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Storage of nuclear magnetization as long-lived singlet order in low magnetic field

机译:在低磁场中以长寿单重态形式存储核磁化强度

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摘要

Hyperpolarized nuclear states provide NMR signals enhanced by many orders of magnitude, with numerous potential applications to analytical NMR, in vivo NMR, and NMR imaging. However, the lifetime of hyperpolarized magnetization is normally limited by the relaxation time constant T1, which lies in the range of milliseconds to minutes, apart from in exceptional cases. In many cases, the lifetime of the hyperpolarized state may be enhanced by converting the magnetization into nuclear singlet order, where it is protected against many common relaxation mechanisms. However, all current methods for converting magnetization into singlet order require the use of a high-field, high-homogeneity NMR magnet, which is incompatible with most hyperpolarization procedures. We demonstrate a new method for converting magnetization into singlet order and back again. The new technique is suitable for magnetically inequivalent spin-pair systems in weak and inhomogeneous magnetic fields, and is compatible with known hyperpolarization technology. The method involves audio-frequency pulsed irradiation at the low-field nuclear Larmor frequency, employing coupling-synchronized trains of 180° pulses to induce singlet–triplet transitions. The echo trains are used as building blocks for a pulse sequence called M2S that transforms longitudinal magnetization into long-lived singlet order. The time-reverse of the pulse sequence, called S2M, converts singlet order back into longitudinal magnetization. The method is demonstrated on a solution of 15N-labeled nitrous oxide. The magnetization is stored in low magnetic field for over 30 min, even though the T1 is less than 3 min under the same conditions.
机译:超极化核态提供的NMR信号增强了多个数量级,在分析NMR,体内NMR和NMR成像中具有众多潜在应用。但是,除特殊情况外,超极化磁化的寿命通常受松弛时间常数T1的限制,松弛时间常数T1在毫秒到分钟的范围内。在许多情况下,可以通过将磁化强度转换为核单重态来延长超极化状态的寿命,在这种情况下,可以防止许多常见的弛豫机制。但是,当前所有将磁化强度转换为单重态的方法都需要使用高磁场,高均匀性的NMR磁体,该磁体与大多数超极化程序都不兼容。我们演示了一种将磁化强度转换为单重态并再次转换的新方法。这项新技术适用于弱磁场和不均匀磁场中的磁性对等自旋对系统,并且与已知的超极化技术兼容。该方法包括以低场核拉莫尔频率进行音频脉冲辐射,采用耦合同步的180°脉冲序列来诱导单重态-三重态跃迁。回波序列被用作称为M2S的脉冲序列的构建块,该脉冲序列将纵向磁化强度转换为长寿命的单重态。脉冲序列的时间反转称为S2M,可将单重态顺序转换回纵向磁化强度。在 15 N标记的一氧化二氮溶液上证明了该方法。即使在相同条件下T1小于3分钟,磁化强度也会在低磁场中存储30分钟以上。

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