论文标题

阵营的恒定可绝化超级磁场操纵偏极化:应用于AA'X自旋系统

Constant-adiabaticity ultralow magnetic field manipulations of parahydrogen-induced polarization: application to an AA'X spin system

论文作者

Rodin, Bogdan A., Eills, James, Picazo-Frutos, Román, Sheberstov, Kirill F., Budker, Dmitry, Ivanov, Konstantin L.

论文摘要

具有超极化对比剂的磁共振成像的场正在迅速扩展,偏高的造成极化(PHIP)正在成为一种廉价且易于实现的方法,用于产生所需的超极化生物分子。氢化PHIP通过在旋转单个状态下的H2化学添加H2将超极化的质子自旋顺序传递到底物,但是在成像之前,通常有必要将质子极化转移到分子中的异核核(通常为13C)。绝热的超低磁场操作可用于诱导极化转移,但这必然是一个缓慢的过程,这是不希望的,因为旋转不断放松回到热平衡。在这里,我们演示了恒定的可绝化场循环和扫描场,以在AA $'$'$ x旋转系统(1-13c]富马酸盐)上进行最佳极化转移。我们介绍了一种计算恒定结核病磁场坡道的方法,并证明它们可以与以前使用的线性坡道相比,可以更快地旋转转换率。因此,目前的方法可用于操纵异核自旋系统中的非热阶。

The field of magnetic resonance imaging with hyperpolarized contrast agents is rapidly expanding, and parahydrogen-induced polarization (PHIP) is emerging as an inexpensive and easy-to-implement method for generating the required hyperpolarized biomolecules. Hydrogenative PHIP delivers hyperpolarized proton spin order to a substrate via chemical addition of H2 in the spin-singlet state, but prior to imaging it is typically necessary to transfer the proton polarization to a heteronucleus (usually 13C) in the molecule. Adiabatic ultralow magnetic field manipulations can be used to induce the polarization transfer, but this is necessarily a slow process, which is undesirable since the spins continually relax back to thermal equilibrium. Here we demonstrate constant-adiabaticity field cycling and field sweeping for optimal polarization transfer on a model AA$'$X spin system, [1-13C]fumarate. We introduce a method for calculating constant-adiabaticity magnetic field ramps and demonstrate that they enable much faster spin-order conversion as compared to linear ramps used before. The present method can thus be utilized to manipulate nonthermal order in heteronuclear spin systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源