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回波平面成像中的图像失真校正:场映射与点扩散函数映射的比较

Image distortion correction in EPI: comparison of field mapping with point spread function mapping.

作者信息

Zeng Huairen, Constable R Todd

机构信息

Department of Diagnostic Radiology, Yale University School of Medicine, New Haven, Connecticut 06520-8042, USA.

出版信息

Magn Reson Med. 2002 Jul;48(1):137-46. doi: 10.1002/mrm.10200.

Abstract

Echo-planar imaging (EPI) can provide rapid imaging by acquiring a complete k-space data set in a single acquisition. However, this approach suffers from distortion effects in geometry and intensity, resulting in poor image quality. The distortions, caused primarily by field inhomogeneities, lead to intensity loss and voxel shifts, the latter of which are particularly severe in the phase-encode direction. Two promising approaches to correct the distortion in EPI are field mapping and point spread function (PSF) mapping. The field mapping method measures the field distortions and translates these into voxel shifts, which can be used to assign image intensities to the correct voxel locations. The PSF approach uses acquisitions with additional phase-encoding gradients applied in the x, y, and/or z directions to map the 1D, 2D, or 3D PSF of each voxel. These PSFs encode the spatial information about the distortion and the overall distribution of intensities from a single voxel. The measured image is the convolution of the undistorted density and the PSF. Measuring the PSF allows the distortion in geometry and intensity to be corrected. This work compares the efficacy of these methods with equal time allowed for field mapping and PSF mapping.

摘要

回波平面成像(EPI)通过在单次采集时获取完整的k空间数据集来提供快速成像。然而,这种方法存在几何形状和强度方面的失真效应,导致图像质量较差。这些失真主要由场不均匀性引起,会导致强度损失和体素移位,其中后者在相位编码方向上尤为严重。两种有前景的校正EPI失真的方法是场映射和点扩散函数(PSF)映射。场映射方法测量场失真并将其转换为体素移位,可用于将图像强度分配到正确的体素位置。PSF方法使用在x、y和/或z方向上应用额外相位编码梯度的采集来映射每个体素的一维、二维或三维PSF。这些PSF编码了关于失真的空间信息以及来自单个体素的强度的整体分布。测量得到的图像是未失真密度与PSF的卷积。测量PSF可以校正几何形状和强度方面的失真。这项工作在给予场映射和PSF映射相同时间的情况下比较了这些方法的效果。

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