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Iso-shaping rigid bodies for estimating their motion from image sequences

机译:等值刚体用于根据图像序列估计其运动

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In many medical imaging applications, due to the limited field of view of imaging devices, acquired images often include only a part of a structure. In such situations, it is impossible to guarantee that the images will contain exactly the same physical extent of the structure at different scans, which leads to difficulties in registration and in many other tasks, such as the analysis of the morphology, architecture, and kinematics of the structures. To facilitate such analysis, we developed a general method, referred to as iso-shaping, that generates structures of the same shape from segmented image sequences. The basis for this method is to automatically find a set of key points, called shape centers, in the segmented partial anatomic structure such that these points are present in all images and that they represent the same physical location in the object, and then trim the structure using these points as reference. The application area considered here is the analysis of the morphology, architecture, and kinematics of the joints of the foot from magnetic resonance images acquired at different joint positions and load conditions. The accuracy of the method is analyzed by utilizing ten data sets for iso-shaping the tibia and the fibula via four evaluative experiments. The analysis indicates that iso-shaping produces results as predicted by the theoretical framework.
机译:在许多医学成像应用中,由于成像设备的视野有限,所获取的图像通常仅包括结构的一部分。在这种情况下,无法保证图像在不同扫描下将包含结构的完全相同的物理范围,这会导致配准和许多其他任务(例如,形态,结构和运动学分析)中的困难结构。为了便于进行此类分析,我们开发了一种称为iso-shaping的通用方法,该方法可以从分割的图像序列生成具有相同形状的结构。该方法的基础是在分段的部分解剖结构中自动找到一组关键点,称为形状中心,以便这些点出现在所有图像中,并且它们代表对象中的相同物理位置,然后对对象进行修剪。这些要点作为参考的结构。这里考虑的应用领域是根据在不同关节位置和负荷条件下获得的磁共振图像分析脚的关节的形态,结构和运动学。通过四个评估实验,利用十组数据对胫骨和腓骨进行异形分析,分析了该方法的准确性。分析表明,iso整形可产生理论框架所预测的结果。

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