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Retrospective correction of B0-field-induced geometric distortions in multislice echo planar images: a 3D solution

机译:多层回波平面图像中B0场引起的几何畸变的回顾性校正:3D解决方案

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Abstract: A method has been developed to utilize a 3D B$-0$/ fieldmap, with a multi-volume-of-interest segmentation map, to quantify and correct geometric distortions in echo-planar images. The purpose is to provide accurate co-registration of anatomical MRI to functional MRI time course sequences. A data structure capable of extracting and reporting the necessary information forms a central part of the solution. Images were obtained from a 1.5 Tesla scanner with an experimental y-gradient insert coil. Two 3D-gradient echo sequences supply the data needed to calculate the B$-0$/ map across the volume. Segmentation of the volume into brain/background produces the data needed for the phase unwrapping and volume(s) of interest generation, from which the global B$-0$/ variation map is obtained. Subsequent EPI acquisition yields the fMRI time- course information. Tests were carried out on a phantom and a human volunteer engaged in a motor task (finger-tapping). Strong distortions were measured, and subsequently corrected, particularly near the petrous bone/mastoid air cells and in the frontal and maxillary sinuses. Additionally, a strong eddy current resulting from the unshielded y-gradient was detected. The method facilitates geometric distortion correction through an imaging volume, containing multiple regions of interest within a slice, starting from a single starting point. !20
机译:摘要:已开发出一种方法,该方法利用3D B $ -0 $ /场图和多目标分割图来量化和校正回波平面图像中的几何变形。目的是提供解剖MRI与功能MRI时程序列的准确共配准。能够提取和报告必要信息的数据结构构成了解决方案的核心部分。图像是从带有实验y梯度插入线圈的1.5 Tesla扫描仪获得的。两个3D梯度回波序列提供了计算整个体积B $ -0 $ /映射所需的数据。将体积分割为大脑/背景会产生相位展开和感兴趣的体积所需的数据,从中可以获得全局B $ -0 $ /变化图。随后的EPI采集将产生fMRI时程信息。测试是在幻影和一名从事运动任务(敲击手指)的人类志愿者身上进行的。测量了强烈的变形,然后进行了矫正,特别是在骨/乳突骨的气室附近以及额窦和上颌窦中。另外,检测到由未屏蔽的y梯度导致的强涡流。该方法有助于从单个起点开始的通过成像体积的几何畸变校正,该成像体积在切片内包含多个感兴趣区域。 !20

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