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Measurement of local wavelength using MR elastography with multiple phase offsets

机译:使用具有多个相位偏移的MR弹性成像技术测量局部波长

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Magnetic resonance elastography (MRE) is a phase-contrast-based MR method that can visualize propagating strain waves in materials. Quantitative values of shear modulus can be calculated by estimating the local wavelength (LW) of the wave pattern. Low frequency mechanical motion must be used for soft tissue-like materials, because strain waves rapidly attenuate at higher frequencies. Therefore, it is difficult to estimate LW with high spatial resolution especially from noisy MRE images. In the MRE sequence a motion-sensitizing gradient (MSG) is synchronized with the mechanical cyclic motion. MRE images with multiple phase offsets can be generated with increasing delays between MSG and the mechanical excitation. In this report, the authors describe a new algorithm in order to measure LW at higher spatial resolution using MRE images with multiple phase offsets. This method was evaluated by computer simulation and a phantom study. The results show that LW was successively estimated.
机译:磁共振弹性成像(MRE)是基于相差的MR方法,可以可视化材料中传播的应变波。剪切模量的定量值可以通过估计波型的局部波长(LW)来计算。低频机械运动必须用于类似软组织的材料,因为应变波会在较高的频率下迅速衰减。因此,尤其是从嘈杂的MRE图像中很难估计具有高空间分辨率的LW。在MRE序列中,运动敏感梯度(MSG)与机械循环运动同步。可以在MSG和机械激励之间增加延迟的情况下生成具有多个相位偏移的MRE图像。在本报告中,作者描述了一种新算法,以便使用具有多个相位偏移的MRE图像以更高的空间分辨率测量LW。通过计算机仿真和幻像研究对该方法进行了评估。结果表明,LW是连续估计的。

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