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首页> 外文期刊>Applied Magnetic Resonance >Simulation Verification of SNR and Parallel Imaging Improvements by ICE-Decoupled Loop Array in MRI
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Simulation Verification of SNR and Parallel Imaging Improvements by ICE-Decoupled Loop Array in MRI

机译:ICE分离回路阵列在MRI中的SNR仿真验证和并行成像改进

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Transmit/receive L/C loop arrays with the induced current elimination (ICE) or magnetic wall decoupling method have shown high signal-to-noise ratio (SNR) and excellent parallel imaging ability for magnetic resonance imaging at ultrahigh fields, e.g., 7 T. In this study, we aim to numerically analyze the performance of an eight-channel ICE-decoupled loop array at 7 T. Three-dimensional electromagnetic (EM) and radiofrequency circuit co-simulation approach was employed. The values of all capacitors were obtained by optimizing the S-parameters of all coil elements. The EM simulation was used to accurately model the coil structure, the phantom and the excitation fields. All coil elements were well matched to 50 a"broken vertical bar and the isolation between any two coil elements was better -15 dB. The simulated S-parameters were consistent with the experimental results, indicating the simulation results were reliable. Compared with the conventional capacitively decoupled array, the ICE-decoupled array had higher sensitivity at the peripheral areas of the imaging subjects due to the shielding effect of the decoupling loops. The increased receive sensitivity resulted in an improvement of signal intensity and SNR for the ICE-decoupled array.
机译:具有感应电流消除(ICE)或磁壁去耦方法的发送/接收L / C环路阵列显示出高信噪比(SNR)和出色的并行成像能力,可在超高磁场(例如7 T)下进行磁共振成像在这项研究中,我们旨在对8通道ICE解耦环路阵列在7 T时的性能进行数值分析,并采用了三维电磁(EM)和射频电路的联合仿真方法。通过优化所有线圈元件的S参数来获得所有电容器的值。 EM仿真用于精确建模线圈结构,体模和励磁场。所有线圈元件都很好地匹配了50 a“垂直折线,任何两个线圈元件之间的隔离度都更好-15 dB。模拟的S参数与实验结果一致,表明模拟结果是可靠的。在电容解耦阵列中,由于去耦环路的屏蔽作用,ICE解耦阵列在成像对象的外围区域具有更高的灵敏度;增加的接收灵敏度导致ICE解耦阵列的信号强度和SNR有所提高。

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