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中央股骨隧道放置可以减少骨隧道周围的应力和应变,并在前交叉韧带重建中比前内侧股骨隧道更多地移植。

Central femoral tunnel placement can reduce stress and strain around bone tunnels and graft more than anteromedial femoral tunnel in anterior cruciate ligament reconstruction.

机构信息

School of Biomedical Engineering & Med-X Research Institute, Shanghai Jiao Tong University, Shanghai, China.

Engineering Research Center of Digital Medicine and Clinical Translation, Ministry of Education, Shanghai, China.

出版信息

Int J Numer Method Biomed Eng. 2022 May;38(5):e3590. doi: 10.1002/cnm.3590. Epub 2022 Mar 22.

DOI:10.1002/cnm.3590
PMID:35289106
Abstract

The present study investigated the effects of anteromedial (AM) and central femoral footprint placement on stress and strain distribution around the femoral and tibial tunnel and graft following anterior cruciate ligament reconstruction (ACLR). A three-dimensional (3D) reconstructed knee model was validated and used for simulating ACLR by finite element analysis. A combined loading during normal human walking was applied to the knee models using different anatomic femoral tunnel placement at 20° knee flexion. The results of von Mises stress and principal strain at the entrances of the femoral and tibial tunnel and ACL graft was determined. The peak von Mises stress and the maximum principal strain in the AM footprint group were 8.78 MPa and 8850.89 μ-strain at the entrance of femoral tunnel, and 5.29 MPa and 5553.27 μ-strain at the entrance of tibial tunnel. The results in the AM footprint group were higher than that in the central footprint group. The peak von Mises stress around the ACL graft following AM footprint ACLR was 28.63 MPa, higher than that following the central footprint ACLR. The AM footprint ACLR generated more significant peak von Mises stress and maximum principal strain around the entrances of femoral and tibial tunnel and the graft than the central footprint. The present results are of clinical relevance as they can provide a better understanding of tunnel enlargement and graft failure.

摘要

本研究探讨了前内侧(AM)和中央股骨足迹放置对前交叉韧带重建(ACLR)后股骨和胫骨隧道及移植物周围应力和应变分布的影响。通过有限元分析,使用三维(3D)重建的膝关节模型对 ACLR 进行了模拟,并对其进行了验证。在 20°膝关节弯曲时,使用不同的解剖股骨隧道位置,对膝关节模型施加了正常人体行走时的复合载荷。确定了股骨和胫骨隧道入口处以及 ACL 移植物的冯·米塞斯(von Mises)等效应力和主应变。在股骨隧道入口处,AM 足迹组的峰值 von Mises 应力和最大主应变分别为 8.78 MPa 和 8850.89 μ-strain,胫骨隧道入口处的峰值 von Mises 应力和最大主应变为 5.29 MPa 和 5553.27 μ-strain。AM 足迹组的结果高于中央足迹组。AM 足迹 ACLR 后 ACL 移植物周围的峰值 von Mises 应力为 28.63 MPa,高于中央足迹 ACLR。与中央足迹相比,AM 足迹 ACLR 在股骨和胫骨隧道及移植物入口周围产生了更大的峰值 von Mises 应力和最大主应变。本研究结果具有临床相关性,因为它们可以更好地理解隧道扩大和移植物失效。

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引用本文的文献

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Finite element analysis of anterior cruciate ligament reconstruction techniques: A comparison of the mechanical properties of all-inside fixation and traditional fixation.前交叉韧带重建技术的有限元分析:全内置固定与传统固定力学性能的比较
Front Bioeng Biotechnol. 2024 Aug 2;12:1438839. doi: 10.3389/fbioe.2024.1438839. eCollection 2024.
2
Increased ACL direct insertion coverage provided more positive biomechanical effects on graft and bone tunnel during knee flexion: a simulation study.增加前交叉韧带直接插入覆盖范围在膝关节屈曲时对移植物和骨隧道具有更积极的生物力学影响:一项模拟研究。
J Exp Orthop. 2023 Oct 28;10(1):108. doi: 10.1186/s40634-023-00677-x.
3
Hourglass-shaped grafts are superior to conventional grafts for restoring knee stability and graft force at knee flexion angle of 30° following anterior cruciate ligament reconstruction: A finite element analysis.
在前交叉韧带重建术后,沙漏形移植物在恢复膝关节稳定性和膝关节屈曲30°时的移植物力方面优于传统移植物:一项有限元分析。
Front Bioeng Biotechnol. 2022 Dec 19;10:967411. doi: 10.3389/fbioe.2022.967411. eCollection 2022.