Finsterbusch Jürgen
Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
J Magn Reson. 2008 Apr;191(2):282-90. doi: 10.1016/j.jmr.2008.01.002. Epub 2008 Jan 10.
Accurate diffusion measurements with pulsed gradient NMR are hampered by cross-terms of the diffusion-weighting and background gradients. For experiments based on a stimulated echo pulse sequence, that is preferred for samples with a T2 short compared to the diffusion time, a diffusion-weighting scheme has been presented that avoids these cross-terms in each of the en- and decoding periods separately. However, this approach suffers from a reduced diffusion-weighting efficiency because the two gradients applied in each of the periods have effectively opposite polarities leading to a partial cancellation. An extension of this scheme is presented that involves an additional gradient pulse in each period and delivers an improved diffusion-weighting efficiency without sacrificing the cross-term compensation. Analytical expressions for the gradient pulse lengths and amplitudes are given for arbitrary timing parameters. MR measurements with artificial (switched) background gradients were performed to test the cross-term compensation capability of the proposed extension. The results show that considerably higher q and b values can be achieved with the extension without changing the timing parameters. The MR measurements yielded identical diffusion coefficients without, with the same, and with different background gradients in the en- and decoding periods demonstrating the cross-term compensation of the presented approach.
脉冲梯度核磁共振的精确扩散测量受到扩散加权梯度和背景梯度交叉项的阻碍。对于基于受激回波脉冲序列的实验(对于T2比扩散时间短的样品,这种序列更受青睐),已经提出了一种扩散加权方案,该方案在编码和解码周期中分别避免了这些交叉项。然而,这种方法的扩散加权效率有所降低,因为每个周期中施加的两个梯度实际上具有相反的极性,导致部分抵消。本文提出了该方案的一种扩展,即在每个周期中增加一个梯度脉冲,在不牺牲交叉项补偿的情况下提高了扩散加权效率。针对任意定时参数,给出了梯度脉冲长度和幅度的解析表达式。利用人工(切换)背景梯度进行了磁共振测量,以测试所提出扩展方案的交叉项补偿能力。结果表明,在不改变定时参数的情况下,该扩展方案可以实现更高的q值和b值。磁共振测量结果表明,在编码和解码周期中,背景梯度相同或不同时,扩散系数相同,证明了本文方法的交叉项补偿能力。