Adiabatic radiofrequency pulse forms in biomedical nuclear magnetic resonance

D. Norris
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引用次数: 60

Abstract

Adiabatic radio frequency (RF) pulses are in widespread use in biomedical magnetic resonance imaging and spectroscopy. The primary advantage of adiabatic pulses is that provided the condition for adiabatcity is satisfied they can be made insensitive to inhomogeneities in the RF field. In this pedagogical article the principles of adiabatic fast passage (AFP) are explained, and the use of AFP to invert both stationary and flowing spin systems is examined. The hyperbolic secant pulse is presented as a pulse capable of performing slice selective adiabatic inversion. Lower power alternatives to this pulse are described, and the principle of offset independent constant adiabaticity is elucidated. Instantaneous reversal of the orientation of the effective RF field as a means of producing excitation and refocusing pulses is presented, as are methods of obtaining slice selective excitation with these pulses.
绝热射频脉冲形式在生物医学核磁共振
绝热射频脉冲在生物医学磁共振成像和光谱学中有着广泛的应用。绝热脉冲的主要优点是,只要满足绝热条件,就可以使其对射频场中的非均匀性不敏感。在这篇教学文章中,解释了绝热快速通道(AFP)的原理,并研究了使用绝热快速通道来反转静止和流动的自旋系统。双曲正割脉冲是一种能够进行切片选择性绝热反演的脉冲。描述了该脉冲的低功率替代方案,并阐明了与偏置无关的恒定绝热原理。提出了有效射频场方向的瞬时反转作为产生激励和再聚焦脉冲的手段,以及用这些脉冲获得切片选择性激励的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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