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Development of MR active contrast agents via Parahydrogen Induced Polarization

机译:通过对氢诱导极化开发MR活性造影剂

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Parahydrogen Induced Polarization provides dramatic MR signal enhancement that can be exploited for molecular imaging. This method allows amongst others for Magnetic Resonance Imaging of 13C and 15N, which is usually constrained by the low MR sensitivity of these nuclei. By combining hydrogenation of barbiturates with parahydrogen under special experimental conditions (PASADENA under pressure) with a polarization transfer sequence we demonstrate the transfer of the initial 'H polarization to 13C. The polarization transfer yields a signal increase for I3C of more than 1000. Hence, the role of certain target compounds such as anesthetics like the barbituric acid derivatives could be investigated using MRI techniques. Moreover, we present the first MRI experiments on antiphase PHIP polarized protons in the liquid phase using the model system hexyne/hexene. Our results show that it is possible to get images of good quality and high SNR with PHIP polarized protons and that no artifacts are created by the antiphase character of the *H signal.
机译:对氢诱导极化可显着增强MR信号,可用于分子成像。这种方法尤其可以用于13C和15N的磁共振成像,这通常受到这些核的低MR敏感性的限制。通过在特殊实验条件下(压力下的PASADENA)将巴比妥酸酯的氢化与对氢结合,并采用极化转移序列,我们证明了最初的'H极化转移至13C。极化转移使I3C的信号增加超过1000。因此,可以使用MRI技术研究某些目标化合物(例如麻醉药,如巴比妥酸衍生物)的作用。此外,我们提出了使用模型系统己炔/己烯对液相中PHIP极性极化质子进行的首次MRI实验。我们的结果表明,使用PHIP极化质子可以获得高质量和高SNR的图像,并且* H信号的反相特性不会产生伪影。

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