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利用回波不对称性和最小二乘法估计的水脂迭代分解(IDEAL):在快速自旋回波成像中的应用

Iterative decomposition of water and fat with echo asymmetry and least-squares estimation (IDEAL): application with fast spin-echo imaging.

作者信息

Reeder Scott B, Pineda Angel R, Wen Zhifei, Shimakawa Ann, Yu Huanzhou, Brittain Jean H, Gold Garry E, Beaulieu Christopher H, Pelc Norbert J

机构信息

Department of Radiology, Stanford University Medical Center, Stanford, California, USA.

出版信息

Magn Reson Med. 2005 Sep;54(3):636-44. doi: 10.1002/mrm.20624.

Abstract

Chemical shift based methods are often used to achieve uniform water-fat separation that is insensitive to Bo inhomogeneities. Many spin-echo (SE) or fast SE (FSE) approaches acquire three echoes shifted symmetrically about the SE, creating time-dependent phase shifts caused by water-fat chemical shift. This work demonstrates that symmetrically acquired echoes cause artifacts that degrade image quality. According to theory, the noise performance of any water-fat separation method is dependent on the proportion of water and fat within a voxel, and the position of echoes relative to the SE. To address this problem, we propose a method termed "iterative decomposition of water and fat with echo asymmetric and least-squares estimation" (IDEAL). This technique combines asymmetrically acquired echoes with an iterative least-squares decomposition algorithm to maximize noise performance. Theoretical calculations predict that the optimal echo combination occurs when the relative phase of the echoes is separated by 2pi/3, with the middle echo centered at pi/2+pik (k=any integer), i.e., (-pi/6+pik, pi/2+pik, 7pi/6+pik). Only with these echo combinations can noise performance reach the maximum possible and be independent of the proportion of water and fat. Close agreement between theoretical and experimental results obtained from an oil-water phantom was observed, demonstrating that the iterative least-squares decomposition method is an efficient estimator.

摘要

基于化学位移的方法通常用于实现对静磁场(Bo)不均匀性不敏感的均匀水脂分离。许多自旋回波(SE)或快速SE(FSE)方法会采集三个关于SE对称偏移的回波,从而产生由水脂化学位移引起的随时间变化的相移。这项工作表明,对称采集的回波会导致降低图像质量的伪影。根据理论,任何水脂分离方法的噪声性能取决于体素内水和脂肪的比例,以及回波相对于SE的位置。为了解决这个问题,我们提出了一种称为“具有回波不对称和最小二乘估计的水脂迭代分解”(IDEAL)的方法。该技术将不对称采集的回波与迭代最小二乘分解算法相结合,以最大化噪声性能。理论计算预测,当回波的相对相位相差2π/3,且中间回波以π/2 + πk(k为任意整数)为中心,即(-π/6 + πk,π/2 + πk,7π/6 + πk)时,会出现最佳回波组合。只有采用这些回波组合,噪声性能才能达到最大可能且与水和脂肪的比例无关。观察到从油水模型获得的理论结果与实验结果非常吻合,这表明迭代最小二乘分解方法是一种有效的估计方法。

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