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高效校正磁共振回波平面成像中的非均匀静态磁场扭曲。

Efficient correction of inhomogeneous static magnetic field-induced distortion in Echo Planar Imaging.

机构信息

Multimodal Imaging Laboratory, The University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92037, USA.

出版信息

Neuroimage. 2010 Mar;50(1):175-83. doi: 10.1016/j.neuroimage.2009.11.044. Epub 2009 Nov 26.

Abstract

Single-shot Echo Planar Imaging (EPI) is one of the most efficient magnetic resonance imaging (MRI) acquisition schemes, producing relatively high-definition images in 100 ms or less. These qualities make it desirable for Diffusion Tensor Imaging (DTI), functional MRI (fMRI), and Dynamic Susceptibility Contrast MRI (DSC-MRI). However, EPI suffers from severe spatial and intensity distortion due to B(0) field inhomogeneity induced by magnetic susceptibility variations. Anatomically accurate, undistorted images are essential for relating DTI and fMRI images with anatomical MRI scans, and for spatial registration with other modalities. We present here a fast, robust, and accurate procedure for correcting EPI images from such spatial and intensity distortions. The method involves acquisition of scans with opposite phase encoding polarities, resulting in opposite spatial distortion patterns, and alignment of the resulting images using a fast nonlinear registration procedure. We show that this method, requiring minimal additional scan time, provides superior accuracy relative to the more commonly used, and more time consuming, field mapping approach. This method is also highly computationally efficient, allowing for direct "real-time" implementation on the MRI scanner. We further demonstrate that the proposed method can be used to recover dropouts in gradient echo (BOLD and DSC-MRI) EPI images.

摘要

单次激发回波平面成像(EPI)是最有效的磁共振成像(MRI)采集方案之一,在 100 毫秒或更短的时间内生成相对高清晰度的图像。这些特性使其成为扩散张量成像(DTI)、功能磁共振成像(fMRI)和动态对比磁共振成像(DSC-MRI)的理想选择。然而,由于磁敏感性变化引起的 B(0)场非均匀性,EPI 会遭受严重的空间和强度变形。对于将 DTI 和 fMRI 图像与解剖学 MRI 扫描相关联,以及与其他模态进行空间配准,解剖学上准确、无失真的图像是必不可少的。我们在这里提出了一种快速、稳健、准确的方法,用于校正此类空间和强度变形的 EPI 图像。该方法涉及采集具有相反相位编码极性的扫描,从而产生相反的空间变形模式,并使用快速非线性配准过程对齐生成的图像。我们表明,与更常用且更耗时的场映射方法相比,这种方法需要最小的额外扫描时间,提供了更高的准确性。该方法还具有很高的计算效率,允许直接在 MRI 扫描仪上进行“实时”实现。我们进一步证明,所提出的方法可用于恢复梯度回波(BOLD 和 DSC-MRI)EPI 图像中的缺失。

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