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利用压缩感知技术在人类大脑中进行加速扩散谱成像。

Accelerated diffusion spectrum imaging in the human brain using compressed sensing.

机构信息

GE Global Research, Munich, Germany.

出版信息

Magn Reson Med. 2011 Nov;66(5):1226-33. doi: 10.1002/mrm.23064.

Abstract

We developed a novel method to accelerate diffusion spectrum imaging using compressed sensing. The method can be applied to either reduce acquisition time of diffusion spectrum imaging acquisition without losing critical information or to improve the resolution in diffusion space without increasing scan time. Unlike parallel imaging, compressed sensing can be applied to reconstruct a sub-Nyquist sampled dataset in domains other than the spatial one. Simulations of fiber crossings in 2D and 3D were performed to systematically evaluate the effect of compressed sensing reconstruction with different types of undersampling patterns (random, gaussian, Poisson disk) and different acceleration factors on radial and axial diffusion information. Experiments in brains of healthy volunteers were performed, where diffusion space was undersampled with different sampling patterns and reconstructed using compressed sensing. Essential information on diffusion properties, such as orientation distribution function, diffusion coefficient, and kurtosis is preserved up to an acceleration factor of R = 4.

摘要

我们开发了一种利用压缩感知加速扩散谱成像的新方法。该方法可用于在不丢失关键信息的情况下减少扩散谱成像采集的采集时间,或者在不增加扫描时间的情况下提高扩散空间的分辨率。与并行成像不同,压缩感知可应用于重建空间以外的域中的亚奈奎斯特采样数据集。在 2D 和 3D 中进行了纤维交叉的模拟,以系统地评估不同类型的欠采样模式(随机、高斯、泊松盘)和不同加速因子对径向和轴向扩散信息的压缩感知重建的影响。在健康志愿者的大脑中进行了实验,其中扩散空间使用不同的采样模式进行欠采样,并使用压缩感知进行重建。扩散特性的基本信息,如方向分布函数、扩散系数和峰度,在加速因子 R = 4 时得以保留。

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