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k空间能谱分析在梯度回波EPI的磁化率场映射及失真校正中的应用。

Application of k-space energy spectrum analysis to susceptibility field mapping and distortion correction in gradient-echo EPI.

作者信息

Chen Nan-kuei, Oshio Koichi, Panych Lawrence P

机构信息

Department of Radiology, Brigham and Women's Hospital, Harvard Medical School, 75 Francis Street, Boston, MA 02115, USA.

出版信息

Neuroimage. 2006 Jun;31(2):609-22. doi: 10.1016/j.neuroimage.2005.12.022. Epub 2006 Feb 15.

Abstract

Echo-planar imaging (EPI) is widely used in functional MRI studies. It is well known that EPI quality is usually degraded by geometric distortions, when there exist susceptibility field inhomogeneities. EPI distortions may be corrected if the field maps are available. It is possible to estimate the susceptibility field gradients from the phase reconstruction of a single-TE EPI image, after a successful phase-unwrapping procedure. However, in regions affected by pronounced field gradients, the phase-unwrapping of a single-TE image may fail, and therefore the estimated field maps may be incorrect. It has been reported that the field inhomogeneity may be calculated more reliably from T2*-weighted images corresponding to multiple TEs. However, the multi-TE MRI field mapping increases the scan time. Furthermore, the measured field maps may be invalid if the subject's position changes during dynamic scans. To overcome the limitations in conventional field mapping approaches, a novel k-space energy spectrum analysis algorithm is developed, which quantifies the spatially dependent echo-shifting effect and the susceptibility field gradients directly from the k-space data of single-TE gradient-echo EPI. Using the k-space energy spectrum analysis, susceptibility field gradients can be reliably measured without phase-unwrapping, and EPI distortions can be corrected without extra field mapping scans or pulse sequence modification. The reported technique can be used to retrospectively improve the image quality of the previously acquired EPI and functional MRI data, provided that the complex-domain k-space data are still available.

摘要

回波平面成像(EPI)在功能磁共振成像(fMRI)研究中被广泛应用。众所周知,当存在磁化率场不均匀性时,EPI的质量通常会因几何畸变而下降。如果有场图可用,EPI畸变可以得到校正。在成功进行相位展开过程后,有可能从单回波时间(TE)EPI图像的相位重建中估计磁化率场梯度。然而,在受明显场梯度影响的区域,单TE图像的相位展开可能会失败,因此估计的场图可能不正确。据报道,从对应于多个TE的T2*加权图像中可以更可靠地计算出场不均匀性。然而,多TE磁共振成像场映射会增加扫描时间。此外,如果在动态扫描过程中受试者的位置发生变化,测量得到的场图可能无效。为了克服传统场映射方法的局限性,开发了一种新颖的k空间能谱分析算法,该算法直接从单TE梯度回波EPI的k空间数据中量化空间相关的回波移位效应和磁化率场梯度。使用k空间能谱分析,可以在不进行相位展开的情况下可靠地测量磁化率场梯度,并且无需额外的场映射扫描或脉冲序列修改即可校正EPI畸变。如果复域k空间数据仍然可用,所报道的技术可用于回顾性地提高先前采集的EPI和功能磁共振成像数据的图像质量。

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