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绝热频率扫描过程中的非绝热交换动力学

Nonadiabatic exchange dynamics during adiabatic frequency sweeps.

作者信息

Barbara Thomas M

机构信息

Advanced Imaging Research Center, Oregon Health and Sciences University, Portland, OR 97239, United States.

出版信息

J Magn Reson. 2016 Apr;265:45-51. doi: 10.1016/j.jmr.2016.01.017. Epub 2016 Jan 28.

Abstract

A Bloch equation analysis that includes relaxation and exchange effects during an adiabatic frequency swept pulse is presented. For a large class of sweeps, relaxation can be incorporated using simple first order perturbation theory. For anisochronous exchange, new expressions are derived for exchange augmented rotating frame relaxation. For isochronous exchange between sites with distinct relaxation rate constants outside the extreme narrowing limit, simple criteria for adiabatic exchange are derived and demonstrate that frequency sweeps commonly in use may not be adiabatic with regard to exchange unless the exchange rates are much larger than the relaxation rates. Otherwise, accurate assessment of the sensitivity to exchange dynamics will require numerical integration of the rate equations. Examples of this situation are given for experimentally relevant parameters believed to hold for in-vivo tissue. These results are of significance in the study of exchange induced contrast in magnetic resonance imaging.

摘要

本文提出了一种布洛赫方程分析方法,该方法涵盖了绝热频率扫描脉冲期间的弛豫和交换效应。对于一大类扫描情况,可以使用简单的一阶微扰理论纳入弛豫。对于非等时交换,推导了用于交换增强旋转框架弛豫的新表达式。对于极端窄化极限之外具有不同弛豫速率常数的位点之间的等时交换,推导了绝热交换的简单标准,并证明除非交换速率远大于弛豫速率,否则常用的频率扫描在交换方面可能不是绝热的。否则,要准确评估对交换动力学的敏感性将需要对速率方程进行数值积分。针对被认为适用于体内组织的实验相关参数给出了这种情况的示例。这些结果在磁共振成像中交换诱导对比度的研究中具有重要意义。

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