Balibanu F, Hailu K, Eymael R, Demco DE, Blumich B
Institut fur Technische Chemie und Makromolekulare Chemie, Rheinisch-Westfalische Technische Hochschule, Worringerweg 1, Aachen, D-52056, Germany.
J Magn Reson. 2000 Aug;145(2):246-58. doi: 10.1006/jmre.2000.2089.
The response of the spin system has been investigated by numerical simulations in the case of a nuclear magnetic resonance (NMR) experiment performed in inhomogeneous static and radiofrequency fields. The particular case of the NMR-MOUSE was considered. The static field and the component of the radiofrequency field perpendicular to the static field were evaluated as well as the spatial distribution of the maximum NMR signal detected by the surface coil. The NMR response to various pulse sequences was evaluated numerically for the case of an ensemble of isolated spins (1/2). The behavior of the echo train in Carr-Purcell-like pulse sequences used for measurements of transverse relaxation and self-diffusion was simulated and compared with the experiment. The echo train is shown to behave qualitatively differently depending on the particular phase schemes used in these pulse sequences. Different echo trains are obtained, because of the different superposition of Hahn and stimulated echoes forming mixed echoes as a result of the spatial distribution of pulse flip angles. The superposition of Hahn and stimulated echoes originating from different spatial regions leads to distortions of the mixed echoes in intensity, shape, and phase. The volume selection produced by Carr-Purcell-like pulse sequences is also investigated for the NMR-MOUSE. The developed numerical simulation procedure is useful for understanding a variety of experiments performed with the NMR-MOUSE and for improving its performance. Copyright 2000 Academic Press.
在非均匀静磁场和射频场中进行核磁共振(NMR)实验的情况下,通过数值模拟研究了自旋系统的响应。考虑了NMR-MOUSE的特殊情况。评估了静磁场以及垂直于静磁场的射频场分量,以及表面线圈检测到的最大NMR信号的空间分布。针对孤立自旋(1/2)系综的情况,对各种脉冲序列的NMR响应进行了数值评估。模拟了用于横向弛豫和自扩散测量的类似Carr-Purcell脉冲序列中的回波串行为,并与实验进行了比较。结果表明,根据这些脉冲序列中使用的特定相位方案,回波串的行为在定性上有所不同。由于脉冲翻转角的空间分布导致Hahn回波和受激回波形成混合回波的不同叠加,从而获得了不同的回波串。源自不同空间区域的Hahn回波和受激回波的叠加导致混合回波在强度、形状和相位上的失真。还针对NMR-MOUSE研究了类似Carr-Purcell脉冲序列产生的体积选择。所开发的数值模拟程序有助于理解使用NMR-MOUSE进行的各种实验,并有助于提高其性能。版权所有2000年学术出版社。