Othman Shadi F, Zhou Xiaohong Joe, Xu Huihui, Royston Thomas J, Magin Richard L
Department of Bioengineering, University of Illinois at Chicago, Chicago, IL 60607-7052, USA.
Magn Reson Imaging. 2007 Jan;25(1):94-100. doi: 10.1016/j.mri.2006.09.040. Epub 2006 Nov 30.
Microscopic magnetic resonance elastography is a high-resolution method for visualizing shear waves and assessing the biomechanical viscoelastic properties of small biological samples. In this work, we used error propagation to develop a simple analytical model that relates the signal-to-noise ratio of MR magnitude images to the variance in shear-wave maps collected using gradient-echo and spin-echo phase-contrast pulse sequences. Our model predicts results for shear-wave images in phantoms, which match the experimentally observed phase variance within 8%. This model can be used to optimize MR pulse sequences for elastography studies, as well as other phase-difference techniques in MRI.
微观磁共振弹性成像术是一种用于可视化剪切波并评估小型生物样本生物力学粘弹性特性的高分辨率方法。在这项工作中,我们利用误差传播开发了一个简单的分析模型,该模型将磁共振幅度图像的信噪比与使用梯度回波和自旋回波相位对比脉冲序列收集的剪切波图中的方差联系起来。我们的模型预测了体模中剪切波图像的结果,其与实验观察到的相位方差的匹配度在8%以内。该模型可用于优化弹性成像研究的磁共振脉冲序列,以及磁共振成像中的其他相位差技术。