首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Flexing and downsizing the femoral component is not detrimental to patellofemoral biomechanics in posterior-referencing cruciate-retaining total knee arthroplasty
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Flexing and downsizing the femoral component is not detrimental to patellofemoral biomechanics in posterior-referencing cruciate-retaining total knee arthroplasty

机译:屈曲和缩小股骨组分对后验线饲料总膝关节置换术的髌果实生物力学并不有害

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PurposeWhen downsizing the femoral component to prevent mediolateral overhang, notching of the anterior femoral cortex may occur, which could be solved by flexing the femoral component. In this study, we investigated the effect of flexion of the femoral component on patellar tendon moment arm, patellofemoral forces and kinematics in posterior-referencing CR-TKA. Our hypothesis was that flexion of the femoral component increases the patellar tendon moment arm, reduces the patellofemoral forces and provides stable kinematics.MethodsA validated musculoskeletal model of CR-TKA was used. The flexion of the femoral component was increased in four steps (0 degrees, 3 degrees, 6 degrees, 9 degrees) using posterior referencing, and different alignments were analysed in combination with three implant sizes (3, 4, 5). A chair-rising trial was analysed using the model, while simultaneously estimating quadriceps muscle force, patellofemoral contact force, tibiofemoral and patellofemoral kinematics.ResultsCompared to the reference case (size 4 and 0 degrees flexion), for every 3 degrees of increase in flexion of the femoral component the patellar tendon moment arm increased by 1% at knee extension. The peak quadriceps muscle force and patellofemoral contact force decreased by 2%, the patella shifted 0.8mm more anteriorly and the remaining kinematics remained stable, with knee flexion. With the smaller size, the patellar tendon moment arm decreased by 6%, the quadriceps muscle force and patellofemoral contact force increased by 8 and 12%, and the patellar shifted 5mm more posteriorly. Opposite trends were found with the bigger size.ConclusionFlexing the femoral component with posterior referencing reduced the patellofemoral contact forces during a simulated chair-rising trial with a patient-specific musculoskeletal model of CR-TKA. There seems to be little risk when flexing and downsizing the femoral component, compared to when using a bigger size and neutral alignment. These findings provide relevant information to surgeons who wish to prevent anterior notching when downsizing the femoral component.
机译:当缩小股骨成分以防止中源性突出突出的目的,可能发生前股骨皮质的切口,这可以通过弯曲股骨部件来解决。在这项研究中,我们研究了股骨部件屈曲对髌骨腱时力矩臂,Patelloforal力和在后续参考CR-TKA中的运动学的影响。我们的假设是股骨部件的屈曲增加了髌骨肌腱力矩臂,减少了Patelloforal力并提供了稳定的运动学。使用Cr-TKA的验证肌肉骨骼模型。股骨组分的屈曲在四个步骤(0度,3度,6度,9度)中,使用后读引用,与三个植入尺寸(3,4,5)组合分析不同的比赛。使用该模型进行分析椅子上升的试验,同时估计Quaddriceps肌肉力,髌户光型接触力,胫骨代理和Patelloforal Kinematics.ResultScompectAccompected对参考案例(尺寸4和0度屈曲),每增加3次增加膝盖延伸的股骨部件髌骨腱紧架增加1%。峰曲面肌肉力和髌圆型接触力减少2%,髌骨向后移动0.8mm,剩余的运动学保持稳定,膝关节屈曲。尺寸较小,髌骨肌腱矩臂下降6%,曲肌肌肉力和髌圆型接触力增加了8%和12%,髌骨偏移5mm。对相反的趋势具有较大的尺寸。在模拟潜艇试验期间与后验的试验期间,在后验中的试验期间,将股骨部件的股骨成分与CR-TKA的患者特异性肌肉骨骼模型降低,施用股骨部件。与使用更大的尺寸和中性对准时,效果弯曲和缩小股骨部件时似乎很小。这些调查结果为希望防止股骨部件缩小时前进的外科医生提供相关信息。

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