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In vivo measurements of patellar tracking and finite helical axis using a static magnetic resonance based methodology

机译:使用基于静态磁共振的方法进行pa骨跟踪和有限螺旋轴的体内测量

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摘要

Patellofemoral (PF) maltracking is a critical factor predisposing to PF pain syndrome. Many novel techniques of measuring patellar tracking remain research tools. This study aimed to develop a method to measure the in vivo patellar tracking and finite helical axis (FHA) by using a static magnetic resonance (MR) based methodology. The geometrical models of PF joint at 0 degrees, 45 degrees, 60 degrees, 90 degrees, and 120 degrees of knee flexion were developed from MR images. The approximate patellar tracking was derived from the discrete PF models with a spline interpolation algorithm. The patellar tracking was validated with the previous in vitro and in vivo experiments. The patellar FHA throughout knee flexion was calculated. In the present case, the FHA drew an "L-shaped" curve in the sagittal section. This methodology could advance the examination of PF kinematics in clinics, and may also provide preliminary knowledge on patellar FHA study. (C) 2014 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:ello股(PF)追踪不良是诱发PF疼痛综合征的关键因素。测量pa骨跟踪的许多新颖技术仍然是研究工具。这项研究旨在开发一种方法,通过使用基于静态磁共振(MR)的方法来测量体内pa骨跟踪和有限螺旋轴(FHA)。通过MR图像建立了0度,45度,60度,90度和120度膝关节屈曲时PF关节的几何模型。利用样条插值算法从离散的PF模型推导了近似的tell骨跟踪。 with骨追踪已通过先前的体外和体内实验得到验证。计算整个膝盖弯曲的tell骨FHA。在当前情况下,FHA在矢状截面上绘制了“ L形”曲线。这种方法可以促进临床检查PF运动学,还可以提供有关pa骨FHA研究的初步知识。 (C)2014年IPEM。由Elsevier Ltd.出版。保留所有权利。

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