...
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 >Knee stability and graft function following anterior cruciate ligament reconstruction: Comparison between 11 o'clock and 10 o'clock femoral tunnel placement. 2002 Richard O'Connor Award paper.
【24h】

Knee stability and graft function following anterior cruciate ligament reconstruction: Comparison between 11 o'clock and 10 o'clock femoral tunnel placement. 2002 Richard O'Connor Award paper.

机译:膝盖后移植物的稳定性和功能前交叉韧带重建:比较11点和10点股骨隧道位置。奖。

获取原文
获取原文并翻译 | 示例
           

摘要

PURPOSE: To study how well an anterior cruciate ligament (ACL) graft fixed at the 10 and 11 o'clock positions can restore knee function in response to both externally applied anterior tibial and combined rotatory loads by comparing the biomechanical results with each other and with the intact knee. Type of Study: Biomechanical experiment using human cadaveric specimens. METHODS: Ten human cadaveric knees (age, 41+/-13 years) were reconstructed by placing a bone-patellar tendon-bone graft at the 10 and 11 o'clock positions, in a randomized order, and then tested using a robotic/universal force-moment sensor testing system. Two external loading conditions were applied: (1) 134 N anterior tibial load with the knee at full extension, 15 degrees, 30 degrees, 60 degrees, and 90 degrees of flexion, and (2) a combined rotatory load of 10 N-m valgus and 5 N-m internal tibial torque with the knee at 15 degrees and 30 degrees of flexion. The resulting kinematics of the reconstructed knee and in situ forces in theACL graft were determined for each femoral tunnel position. RESULTS: In response to a 134-N anterior tibial load, anterior tibial translation (ATT) for both femoral tunnel positions was not significantly different from the intact knee except at 90 degrees of knee flexion as well as at 60 degrees of knee flexion for the 10 o'clock position. There was no significant difference in the ATT between the 10 and 11 o'clock positions, except at 90 degrees of knee flexion. Under a combined rotatory load, however, the coupled ATT for the 11 o'clock position was approximately 130% of that for the intact knee at 15 degrees and 30 degrees of flexion. For the 10 o'clock position, the coupled ATT was not significantly different from the intact knee at 15 degrees of flexion and approximately 120% of that for the intact knee at 30 degrees of flexion. Coupled ATT for the 10 o'clock position was significantly smaller than for the 11 o'clock position at 15 degrees and 30 degrees of flexion. The in situ force in the ACL graft was also significantly higher for the 10 o'clock position than the 11 o'clock position at 30 degrees of flexion in response to the same loading condition (70 +/- 18 N v 60 +/- 15 N, respectively). CONCLUSIONS: The 10 o'clock position more effectively resists rotatory loads when compared with the 11 o'clock position as evidenced by smaller ATT and higher in situ force in the graft. Despite the fact that ACL grafts placed at the 10 or 11 o'clock positions are equally effective under an anterior tibial load, neither femoral tunnel position was able to fully restore knee stability to the level of the intact knee.
机译:目的:研究如何前交叉韧带(ACL)移植物固定在10和11所示点位置可以恢复膝关节功能应对外部应用前胫骨和旋转载荷通过比较相结合生物力学结果彼此完整的膝盖。使用人类尸体生物力学实验标本。(年龄、41 + / -13年)重建的骨-髌腱-骨移植10和11点钟的位置,在一个随机的测试顺序,然后使用一个机器人/通用力矩传感器测试系统。加载条件应用:(1)134 N前胫骨负载,我的膝盖扩展,15度、30度,60度,90度弯曲,和(2)的总和旋转10 n - m外翻和5 n - m内部的负载胫骨扭矩,我的膝盖在15度和30程度的弯曲。重建的膝盖和原位力量为每个股theACL贪污测定隧道的位置。前胫骨,胫骨前翻译(ATT)对股骨隧道位置不是显著不同于完整的膝盖除了在膝盖弯曲以及90度在60度的膝盖弯曲10点钟的位置。之间的ATT 10和11点钟位置,除了在90度的膝盖弯曲。然而,结合旋转载荷耦合的攻击力大约是11点钟的位置130%的完好无损的膝盖在15度和弯曲的30度。位置,耦合的攻击力并不显著不同于完整的膝盖在15度弯曲的大约120%完整的膝盖弯曲的30度。10点钟的位置明显小于15岁的11点钟位置弯曲度和30度。在ACL贪污也显著10点钟的位置高于11在30度的弯曲点位置回应相同的荷载条件(70 + / - 1860 + / - 15 N, N v)。10点钟位置更有效地抵制旋转加载相比,11点钟就是明证较小的攻击力和更高的位置原位移植的。ACL移植放在10或11点钟在一个前位置也同样有效胫骨负载,股骨隧道位置能够完全恢复膝关节稳定水平完整的膝盖。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号