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Conventions and Nomenclature for Double Diffusion Encoding NMR and MRI

机译:双重扩散编码NMR和MRI的约定和术语

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Stejskal and Tanner's ingenious pulsed field gradient design from 1965 has made diffusion NMR and MRI the mainstay of most studies seeking to resolve microstructural information in porous systems in general and biological systems in particular. Methods extending beyond Stejskal and Tanner's design, such as double diffusion encoding (DDE) NMR and MRI, may provide novel quantifiable metrics that are less easily inferred from conventional diffusion acquisitions. Despite the growing interest on the topic, the terminology for the pulse sequences, their parameters, and the metrics that can be derived from them remains inconsistent and disparate among groups active in DDE. Here, we present a consensus of those groups on terminology for DDE sequences and associated concepts. Furthermore, the regimes in which DDE metrics appear to provide microstructural information that cannot be achieved using more conventional counterparts (in a model-free fashion) are elucidated. We highlight in particular DDE's potential for determining microscopic diffusion anisotropy and microscopic fractional anisot-ropy, which offer metrics of microscopic features independent of orientation dispersion and thus provide information complementary to the standard, macroscopic, fractional anisotropy conventionally obtained by diffusion MR. Finally, we discuss future vistas and perspectives for DDE. (C) 2015 Wiley Periodicals, Inc.
机译:Stejskal和Tanner从1965年开始就巧妙地设计了脉冲场梯度设计,使得扩散NMR和MRI成为大多数研究的基础,这些研究旨在解析一般的多孔系统,尤其是生物系统中的微结构信息。超越Stejskal和Tanner设计的方法,例如双扩散编码(DDE)NMR和MRI,可能会提供新颖的可量化指标,而这些指标很难从常规扩散采集中推断出来。尽管对该主题的兴趣日益浓厚,但脉冲序列,其参数以及可以从其得出的度量标准的术语在DDE中活跃的组之间仍然不一致且完全不同。在这里,我们对DDE序列和相关概念的术语提出了共识。此外,阐明了DDE度量似乎提供微观结构信息的机制,而使用更常规的对应物(以无模型的方式)则无法实现这些信息。我们特别强调了DDE在确定微观扩散各向异性和微观分数各向异性方面的潜力,它们提供了与取向扩散无关的微观特征指标,因此可提供与常规由扩散MR获得的标准,宏观,分数各向异性相辅相成的信息。最后,我们讨论DDE的未来远景和前景。 (C)2015威利期刊公司

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