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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Integrated parallel reception, excitation, and shimming (iPRES) with multiple shim loops per radio‐frequency coil element for improved B B 0 0 shimming
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Integrated parallel reception, excitation, and shimming (iPRES) with multiple shim loops per radio‐frequency coil element for improved B B 0 0 shimming

机译:每个射频线圈元件的集成平行接收,励磁和匀场(IPRES),用于改进的B B 0 0 Shimming

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Purpose Integrated parallel reception, excitation, and shimming (iPRES) coil arrays allow radio‐frequency currents and direct currents to flow in the same coils, which enables excitation/reception and localized B 0 shimming with a single coil array. The purpose of this work was to improve their shimming performance by adding the capability to shim higher‐order local B 0 inhomogeneities that are smaller than the radio‐frequency coil elements. Methods A novel design was proposed in which each radio‐frequency/shim coil element is divided into multiple direct current loops, each using an independent direct current current, to increase the number of magnetic fields available for shimming while maintaining the signal‐to‐noise ratio of the coil. This new design is termed iPRES( N ), where N represents the number of direct current loops per radio‐frequency coil element. Proof‐of‐concept phantom and human experiments were performed with an 8‐channel body coil array to demonstrate its advantages over the original iPRES(1) design. Results The average B 0 homogeneity in various organs before shimming and after shimming with the iPRES(1) or iPRES(3) coil arrays was 0.24, 0.11, and 0.05 ppm, respectively. iPRES(3) thus reduced the B 0 inhomogeneity by 53% and further reduced distortions in echo‐planar images of the abdomen when compared with iPRES(1). Conclusion iPRES(N) can correct for localized B 0 inhomogeneities more effectively than iPRES(1) with no signal‐to‐noise ratio loss, resulting in a significant improvement in image quality. Magn Reson Med 77:2077–2086, 2017. ? 2016 International Society for Magnetic Resonance in Medicine
机译:目的是集成平行接收,激励和闪光(IPRES)线圈阵列允许射频电流和直接电流在相同的线圈中流动,这使得具有单个线圈阵列的激励/接收和局部化B 0闪闪发光。这项工作的目的是通过将突出的高阶局部B 0不均匀的能力增加了小于射频线圈元件来改善其涂抹性能。方法提出了一种新颖的设计,其中每个射频/垫片线圈元件被分成多个直流环,每个电流循环,每个使用独立的直流电流,以增加可用于散发的磁场的数量,同时保持信号 - 噪声线圈的比率。这种新设计被称为IPRES(n),其中n表示每个射频线圈元件的直流回路的数量。使用8通道体线圈阵列进行概念验证幻像和人类实验,以证明其优于原始IPRES(1)设计的优点。结果分别与IPRES(1)或IPRES(3)线圈阵列的匀场和匀场后各种器官中的平均B 0均匀性分别为0.24,0.11和0.05ppm。因此,与IPRES(1)相比,IPRES(3)将B 0不均匀地减少53%并进一步降低腹部回声平面图像的扭曲。结论IPRES(n)可以比IPRE(1)更有效地校正局部B 0不均匀性,没有信噪比损失,导致图像质量的显着提高。 MANG REAN MED 77:2077-2086,2017。 2016国际医学磁共振学会

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