears significantly increased the load on the anterior cruciate ligament. In a partial tear, the resultant load on the anterior cruciate ligament was increased at 30 degrees of flexion and with valgus load and internal rotation torque. CLINICAL RELEVANCE: Patients may need to be protected from valgus and internal rotation forces after anterior cruciate ligament reconstruction in the setting of a concomitant partial medial collateral ligament tear. This information may help clinicians understand the importance of partial injuries of the medial collateral ligament with a combined anterior cruciate ligament injury complex.
机译:背景:大量研究证明完全内侧副韧带损伤对前交叉韧带负荷的影响。很少有人解决内侧副韧带局部断裂如何影响膝关节运动学的问题。目的:在部分和完整的内侧副韧带损伤模型中确定膝关节运动学和随后十字交叉韧带负荷的变化。研究设计:受控实验室研究。方法:用机器人在完整的内侧损伤模型中,用局部力模型和完整的损伤模型,用一个通用的力-力矩传感器测量系统,依次对十个人体尸体膝盖进行测试。在以下3种情况下测量胫骨平移,旋转和前交叉韧带负荷:前负荷(125 N),外翻负荷(10 N xm)和内外旋转扭矩(4 N xm;均在0度和30度屈曲)。结果:在0度和30度屈曲时,前侧和后侧平移均无统计学上的局部或完全内侧副韧带损伤。在0度时,响应125 N的前向载荷,局部受伤时前十字韧带载荷增加了8.7%(从99.5增至108.2 N; P = 0.006),而在部分损伤中增加了18.3%(117.7 N; P <.001)完全受伤;在30度时,部分受伤时前十字韧带负荷增加了12.3%(从101.7 N增加到114.2 N; P = .001),完全损伤时增加了20.6%(122.7 N; P <.001)。在30度下响应外翻扭矩(10 N xm),在部分损伤模型中,前十字韧带负荷增加了55.3%(30.4至47.2 N; P = .044),而增加了185%(86.8 N; P = .001)在完整的伤害模型中。响应30度时的内部旋转扭矩(4 Nm),在部分损伤模型中,前十字韧带负荷增加了29.3%(27.6至35.7 N; P = .001),而增加了65.2%(45.6 N; P <.001)在完整的伤害模型中。与完整状态(19.5度; P <.001)相比,在完整损伤模型(22.8度)中,屈曲30度时的内部旋转量显着增加。结论:部分和完整的内侧副韧带撕裂明显增加了前交叉韧带的负荷。在部分撕裂中,前交叉韧带上的合力在30度屈曲时增加,并具有外翻负荷和内部旋转扭矩。临床意义:在前交叉韧带重建后,同时伴有部分内侧副韧带撕裂的情况下,可能需要保护患者免受外翻和内旋转力的影响。该信息可能有助于临床医生了解内侧副韧带部分合并前交叉韧带损伤复合体的重要性。

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