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Accurate High-Resolution Measurements of 3-D Tissue Dynamics With Registration-Enhanced Displacement Encoded MRI

机译:配准增强位移编码MRI的3-D组织动力学的高精度测量

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摘要

Displacement fields are important to analyze deformation, which is associated with functional and material tissue properties often used as indicators of health. Magnetic resonance imaging (MRI) techniques like DENSE and image registration methods like Hyperelastic Warping have been used to produce pixel-level deformation fields that are desirable in high-resolution analysis. However, DENSE can be complicated by challenges associated with image phase unwrapping, in particular offset determination. On the other hand, Hyperelastic Warping can be hampered by low local image contrast. The current work proposes a novel approach for measuring tissue displacement with both DENSE and Hyperelastic Warping, incorporating physically accurate displacements obtained by the latter to improve phase characterization in DENSE. The validity of the proposed technique is demonstrated using numerical and physical phantoms, and in vivo small animal cardiac MRI.
机译:位移场对于分析变形很重要,变形与功能和材料组织特性有关,通常用作健康指标。像DENSE这样的磁共振成像(MRI)技术和像Hyperelastic Warping这样的图像配准方法已经用于产生高分辨率分析中所需要的像素级变形场。但是,与图像相位展开相关的挑战(尤其是偏移确定)可能会使DENSE变得复杂。另一方面,过低的局部图像对比度会阻碍超弹性翘曲。当前的工作提出了一种新的方法来测量DENSE和超弹性翘曲的组织位移,并结合了后者获得的物理上精确的位移,以改善DENSE中的相位特性。使用数字和物理体模以及体内小动物心脏MRI证明了所提出技术的有效性。

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