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The Virtual NMR Spectrometer: A Computer Program for Efficient Simulation of NMR Experiments Involving Pulsed Field Gradients

机译:虚拟NMR光谱仪:用于高效模拟涉及脉冲场梯度的NMR实验的计算机程序

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摘要

This paper presents a software program, the Virtual NMR Spectrometer, for computer simulation of multichannel, multidimensional NMR experiments on user-defined spin systems. The program is capable of reproducing most features of the modern NMR experiment, including homo- and heteronuclear pulse sequences, phase cycling, pulsed field gradients, and shaped pulses. Two different approaches are implemented to simulate the effect of pulsed field gradients on coherence selection, an explicit calculation of all coherence transfer pathways, and an effective approximate method using integration over multiple positions in the sample. The applications of the Virtual NMR Spectrometer are illustrated using homonuclear COSY and DQF COSY experiments with gradient selection, heteronuclear HSQC, and TROSY. The program uses an intuitive graphical user interface, which resembles the appearance and operation of a real spectrometer. A translator is used to allow the user to design pulse sequences with the same programming language used in the actual experiment on a real spectrometer. The Virtual NMR Spectrometer is designed as a useful tool for developing new NMR experiments and for tuning and adjusting the experimental setup for existing ones prior to running costly NMR experiments, in order to reduce the setup time on a real spectrometer. It will also be a useful aid for learning the general principles of magnetic resonance and contemporary innovations in NMR pulse sequence design.
机译:本文介绍了一个软件程序,即虚拟NMR光谱仪,用于在用户定义的自旋系统上对多通道,多维NMR实验进行计算机模拟。该程序能够再现现代NMR实验的大多数功能,包括同核和异核脉冲序列,相位循环,脉冲场梯度和整形脉冲。实现了两种不同的方法来模拟脉冲场梯度对相干选择的影响,所有相干传递路径的显式计算以及使用对样本中多个位置进行积分的有效近似方法。使用具有梯度选择,异核HSQC和TROSY的同核COZY和DQF COZY实验说明了虚拟NMR光谱仪的应用。该程序使用直观的图形用户界面,该界面类似于真实光谱仪的外观和操作。转换器用于允许用户使用实际光谱仪上的实际实验中使用的编程语言设计脉冲序列。虚拟NMR光谱仪被设计为有用的工具,可用于开发新的NMR实验以及在运行昂贵的NMR实验之前调整和调整现有实验的实验设置,从而减少实际光谱仪上的设置时间。这对于学习磁共振的一般原理和NMR脉冲序列设计的当代创新也将是有用的帮助。

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