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Design and Demonstration of Four-Channel Received Coil Arrays for Vertical-Field MRI

机译:用于垂直场MRI的四通道接收线圈阵列的设计与演示

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摘要

The layout of radio-frequency received coils is related to signal-to-noise ratio (SNR) in magnetic resonance imaging (MRI). In this paper, different structures of four-channel received coil arrays for vertical-field MRI are constructed and optimized by establishing the relationship between coil geometry and SNR to achieve a high SNR and a uniform SNR distribution in the region of interest (ROI). Then, the SNR distributions of three optimized configurations, including rectangular loops, non-definite shape surface coils, and solenoid loops as the main unit, are simulated and compared. The four-channel coil of solenoid loops as the main unit has been found to have the best performance with the highest mean SNR in the ROI when imaging without acceleration. In addition, g-factor and 2D SENSE SNR in yoz-plane are simply analyzed, which show a sharp decrease in SNR for all the coils. Finally, all the coils are manufactured and operated at a 0.5 T permanent magnet MRI system with phantom and joint imaging experiments. Using pixel-by-pixel manner to evaluate SNR map, the experimental results are consistent with the simulation results, while parallel imaging experiment results show that the major consideration in low field MRI is the improvement of SNR value and uniformity rather than that of the imaging speed. As different constructions of four-channel received coils are investigated, we have found the most effective configuration with high and uniform SNR for vertical-field MRI.
机译:射频接收线圈的布局与磁共振成像(MRI)中的信噪比(SNR)有关。本文通过建立线圈几何形状与信噪比的关系,构建并优化了垂直场磁共振四通道接收线圈阵列的不同结构,实现了高信噪比和目标区域(ROI)的均匀信噪比分布。然后,仿真并比较了以矩形回路、不定形状面圈和螺线管回路为主体的3种优化配置的SNR分布。已发现,当无加速度成像时,作为主机的四通道螺线管回路具有最佳性能和最高的 ROI 平均 SNR。此外,还简单地分析了yoz平面中的g因子和二维感信噪比,结果显示所有线圈的信噪比都急剧下降。最后,所有线圈均在 0.5 T 永磁 MRI 系统上制造和操作,并进行模型和关节成像实验。采用逐像素方式评估信噪比图,实验结果与仿真结果一致,而平行成像实验结果表明,低视场MRI的主要考虑因素是信噪比值和均匀性的提高,而不是成像速度的提高。随着对四通道接收线圈的不同结构的研究,我们发现了用于垂直场 MRI 的最有效配置,具有高且均匀的 SNR。

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