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首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >Effect of Anteromedial and Posterolateral Anterior Cruciate Ligament Bundles on Resisting Medial and Lateral Tibiofemoral Compartment Subluxations
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Effect of Anteromedial and Posterolateral Anterior Cruciate Ligament Bundles on Resisting Medial and Lateral Tibiofemoral Compartment Subluxations

机译:入和后外侧的前交叉韧带在抵制内侧和包侧胫股的隔间半脱位

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Purpose: This study analyzed the interaction of the anteromedial and posterolateral portions of the anterior cruciate ligament (ACL) in resisting medial and lateral tibiofemoral compartment subluxations under multiple loading conditions. Methods: By use of a 6-df robotic simulator, 10 human cadaveric knees were tested in 3 states: intact ACL, partial ACL (loss of either the anteromedial bundle [AMB] or posterolateral bundle [PLB]), and deficient ACL. The testing profile involved anterior-posterior translation and internal-external rotation, as well as 3 pivot-shift loading conditions with varying internal rotation torque (1- or 5-Nm) and coupled anterior force (35- or 100-N). Digitization of anatomic landmarks provided tibiofemoral compartment translations and centers of tibial rotation. Results: During pivot-shift testing (100-N anterior force, 1-Nm internal rotation torque, and 7-Nm valgus), the lateral and medial compartment anterior translation increased by a mean of 2.5 +/- 0.8 mm (P=.016) and 3.4 +/- 2.0 mm (P=.001), respectively, on AMB sectioning and 1.3 +/- 0.9 mm (P=.329) and 0.6 +/- 0.7 mm (P=.544), respectively, on PLB sectioning. Higher internal rotation torque (5 Nm v 1 Nm) on pivot-shift testing reduced central and medial anterior translation after ACL sectioning. There was no change in internal rotation on AMB or PLB sectioning. During the Lachman test (100-N), AMB and PLB sectioning increased central translation by 3.6 +/- 1.6 mm (P-.001) and 0.7 +/- 0.6 mm (P-.498), respectively. Conclusions: Both ACL bundles function synergistically in resisting medial and lateral compartment subluxations on the Lachman and pivot-shift tests. The AMB provided more restraint to anterior tibial translation during both tests as compared with the PLB. PLB sectioning produced no statistically significant change in anterior translation on the Lachman or pivot-shift test. Neither bundle contributed to resisting internal rotation.
机译:目的:这项研究的相互作用进行了分析双侧和后外侧的部分前交叉韧带(ACL)的抵制内侧和外侧胫股的隔间多个加载条件下的半脱位。方法:利用6-df机器人模拟器,10三州的人类尸体的膝盖进行了测试:完整的ACL,部分ACL(的损失入包(AMB)或后外侧的包拉钮),和缺乏ACL。概要文件涉及前后翻译下和内外旋转,以及3pivot-shift不同加载条件内部旋转扭矩(1 -或5-Nm)和耦合前力(35 - 100 - n)。解剖标志提供了胫股的室翻译和胫骨的中心旋转。(100 - n前力,1 nm内部旋转转矩和7-Nm外翻),外侧和内侧舱前翻译增加了意思是2.5 + / - 0.8毫米(P = .016)和3.4 + / - 2.0毫米(P =措施),分别在AMB切片1.3 + / - 0.9毫米(P = .329)和0.6 + / - 0.7毫米(分别为P = .544),拉钮切片。内部旋转扭矩(5 v 1 Nm)pivot-shift测试减少中央和内侧前翻译ACL后切片。没有改变内部旋转AMB或拉钮吗切片。和拉钮切片增加中央翻译3.6 + / - 1.6毫米(P措施)和0.7 + / - 0.6毫米(分别为P -.498)。包功能协同抵制内侧和外侧间室半脱位拉克和pivot-shift测试。提供更多的克制前胫骨翻译在与测试拉钮。前翻译上的显著变化拉克或pivot-shift测试。有助于抵抗内部旋转。

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