长寿命自旋序的相干重排机制。

Q3 Physics and Astronomy
Magnetic resonance (Gottingen, Germany) Pub Date : 2021-10-08 eCollection Date: 2021-01-01 DOI:10.5194/mr-2-741-2021
Florin Teleanu, Paul R Vasos
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引用次数: 1

摘要

长期使用的基于自旋顺序的磁共振方法依赖于两种不同对称性的磁环境之间的转换,一种由光谱仪的磁场控制,另一种由这种强磁场无关紧要。关于核自旋中磁对称跃迁激发的研究是2000年在南安普顿首次出现的一个科学领域。我们在这一领域取得了进展,在核磁共振波谱中背负着预先确定的方向。我们建议在这里揭示一些发现,这些发现可能被我们的选择所掩盖,只通过当时这种预先确定的方向的经验来看待它们。本文强调的方法发展是关于主磁场B0的对称和非对称环境之间的平移机制。更具体地说,我们再次彻底研究了长寿命态布居起始块中的零量子旋转、超极化杂核和质子之间的磁化转移。这些脉冲序列孕育了有助于进一步应用的后续磁机制。例如,我们展示了一些引入的相干旋转如何与经典脉冲块相结合,以获得质子和异核之间的二维相关性。我们希望本文讨论的脉冲序列构建块将为具有长寿命自旋序的磁共振实验开辟进一步的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mechanisms of coherent re-arrangement for long-lived spin order.

Mechanisms of coherent re-arrangement for long-lived spin order.

Mechanisms of coherent re-arrangement for long-lived spin order.

Mechanisms of coherent re-arrangement for long-lived spin order.

Long-lived spin order-based approaches for magnetic resonance rely on the transition between two magnetic environments of different symmetries, one governed by the magnetic field of the spectrometer and the other where this strong magnetic field is inconsequential. Research on the excitation of magnetic-symmetry transitions in nuclear spins is a scientific field that debuted in Southampton in the year 2000. We advanced in this field carrying the baggage of pre-established directions in NMR spectroscopy. We propose to reveal herein the part of discoveries that may have been obscured by our choice to only look at them through the experience of such pre-established directions at the time. The methodological developments that are emphasised herein are the mechanisms of translation between the symmetric and non-symmetric environments with respect to the main magnetic field B0. More specifically, we look again thoroughly at zero-quantum rotations in the starting blocks of long-lived state populations, magnetisation transfers between hyperpolarised heteronuclei, and protons. These pulse sequences seed subsequent magnetic mechanisms that contribute to further applications. For instance, we show how some of the introduced coherence rotations were combined with classical pulse blocks to obtain two-dimensional correlations between protons and heteronuclei. We hope the pulse sequence building blocks discussed herein will open further perspectives for magnetic resonance experiments with long-lived spin order.

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来源期刊
CiteScore
4.50
自引率
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