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首页> 外文期刊>Critical Reviews in Biomedical Engineering >Radiofrequency Coils for Magnetic Resonance Applications: Theory, Design, and Evaluation
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Radiofrequency Coils for Magnetic Resonance Applications: Theory, Design, and Evaluation

机译:磁共振应用的射频线圈:理论,设计和评估

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摘要

Magnetic resonance imaging and magnetic resonance spectroscopy are noninvasive diagnostic techniques based on the phenomenon of nuclear magnetic resonance. Radiofrequency coils are key components in both the transmission and receiving phases of magnetic resonance systems. Transmitter coils have to produce a highly homogeneous alternating field in a wide field of view, whereas receiver coils have to maximize signal detection while minimizing noise. Development of modern magnetic resonance coils often is based on numerical methods for simulating and predicting coil performance. Numerical methods allows the behavior of the coil in the presence of realistic loads to be simulated and the coil's efficiency at high magnetic fields to be investigated. After being built, coils have to be characterized in the laboratory to optimize their setting and performance by extracting several quality indices. Successively, coils performance has to be evaluated in a scanner using standardized image quality parameters with phantom and human experiments. This article reviews the principles of radiofrequency coils, coil performance parameters, and their estimation methods using simulations, workbench, and magnetic resonance experiments. Finally, an overview of future developments in radiofrequency coils technology is included.
机译:磁共振成像和磁共振波谱学是基于核磁共振现象的非侵入性诊断技术。射频线圈是磁共振系统发送和接收阶段的关键组件。发射器线圈必须在宽视场中产生高度均匀的交变场,而接收器线圈必须在最大程度地减少噪声的同时最大程度地检测信号。现代磁共振线圈的开发通常基于用于模拟和预测线圈性能的数值方法。数值方法可以模拟在存在实际载荷的情况下线圈的行为,并可以研究在高磁场下的线圈效率。线圈建成后,必须在实验室中进行表征,以通过提取多个质量指标来优化线圈的设置和性能。连续地,必须使用带有幻像和人体实验的标准化图像质量参数在扫描仪中评估线圈性能。本文回顾了射频线圈的原理,线圈性能参数及其使用仿真,工作台和磁共振实验的估算方法。最后,概述了射频线圈技术的未来发展。

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