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多模态表面线圈用于低场磁共振成像。

Multimodal surface coils for low field MR imaging.

机构信息

Department of Biomedical Engineering, State University of New York at Buffalo, Buffalo, NY, United States.

Department of Biomedical Engineering, State University of New York at Buffalo, Buffalo, NY, United States; Department of Electrical Engineering, State University of New York at Buffalo, Buffalo, NY, United States.

出版信息

Magn Reson Imaging. 2024 Oct;112:107-115. doi: 10.1016/j.mri.2024.07.005. Epub 2024 Jul 4.

Abstract

Low field MRI is safer and more cost effective than the high field MRI. One of the inherent problems of low field MRI is its low signal-to-noise ratio or sensitivity. In this work, we introduce a multimodal surface coil technique for signal excitation and reception to improve the RF magnetic field (B) efficiency and potentially improve MR sensitivity. The proposed multimodal surface coil consists of multiple identical resonators that are electromagnetically coupled to form a multimodal resonator. The field distribution of its lowest frequency mode is suitable for MR imaging applications. The prototype multimodal surface coils are built, and the performance is investigated and validated through numerical simulation, standard RF measurements and tests, and comparison with the conventional surface coil at low fields. Our results show that the B efficiency of the multimodal surface coil outperforms that of the conventional surface coil which is known to offer the highest B efficiency among all coil categories, i.e., volume coil, half-volume coil and surface coil. In addition, in low-field MRI, the required low-frequency coils often use large value capacitance to achieve the low resonant frequency which makes frequency tuning difficult. The proposed multimodal surface coil can be conveniently tuned to the required low frequency for low-field MRI with significantly reduced capacitance value, demonstrating excellent low-frequency operation capability over the conventional surface coil.

摘要

低场 MRI 比高场 MRI 更安全、更具成本效益。低场 MRI 的固有问题之一是其信噪比或灵敏度低。在这项工作中,我们引入了一种多模态表面线圈技术,用于信号激发和接收,以提高射频磁场 (B) 效率,并有可能提高磁共振灵敏度。所提出的多模态表面线圈由多个相同的谐振器组成,这些谐振器通过电磁耦合形成多模态谐振器。其最低频率模式的场分布适用于磁共振成像应用。构建了原型多模态表面线圈,并通过数值模拟、标准 RF 测量和测试以及与低场常规表面线圈的比较对其性能进行了研究和验证。我们的结果表明,多模态表面线圈的 B 效率优于常规表面线圈,常规表面线圈是所有线圈类型(即体积线圈、半体积线圈和表面线圈)中 B 效率最高的。此外,在低场 MRI 中,通常使用大电容值来实现低共振频率的低频线圈,这使得频率调谐变得困难。所提出的多模态表面线圈可以方便地调谐到低场 MRI 所需的低频,电容值显著降低,显示出优于常规表面线圈的出色低频运行能力。

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