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使用时空联合重建的无失真水脂分离扩散加权成像

Distortion-free water-fat separated diffusion-weighted imaging using spatiotemporal joint reconstruction.

作者信息

Zhou Xuetong, Daniel Bruce L, Hargreaves Brian A, Lee Philip K

机构信息

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

Department of Bioengineering, Stanford University, Stanford, California, USA.

出版信息

Magn Reson Med. 2024 Dec;92(6):2343-2357. doi: 10.1002/mrm.30221. Epub 2024 Jul 25.

Abstract

PURPOSE

Diffusion-weighted imaging (DWI) suffers from geometric distortion and chemical shift artifacts due to the commonly used Echo Planar Imaging (EPI) trajectory. Even with fat suppression in DWI, severe B and B variations can result in residual fat, which becomes both a source of image artifacts and a confounding factor in diffusion-weighted contrast in distinguishing benign and malignant tissues. This work presents a method for acquiring distortion-free diffusion-weighted images using spatiotemporal acquisition and joint reconstruction. Water-fat separation is performed by chemical-shift encoding.

METHODS

Spatiotemporal acquisition is employed to obtain distortion-free images at a series of echo times. Chemical-shift encoding is used for water-fat separation. Reconstruction and separation are performed jointly in the spat-spectral domain. To address the shot-to-shot motion-induced phase in DWI, an Fast Spin Echo (FSE)-based phase navigator is incorporated into the sequence to obtain distortion-free phase information. The proposed method was validated in phantoms and in vivo for the brain, head and neck, and breast.

RESULTS

The proposed method enables the acquisition of distortion-free diffusion-weighted images in the presence of B field inhomogenieties commonly observed in the body. Water and fat components are separated with no obvious spectral leakage artifacts. The estimated Apparent Diffusion Coefficient (ADC) is comparable to that of multishot DW-EPI.

CONCLUSION

Distortion-free, water-fat separated diffusion-weighted images in body can be obtained through the utilization of spatiotemporal acquisition and joint reconstruction methods.

摘要

目的

由于常用的回波平面成像(EPI)轨迹,扩散加权成像(DWI)会受到几何畸变和化学位移伪影的影响。即使在DWI中进行了脂肪抑制,严重的B场和B'场变化仍可能导致残留脂肪,这既成为图像伪影的来源,也是区分良性和恶性组织时扩散加权对比度的混杂因素。本文提出了一种使用时空采集和联合重建来获取无畸变扩散加权图像的方法。通过化学位移编码进行水脂分离。

方法

采用时空采集在一系列回波时间获取无畸变图像。化学位移编码用于水脂分离。在空间谱域中联合进行重建和分离。为了解决DWI中逐次激发运动引起的相位问题,将基于快速自旋回波(FSE)的相位导航器纳入序列以获得无畸变的相位信息。所提出的方法在体模以及脑部、头颈部和乳腺的活体中得到了验证。

结果

所提出的方法能够在存在人体中常见的B场不均匀性的情况下获取无畸变的扩散加权图像。水和脂肪成分得以分离,且无明显的频谱泄漏伪影。估计的表观扩散系数(ADC)与多次激发DW-EPI的相当。

结论

通过利用时空采集和联合重建方法,可以在人体中获得无畸变、水脂分离的扩散加权图像。

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