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Impact of Axial Component Alignment in Total Knee Arthroplasty on Lower Limb Rotational Alignment: An In Vitro Study

机译:轴成分对准在膝关节间关节型术中旋转旋转对准的影响:体外研究

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Correct rotational implant alignment is associated with increased postoperative function and implant survival in total knee arthroplasty (TKA). Due to conformity between tibial and femoral implants, particularly in full extension, we assumed a mutual interference of femoral and tibial component rotations. We, therefore, hypothesized that different rotational alignments of the tibial or femoral components change the rotational postures between the tibia and femur after TKA. In 10 healthy knees of whole body cadavers, TKA was performed. Both femoral and tibial components were implanted in different internal (6 degrees) and external (3 and 6 degrees) rotational alignments. Consequential osseous rotational changes between the tibia and the femur were measured in full extension using a commercial computer navigation device. External rotation of the femoral component resulted in significant external rotation of the tibia, while external rotation of the tibial component caused a significant internal rotation of the tibia. The opposite applied to femoral and tibial component internal rotations. Therefore, largest changes of the osseous tibiofemoral rotational postures were found by the combination of 6 degrees femoral component internal and 6 degrees tibial component external rotations (mean 11.2 degrees, standard deviation 5.0, p < 0.001), as both cause tibial internal rotation. In conclusion, the present results suggest that axial component alignment significantly affects lower limb rotational alignment. However, its clinical impact on forefoot progression, Q-angle, the patella, collateral, and cruciate ligaments, and surrounding soft tissues has to be clarified in further clinical and biomechanical studies.
机译:正确的旋转植入物对齐与术后术函数和总膝关节置换术(TKA)的植入物存活有关。由于胫骨和股骨植入物之间的一致性,特别是在全延伸,我们假设股骨和胫骨分量旋转的相互干扰。因此,我们假设胫骨或股骨成分的不同旋转对准改变了TKA之后胫骨和股骨之间的旋转姿势。在整个身体尸体的10个健康的膝盖中,TKA进行了。股骨和胫骨部件都植入不同的内部(6度)和外部(3和6度)旋转对准。使用商业计算机导航装置在全扩展中测量胫骨和股骨之间的后续骨旋转变化。股骨部件的外部旋转导致胫骨的外部旋转显着,而胫骨部件的外部旋转导致胫骨的内部旋转。相反适用于股骨和胫骨部件内部旋转。因此,通过6摄氏度内部和6度胫骨部件的外部旋转(平均值11.2度,标准偏差5.0,P <0.001),发现了骨质胫骨型旋转姿势的最大变化(平均值11.2度,P <0.001),因为两者都导致胫骨内部旋转。总之,本结果表明轴向分量对准显着影响下肢旋转对准。然而,在进一步的临床和生物力学研究中,必须阐明对前足进展,Q角,髌骨,抵押品和十字韧带以及周围软组织的临床影响。

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