Finsterbusch Jürgen
Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
J Magn Reson. 2009 Jun;198(2):174-82. doi: 10.1016/j.jmr.2009.02.003. Epub 2009 Feb 13.
Experiments involving two diffusion-weightings in a single acquisition, so-called double- or two-wave-vector experiments, have recently been applied to measure the microscopic anisotropy in macroscopically isotropic samples or to estimate pore or compartment sizes. These informations are derived from the signal modulation observed when varying the wave vectors' orientations. However, the modulation amplitude can be small and, for short mixing times between the two diffusion-weightings, decays with increased gradient pulse lengths which hampers its detectability on whole-body MR systems. Here, an approach is investigated that involves multiple concatenations of the two diffusion-weightings in a single experiment. The theoretical framework for double-wave-vector experiments of fully restricted diffusion is adapted and the corresponding tensor approach recently presented for short mixing times extended and compared to numerical simulations. It is shown that for short mixing times (i) the extended tensor approach well describes the signal behavior observed for multiple concatenations and (ii) the relative amplitude of the signal modulation increases with the number of concatenations. Thus, the presented extension of the double-wave-vector experiment may help to improve the detectability of the signal modulations observed for short mixing times, in particular on whole-body MR systems with their limited gradient amplitudes.
在单次采集过程中涉及两种扩散加权的实验,即所谓的双波矢或双波矢量实验,最近已被用于测量宏观各向同性样本中的微观各向异性,或估计孔隙或隔室大小。这些信息源自改变波矢方向时观察到的信号调制。然而,调制幅度可能较小,并且在两次扩散加权之间的混合时间较短时,会随着梯度脉冲长度的增加而衰减,这妨碍了在全身磁共振系统上对其进行检测。在此,研究了一种在单个实验中涉及两次扩散加权多次串联的方法。对完全受限扩散的双波矢实验的理论框架进行了调整,并将最近针对短混合时间提出的相应张量方法进行了扩展,并与数值模拟进行了比较。结果表明,对于短混合时间,(i)扩展张量方法能很好地描述多次串联观察到的信号行为,并且(ii)信号调制的相对幅度随串联次数增加。因此,所提出的双波矢实验扩展可能有助于提高短混合时间观察到的信号调制的可检测性,特别是在梯度幅度有限的全身磁共振系统上。