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A Hyperpolarizable 1H Magnetic Resonance Probe for Signal Detection 15 Minutes after Spin Polarization Storage

机译:自旋极化存储后15分钟的超极化1H磁共振探头用于信号检测

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摘要

Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) are two extremely important techniques with applications ranging from molecular structure determination to human imaging. However, in many cases the applicability of NMR and MRI are limited by inherently poor sensitivity and insufficient nuclear spin lifetime. Here we demonstrate a cost‐efficient and fast technique that tackles both issues simultaneously. We use the signal amplification by reversible exchange (SABRE) technique to hyperpolarize the target 1H nuclei and store this polarization in long‐lived singlet (LLS) form after suitable radiofrequency (rf) pulses. Compared to the normal scenario, we achieve three orders of signal enhancement and one order of lifetime extension, leading to 1H NMR signal detection 15 minutes after the creation of the detected states. The creation of such hyperpolarized long‐lived polarization reflects an important step forward in the pipeline to see such agents used as clinical probes of disease.
机译:核磁共振(NMR)和磁共振成像(MRI)是两种极为重要的技术,其应用范围从分子结构确定到人体成像。但是,在许多情况下,NMR和MRI的适用性受到固有的敏感性差和核自旋寿命不足的限制。在这里,我们演示了一种经济高效的技术,可以同时解决这两个问题。我们使用可逆交换信号放大(SABRE)技术对目标 1 H核进行超极化,并在适当的射频(rf)脉冲后以长寿单重态(LLS)形式存储此极化。与正常情况相比,我们获得了三个阶的信号增强和一个阶的寿命扩展,从而导致在创建检测状态后15分钟内检测 1 H NMR信号。这种超极化的长寿命极化的产生反映了将这类药物用作疾病临床探针的重要一步。

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