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Slice profile effects in 2D slice-selective MRI of hyperpolarized nuclei

机译:超极化核的二维切片选择性MRI中的切片轮廓效应

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摘要

This work explores slice profile effects in 2D slice-selective gradient-echo MRI of hyperpolarized nuclei. Two different sequences were investigated: a Spoiled Gradient Echo sequence with variable flip angle (SPGR-VFA) and a balanced Steady-State Free Precession (SSFP) sequence. It is shown that in SPGR-VFA the distribution of flip angles across the slice present in any realistically shaped radiofrequency (RF) pulse leads to large excess signal from the slice edges in later RF views, which results in an undesired non-constant total transverse magnetization, potentially exceeding the initial value by almost 300% for the last RF pulse. A method to reduce this unwanted effect is demonstrated, based on dynamic scaling of the slice selection gradient. SSFP sequences with small to moderate flip angles (<40 degrees) are also shown to preserve the slice profile better than the most commonly used SPGR sequence with constant flip angle (SPGR-CFA). For higher flip angles, the slice profile in SSFP evolves in a manner similar to SPGR-CFA, with depletion of polarization in the center of the slice.
机译:这项工作探索了超极化核的二维切片选择性梯度回波MRI中的切片轮廓效应。研究了两个不同的序列:具有可变翻转角的变差梯度回波序列(SPGR-VFA)和平衡的稳态自由进动(SSFP)序列。结果表明,在SPGR-VFA中,在任何实际成形的射频(RF)脉冲中出现的切片上的翻转角分布都会导致在以后的RF视图中来自切片边缘的大量过量信号,这会导致不希望的非恒定总横向磁化强度,最后一个RF脉冲可能超出初始值近300%。基于切片选择梯度的动态缩放,展示了一种减少这种不良影响的方法。与具有恒定翻转角的最常用SPGR序列(SPGR-CFA)相比,具有小至中等翻转角(<40度)的SSFP序列还显示出更好的保留切片轮廓。对于更大的翻转角,SSFP中的切片轮廓以类似于SPGR-CFA的方式演变,且切片中心的极化被耗尽。

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