Xiong Shoulin, Qu Yafei, Ren Jiaxuan, Zhang Jing, Li Hui, Chen Zhenxian
School of Construction Machinery, Chang'an University, Xi'an 710064, P. R. China.
Honghui Hospital, Xi'an Jiaotong University, Xi'an 710054, P. R. China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2023 Dec 25;40(6):1192-1199. doi: 10.7507/1001-5515.202307051.
The clinical performance and failure issues are significantly influenced by prosthetic malposition in unicompartmental knee arthroplasty (UKA). Uncertainty exists about the impact of the prosthetic joint line height in UKA on tibial insert wear. In this study, we combined the UKA musculoskeletal multibody dynamics model, finite element model and wear model to investigate the effects of seven joint line height cases of fixed UKA implant on postoperative insert contact mechanics, cumulative sliding distance, linear wear depth and volumetric wear. As the elevation of the joint line height in UKA, the medial contact force and the joint anterior-posterior translation during swing phase were increased, and further the maximum von Mises stress, contact stress, linear wear depth, cumulative sliding distance, and the volumetric wear also were increased. Furthermore, the wear area of the insert gradually shifted from the middle region to the rear. Compared to 0 mm joint line height, the maximum linear wear depth and volumetric wear were decreased by 7.9% and 6.8% at -2 mm joint line height, and by 23.7% and 20.6% at -6 mm joint line height, the maximum linear wear depth and volumetric wear increased by 10.7% and 5.9% at +2 mm joint line height, and by 24.1% and 35.7% at +6 mm joint line height, respectively. UKA prosthetic joint line installation errors can significantly affect the wear life of the polyethylene inserted articular surfaces. Therefore, it is conservatively recommended that clinicians limit intraoperative UKA joint line height errors to -2-+2 mm.
在单髁膝关节置换术(UKA)中,假体位置不当会显著影响临床性能和失败问题。UKA中假体关节线高度对胫骨假体磨损的影响尚不确定。在本研究中,我们结合UKA肌肉骨骼多体动力学模型、有限元模型和磨损模型,研究了七种固定UKA植入物关节线高度情况对术后假体接触力学、累积滑动距离、线性磨损深度和体积磨损的影响。随着UKA中关节线高度的升高,摆动期内侧接触力和关节前后平移增加,进而最大von Mises应力、接触应力、线性磨损深度、累积滑动距离和体积磨损也增加。此外,假体的磨损区域逐渐从中间区域转移到后方。与关节线高度为0 mm相比,关节线高度为 -2 mm时最大线性磨损深度和体积磨损分别降低了7.9%和6.8%,关节线高度为 -6 mm时分别降低了23.7%和20.6%,关节线高度为 +2 mm时最大线性磨损深度和体积磨损分别增加了10.7%和5.9%,关节线高度为 +6 mm时分别增加了24.1%和35.7%。UKA假体关节线安装误差会显著影响聚乙烯植入关节表面的磨损寿命。因此,保守建议临床医生将术中UKA关节线高度误差控制在 -2至 +2 mm之间。