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Optimal Variable Flip Angle Schemes For Dynamic Acquisition Of Exchanging Hyperpolarized Substrates

机译:动态获取交换超极化基板的最优可变倾角方案

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摘要

In metabolic MRI with hyperpolarized contrast agents, the signal levels vary over time due to T1 decay, T2 decay following RF excitations, and metabolic conversion. Efficient usage of the nonrenewable hyperpolarized magnetization requires specialized RF pulse schemes. In this work, we introduce two novel variable flip angle schemes for dynamic hyperpolarized MRI in which the flip angle is varied between excitations and between metabolites. These were optimized to distribute the magnetization relatively evenly throughout the acquisition by accounting for T1 decay, prior RF excitations, and metabolic conversion. Simulation results are presented to confirm the flip angle designs and evaluate the variability of signal dynamics across typical ranges of T1 and metabolic conversion. They were implemented using multiband spectral-spatial RF pulses to independently modulate the flip angle at various chemical shift frequencies. With these schemes we observed increased SNR of [1-13C]lactate generated from [1-13C]pyruvate, particularly at later time points. This will allow for improved characterization of tissue perfusion and metabolic profiles in dynamic hyperpolarized MRI.
机译:在具有超极化造影剂的代谢MRI中,由于T1衰减,RF激发后T2衰减和代谢转换,信号水平随时间变化。不可再生超极化磁化的有效利用需要专门的RF脉冲方案。在这项工作中,我们为动态超极化MRI引入了两种新颖的可变翻转角方案,其中激发和代谢物之间的翻转角是变化的。通过考虑T1衰减,先前的RF激励和代谢转换,对这些磁头进行了优化,使其在整个采集过程中相对均匀地分布了磁化强度。给出了仿真结果,以确认翻转角设计并评估典型T1和代谢转换范围内信号动力学的可变性。它们是使用多频带频谱空间RF脉冲实现的,可以独立调制各种化学位移频率下的翻转角。通过这些方案,我们观察到由[1- 13 C]丙酮酸盐生成的[1- 13 C]乳酸盐的SNR升高,尤其是在稍后的时间点。这将允许在动态超极化MRI中改善组织灌注和代谢特征的表征。

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