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使用原子磁力计对超极化碳核自旋进行实时极化测量。

Real-Time Polarimetry of Hyperpolarized C Nuclear Spins Using an Atomic Magnetometer.

作者信息

Mouloudakis Kostas, Bodenstedt Sven, Azagra Marc, Mitchell Morgan W, Marco-Rius Irene, Tayler Michael C D

机构信息

ICFO─Institut de Ciéncies Fotóniques, The Barcelona Institute of Science and Technology, 08860Castelldefels, Barcelona, Spain.

IBEC─Institute for Bioengineering of Catalonia, 08028Barcelona, Spain.

出版信息

J Phys Chem Lett. 2023 Feb 9;14(5):1192-1197. doi: 10.1021/acs.jpclett.2c03864. Epub 2023 Jan 30.

Abstract

We introduce a method for nondestructive quantification of nuclear spin polarization, of relevance to hyperpolarized spin tracers widely used in magnetic resonance from spectroscopy to in vivo imaging. In a bias field of around 30 nT we use a high-sensitivity miniaturized Rb-vapor magnetometer to measure the field generated by the sample, as it is driven by a windowed dynamical decoupling pulse sequence that both maximizes the nuclear spin lifetime and modulates the polarization for easy detection. We demonstrate the procedure applied to a 0.08 M hyperpolarized [1-C]-pyruvate solution produced by dissolution dynamic nuclear polarization, measuring polarization repeatedly during natural decay at Earth's field. Application to real-time and continuous quality monitoring of hyperpolarized substances is discussed.

摘要

我们介绍了一种用于核自旋极化无损定量的方法,该方法与广泛应用于从光谱学到体内成像的磁共振中的超极化自旋示踪剂相关。在约30 nT的偏置场中,我们使用高灵敏度的小型化铷蒸汽磁力计来测量样品产生的场,该样品由加窗动态去耦脉冲序列驱动,该序列既能最大化核自旋寿命,又能调制极化以便于检测。我们展示了该程序应用于通过溶解动态核极化产生的0.08 M超极化[1-C]-丙酮酸溶液,在地磁场自然衰减过程中重复测量极化。还讨论了该方法在超极化物质实时和连续质量监测中的应用。

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