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基于计算机分析保留交叉韧带全膝关节置换术后不同组件位置及植入厚度对胫股关节和髌股关节动力学的影响。

Computer-based analysis of different component positions and insert thicknesses on tibio-femoral and patello-femoral joint dynamics after cruciate-retaining total knee replacement.

作者信息

Kebbach Maeruan, Geier Andreas, Darowski Martin, Krueger Sven, Schilling Christoph, Grupp Thomas M, Bader Rainer

机构信息

Department of Orthopaedics, Rostock University Medical Center, Germany.

Department of Orthopaedics, Rostock University Medical Center, Germany; Department of Modern Mechanical Engineering, Waseda University, Tokyo, Japan.

出版信息

Knee. 2023 Jan;40:152-165. doi: 10.1016/j.knee.2022.11.010. Epub 2022 Nov 24.

Abstract

BACKGROUND

Positioning of the implant components and tibial insert thickness constitute critical aspects of total knee replacement (TKR) that influence the postoperative knee joint dynamics. This study aimed to investigate the impact of implant component positioning (anterior-posterior and medio-lateral shift) and varying tibial insert thickness on the tibio-femoral (TF) and patello-femoral (PF) joint kinematics and contact forces after cruciate-retaining (CR)-TKR.

METHOD

A validated musculoskeletal multibody simulation (MMBS) model with a fixed-bearing CR-TKR during a squat motion up to 90° knee flexion was deployed to calculate PF and TF joint dynamics for varied implant component positions and tibial insert thicknesses. Evaluation was performed consecutively by comparing the respective knee joint parameters (e.g. contact force, quadriceps muscle force, joint kinematics) to a reference implant position.

RESULTS

The PF contact forces were mostly affected by the anterior-posterior as well as medio-lateral positioning of the femoral component (by 3 mm anterior up to 31 % and by 6 mm lateral up to 14 %). TF contact forces were considerably altered by tibial insert thickness (24 % in case of + 4 mm increase) and by the anterior-posterior position of the femoral component (by 3 mm posterior up to 16 %). Concerning PF kinematics, a medialised femoral component by 6 mm increased the lateral patellar tilt by more than 5°.

CONCLUSIONS

Our results indicate that regarding PF kinematics and contact forces the positioning of the femoral component was more critical than the tibial component. The positioning of the femoral component in anterior-posterior direction on and PF contact force was evident. Orthopaedic surgeons should strictly monitor the anterior-posterior as well as the medio-lateral position of the femoral component and the insert thickness.

摘要

背景

植入物组件的定位和胫骨衬垫厚度是全膝关节置换术(TKR)的关键因素,会影响术后膝关节的动力学。本研究旨在探讨植入物组件定位(前后移位和内外侧移位)以及不同的胫骨衬垫厚度对保留交叉韧带(CR)的TKR术后胫股(TF)和髌股(PF)关节运动学及接触力的影响。

方法

采用经过验证的肌肉骨骼多体模拟(MMBS)模型,该模型具有固定承重的CR-TKR,在屈膝至90°的下蹲运动过程中,计算不同植入物组件位置和胫骨衬垫厚度下的PF和TF关节动力学。通过将各自的膝关节参数(如接触力、股四头肌力量、关节运动学)与参考植入物位置进行比较,连续进行评估。

结果

PF接触力主要受股骨组件的前后以及内外侧定位影响(向前3mm可达31%,向外6mm可达14%)。TF接触力受胫骨衬垫厚度(增加4mm时可达24%)和股骨组件的前后位置(向后3mm可达16%)显著改变。关于PF运动学,股骨组件向内侧移位6mm可使髌骨外侧倾斜增加超过5°。

结论

我们的结果表明,对于PF运动学和接触力而言,股骨组件的定位比胫骨组件更为关键。股骨组件在前后方向上的定位对PF接触力的影响很明显。骨科医生应严格监测股骨组件的前后以及内外侧位置和衬垫厚度。

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