首页> 外文期刊>Journal of magnetic resonance >Effects of Off-Resonance Irradiation, Cross-Relaxation, and Chemical Exchange on Steady-State Magnetization and Effective Spin-Lattice Relaxation Times
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Effects of Off-Resonance Irradiation, Cross-Relaxation, and Chemical Exchange on Steady-State Magnetization and Effective Spin-Lattice Relaxation Times

机译:非共振辐射,交叉弛豫和化学交换对稳态磁化和有效自旋晶格弛豫时间的影响

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摘要

In the presence of an off-resonance radiofrequency field, recovery of longitudinal magnetization to a steady state is not purely monoexponential. Under reasonable conditions with zero initial magnetization, recovery is nearly exponential and an effective relaxation rate constant R_(leff) = 1/T_(leff) can be obtained. Exact and approximate formulas for R_(leff) and steady-state magnetization are derived from the Bloch equations for spins undergoing cross-relaxation and chemical exchange between two sites in the presence of an off-resonance radiofrequency field. The relaxation formulas require that the magnetization of one spin is constant, but not necessarily zero, while the other spin relaxes. Extension to three sites with one radiofrequency field is explained. The special cases of off-resonance effects alone and with cross-relaxation or chemical exchange, cross-relaxation alone, and chemical exchange alone are compared. The inaccuracy in saturation transfer measurements of exchange rate constants by published formulas is discussed for the creatine kinase reaction.
机译:在存在非共振射频场的情况下,将纵向磁化强度恢复到稳态并非纯粹是单指数的。在初始磁化强度为零的合理条件下,恢复几乎是指数级的,并且可以获得有效的弛豫速率常数R_(leff)= 1 / T_(leff)。 R_(leff)和稳态磁化的精确公式和近似公式是从Bloch方程导出的,该方程用于自旋在交叉共振的射频场中经历交叉松弛和两个位置之间的化学交换。弛豫公式要求一个自旋的磁化强度是恒定的,但不一定为零,而另一个自旋则磁化。解释了扩展到具有一个射频场的三个站点。比较了单独的非共振效应以及与交叉松弛或化学交换,单独的交叉松弛和单独的化学交换的特殊情况。对于肌酸激酶反应,讨论了已发表的公式对交换速率常数进行饱和转移测量时的不准确性。

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