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Invivo patellofemoral contact mechanics during active extension using a novel dynamic MRI-based methodology

机译:使用基于动态MRI的新方法在主动伸展过程中的pa股股骨接触力学

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Objectives: To establish an invivo, normative patellofemoral (PF) cartilage contact mechanics database acquired during voluntary muscle control using a novel, dynamic, magnetic resonance (MR) imaging-based, computational methodology and validate the contact mechanics sensitivity to the known sub-millimeter methodological accuracies. Design: Dynamic cine phase-contrast and multi-plane cine (MPC) images were acquired while female subjects (n=20, sample of convenience) performed an open kinetic chain (knee flexion-extension) exercise inside a 3-TMR scanner. Static cartilage models were created from high resolution three-dimensional static MR data and accurately placed in their dynamic pose at each time frame based on the cine-PC (CPC) data. Cartilage contact parameters were calculated based on the surface overlap. Statistical analysis was performed using paired t-test and a one-sample repeated measures ANOVA. The sensitivity of the contact parameters to the known errors in the PF kinematics was determined. Results: Peak mean PF contact area was 228.7±173.6mm2 at 40° knee angle. During extension, contact centroid and peak strain locations tracked medially on the femoral and patellar cartilage and were not significantly different from each other. At 25°, 30°, 35°, and 40° of knee extension, contact area was significantly different. Contact area and centroid locations were insensitive to rotational and translational perturbations. Conclusion: This study is a first step towards unfolding the biomechanical pathways to anterior PF pain and osteoarthritis (OA) using dynamic, invivo, and accurate methodologies. The database provides crucial data for future studies and for validation of, or as an input to, computational models.
机译:目标:建立基于自愿的肌肉控制过程中使用新颖,动态,磁共振(MR)成像的计算方法,获得的体内,规范pa股(PF)软骨接触力学数据库,并验证接触力学对已知亚毫米的敏感性方法学上的准确性。设计:动态电影相衬和多平面电影(MPC)图像是在女性受试者(n = 20,方便样本)在3-TMR扫描仪内进行开放式动力学链(屈膝-伸展)运动时获得的。静态软骨模型是根据高分辨率的三维静态MR数据创建的,并根据cine-PC(CPC)数据在每个时间帧精确地置于其动态姿态中。基于表面重叠计算软骨接触参数。使用配对t检验和一个样本的重复测量ANOVA进行统计分析。确定了接触参数对PF运动学中已知误差的敏感性。结果:在40°膝角下,峰值PF平均接触面积为228.7±173.6mm2。在伸展过程中,接触质心和峰值应变的位置在股骨和pa骨软骨内侧跟踪,并且彼此之间没有显着差异。在25°,30°,35°和40°膝盖伸展时,接触面积明显不同。接触面积和质心位置对旋转和平移扰动不敏感。结论:本研究是利用动态,体内和准确的方法揭示通往前PF疼痛和骨关节炎(OA)的生物力学途径的第一步。该数据库为以后的研究,验证或作为计算模型的输入提供了关键数据。

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