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本文引用的文献

1
Knee valgus deformity and lateral bone defects affect the function of superficial medial collateral ligament: A finite element analysis.膝外翻畸形和外侧骨缺损对浅层内侧副韧带功能的影响:有限元分析
J Orthop. 2023 Apr 23;40:17-22. doi: 10.1016/j.jor.2023.04.017. eCollection 2023 Jun.
2
Validation of a novel finite-element model for evaluating patellofemoral forces and stress during squatting after posterior-stabilized total knee arthroplasty.验证一种新型有限元模型,用于评估后稳定型全膝关节置换术后深蹲时髌股力和应力。
Orthop Traumatol Surg Res. 2023 Sep;109(5):103519. doi: 10.1016/j.otsr.2022.103519. Epub 2022 Dec 14.
3
Outcome of mobile and fixed unicompartmental knee arthroplasty and risk factors for revision.单髁膝关节置换术的移动和固定假体的结果及翻修的风险因素。
J Int Med Res. 2022 Aug;50(8):3000605221115383. doi: 10.1177/03000605221115383.
4
Effects of contact stress on patellarfemoral joint and quadriceps force in fixed and mobile-bearing medial unicompartmental knee arthroplasty.固定和活动平台式单髁膝关节置换术中接触压力对髌股关节和股四头肌力的影响。
J Orthop Surg Res. 2020 Nov 10;15(1):517. doi: 10.1186/s13018-020-02047-0.
5
Development and validation of an in-silico virtual testing rig for analyzing total knee arthroplasty performance during passive deep flexion: A feasibility study.开发和验证用于分析被动深度屈曲过程中全膝关节置换术性能的计算机虚拟测试平台:一项可行性研究。
Med Eng Phys. 2020 Oct;84:21-27. doi: 10.1016/j.medengphy.2020.07.020. Epub 2020 Jul 30.
6
Patellofemoral Pain Syndrome.髌股关节疼痛综合征。
Am Fam Physician. 2019 Jan 15;99(2):88-94.
7
Medial Unicompartmental Arthroplasty of the Knee.膝关节单髁间室置换术。
J Am Acad Orthop Surg. 2019 Mar 1;27(5):166-176. doi: 10.5435/JAAOS-D-17-00690.
8
Anterior knee pain and evidence of osteoarthritis of the patellofemoral joint should not be considered contraindications to mobile-bearing unicompartmental knee arthroplasty: a 15-year follow-up.髌股关节骨关节炎的前膝痛及相关证据不应被视为活动平台单髁膝关节置换术的禁忌证:一项15年随访研究
Bone Joint J. 2017 May;99-B(5):632-639. doi: 10.1302/0301-620X.99B5.BJJ-2016-0695.R2.
9
Patella tracking and patella contact pressure in modular patellofemoral arthroplasty: a biomechanical in vitro analysis.模块化髌股关节置换术中的髌骨轨迹与髌骨接触压力:一项生物力学体外分析
Arch Orthop Trauma Surg. 2016 Jun;136(6):849-55. doi: 10.1007/s00402-016-2451-7. Epub 2016 Apr 6.
10
Validation of predicted patellofemoral mechanics in a finite element model of the healthy and cruciate-deficient knee.在健康和交叉韧带损伤膝关节有限元模型中预测髌股力学的验证
J Biomech. 2016 Jan 25;49(2):302-9. doi: 10.1016/j.jbiomech.2015.12.020. Epub 2015 Dec 21.

髌股关节生物力学的有限元分析:探索单髁膝关节置换术后膝前疼痛的潜在原因。

A finite element analysis of patellofemoral joint biomechanics: Exploring potential causes of postoperative anterior knee pain following unicompartmental knee arthroplasty.

作者信息

Yan Ziyou, Li Deng, Cai Zhiqing, Sun Hao, Ma Ruofan, Ma Shuqiang, Xu Jie

机构信息

Department of Joint surgery, The Eighth Affiliated Hospital, Sun Yat-sen University, Shenzhen, 518033, Guangdong, China.

Department of Joint surgery, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, 510120, Guangdong, China.

出版信息

J Orthop. 2024 Aug 29;60:58-64. doi: 10.1016/j.jor.2024.08.017. eCollection 2025 Feb.

DOI:10.1016/j.jor.2024.08.017
PMID:39345682
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11437598/
Abstract

PURPOSE

Anterior knee pain is a common complication following unicompartmental knee arthroplasty (UKA). This study aimed to elucidate the mechanism of anterior knee pain after UKA by examining the biomechanical characteristics of the patellofemoral joint.

METHODS

This study employs the finite element analysis method. A healthy model of the right lower limb was created using CT scans of an intact right lower limb from a healthy woman. Based on this model, a preoperative pathological model was generated by removing the meniscus and part of the articular cartilage. The UKA prosthesis was then applied to this model with five different bearing thicknesses: 5 mm, 7 mm, 10 mm, 11 mm, and 13 mm. To simulate various degrees of knee joint flexion, the femur was rotated relative to the knee joint's rotational axis, producing lower limb models at flexion angles of 0°, 30°, 60°, 90°, and 120°. We applied a constant force from the center of the femoral head to the center of the ankle joint to simulate lower limb loading during squatting. The simulations were conducted using Ansys 17.0.

RESULTS

Both overstuffing and understuffing increased the peak stress on the patellar cartilage, with overstuffing having a more pronounced effect. Compared to healthy and balanced models, overstuffed and understuffed models exhibited abnormal stress distribution and stress concentration in the patellar cartilage during knee flexion.

CONCLUSION

Overstuffing and understuffing lead to residual varus or valgus deformities after UKA, causing mechanical abnormalities in the patellofemoral joint. These abnormalities, characterized by irregular stress distribution and excessive stress, result in cartilage damage, exacerbate wear in the patellofemoral joint and consequently lead to the occurrence of anterior knee pain.

摘要

目的

膝前疼痛是单髁膝关节置换术(UKA)后常见的并发症。本研究旨在通过研究髌股关节的生物力学特性来阐明UKA术后膝前疼痛的机制。

方法

本研究采用有限元分析方法。使用一名健康女性完整右下肢的CT扫描数据创建了右下肢的健康模型。基于该模型,通过移除半月板和部分关节软骨生成术前病理模型。然后将五种不同轴承厚度(5毫米、7毫米、10毫米、11毫米和13毫米)的UKA假体应用于该模型。为了模拟不同程度的膝关节屈曲,使股骨相对于膝关节旋转轴旋转,生成屈曲角度为0°、30°、60°、90°和120°的下肢模型。我们从股骨头中心向踝关节中心施加恒定力,以模拟蹲姿时的下肢负荷。使用Ansys 17.0进行模拟。

结果

填充过多和填充不足均增加了髌软骨上的峰值应力,填充过多的影响更为明显。与健康和平衡模型相比,填充过多和填充不足的模型在膝关节屈曲时髌软骨中表现出异常的应力分布和应力集中。

结论

填充过多和填充不足导致UKA术后残留内翻或外翻畸形,引起髌股关节的力学异常。这些异常表现为应力分布不规则和应力过大,导致软骨损伤,加剧髌股关节磨损,进而导致膝前疼痛的发生。