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In vivo ankle joint kinematics from dynamic magnetic resonance imaging using a registration-based framework

机译:在使用基于注册的框架的动态磁共振成像中的体内踝关节运动学

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In this paper, we propose a method for non-invasively measuring three-dimensional in vivo kinematics of the ankle joint from a dynamic MRI acquisition of a single range-of-motion cycle. The proposed approach relies on an intensity-based registration method to estimate motion from multi-plane dynamic MRI data. Our approach recovers not only the movement of the skeleton, but also the possibly non-rigid temporal deformation of the joint. First, the rigid motion of each ankle bone is estimated. Second, a four-dimensional (3D+time) high-resolution dynamic MRI sequence is estimated through the use of the log-euclidean framework for the computation of temporal dense deformation fields. This approach has been then applied and evaluated on in vivo dynamic MRI data acquired for a pilot study on six healthy pediatric cohort in order to establish in vivo normative joint biomechanics. Results demonstrate the robustness of the proposed pipeline and very promising high resolution visualization of the ankle joint. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种从动态MRI获取单个运动周期的动态MRI获取踝关节的踝关节的体内运动学中的非侵入性测量三维的方法。所提出的方法依赖于基于强度的注册方法来估计来自多平面动态MRI数据的运动。我们的方法不仅恢复了骨架的运动,还可以是关节的可能性非刚性时间变形。首先,估计每个踝骨的刚性运动。其次,通过使用用于计算时间密集变形字段的日志欧几里德框架来估计四维(3D +时间)高分辨率动态MRI序列。然后,对六个健康儿科队列的试验研究获得的Vivo动态MRI数据进行了应用和评估该方法,以便在体内规范性关节生物力学中建立。结果展示了所提出的管道的稳健性,并且非常有前景踝关节的高分辨率可视化。 (c)2019年elestvier有限公司保留所有权利。

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