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首页> 外文期刊>Journal of magnetic resonance >Diffraction-like phenomena in a periodic magnetization distribution at 1.5 T using the distant dipolar field (DDF)
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Diffraction-like phenomena in a periodic magnetization distribution at 1.5 T using the distant dipolar field (DDF)

机译:使用远距离偶极场(DDF)在1.5 T的周期性磁化分布中发生类似衍射的现象

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摘要

In the CRAZED experiment (COSY revamped by asymmetric Z-gradient echo detection, Warren et al.), a spatially anisotropic magnetization distribution is created by application of a magnetic field gradient (strength G, duration 2) which in turn generates a response called the distant dipolar field (DDF). The DDF is a source of intermolecular multiple-quantum coherences (iMQC) which contain information on the distanced = pi/(gamma G tau) between pairs of dipolar-coupled spins. Diffraction-like phenomena may result for periodically structured samples. In this study, we report the observation of diffraction owing to the DDF at 1.5 T using a clinical whole-body tomograph. Based on the semi-classical treatment of the problem by Robyr and Bowtell, diffraction conditions were obtained for a CRAZED-type pulse sequence that selects iMQC of order N. The predicted distinct difference in N = 2 and N not equal 2 coherences, i.e., a dominant continuous course as a function of a (N = 2) and prominent diffraction peaks otherwise, could be verified in CRAZED experiments in a periodically structured sample selecting coherence orders N = 2 and N = 3. The diffractive signal component contains information on the geometric structure of the sample. Applications of this technique may permit the detection of changes in composition and geometry of periodic structures. (C) 2006 Elsevier Inc. All rights reserved.
机译:在CRAZED实验中(通过不对称Z梯度回波检测对COSY进行了修正,Warren等人),通过施加磁场梯度(强度G,持续时间2)创建了空间各向异性的磁化分布,该磁场梯度又产生了一个响应,称为远距离偶极场(DDF)。 DDF是分子间多量子相干(iMQC)的来源,其中包含有关双极耦合自旋对之间的距离pi /(γG tau)的信息。周期性结构化的样本可能会导致类似衍射的现象。在这项研究中,我们报告使用临床全身断层扫描仪观察到在1.5 T时DDF引起的衍射。基于Robyr和Bowtell对问题进行的半经典处理,获得了选择N阶iMQC的CRAZED型脉冲序列的衍射条件。N= 2和N不等于2相干的预测差异(即,主导连续过程是(N = 2)和显着衍射峰的函数,否则可以在选择相干阶N = 2和N = 3的周期性结构化样品的CRAZED实验中进行验证。衍射信号分量包含有关样品的几何结构。该技术的应用可以允许检测周期性结构的组成和几何形状的变化。 (C)2006 Elsevier Inc.保留所有权利。

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