首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >The role of the medial ligamentous structures on patellar tracking during knee flexion.
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The role of the medial ligamentous structures on patellar tracking during knee flexion.

机译:膝关节屈曲过程中内侧韧带结构对pa骨跟踪的作用。

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PURPOSE: The influence of the medial patellar ligamentous structures on patellar tracking has rarely been studied. Thus the main purpose of this cadaveric biomechanical study was to determine the influence of the medial patellofemoral (MPFL), medial patellomeniscal (MPML) and medial patellotibial (MPTL) ligaments on the three-dimensional patellar tracking during knee flexion. This study was conducted using a validated cadaveric optoelectronic protocol for analysis of patellar kinematics. METHODS: For each cadaveric knee study, four successive acquisitions were performed; first was studied patellar tracking in healthy knees, then the junction between MPFL and vastus medialis obliquus (VMO) was sectioned, the MPFL was released at its patellar attachment and finally was released the insertion of the MPML and MPTL. RESULTS: In this study, the MPFL accounts for 50-60% of the medial stabilization forces of the lateral patellar shift during patellar engagement in the femoral trochlea. This work confirm and clarify the role of the MPFL as the primary stabilizer of the patella during the initial 30 degrees of knee flexion. Moreover, this study shows no significant results regarding the stabilizing action of the VMO on the patella during knee flexion. CONCLUSION: This in vitro study, conducted with an experimental protocol previously validated in the literature, helps quantify the actions of the MPFL, the VMO, and the MPML/MPTL respectively, and identify areas of joint motion where these structures have the most significant influence. This confirms the importance of reconstruction in the treatment of chronic patellar instability. During its reconstruction, care should be taken to adjust the MPFL balance during the initial 20 degrees -30 degrees of flexion.
机译:目的:rarely骨内侧韧带结构对pa骨跟踪的影响很少研究。因此,这项尸体生物力学研究的主要目的是确定内侧pa股肌(MPFL),内侧肌(MPML)和内侧pa肌(MPTL)韧带对膝关节屈曲期间三维tell骨追踪的影响。这项研究是使用经过验证的尸体光电协议进行analysis骨运动学分析的。方法:对于每个尸体膝关节研究,均进行了四次连续采集。首先研究了健康膝关节的pa骨跟踪,然后将MPFL和斜肌股静脉(VMO)的连接处切开,MPFL在其pa骨附件处释放,最后释放MPML和MPTL的插入。结果:在这项研究中,MPFL占pa股骨滑车engagement骨接合期间外侧the骨移位的内侧稳定力的50-60%。这项工作证实并阐明了MPFL在最初的30度膝盖屈曲过程中作为the骨的主要稳定器的作用。此外,这项研究显示有关VMO在膝关节屈曲过程中对on骨的稳定作用没有明显的结果。结论:这项体外研究是通过先前已在文献中验证过的实验方案进行的,有助于分别量化MPFL,VMO和MPML / MPTL的作用,并确定这些结构影响最大的关节运动区域。这证实了重建在治疗慢性pa骨不稳中的重要性。在重建过程中,应注意在最初的20度-30度屈曲过程中调整MPFL平衡。

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