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Preventing Anterior Cruciate Ligament Failure During Impact Compression by Restraining Anterior Tibial Translation or Axial Tibial Rotation

机译:通过抑制前胫骨平移或轴向胫骨旋转,防止在冲击压缩过程中韧带失效

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Anterior cruciate ligament injury is highly prevalent in activities that involve large and rapid landing impact loads. We hypothesize that restraining anterior tibial translation or axial tibial rotation can prevent the anterior cruciate ligament from failing at the range of peak compressive load that can induce ligament failure when both factors are unrestrained. Sixteen porcine knee specimens were mounted onto a material-testing system at 70-deg flexion. Single 10-Hz haversine impact compression was successively repeated with incremental actuator displacement until ligament failure/visible bone fracture was noted. During impact compression, rotational and translational data of the knee joint was obtained using motion-capture system via markers attached to the setup. Specimens were randomly classified into four test groups: Q (unrestrained setup), A (anterior tibial translation restraint), R (axial tibial rotation restraint) and C (combination of both restraints). The same impact protocol was applied to all specimens. Q specimens incurred anterior cruciate ligament failure in the form of femoral avulsion; the peak compressive forces during failure ranged from 1.4-4.0 kN. A, R and C specimens underwent visible bone fracture with ligament intact; the peak compressive force during fracture ranged from 2.2-6.9 kN. The posterior femoral displacement and axial tibial rotation for A and R specimens respectively were substantially lower relative to Q specimens. Both factors were significantly diminished in C specimens but the peak compressive force was larger compared to Q specimens. Significant restraining of these factors was able to prevent anterior cruciate ligament failure in an impact setup that can induce ligament failure with the factors unrestrained.
机译:在涉及大型和快速着陆冲击载荷的活动中,前十字韧带损伤在涉及大型和快速着陆载荷的活动中非常普遍。我们假设抑制前胫骨平移或轴向胫骨旋转可以防止前曲韧带在峰值压缩载荷范围内失效,当两个因素都是无限制时,可以诱导韧带失效。将十六个猪膝关节标本安装在70°屈曲的材料测试系统上。通过增量致动器位移连续地重复单个10-Hz Haversine冲击压缩,直至注意到韧带失效/可见骨骨折。在冲击压缩期间,使用与设置的标记通过标记使用运动捕获系统获得膝关节的旋转和平移数据。标本随机分为四个测试组:Q(无拘束的设置),(前胫骨平移约束),R(轴向胫骨旋转约束)和C(两个限制的组合)。所有标本都适用相同的冲击方案。 Q标本发生股骨撕裂形式的前十字韧带失效;故障期间的峰值压缩力范围为1.4-4.0kN。 A,R和C样品接受可见的骨折,韧带完好无损;骨折期间的峰值压缩力范围为2.2-6.9 kN。用于A和R标本的后股级位移和轴胫突旋转,相对于Q样品,基本上较低。在C样品中,这两种因素都显着减少,但与Q样品相比,峰值压缩力较大。对这些因素的显着限制能够防止在碰撞设置中的前曲韧带失效,以诱导韧带失效,因素无拘无束。

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