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Attenutation of homo-and heteronuclear multiple spin echoes by diffusion

机译:同质和异核多重自旋回波通过扩散的衰减

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摘要

Multiple spin echoes arise after' 'nonlinear' , evolution of coherences in the presence of modulated demagnetizing fields. Such modulations can be prepared, for example, with the ald of a sequence of two 90° radio.frequency pulses in the presence of pulsed or steady field gradients. The echo amplitudes are sensitively attenuated by translational diffusion so that diffusivities can be determined on this basis: Homo- and heteronuclear variants of Iriultiple-echo pulse sequences are considered here. A !ormalism based on the Blochtrorrey ~uations is presented that describes the features disp)ayed by the experimental data. The Tesulting attenuation formula for the homonuclear case generally accounts for all radio-frequency and field gradient pulse intervals occurring in the frame o,f this "pulsed gradient nonlinear spin echo" technique. Furthermore, an analogous formalism is reported for the heteronuclear case where the two nuclear species may populate different molecules with different diffusivities. It is shown that, apart from the conventional attenuation mechanism due to incomplete refocusing of the coherences, there are three additional processes contributing to homo- and heteronuclear multiple-echo attenuation by diffusion: Leveling of the magnetization helix and hence of the Z magnetization grid formed by the second radiofrequency pulse, further leveling of that z magnetization grid by displacements of the dipoles producing the grid, and molecular displacements relative to the spatially modulated demagnetizing field.
机译:在存在调制退磁磁场的情况下,“自旋”相干演变之后会产生多重自旋回波。这样的调制可以例如在存在脉冲或稳定场梯度的情况下利用两个90°射频脉冲序列的序列来准备。回声幅度通过平移扩散敏感地衰减,因此可以在此基础上确定扩散性:这里考虑了无回波脉冲序列的同核和异核变体。提出了一种基于Blochtrorrey原理的规范主义,描述了实验数据显示的特征。同核情况下的Tesulting衰减公式通常考虑了这种“脉冲梯度非线性自旋回波”技术在帧中出现的所有射频和场梯度脉冲间隔。此外,据报道,对于异核情况,两个核种可能会以不同的扩散率分布在不同的分子中,存在类似的形式主义。结果表明,除了由于相干不完全聚焦而导致的常规衰减机制外,还有三个其他过程通过扩散而导致同核和异核多回波衰减:磁化螺旋的平整,从而形成了Z磁化网格通过第二射频脉冲,通过产生栅极的偶极子的位移以及相对于空间调制消磁场的分子位移,进一步使z磁化网格变平。

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