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首页> 外文期刊>Journal of magnetic resonance >Dynamics of paramagnetic agents by off-resonance rotating frame technique
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Dynamics of paramagnetic agents by off-resonance rotating frame technique

机译:利用离共振旋转框架技术研究顺磁性物质的动力学

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摘要

Off-resonance rotating frame technique offers a novel tool to explore the dynamics of paramagnetic agents at high magnetic fields (B-o > 3 T). Based on the effect of paramagnetic relaxation enhancement in the off-resonance rotating frame, a new method is described here for determining the dynamics of paramagnetic ion chelates from the residual z-magnetizations of water protons. In this method, the dynamics of the chelates are identified by the difference magnetization profiles, which are the subtraction of the residual z-magnetization as a function of frequency offset obtained at two sets of RF amplitude omega(1) and pulse duration tau. The choices of W, and tau are guided by a 2-D magnetization map that is created numerically by plotting the residual z-magnetization as a function of effective field angle 0 and off-resonance pulse duration tau. From the region of magnetization map that is the most sensitive to the alteration of the paramagnetic relaxation enhancement efficiency R-1 rho/R-1, the ratio of the off-resonance rotating frame relaxation rate constant R-1 rho verse the laboratory frame relaxation rate constant R-1, three types of difference magnetization profiles can be generated. The magnetization map and the difference magnetization profiles are correlated with the rotational correlation time tau(R) of Gd-DTPA through numerical simulations, and further validated by the experimental data for a series of macromolecule conjugated Gd-DTPA in aqueous solutions. Effects of hydration water number q, diffusion coefficient D, magnetic field strength Bo and multiple rotational correlation times are explored with the simulations of the magnetization map. This method not only provides a simple and reliable approach to determine the dynamics of paramagnetic labeling of molecular/cellular events at high magnetic fields, but also a new strategy for spectral editing in NMR/MRI based on the dynamics of paramagnetic labeling in vivo. (c) 2006 Elsevier Inc. All rights reserved.
机译:失谐旋转框架技术提供了一种新颖的工具,可以探索在高磁场(B-o> 3 T)下顺磁性物质的动力学。基于非共振旋转框架中顺磁弛豫增强的影响,在此介绍一种从水质子的剩余z磁化强度确定顺磁离子螯合物动力学的新方法。在这种方法中,通过差异磁化曲线来识别螯合物的动力学,该差异磁化曲线是减去残余z磁化强度作为在两组RF振幅omega(1)和脉冲持续时间tau处获得的频率偏移的函数。 W和tau的选择受二维磁化图的引导,该图通过将残余z磁化强度绘制为有效磁场角0和失谐脉冲持续时间tau的函数来数字化创建。从对顺磁弛豫增强效率R-1 rho / R-1的变化最敏感的磁化图区域中,失谐旋转框架弛豫速率常数R-1 rho与实验室框架弛豫之比比率常数R-1可以产生三种类型的差异磁化曲线。通过数值模拟将磁化图和差磁化曲线与Gd-DTPA的旋转相关时间tau(R)相关联,并通过一系列大分子共轭Gd-DTPA在水溶液中的实验数据进行验证。通过磁化图的模拟研究了水化水数量q,扩散系数D,磁场强度Bo和多个旋转相关​​时间的影响。该方法不仅为确定强磁场下分子/细胞事件的顺磁性标记的动力学提供了一种简单可靠的方法,而且还为基于体内顺磁性标记的动力学在NMR / MRI中进行光谱编辑提供了新的策略。 (c)2006 Elsevier Inc.保留所有权利。

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