论文标题

通过对HCP年轻人的数据应用估算纤维方向分布

Estimating Fiber Orientation Distribution through Blockwise Adaptive Thresholding with Application to HCP Young Adults Data

论文作者

Hwang, Seungyong, Lee, Thomas C. M., Paul, Debashis, Peng, Jie

论文摘要

由于最近的技术进步,现在可以收集大型大脑成像数据集。这样的数据非常复杂,因此从中提取有意义的信息仍然具有挑战性。因此,迫切需要在计算上可扩展的统计程序,并且可以提供捕获神经元结构及其功能的准确估计值。我们提出了一种基于扩散MRI数据估算纤维方向分布(FOD)的快速方法。该方法将观察到的任何体素的DMRI信号作为基础FOD的颤音和嘈杂的版本建模,并利用球形谐波基础来表示FOD,其中球形谐波系数是通过使用James-Stein型估计器来自适应和非线性缩小的。为了通过增强FOD的局部峰来进一步提高估计精度,作为第二步,将应用超分辨率锐化过程。所得估计的FOD可以馈送到纤维跟踪算法中,以重建白质纤维区域。我们使用人类Connectome项目的合成数据和数据来说明整体方法。

Due to recent technological advances, large brain imaging data sets can now be collected. Such data are highly complex so extraction of meaningful information from them remains challenging. Thus, there is an urgent need for statistical procedures that are computationally scalable and can provide accurate estimates that capture the neuronal structures and their functionalities. We propose a fast method for estimating the fiber orientation distribution(FOD) based on diffusion MRI data. This method models the observed dMRI signal at any voxel as a convolved and noisy version of the underlying FOD, and utilizes the spherical harmonics basis for representing the FOD, where the spherical harmonic coefficients are adaptively and nonlinearly shrunk by using a James-Stein type estimator. To further improve the estimation accuracy by enhancing the localized peaks of the FOD, as a second step a super-resolution sharpening process is then applied. The resulting estimated FODs can be fed to a fiber tracking algorithm to reconstruct the white matter fiber tracts. We illustrate the overall methodology using both synthetic data and data from the Human Connectome Project.

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