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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Designing adiabatic radio frequency pulses using the Shinnar-Le Roux algorithm.
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Designing adiabatic radio frequency pulses using the Shinnar-Le Roux algorithm.

机译:使用Shinnar-Le Roux算法设计绝热射频脉冲。

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Adiabatic pulses are a special class of radio frequency (RF) pulses that may be used to achieve uniform flip angles in the presence of a nonuniform B(1) field. In this work, we present a new, systematic method for designing high-bandwidth (BW), low-peak-amplitude adiabatic RF pulses that utilizes the Shinnar-Le Roux (SLR) algorithm for pulse design. Currently, the SLR algorithm is extensively employed to design nonadiabatic pulses for use in magnetic resonance imaging and spectroscopy. We have adapted the SLR algorithm to create RF pulses that also satisfy the adiabatic condition. By overlaying sufficient quadratic phase across the spectral profile before the inverse SLR transform, we generate RF pulses that exhibit the required spectral characteristics and adiabatic behavior. Application of quadratic phase also distributes the RF energy more uniformly, making it possible to obtain the same spectral BW with lower RF peak amplitude. The method enables the pulse designer to specify spectral profile parameters and the degree of quadratic phase before pulse generation. Simulations and phantom experiments demonstrate that RF pulses designed using this new method behave adiabatically.
机译:绝热脉冲是一类特殊的射频(RF)脉冲,可用于在存在非均匀B(1)场的情况下实现均匀的翻转角。在这项工作中,我们提出了一种新的系统化方法,用于设计高带宽(BW),低峰幅绝热RF脉冲,该方法利用Shinnar-Le Roux(SLR)算法进行脉冲设计。目前,SLR算法被广泛用于设计非绝热脉冲,以用于磁共振成像和光谱学。我们已经调整了SLR算法,以创建满足绝热条件的RF脉冲。通过在逆SLR变换之前在频谱轮廓上覆盖足够的二次相位,我们生成显示所需频谱特性和绝热行为的RF脉冲。二次相位的应用还可以更均匀地分配RF能量,从而有可能获得具有较低RF峰值幅度的相同频谱BW。该方法使脉冲设计者可以在脉冲产生之前指定频谱轮廓参数和二次相位的程度。仿真和幻像实验表明,使用这种新方法设计的RF脉冲具有绝热性能。

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