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Stability Enhancement of 129Xe Hyperpolarizing System Using Alkali Metal Vapor in Spin-Exchange Optical Pumping Cell to Achieve High NMR Sensitivity

机译:利用自旋交换光泵浦中的碱金属蒸气增强 129 Xe超极化系统的稳定性,以实现高NMR灵敏度

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Hyperpolarized (HP) ~(129)Xe NMR and MRI have enabled ~(129)Xe studies with extraordinarily enhanced sensitivity, stimulating new developments in magnetic resonance in chemistry, physics, biology and medicine. However, the standard method of HP ~(129)Xe production inevitably demands Rb vapor for the excitation, which has made the method very sensitive to impurities such as water or oxygen. This is the case especially in the recirculating system. In the present study, stability of the hyperpolarizing system is discussed by proposing the “cell decay constant”, which symbolizes the decay rate of the NMR signal obtained from the system. The cell decay constant is effectively decreased to 1/3 by introducing separated chambers and mechanical stirring of the alkali metals used in the system, making it effective for accumulating FIDs over 30 to 100 h. The newly developed hyperpolarizing system has been successfully applied for newly detecting a broad signal at 190 ppm with an industrial material Nanofiber.
机译:超极化(HP)〜(129)Xe NMR和MRI使〜(129)Xe研究具有异常增强的灵敏度,刺激了化学,物理,生物学和医学领域磁共振的新发展。但是,HP〜(129)Xe生产的标准方法不可避免地需要Rb蒸气进行激发,这使得该方法对杂质(例如水或氧气)非常敏感。在再循环系统中尤其如此。在本研究中,通过提出“细胞衰减常数”来讨论超极化系统的稳定性,该常数表示从系统获得的NMR信号的衰减率。通过引入分离的腔室并机械搅拌系统中使用的碱金属,可将细胞衰变常数有效降低至1/3,从而有效累积30至100小时的FID。新开发的超极化系统已成功应用于工业材料Nanofiber来检测190 ppm宽信号。

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