首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Fast, accurate, and precise mapping of the RF field in vivo using the 180 degrees signal null.
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Fast, accurate, and precise mapping of the RF field in vivo using the 180 degrees signal null.

机译:使用180度零信号可对体内的RF场进行快速,准确和精确的映射。

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摘要

RF field B1 nonuniformity is the largest cause of error in the quantitative measurement of many clinically relevant parameters in MR images and spectra. Knowledge of the absolute flip angles at every region will improve the accuracy and precision of such parameters. This method uses the 180 degrees signal null to construct a flip angle map of the entire brain in less than 4 min, independent of T1, T2, and proton density. Three spoiled gradient echo volume acquisitions of the whole brain were made with three different flip angles. The optimum choice of flip angles was determined to be 145 degrees, 180 degrees, and 215 degrees. Linear regression analysis was used to determine the nominal (system calibrated) flip angle required for a signal null at every pixel and thence determine the absolute flip angle at that location. The experiment utilizes an existing MR sequence supplied by the scanner manufacturer. The technique is validated experimentally and a theoretical investigation into the optimum experimental parameters is presented.
机译:在对MR图像和频谱中许多临床相关参数进行定量测量时,RF场B1不均匀是造成错误的最大原因。了解每个区域的绝对翻转角将提高此类参数的准确性和精确度。此方法使用180度零信号在不到4分钟的时间内构造整个大脑的翻转角图,而与T1,T2和质子密度无关。用三个不同的翻转角对整个大脑进行了三个变差的梯​​度回波体积采集。确定翻转角的最佳选择为145度,180度和215度。线性回归分析用于确定信号在每个像素处为零所需的名义(系统校准)翻转角,然后确定该位置的绝对翻转角。该实验利用了扫描仪制造商提供的现有MR序列。实验验证了该技术,并对最佳实验参数进行了理论研究。

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