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Clinical-Scale Batch-Mode Production of Hyperpolarized Propane Gas for MRI

机译:用于MRI的超极化丙烷气体的临床规模批量生产

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NMR spectroscopy and imaging (MRI) are two of the most important methods to study structure, function, and dynamics from atom to organism scale. NMR approaches often suffer from an insufficient sensitivity, which, however, can be transiently boosted using hyperpolarization techniques. One of these techniques is parahydrogen-induced polarization, which has been used to produce catalyst-free hyperpolarized propane gas with proton polarization that is 3 orders of magnitude greater than equilibrium thermal polarization at a 1.5 T field of a clinical MRI scanner. Here we show that more than 0.3 L of hyperpolarized propane gas can be produced in 2 s. This production rate is more than an order of magnitude greater than that demonstrated previously, and the reported production rate is comparable to that employed for in-human MM using HP noble gas (e.g., Xe-129) produced via a spin exchange optical pumping (SEOP) hyperpolarization technique. We show that high polarization values can be retained despite the significant increase in the production rate of hyperpolarized propane. The enhanced signals of produced hyperpolarized propane gas were revealed by stopped-flow MRI visualization at 4.7 T. Achieving this high production rate enables the future use of this compound (already approved for unlimited use in foods by the corresponding regulating agencies, e.g., FDA in the USA, and more broadly as an E944 food additive) as a new inhalable contrast agent for diagnostic detection via MRI.
机译:NMR光谱和成像(MRI)是研究结构,功能和动态的两个最重要的方法,从原子到生物规模。 NMR方法经常遭受不足的灵敏度,然而,使用超极化技术可以瞬时提升。这些技术之一是戊二糖诱导的极化,其已用于产生具有质子偏振的无催化剂的超极化丙烷气体,其比临床MRI扫描仪的1.5吨领域的平衡热偏振大3大幅度。在这里,我们表明,在2秒内可以生产超过0.3升的超极化丙烷气体。该生产率比先前展示的大小大于大小,并且报告的生产速率与通过旋转交换光学泵浦生产的HP贵瓦(例如XE-129)用于人类MM的生产速率相当( SEOP)超极化技术。我们表明,尽管超极化丙烷的生产率显着增加,但可以保留高偏振值。产生的超极化丙烷气体的增强信号由4.7吨的停止流动的MRI可视化揭示了4.7吨。实现这一高生产率使得未来使用该化合物(已经批准用于通过相应的调节机构在食品中使用,例如FDA美国,更广泛地作为E944食品添加剂)作为通过MRI诊断检测的新可吸入造影剂。

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