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3D MAGNETIC RESONANCE IMAGING OF THE HUMAN BRAIN - NOVEL RADIAL SAMPLING, FILTERING AND RECONSTRUCTION

机译:人脑的3D磁共振成像 - 新型径向取样,过滤和重建

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We have suggested a novel method PRESTO-CAN including radial sampling, filtering and reconstruction of k-space data for 3D-plus-time resolved MRI. The angular increment of the profiles was based on the golden ratio, but the number of angular positions N was locked to be a prime number which guaranteed fix angle positions. The time resolution increased dramatically when the profiles were partly removed from the k-space using the hourglass filter. We aim for utilizing the MRI-data for fMRI, where the echo times are long, TE ≈ 37-40 ms. This will result in field in homogeneities and phase variations in the reconstructed images. Therefore, a new calibration and correction procedure was developed. We show that we are able to reconstruct images of the human brain with an image quality in line with what can be obtained by conventional Cartesian sampling. The pulse sequence for PRESTO-CAN was implemented by modifying an existing PRESTO sequence for Cartesian sampling. The effort involved was relatively small and a great advantage will be that we are able to use standard procedures for speeding up data acquisition, i.e. parallel imaging with SENSE.
机译:我们建议了一种新的方法Presto-Chen-Chen-Chen-Chen,包括用于3D-Plus-time解析的MRI的K空间数据的径向采样,过滤和重建。曲线的角度增量基于金色比率,但是角度位置n的数量被锁定为保证固定角度位置的素数。当使用沙漏滤波器部分地从k空间移除曲线时,时间分辨率显着增加。我们的目标是利用FMRI的MRI数据,回声时间很长,TE≈37-40ms。这将导致均匀性和重建图像中的相变的字段。因此,开发了一种新的校准和校正程序。我们表明,我们能够通过传统的笛卡尔采样可以获得的图像质量来重建人类大脑的图像。通过修改用于笛卡尔采样的现有Presto序列来实现Presto-Cresto-Ch的脉冲序列。所涉及的努力相对较小,并且有一个很大的优势将是我们能够使用标准程序来加速数据采集,即用感觉并行成像。

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