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全身磁共振系统多次串联的短混合时间双扩散加权实验的数值模拟。

Numerical simulations of short-mixing-time double-wave-vector diffusion-weighting experiments with multiple concatenations on whole-body MR systems.

机构信息

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

出版信息

J Magn Reson. 2010 Dec;207(2):274-82. doi: 10.1016/j.jmr.2010.09.009. Epub 2010 Sep 19.

Abstract

Double- or two-wave-vector diffusion-weighting experiments with short mixing times in which two diffusion-weighting periods are applied in direct succession, are a promising tool to estimate cell sizes in the living tissue. However, the underlying effect, a signal difference between parallel and antiparallel wave vector orientations, is considerably reduced for the long gradient pulses required on whole-body MR systems. Recently, it has been shown that multiple concatenations of the two wave vectors in a single acquisition can double the modulation amplitude if short gradient pulses are used. In this study, numerical simulations of such experiments were performed with parameters achievable with whole-body MR systems. It is shown that the theoretical model yields a good approximation of the signal behavior if an additional term describing free diffusion is included. More importantly, it is demonstrated that the shorter gradient pulses sufficient to achieve the desired diffusion weighting for multiple concatenations, increase the signal modulation considerably, e.g. by a factor of about five for five concatenations. Even at identical echo times, achieved by a shortened diffusion time, a moderate number of concatenations significantly improves the signal modulation. Thus, experiments on whole-body MR systems may benefit from multiple concatenations.

摘要

双或双波矢扩散加权实验具有较短的混合时间,其中两个扩散加权周期直接连续应用,是估计活体组织中细胞大小的有前途的工具。然而,对于全身磁共振系统所需的长梯度脉冲,平行和反平行波矢方向之间的信号差异会大大降低。最近,已经表明,如果使用短梯度脉冲,在单个采集中将两个波矢多次串联可以将调制幅度加倍。在这项研究中,使用全身磁共振系统可实现的参数对这些实验进行了数值模拟。结果表明,如果包含描述自由扩散的附加项,则理论模型可以很好地近似信号行为。更重要的是,证明了足以实现多次串联所需的期望扩散加权的较短梯度脉冲会大大增加信号调制,例如对于五次串联,调制增加约五倍。即使在相同的回波时间(通过缩短扩散时间实现)下,通过适度数量的串联也可以显著提高信号调制。因此,全身磁共振系统上的实验可能会受益于多次串联。

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