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首页> 外文期刊>American Journal of Sports Medicine >Influence of the femoral tunnel location and angle on the contact pressure in the femoral tunnel in anterior cruciate ligament reconstruction.
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Influence of the femoral tunnel location and angle on the contact pressure in the femoral tunnel in anterior cruciate ligament reconstruction.

机译:在前交叉韧带重建中,股骨隧道的位置和角度对股骨隧道中接触压力的影响。

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摘要

BACKGROUND: The causes of bone tunnel enlargement after anterior cruciate ligament reconstruction have not been thoroughly investigated. HYPOTHESIS: A malpositioned femoral tunnel and an acute femoral tunnel angle may increase the mechanical stress in the femoral tunnel. STUDY DESIGN: Controlled laboratory study. METHODS: Three femoral tunnels (normal, anterior, and acute) and the tibial tunnel were made in four fresh-frozen cadaveric knees. Aluminum cylinders containing pressure-sensitive conductive rubber sensors at the joint entrance were inserted into the femoral tunnels. Dynamic changes in the contact pressure of the graft in the femoral tunnel were measured. RESULTS: Peak contact pressures and dynamic changes in contact pressure for the normal and anterior femoral tunnels demonstrated no differences. Maximum contact pressure of the graft was observed at the anterior portion with the knee in full extension and at the posterior portion with deep knee flexion. Consistent contact pressure occurred atthe anterior aspect of the acute femoral tunnel throughout the range of motion. Mean contact pressure at the anterior region of the acute femoral tunnel was significantly higher than that of the normal femoral tunnel at 60 degrees, 90 degrees, and 120 degrees of knee flexion. CONCLUSIONS: The consistent contact pressure in the anterior aspect of the acute femoral tunnel may erode the anterior portion of the femoral tunnel, resulting in bone tunnel enlargement. Clinical Relevance: The femoral tunnel direction in anterior cruciate ligament reconstruction is an important factor in reducing femoral tunnel enlargement.
机译:背景:前交叉韧带重建术后骨隧道扩大的原因尚未得到彻底调查。假设:股骨隧道错位和股骨隧道锐角可能会增加股骨隧道的机械应力。研究设计:受控实验室研究。方法:在四个新鲜冷冻的尸体膝盖中分别制作三个股骨隧道(正常,前部和急性)和胫骨隧道。将在关节入口处装有压敏导电橡胶传感器的铝制圆柱体插入股骨隧道。测量了股骨隧道中移植物的接触压力的动态变化。结果:正常和股前隧道的峰值接触压力和接触压力的动态变化均无差异。在膝盖完全伸展的前部和膝盖深屈的后部观察到移植物的最大接触压力。在整个运动范围内,一致的接触压力发生在急性股骨隧道的前部。在膝关节弯曲60度,90度和120度时,急性股骨隧道前部区域的平均接触压力显着高于正常股骨隧道。结论:急性股骨隧道前部持续的接触压力可能会侵蚀股骨隧道的前部,导致骨隧道扩大。临床意义:前交叉韧带重建中的股骨隧道方向是减少股骨隧道扩大的重要因素。

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