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用于脊髓超高b值径向扩散加权成像的二维单次激发扩散加权刺激回波平面成像,采用缩小视野技术

Two-dimensional single-shot diffusion-weighted stimulated EPI with reduced FOV for ultrahigh-b radial diffusion-weighted imaging of spinal cord.

作者信息

Sapkota Nabraj, Shi Xianfeng, Shah Lubdha M, Bisson Erica F, Rose John W, Jeong Eun-Kee

机构信息

Utah Center for Advanced Imaging Research, University of Utah, Salt Lake City, Utah, USA.

Department of Physics and Astronomy, University of Utah, Salt Lake City, Utah, USA.

出版信息

Magn Reson Med. 2017 Jun;77(6):2167-2173. doi: 10.1002/mrm.26302. Epub 2016 Jun 14.

Abstract

PURPOSE

High-resolution diffusion-weighted imaging (DWI) of the spinal cord (SC) is problematic because of the small cross-section of the SC and the large field inhomogeneity. Obtaining the ultrahigh-b DWI poses a further challenge. The purpose of the study was to design and validate two-dimensional (2D) single-shot diffusion-weighted stimulated echo planar imaging with reduced field of view (2D ss-DWSTEPI-rFOV) for ultrahigh-b radial DWI (UHB-rDWI) of the SC.

METHODS

A novel time-efficient 2D ss-DWSTEPI-rFOV sequence was developed based on the stimulated echo sequence. Reduced-phase field of view was obtained by using two slice-selective 90 ° radiofrequency pulses in the presence of the orthogonal slice selection gradients. The sequence was validated on a cylindrical phantom and demonstrated on SC imaging.

RESULTS

Ultrahigh-b radial diffusion-weighted ( bmax = 7300 s/mm2) images of the SC with greatly reduced distortion were obtained. The exponential plus constant fitting of the diffusion-decay curve estimated the constant fraction (restricted water fraction) as 0.36 ± 0.05 in the SC white matter.

CONCLUSION

A novel 2D ss-DWSTEPI-rFOV sequence has been designed and demonstrated for high-resolution UHB-rDWI of localized anatomic structures with significantly reduced distortion induced by nonlinear static field inhomogeneity. Magn Reson Med 77:2167-2173, 2017. © 2016 International Society for Magnetic Resonance in Medicine.

摘要

目的

由于脊髓(SC)的横截面较小且磁场不均匀性较大,脊髓的高分辨率扩散加权成像(DWI)存在问题。获得超高b值DWI带来了进一步的挑战。本研究的目的是设计并验证用于脊髓超高b值径向DWI(UHB-rDWI)的二维(2D)单次激发扩散加权刺激回波平面成像且视野缩小(2D ss-DWSTEPI-rFOV)。

方法

基于刺激回波序列开发了一种新型的高效2D ss-DWSTEPI-rFOV序列。在存在正交切片选择梯度的情况下,通过使用两个切片选择性90°射频脉冲获得缩小相位视野。该序列在圆柱形体模上进行了验证,并在脊髓成像中得到了展示。

结果

获得了脊髓的超高b值径向扩散加权(bmax = 7300 s/mm2)图像,其失真大大降低。扩散衰减曲线的指数加常数拟合估计脊髓白质中的常数分数(受限水分数)为0.36±0.05。

结论

已设计并展示了一种新型的2D ss-DWSTEPI-rFOV序列,用于局部解剖结构的高分辨率UHB-rDWI,由非线性静磁场不均匀性引起的失真显著降低。《磁共振医学》77:2167 - 2173, 2017。© 2016国际磁共振医学学会。

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