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广义时变梯度廓线的扩散孔隙成像。

Diffusion pore imaging with generalized temporal gradient profiles.

机构信息

Medical Physics in Radiology, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, 69120 Heidelberg, Germany.

出版信息

Magn Reson Imaging. 2013 Sep;31(7):1236-44. doi: 10.1016/j.mri.2013.03.027. Epub 2013 May 18.

Abstract

In porous material research, one main interest of nuclear magnetic resonance diffusion (NMR) experiments is the determination of the shape of pores. While it has been a longstanding question if this is in principle achievable, it has been shown recently that it is indeed possible to perform NMR-based diffusion pore imaging. In this work we present a generalization of these previous results. We show that the specific temporal gradient profiles that were used so far are not unique as more general temporal diffusion gradient profiles may be used. These temporal gradient profiles may consist of any number of "short" gradient pulses, which fulfil the short-gradient approximation. Additionally, "long" gradient pulses of small amplitude may be present, which can be used to fulfil the rephasing condition for the complete profile. Some exceptions exist. For example, classical q-space gradients consisting of two short gradient pulses of opposite sign cannot be used as the phase information is lost due to the temporal antisymmetry of this profile.

摘要

在多孔材料研究中,核磁共振扩散(NMR)实验的一个主要关注点是确定孔的形状。虽然长期以来一直存在一个问题,即从原理上讲是否可以实现这一点,但最近已经表明,确实可以进行基于 NMR 的扩散孔成像。在这项工作中,我们提出了这些先前结果的推广。我们表明,迄今为止使用的特定时间梯度分布并不是唯一的,因为可以使用更一般的时间扩散梯度分布。这些时间梯度分布可以由任意数量的“短”梯度脉冲组成,这些脉冲满足短梯度近似。此外,可能存在小幅度的“长”梯度脉冲,可以用来满足完整分布的重相位条件。存在一些例外情况。例如,由两个具有相反符号的短梯度脉冲组成的经典 q 空间梯度不能被使用,因为由于该分布的时间反称性,相位信息会丢失。

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