Khaneja Navin
Department of Electrical Engineering, IIT Bombay, Powai 400076, India.
J Magn Reson. 2017 Sep;282:32-36. doi: 10.1016/j.jmr.2017.07.003. Epub 2017 Jul 13.
The paper describes the design of broadband chirp excitation pulses. We first develop a three stage model for understanding chirp excitation in NMR. We then show how a chirp π pulse can be used to refocus the phase of the chirp excitation pulse. The resulting magnetization still has some phase dispersion in it. We show how a combination of two chirp π pulses instead of one can be used to eliminate this dispersion, leaving behind a small residual phase dispersion. The excitation pulse sequence presented here allows exciting arbitrary large bandwidths without increasing the peak rf-amplitude. Experimental excitation profiles for the residual HDO signal in a sample of 99.5% DO are displayed as a function of resonance offset. Although methods presented in this paper have appeared elsewhere, we present complete analytical treatment that elucidates the working of these methods.
本文描述了宽带线性调频激励脉冲的设计。我们首先开发了一个三阶段模型来理解核磁共振中的线性调频激励。然后我们展示了如何使用线性调频π脉冲来重新聚焦线性调频激励脉冲的相位。由此产生的磁化强度中仍然存在一些相位色散。我们展示了如何使用两个而不是一个线性调频π脉冲的组合来消除这种色散,只留下一小部分残余相位色散。这里给出的激励脉冲序列允许在不增加射频峰值幅度的情况下激发任意大的带宽。以共振偏移为函数显示了99.5%重水样品中残余HDO信号的实验激励谱。虽然本文提出的方法已在其他地方出现,但我们给出了完整的分析处理,阐明了这些方法的工作原理。