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岩心柱中二维 T2 分布的最佳 k 空间采样图。

Two-dimensional T2 distribution mapping in rock core plugs with optimal k-space sampling.

机构信息

MRI Research Center, Department of Physics, University of New Brunswick, 8 Bailey Drive, Fredericton NB, Canada E3B 5A3.

出版信息

J Magn Reson. 2012 Jul;220:70-8. doi: 10.1016/j.jmr.2012.04.003. Epub 2012 Apr 30.

Abstract

Spin-echo single point imaging has been employed for 1D T(2) distribution mapping, but a simple extension to 2D is challenging since the time increase is n fold, where n is the number of pixels in the second dimension. Nevertheless 2D T(2) mapping in fluid saturated rock core plugs is highly desirable because the bedding plane structure in rocks often results in different pore properties within the sample. The acquisition time can be improved by undersampling k-space. The cylindrical shape of rock core plugs yields well defined intensity distributions in k-space that may be efficiently determined by new k-space sampling patterns that are developed in this work. These patterns acquire 22.2% and 11.7% of the k-space data points. Companion density images may be employed, in a keyhole imaging sense, to improve image quality. T(2) weighted images are fit to extract T(2) distributions, pixel by pixel, employing an inverse Laplace transform. Images reconstructed with compressed sensing, with similar acceleration factors, are also presented. The results show that restricted k-space sampling, in this application, provides high quality results.

摘要

自旋回波单点成像是用于一维 T(2) 分布映射的方法,但将其简单扩展到二维是具有挑战性的,因为时间增加了 n 倍,其中 n 是二维像素的数量。然而,在充满流体的岩心柱中进行二维 T(2) 映射是非常理想的,因为岩石中的层面结构通常导致样品内的不同孔隙特性。通过欠采样 k 空间可以提高采集时间。岩心柱的圆柱形形状在 k 空间中产生了明确定义的强度分布,可以通过本工作中开发的新的 k 空间采样模式来有效地确定这些模式获取了 22.2%和 11.7%的 k 空间数据点。可以采用密度图像作为钥匙孔成像的补充,以提高图像质量。通过逆拉普拉斯变换逐像素拟合 T(2)加权图像以提取 T(2)分布。还呈现了使用压缩感知重建的图像,其具有相似的加速因子。结果表明,在这种应用中,受限的 k 空间采样可提供高质量的结果。

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