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Numerical Simulations of Motion-Insensitive Diffusion Imaging Based on the Distant Dipolar Field Effects

机译:基于远距离偶极场效应的运动不敏感扩散成像的数值模拟

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摘要

Diffusion weighting in MRI is commonly achieved with the pulsed-gradient spin-echo (PGSE) method. When combined with spin-warping image formation, this method often results in ghosts due to the sample's macroscopic motion. It has been shown experimentally (Kennedy and Zhong, MRM 2004;52:1−6) that these motion artifacts can be effectively eliminated by the distant dipolar field (DDF) method, which relies on the refocusing of spatially modulated transverse magnetization by the DDF within the sample itself. In this report, diffusion weighted images (DWIs) using both DDF and PGSE methods in the presence of macroscopic sample motion were simulated. Numerical simulation results quantify dependence of signals in DWI on several key motion parameters, and demonstrate that the DDF DWIs are much less sensitive to the macroscopic sample motion than the traditional PGSE DWIs. The results also show that the dipolar correlation distance (dc) can alter contrast in DDF DWIs. The simulated results are in good agreement with the experimental results reported previously.
机译:MRI中的扩散加权通常是通过脉冲梯度自旋回波(PGSE)方法实现的。与自旋翘曲图像形成结合使用时,由于样品的宏观运动,此方法通常会导致重影。实验表明(Kennedy和Zhong,MRM 2004; 52:1-6),可以通过远距离偶极场(DDF)方法有效消除这些运动伪影,该方法依赖于DDF对空间调制横向磁化强度的重新聚焦。在样本本身中。在此报告中,模拟了在存在宏观样本运动的情况下使用DDF和PGSE方法的扩散加权图像(DWI)。数值模拟结果量化了DWI中信号对几个关键运动参数的依赖性,并表明DDF DWI对宏观样本运动的敏感性比传统PGSE DWI低得多。结果还表明,偶极相关距离(dc)可以改变DDF DWI中的对比度。仿真结果与之前报道的实验结果吻合良好。

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