论文标题

头颈多通道B1+映射和颈动脉RF使用平行发射头线圈

Head-and-neck multi-channel B1+ mapping and carotid arteries RF shimming using a parallel transmit head coil

论文作者

de Buck, Matthijs H. S., Jezzard, Peter, Hess, Aaron T.

论文摘要

目的:当使用7T的发射头盘线圈时,神经血管MRI迅速下降到颈部。在颈部主要进食动脉中改善B1+幅度的一种解决方案是使用并行发射(PTX)头圈上的定制RF垫片。但是,计算此类垫片需要在头部和颈部都有鲁棒的多通道B1+地图,这是由于RF渗透到颈部的较低,多渠道B1+映射技术的动态范围有限以及B0敏感性而具有挑战性。因此,我们寻求强大的大动力范围PTX场映射方案,并在实践中测试了射频光滑是否可以改善颈动脉B1+。 方法:提出了一条管道,该管道结合了使用圆形极化(CP-)和CP2模式RF垫片在多个电压下获取的B1+映射数据。通过比较多个随机传输垫片的预测和测量的B1+来评估管道,并通过评估RF弹药增加颈动脉中B1+的能力。 结果:所提出的方法在头部和颈部的预测和测量的B1+之间达到了良好的一致性。使用量身定制的RF垫片,使用通用的RF垫片可以将颈动脉中的B1+幅度提高42%,同时与CP模式相比,同时改善了RF同质性。 结论:使用从头部和颈部的多通道B1+地图计算出的RF垫片可以增加颈部的B1+。这可以使用通用的仅相位RF垫片来实现,从而促进现有序列中的轻松实现。

Purpose: Neurovascular MRI suffers from a rapid drop in B1+ into the neck when using transmit head coils at 7T. One solution to improving B1+ magnitude in the major feeding arteries in the neck is to use custom RF shims on parallel transmit (pTx) head coils. However, calculating such shims requires robust multi-channel B1+ maps in both the head and the neck, which is challenging due to low RF penetration into the neck, limited dynamic range of multi-channel B1+ mapping techniques, and B0 sensitivity. We therefore sought a robust large-dynamic-range pTx field mapping protocol, and tested whether RF shimming can improve carotid artery B1+ in practice. Methods: A pipeline is presented that combines B1+ mapping data acquired using circularly polarized (CP-) and CP2-mode RF shims at multiple voltages. The pipeline was evaluated by comparing the predicted and measured B1+ for multiple random transmit shims, and by assessing the ability of RF shimming to increase the B1+ in the carotid arteries. Results: The proposed method achieved good agreement between predicted and measured B1+ in both the head and the neck. The B1+ magnitude in the carotid arteries can be increased by 42% using tailored RF shims or by 37% using universal RF shims, while also improving the RF homogeneity compared to CP mode. Conclusion: B1+ in the neck can be increased using RF shims calculated from multi-channel B1+ maps in both the head and the neck. This can be achieved using universal phase-only RF shims, facilitating easy implementation in existing sequences.

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