MRI Research Center, Department of Physics, University of New Brunswick, Canada.
J Magn Reson. 2013 Jun;231:126-32. doi: 10.1016/j.jmr.2013.04.001. Epub 2013 Apr 12.
In the study of rock core plugs with multidimensional MRI, the samples are of a regular cylindrical shape that yields well defined intensity distributions in reciprocal space. The high intensity k-space points are concentrated in the central region and in specific peripheral regions. A large proportion of the k-space points have signal intensities that are below the noise level. These points can be zero-filled instead of being collected experimentally. k-space sampling patterns that collect regions of high intensity signal while neglecting low intensity regions can be naturally applied to a wide variety of pure phase encoding measurements, such as T2 mapping SESPI, hybrid-SESPI and SPRITE, since all imaging dimensions can be under-sampled. With a shorter acquisition time, as fewer experimental data points are required, the RF and gradient duty cycles are reduced, while the image SNR is improved.
在多维 MRI 岩心塞的研究中,样品为规则的圆柱形,在倒易空间中产生良好定义的强度分布。高强度 k 空间点集中在中心区域和特定的外围区域。很大一部分 k 空间点的信号强度低于噪声水平。这些点可以零填充而不是通过实验采集。在进行各种纯相位编码测量时,如 T2 映射 SESPI、混合-SESPI 和 SPRITE,可以自然地应用只采集高强度信号区域而忽略低强度区域的 k 空间采样模式,因为所有成像维度都可以欠采样。由于所需的实验数据点较少,采集时间更短,因此 RF 和梯度占空比降低,而图像 SNR 提高。