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Correlation between anatomic foot and ankle movement measured with MRI and with a motion analysis system

机译:MRI和运动分析系统测量的解剖脚和踝关节运动之间的相关性

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Several studies have attempted to measure how well external markers track internal bone movement using pins drilled into the foot, but this is too invasive for the pediatric population. This study investigated how well a six segment foot model (6SFM) using external markers was able to measure bone movement in the foot compared to MRI measurements. The foot was moved into different positions using a plastic foot jig and measurements were taken with both systems. The aims were to: (1) Look at the correlation between movement tracked with an Electronic Motion Tracking System (EMTS) and by measurements derived from MRI images, specifically the principal intercept angles (PIAs) which are the angles of intersection between principal axes of inertia of bone volumes. (2) To see how well external motion measured by the 6SFM could predict PIAs. Four bone pairs had their movement tracked: Tibia-Calcaneus, Calcaneus-Cuboid, Navicular-1st Metatarsal, and 1st Metatarsal-Hallux. The results showed moderate correlation between measured PIAs and those predicted at the Tibia-Calcaneus, Navicular-1st Metatarsal, and 1st Metatarsal-Hallux joints. Moderate to high correlation was found between the PIA and movement in a single anatomic plane for all four joints at several positions. The 6SFM using the EMTS allows reliable tracking of 3D rotations in the pediatric foot, except at the Calcaneus-Cuboid joint.
机译:几项研究试图通过使用钻入脚的销钉来测量外部标记物跟踪内部骨骼运动的程度,但是这对于儿科人群而言过于侵入。这项研究调查了使用外部标记的六段脚模型(6SFM)与MRI测量相比如何能够测量脚的骨骼运动。使用塑料脚夹具将脚移到不同的位置,并使用两个系统进行测量。目的是:(1)研究通过电子运动跟踪系统(EMTS)跟踪的运动与从MRI图像得出的测量值之间的相关性,特别是主截距角(PIA),即主截距角(PIA)骨骼体积的惯性。 (2)看看由6SFM测量的外部运动可以如何很好地预测PIA。跟踪了四个骨骼对的运动:胫骨-跟骨,跟骨-长方体,Navicular第一st骨和第一and骨-Hallux。结果显示,所测得的PIA与胫骨-跟骨,第一颌骨和第一tar骨-Hallux关节预测的PIA之间存在适度的相关性。在四个位置的所有四个关节的PIA与单个解剖平面中的运动之间发现了中度至高度相关性。使用EMTS的6SFM可以可靠地跟踪小儿足部的3D旋转,除了跟骨-长方体关节。

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