Multidimensional encoding of restricted and anisotropic diffusion by double rotation of the q vector

Q3 Physics and Astronomy
Hong Jiang, Leo Svenningsson, D. Topgaard
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引用次数: 0

Abstract

Abstract. Diffusion NMR and MRI methods building on the classic pulsed gradient spin-echo sequence are sensitive to many aspects of translational motion, including time and frequency dependence (“restriction”), anisotropy, and flow, leading to ambiguities when interpreting experimental data from complex heterogeneous materials such as living biological tissues. While the oscillating gradient technique specifically targets frequency dependence and permits control of the sensitivity to flow, tensor-valued encoding enables investigations of anisotropy in orientationally disordered materials. Here, we propose a simple scheme derived from the “double-rotation” technique in solid-state NMR to generate a family of modulated gradient waveforms allowing for comprehensive exploration of the 2D frequency–anisotropy space and convenient investigation of both restricted and anisotropic diffusion with a single multidimensional acquisition protocol, thereby combining the desirable characteristics of the oscillating gradient and tensor-valued encoding techniques. The method is demonstrated by measuring multicomponent isotropic Gaussian diffusion in simple liquids, anisotropic Gaussian diffusion in a polydomain lyotropic liquid crystal, and restricted diffusion in a yeast cell sediment.
通过q矢量的双旋转对受限各向异性扩散的多维编码
摘要基于经典脉冲梯度自旋回波序列的扩散NMR和MRI方法对平移运动的许多方面都很敏感,包括时间和频率依赖性(“限制”)、各向异性和流动,这导致在解释复杂异质材料(如活体生物组织)的实验数据时存在歧义。虽然振荡梯度技术专门针对频率依赖性,并允许控制对流动的灵敏度,但张量值编码能够研究定向无序材料中的各向异性。在这里,我们提出了一种源自固态NMR中“双旋转”技术的简单方案,以生成一系列调制梯度波形,从而可以全面探索2D频率-各向异性空间,并使用单个多维采集协议方便地研究受限和各向异性扩散,从而组合振荡梯度的期望特性和张量值编码技术。通过测量简单液体中的多组分各向同性高斯扩散、多畴溶致液晶中的各向异性高斯扩散和酵母细胞沉积物中的限制扩散,证明了该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.50
自引率
0.00%
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审稿时长
14 weeks
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