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7T MRI 中旋转和静止射频线圈在翻转角和比吸收率方面的比较数值研究。

A comparative numerical study of rotating and stationary RF coils in terms of flip angle and specific absorption rate for 7 T MRI.

机构信息

The School of Information Technology and Electrical Engineering, The University of Queensland, 4072 QLD, Australia.

出版信息

J Magn Reson. 2013 Nov;236:70-82. doi: 10.1016/j.jmr.2013.08.016. Epub 2013 Sep 10.

Abstract

While high-field magnetic resonance imaging promises improved image quality and faster scan time, it is affected by non-uniform flip angle distributions and unsafe specific absorption rate levels within the patient, as a result of the complicated radiofrequency (RF) field-tissue interactions. This numerical study explored the possibility of using a single mechanically rotating RF coil for RF shimming and specific absorption rate management applications at 7 T. In particular, this new approach (with three different RF coil element arrangements) was compared against both an 8-channel parallel coil array and a birdcage volume coil, with and without RF current optimisation. The evaluation was conducted using an in-house developed and validated finite-difference time-domain method in conjunction with a tissue-equivalent human head model. It was found that, without current optimisation, the rotating RF coil method produced a more uniform flip angle distribution and a lower maximum global and local specific absorption rate compared to the 8-channel parallel coil array and birdcage resonator. In addition, due to the large number of degrees of freedom in the form of rotated sensitivity profiles, the rotating RF coil approach exhibited good RF shimming and specific absorption rate management performance. This suggests that the proposed method can be useful in the development of techniques that address contemporary RF issues associated with high-field magnetic resonance imaging.

摘要

虽然高磁场磁共振成象有望提高图像质量和更快的扫描时间,但由于复杂的射频(RF)场-组织相互作用,它受到非均匀翻转角分布和患者体内不安全的特定吸收率水平的影响。这项数值研究探讨了在 7T 下使用单个机械旋转 RF 线圈进行 RF 调谐和特定吸收率管理应用的可能性。特别是,这种新方法(具有三种不同的 RF 线圈元件布置)与 8 通道并行线圈阵列和鸟笼容积线圈进行了比较,包括和不包括 RF 电流优化。评估使用内部开发和验证的有限差分时域方法与组织等效的人体头部模型结合进行。结果发现,在没有电流优化的情况下,与 8 通道并行线圈阵列和鸟笼谐振器相比,旋转 RF 线圈方法产生了更均匀的翻转角分布和更低的最大全局和局部特定吸收率。此外,由于旋转灵敏度谱的自由度很大,旋转 RF 线圈方法表现出良好的 RF 调谐和特定吸收率管理性能。这表明,所提出的方法可用于开发解决与高磁场磁共振成像相关的当代 RF 问题的技术。

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