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后胫倾斜度增加在后稳定型全膝关节置换术中具有积极的生物力学效应。

The increase in posterior tibial slope provides a positive biomechanical effect in posterior-stabilized total knee arthroplasty.

机构信息

Department of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 03722, Republic of Korea.

Department of Orthopaedic Surgery, Joint Reconstruction Center, Yonsei Sarang Hospital, 10 Hyoryeong-ro, Seocho-gu, Seoul, 06698, Republic of Korea.

出版信息

Knee Surg Sports Traumatol Arthrosc. 2018 Oct;26(10):3188-3195. doi: 10.1007/s00167-018-4925-3. Epub 2018 Apr 5.

Abstract

PURPOSE

This study aims to clarify the influence of the posterior tibial slope (PTS) on knee joint biomechanics after posterior-stabilized (PS) total knee arthroplasty (TKA) using a computer simulation.

METHODS

A validated TKA computational model was used to evaluate and quantify the effects of an increased PTS. In order to conduct a squat simulation, models with a - 3° to 15° PTS using increments of 3° were developed. Forces on the quadriceps and collateral ligament, a tibial posterior translation, contact point on a polyethylene (PE) insert, and contact stress on the patellofemoral (PF) joint and post in a PE insert were compared.

RESULTS

The maximum force on the quadriceps and the PF contact stress decreased with increases in the PTS. The kinematics on the tibiofemoral (TF) joint translated in an increasingly posterior manner, and the medial and lateral contact points on a PE insert were located in posterior regions with increases in the PTS. Additionally, increases in the PTS decreased the force on the collateral ligament and increased the contact stress on the post in a PE insert. A higher force on the quadriceps is required when the PTS decreases with an equivalent flexion angle.

CONCLUSIONS

A surgeon should be prudent in terms of determining the PTS because an excessive increase in the PTS may lead to the progressive loosening of the TF joint due to a reduction in collateral ligament tension and failure of the post in a PE insert. Thus, we support a more individualized approach of optimal PTS determination given the findings of the study.

摘要

目的

本研究旨在通过计算机模拟,阐明后稳定型(PS)全膝关节置换术(TKA)后胫骨后倾角(PTS)对膝关节生物力学的影响。

方法

使用经过验证的 TKA 计算模型来评估和量化增加 PTS 的影响。为了进行下蹲模拟,我们开发了 PTS 为-3°至 15°,增量为 3°的模型。比较了股四头肌和侧副韧带的力、胫骨后向平移、聚乙烯(PE)衬垫上的接触点以及髌股(PF)关节和 PE 衬垫上的后柱的接触应力。

结果

随着 PTS 的增加,股四头肌的最大力和 PF 接触应力减小。胫股(TF)关节的运动学向后逐渐平移,随着 PTS 的增加,PE 衬垫上的内侧和外侧接触点位于更靠后的位置。此外,随着 PTS 的增加,侧副韧带的力减小,PE 衬垫上后柱的接触应力增加。当 PTS 以相同的屈曲角度减小时,股四头肌需要更大的力。

结论

外科医生在确定 PTS 时应谨慎,因为 PTS 的过度增加可能会导致 TF 关节因侧副韧带张力减小和 PE 衬垫上后柱失效而逐渐松动。因此,我们支持根据研究结果采用更个体化的最佳 PTS 确定方法。

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