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A Four-dimensional Motion Field Atlas of the Tongue from Tagged and Cine Magnetic Resonance Imaging

机译:从标记和电影磁共振成像的舌头的三维运动场图集。

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Representation of human tongue motion using three-dimensional vector fields over time can be used to better understand tongue function during speech, swallowing, and other lingual behaviors. To characterize the inter-subject variability of the tongue's shape and motion of a population carrying out one of these functions it is desirable to build a statistical model of the four-dimensional (4D) tongue. In this paper, we propose a method to construct a spatio-temporal atlas of tongue motion using magnetic resonance (MR) images acquired from fourteen healthy human subjects. First, cine MR images revealing the anatomical features of the tongue are used to construct a 4D intensity image atlas. Second, tagged MR images acquired to capture internal motion are used to compute a dense motion field at each time frame using a phase-based motion tracking method. Third, motion fields from each subject are pulled back to the cine atlas space using the deformation fields computed during the cine atlas construction. Finally, a spatio-temporal motion field atlas is created to show a sequence of mean motion fields and their inter-subject variation. The quality of the atlas was evaluated by deforming cine images in the atlas space. Comparison between deformed and original cine images showed high correspondence. The proposed method provides a quantitative representation to observe the commonality and variability of the tongue motion field for the first time, and shows potential in evaluation of common properties such as strains and other tensors based on motion fields.
机译:使用三维矢量场随时间推移来表示人的舌头运动可以用来更好地理解语音,吞咽和其他语言行为期间的舌头功能。为了表征舌头形状和执行这些功能之一的人群运动之间的对象间变化,希望建立四维(4D)舌头的统计模型。在本文中,我们提出了一种使用从十四个健康人类受试者获得的磁共振(MR)图像来构建舌运动的时空图集的方法。首先,将揭示舌头解剖特征的电影MR图像用于构建4D强度图像图集。其次,使用捕获的用于捕获内部运动的MR图像,使用基于相位的运动跟踪方法在每个时间帧计算密集运动场。第三,使用在电影地图集构建过程中计算出的变形场,将来自每个受试者的运动场拉回到电影地图集空间。最后,创建了一个时空运动场图集,以显示一系列平均运动场及其对象间的变化。通过使地图集空间中的电影图像变形来评估地图集的质量。变形和原始电影图像之间的比较显示出很高的对应性。所提出的方法提供了一种定量表示法,可以首次观察到舌运动场的共性和变异性,并显示了基于运动场评估诸如应变和其他张量的共性的潜力。

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