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Effects of b-Value and Number of Gradient Directions on Diffusion MRI Measures Obtained with Q-ball Imaging

机译:b值和梯度方向数对Q球成像获得的扩散MRI测量的影响

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摘要

High-angular-resolution diffusion-weighted imaging (HARDI) MRI acquisitions have become common for use with higher order models of diffusion. Despite successes in resolving complex fiber configurations and probing microstructural properties of brain tissue, there is no common consensus on the optimal b-value and number of diffusion directions to use for these HARDI methods. While this question has been addressed by analysis of the diffusion-weighted signal directly, it is unclear how this translates to the information and metrics derived from the HARDI models themselves. Using a high angular resolution data set acquired at a range of b-values, and repeated 11 times on a single subject, we study how the b-value and number of diffusion directions impacts the reproducibility and precision of metrics derived from Q-ball imaging, a popular HARDI technique. We find that Q-ball metrics associated with tissue microstructure and white matter fiber orientation are sensitive to both the number of diffusion directions and the spherical harmonic representation of the Q-ball, and often are biased when under sampled. These results can advise researchers on appropriate acquisition and processing schemes, particularly when it comes to optimizing the number of diffusion directions needed for metrics derived from Q-ball imaging.
机译:高角度分辨率扩散加权成像(HARDI)MRI采集已变得可与高阶扩散模型一起使用。尽管成功解决了复杂的纤维构型和探查脑组织的微结构特性,但对于用于这些HARDI方法的最佳b值和扩散方向数尚无共识。虽然已经通过直接分析扩散加权信号解决了这个问题,但尚不清楚如何将其转换为从HARDI模型本身获得的信息和度量。使用在b值范围内获取的高角度分辨率数据集,并在单个对象上重复进行11次,我们研究b值和扩散方向数如何影响源自Q球成像的量度的可重复性和精度,一种流行的HARDI技术。我们发现,与组织微观结构和白质纤维取向相关的Q球指标对Q球的扩散方向数量和球谐表示均敏感,并且在采样不足时经常会产生偏差。这些结果可以为研究人员提供有关适当的采集和处理方案的建议,尤其是在优化从Q球成像得出的指标所需的扩散方向数量方面。

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