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射频线圈在 3T 以下磁共振中的导体损耗:估计方法和最小化策略。

Conductor Losses in Radiofrequency Coils for Magnetic Resonance below 3T: Estimation Methods and Minimization Strategies.

机构信息

Institute of Clinical Physiology, National Research Council (CNR), Via G. Moruzzi 1, 56124 Pisa, Italy.

U.O.C. Bioingegneria e Ingegneria Clinica, Fondazione Toscana Gabriele Monasterio, Via G. Moruzzi 1, 56124 Pisa, Italy.

出版信息

Sensors (Basel). 2023 Jun 14;23(12):5586. doi: 10.3390/s23125586.

Abstract

The design of optimized radiofrequency (RF) coils is a fundamental task for maximizing the signal-to-noise ratio (SNR) in Magnetic Resonance Imaging (MRI) and Magnetic Resonance Spectroscopy (MRS) applications. An efficient coil should be designed by minimizing the coil noise with respect to the sample noise, since coil conductor resistance affects data quality by reducing the SNR, especially for coils tuned to a low frequency. Such conductor losses strongly depend on the frequency (due to the skin effect) and on the conductor cross-sectional shape (strip or wire). This paper reviews the different methods for estimating conductor losses in RF coils for MRI/MRS applications, comprising analytical formulations, theoretical/experimental hybrid approaches and full-wave simulations. Moreover, the different strategies for minimizing such losses, including the use of Litz wire, cooled and superconducting coils, are described. Finally, recent emerging technologies in RF coil design are briefly reviewed.

摘要

优化射频(RF)线圈的设计是磁共振成像(MRI)和磁共振波谱(MRS)应用中最大化信噪比(SNR)的基本任务。通过最小化线圈噪声与样品噪声之比,可以设计出高效的线圈,因为线圈导体电阻会降低 SNR,从而降低数据质量,特别是对于调谐到低频的线圈。这种导体损耗强烈依赖于频率(由于趋肤效应)和导体横截面形状(带或线)。本文综述了用于 MRI/MRS 应用的 RF 线圈中导体损耗的不同估算方法,包括解析公式、理论/实验混合方法和全波仿真。此外,还描述了最小化这些损耗的不同策略,包括使用多股线、冷却和超导线圈。最后,简要回顾了 RF 线圈设计的最新新兴技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d61d/10301304/28e62988315a/sensors-23-05586-g001.jpg

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