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Fourier decompositions and pulse sequence design algorithms for nuclear magnetic resonance in inhomogeneous fields

机译:非均匀场中核磁共振的傅里叶分解和脉冲序列设计算法

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In this paper, we introduce algorithms based on Fourier synthesis for designing phase compensating rf pulse sequences for high-resolution nuclear magnetic resonance (NMR) spectroscopy in an inhomogeneous B-0 field. We show that using radio frequency pulses and time varying linear gradients in three dimensions, it is possible to impart the transverse magnetization of spins phase, which is a desired function of the spatial (x,y,z) location. Such a sequence can be used to precompensate the phase that will be acquired by spins at different spatial locations due to inhomogeneous magnetic fields. With this precompensation, the chemical shift information of the spins can be reliably extracted and high resolution NMR spectrum can be obtained. (c) 2006 American Institute of Physics.
机译:在本文中,我们介绍了基于傅立叶综合的算法,用于在非均匀B-0场中设计相位补偿射频脉冲序列,用于高分辨率核磁共振(NMR)光谱。我们表明,在三个维度上使用射频脉冲和随时间变化的线性梯度,可以赋予自旋相的横向磁化强度,这是空间(x,y,z)位置的理想功能。这样的序列可用于预补偿由于不均匀磁场而在不同空间位置处通过自旋获得的相位。通过这种预补偿,可以可靠地提取自旋的化学位移信息,并可以获得高分辨率的NMR光谱。 (c)2006年美国物理研究所。

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