适用于快速场循环磁共振成像(FFC-MRI)的表面和体积射频线圈的研制与优化

U. Abubakar, Lionel Broch, Chukwuka Anthony Ugwu, S. Audu, M. Danfulani, Abacha Mohammed, Nike Mutiat Miftaudeen
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摘要

目的:评价一种用于构建和优化适用于全身快速场循环磁共振成像(FFC-MRI)的射频(RF)线圈的建模和设计方法。本文还比较了在本研究的初始和最后阶段构建的各种类型的表面射频线圈的灵敏度和信噪比(SNR)。方法:在阿伯丁大学生物医学磁共振实验室进行了一项实验研究。在检测磁场为0.2 T(质子拉莫尔频率为8.5 MHz)的条件下,利用网络/信号分析仪对不同设计的射频线圈进行了构建、优化和测试。该线圈由环形线圈(CL)射频接收表面线圈和鸟笼式射频发射体积线圈组成。利用搜索线圈场探针和网络/信号分析仪测量了CL线圈的固有参数。结果:用铜丝构建的CL表面线圈谐振频率为8.46 MHz,质量因子(Q - factor)为47.1;用利兹丝构建的CL表面线圈谐振频率为8.54 MHz, Q -因子为85.4 MHz。鸟笼式卷管的固有参数为8.48 MHz, Q因子为102。结论:该线圈的台架试验表明,该线圈可作为FFC-MRI系统的接收线圈和发射线圈
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Development and Optimization of Surface and Volume Radiofrequency Coils Suitable for Fast-Field-Cycling Magnetic Resonance Imaging (FFC-MRI)
  Objective: To evaluate a modelling and design methodology employed in constructing and optimizing radiofrequency (RF) coils suitable for use with the whole-body fast-field-cycling Magnetic Resonance Imaging (FFC-MRI). It is also aimed at comparing the sensitivity and the signal-to-noise ratio (SNR) of the various types of surface RF coils constructed at the initial and final stages of this research. Methodology: An experimental study carried out at Biomedical MRI Laboratory at University of Aberdeen. Various designs of RF coil were constructed, optimized and tested with network/signal analyser for use with an experimental FFC - MRI scanner, operating at a detection magnetic field of 0.2 T (proton Larmor frequency of 8.5 MHz). The coils comprised circular loop (CL) RF – receive surface coil and a birdcage RF – transmit volume coil.  The intrinsic parameters of the CL coils were measured using a search-coil field probe and a network/signal analyser. Results: The CL surface coil constructed with copper wire had resonant frequency of 8.46 MHz and Quality factor (Q – factor) of 47.1 while the resonant frequency of the one constructed with litz wire was 8.54 MHz and Q - factor of 85.4 MHz. The intrinsic parameter of the birdcage volume coil was 8.48 MHz and Q - factor of 102. Conclusion: Bench testing of the coils showed promise as receiver and transmit coils for the FFC-MRI system  
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