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Hyperpolarized xenon NMR and MRI signal amplification by gas extraction

机译:气体萃取超极化氙核磁共振和核磁共振成像信号

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摘要

A method is reported for enhancing the sensitivity of NMR of dissolved xenon by detecting the signal after extraction to the gas phase. We demonstrate hyperpolarized xenon signal amplification by gas extraction (Hyper-SAGE) in both NMR spectra and magnetic resonance images with time-of-flight information. Hyper-SAGE takes advantage of a change in physical phase to increase the density of polarized gas in the detection coil. At equilibrium, the concentration of gas-phase xenon is ≈10 times higher than that of the dissolved-phase gas. After extraction the xenon density can be further increased by several orders of magnitude by compression and/or liquefaction. Additionally, being a remote detection technique, the Hyper-SAGE effect is further enhanced in situations where the sample of interest would occupy only a small proportion of the traditional NMR receiver. Coupled with targeted xenon biosensors, Hyper-SAGE offers another path to highly sensitive molecular imaging of specific cell markers by detection of exhaled xenon gas.
机译:报道了一种通过检测提取到气相后的信号来增强溶解的氙的NMR灵敏度的方法。我们展示了通过气体萃取(Hyper-SAGE)的超极化氙气信号放大,包括NMR光谱和磁共振图像以及飞行时间信息。 Hyper-SAGE利用物理相变的优势来增加检测线圈中极化气体的密度。在平衡状态下,气相氙的浓度比溶解相气体的浓度高约10倍。提取后,氙气密度可通过压缩和/或液化进一步提高几个数量级。此外,作为一种远程检测技术,在目标样品仅占传统NMR接收器一小部分的情况下,Hyper-SAGE效果会进一步增强。结合有针对性的氙气生物传感器,Hyper-SAGE通过检测呼出的氙气为特定细胞标记物的高灵敏度分子成像提供了另一条途径。

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