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后稳定型全膝关节置换术的运动学与关节松弛度:一项混合生物力学研究。

Posterior-stabilized total knee arthroplasty kinematics and joint laxity: A hybrid biomechanical study.

作者信息

Sekeitto Allan R, McGale Jance G, Montgomery Liam A, Vasarhelyi Edward M, Willing Ryan, Lanting Brent A

机构信息

London Health Sciences Centre, 339 Windermere Rd, London, ON, N6A 5A5, Canada.

Department of Mechanical & Materials Engineering, University of Western Ontario, 1151 Richmond Street N., London, ON, N6A 5B9, Canada.

出版信息

Arthroplasty. 2022 Dec 15;4(1):53. doi: 10.1186/s42836-022-00153-4.

Abstract

BACKGROUND

Posterior-stabilized (PS)-total knee arthroplasty (TKA) arose as an alternative to cruciate-retaining (CR)-TKA in the 1970s. Since then, it has become a popularly utilized TKA design with outcomes comparable to CR-TKA. The post-cam mechanism is unique to PS-TKA as it substitutes the function of the posterior cruciate ligament (PCL). The study aimed to understand the kinematic and laxity changes in PS-TKA with under- and overstuffing of the tibiofemoral joint space with the polyethylene (PE) insert.

METHODS

This study employed a hybrid computational-experimental joint motion simulation on a VIVO 6 degrees of freedom (6-DoF) joint motion simulator (AMTI, Watertown, MA, USA). Physical prototypes of a virtually-performed TKA in mechanical alignment (MA) and kinematic alignment (KA) based on cadaveric CT scans and a virtual ligament model were utilized. The reference, understuffed (down 2 mm) and overstuffed (up 2 mm) joint spaces were simulated, neutral flexion and laxity testing loads and motions were performed for each configuration.

RESULTS

The PE insert thickness influenced post-cam engagement, which occurred after 60º in the overstuffed configurations, after 60º-75º in the reference configurations and after 75º in the understuffed configurations. The understuffed configurations, compared to the reference configurations, resulted in a mean 2.0º (28%) and 2.0º (31%) increase in the coronal laxity in MA and KA respectively. The overstuffed configurations, compared to the reference configuration, resulted in an increase in the mean joint compressive forces (JCFs) by 73 N (61%) and 77 N (62%) in MA and KA models, respectively.

CONCLUSIONS

The under- and overstuffing in PS-TKA alter the kinematics with variable effects. Understuffing decreases the stability, JCFs and inverse with overstuffing. Subtle changes in the PE insert thickness alter the post-cam mechanics.

摘要

背景

后稳定型(PS)全膝关节置换术(TKA)在20世纪70年代作为保留交叉韧带(CR)的TKA的替代方案出现。从那时起,它已成为一种广泛使用的TKA设计,其结果与CR-TKA相当。后凸轮机制是PS-TKA独有的,因为它替代了后交叉韧带(PCL)的功能。本研究旨在了解在胫股关节间隙用聚乙烯(PE)衬垫填充不足和过度填充时PS-TKA的运动学和松弛度变化。

方法

本研究在VIVO 6自由度(6-DoF)关节运动模拟器(美国马萨诸塞州沃特敦市的AMTI)上采用了混合计算-实验关节运动模拟。使用基于尸体CT扫描和虚拟韧带模型的机械对线(MA)和运动学对线(KA)的虚拟执行TKA的物理原型。模拟了参考、填充不足(向下2毫米)和填充过度(向上2毫米)的关节间隙,对每种配置进行了中立位屈曲和松弛度测试负荷及运动。

结果

PE衬垫厚度影响后凸轮的啮合,在填充过度的配置中,60°后发生啮合;在参考配置中,60°-75°后发生啮合;在填充不足的配置中,75°后发生啮合。与参考配置相比,填充不足的配置在MA和KA中分别导致冠状面松弛度平均增加2.0°(28%)和2.0°(31%)。与参考配置相比,填充过度的配置在MA和KA模型中分别导致平均关节压缩力(JCFs)增加73 N(61%)和77 N(62%)。

结论

PS-TKA中的填充不足和过度填充会改变运动学,产生不同的影响。填充不足会降低稳定性、JCFs,而填充过度则相反。PE衬垫厚度的细微变化会改变后凸轮力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78b6/9753369/50cb206fb3d6/42836_2022_153_Fig1_HTML.jpg

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