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基于步态的模型能否预测全膝关节置换术后取出的组件的磨损?

Can a gait-dependent model predict wear on retrieved total knee arthroplasty components?

机构信息

Rush University Medical Center, Chicago, Illinois, USA.

出版信息

Bone Joint J. 2020 Jun;102-B(6_Supple_A):129-137. doi: 10.1302/0301-620X.102B6.BJJ-2019-1635.R1.

Abstract

AIMS

A retrospective longitudinal study was conducted to compare directly volumetric wear of retrieved polyethylene inserts to predicted volumetric wear modelled from individual gait mechanics of total knee arthroplasty (TKA) patients.

METHODS

In total, 11 retrieved polyethylene tibial inserts were matched with gait analysis testing performed on those patients. Volumetric wear on the articular surfaces was measured using a laser coordinate measure machine and autonomous reconstruction. Knee kinematics and kinetics from individual gait trials drove computational models to calculate medial and lateral tibiofemoral contact paths and forces. Sliding distance along the contact path, normal forces and implantation time were used as inputs to Archard's equation of wear to predict volumetric wear from gait mechanics. Measured and modelled wear were compared for each component.

RESULTS

Volumetric wear rates on eight non-delaminated components measured 15.9 mm/year (standard error (SE) ± 7.7) on the total part, 11.4 mm/year (SE ± 6.4) on the medial side and 4.4 (SE ± 2.6) mm/year on the lateral side. Volumetric wear rates modelled from patient gait mechanics predicted 16.4 mm/year (SE 2.4) on the total part, 11.7 mm/year (SE 2.1) on the medial side and 4.7 mm/year (SE 0.4) on the lateral side. Measured and modelled wear volumes correlated significantly on the total part (p = 0.017) and the medial side (p = 0.012) but not on the lateral side (p = 0.154).

CONCLUSION

In the absence of delamination, patient-specific knee mechanics during gait directly affect wear of the tibial component in TKA. Cite this article: 2020;102-B(6 Supple A):129-137.

摘要

目的

本研究采用回顾性纵向研究,直接比较全膝关节置换(TKA)患者个体步态力学模型预测的容积磨损与从回收的聚乙烯衬垫实际测量的容积磨损。

方法

共对 11 个回收的聚乙烯胫骨衬垫进行了匹配,同时对这些患者进行了步态分析测试。采用激光坐标测量机和自主重建对关节表面的容积磨损进行测量。从个体步态试验中获取膝关节运动学和动力学数据,驱动计算模型计算胫股内侧和外侧接触路径和力。滑动距离、法向力和植入时间被用作阿查达磨损方程的输入,以从步态力学计算容积磨损。比较了每个组件的测量磨损和模型磨损。

结果

8 个未分层组件的总部分的容积磨损率为 15.9mm/年(标准误差(SE)±7.7),内侧部分为 11.4mm/年(SE ±6.4),外侧部分为 4.4mm/年(SE ±2.6)。从患者步态力学模型预测的容积磨损率为总部分 16.4mm/年(SE 2.4),内侧部分 11.7mm/年(SE 2.1),外侧部分 4.7mm/年(SE 0.4)。总部分(p=0.017)和内侧部分(p=0.012)的测量磨损和模型磨损体积相关性显著,但外侧部分无相关性(p=0.154)。

结论

在无分层的情况下,TKA 患者在步态中的特定膝关节力学直接影响胫骨组件的磨损。

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