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Parahydrogen-Based Hyperpolarization for Biomedicine

机译:基于戊二原的生物医学的超极化

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Magnetic resonance (MR) is one of the most versatile and useful physical effects used for human imaging, chemical analysis, and the elucidation of molecular structures. However, its full potential is rarely used, because only a small fraction of the nuclear spin ensemble is polarized, that is, aligned with the applied static magnetic field. Hyperpolarization methods seek other means to increase the polarization and thus the MR signal. A unique source of pure spin order is the entangled singlet spin state of dihydrogen, parahydrogen (pH(2)), which is inherently stable and long-lived. When brought into contact with another molecule, this spin order on demand allows the MR signal to be enhanced by several orders of magnitude. Considerable progress has been made in the past decade in the area of pH(2)-based hyperpolarization techniques for biomedical applications. It is the goal of this Review to provide a selective overview of these developments, covering the areas of spin physics, catalysis, instrumentation, preparation of the contrast agents, and applications.
机译:磁共振(MR)是用于人体成像,化学分析和分子结构阐明的最通用和有用的物理效果之一。然而,它很少使用它的全部潜力,因为只有核自旋合奏的一小部分是偏振的,即​​与施加的静磁场对齐。超极化方法寻求其他方法来增加极化,从而寻找MR信号。独特的纯旋转顺序源是缠结的偏旋旋旋状状态,二氢吡啶(pH(2)),其本质上是稳定和长的。当与另一个分子接触时,这种旋转顺序按需允许MR信号通过几个数量级增强。在PH(2)面积的基于生物医学应用的超极化技术中,过去十年来取得了相当大的进展。本综述的目标是提供有选择性概述这些发展,涵盖旋转物理,催化,仪器,造影剂的制备以及应用的方向。

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