首页> 外文期刊>Journal of Biomechanics >A new in vivo technique for determination of femoro-tibial and femoro-patellar 3D kinematics in total knee arthroplasty.
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A new in vivo technique for determination of femoro-tibial and femoro-patellar 3D kinematics in total knee arthroplasty.

机译:一种用于确定全膝关节置换术中股胫和股3 3D运动学的体内新技术。

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摘要

Aim was to develop an in vivo technique which allows determination of femoro-tibial and of femoro-patellar 3D-kinematics in TKA simultaneously. The knees of 20 healthy volunteers and of eight patients with TKA (PCR, rotating platform) were investigated. Kinematics analysis was performed in an open MR-system at different flexion angles with external loads being applied. The TKA components were identified using a 3D-fitting technique, which allows an automated 3D-3D-registration of the TKA. Femoro-patellar and femoro-tibial 3D-kinematics were analyzed by image postprocessing. The validity of the postprocessing technique demonstrated a coefficient of determination of 0.98 for translation and of 0.97 for rotation. The reproducibility yielded a coefficient of variation (CV%) for patella kinematics between 0.17% (patello-femoral angle) and 6.8% (patella tilt). The femoro-tibial displacement also showed a high reproducibility with CV% of 4.0% for translation and of 7.1% for rotation. While in the healthy knees the typical screw-home mechanism was observed, a paradoxical anterior translation of the femur relative to the tibia combined with an external rotation occurred after TKA. Fifty percent of the TKA's experienced a condylar lift-off of >1mm predominately on the medial side. Regarding patellar kinematics significant changes were found in both planes in TKA with an increased patella height in the sagittal plane and patella tilt and shift in the transversal plane. The results demonstrate that the presented 3D MR-open based method is highly reproducible and valid for image acquisition and postprocessing and provides-for the first time-in vivo data of 3D-kinematics of the tibio-femoral and simultaneously of the patello-femoral joint during knee flexion.
机译:目的是开发一种体内技术,该技术可同时测定TKA中的股骨胫骨和股-骨3D运动学。研究了20名健康志愿者和8名TKA(PCR,旋转平台)患者的膝盖。运动学分析是在开放的MR系统中以不同的屈曲角度在施加外部载​​荷的情况下进行的。使用3D拟合技术识别了TKA组件,该技术允许对TKA进行自动3D-3D配准。通过图像后处理分析了emo骨和股胫3D运动学。后处理技术的有效性证明,平移确定系数为0.98,旋转确定系数为0.97。重现性得出骨运动学的变异系数(CV%)在0.17%(pat骨股骨角)和6.8%(pat骨倾斜)之间。股骨胫骨移位也显示出高再现性,CV%的平移值为4.0%,旋转的CV%为7.1%。尽管在健康的膝盖中观察到典型的螺钉归位机制,但在TKA之后,股骨相对于胫骨发生了自相矛盾的前移,并发生了外旋。 50%的TKA的con突抬起主要在内侧> 1mm。关于pa骨运动学,在TKA的两个平面中都发现了显着变化,矢状面中骨高度增加,而横plane面中骨倾斜和移位。结果表明,所提出的基于3D MR-open的方法具有很高的可重复性,并且对于图像采集和后处理有效,并且首次为胫股骨以及and骨股骨关节的3D运动学提供了首次体内数据。在膝盖弯曲时。

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