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Visualization of Brain Microstructure Through Spherical Harmonics Illumination of High Fidelity Spatio-Angular Fields

机译:通过高保真度时空场的球谐函数照明可视化大脑微结构。

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Diffusion kurtosis imaging (DKI) is gaining rapid adoption in the medical imaging community due to its ability to measure the non-Gaussian property of water diffusion in biological tissues. Compared to traditional diffusion tensor imaging (DTI), DKI can provide additional details about the underlying microstructural characteristics of the neural tissues. It has shown promising results in studies on changes in gray matter and mild traumatic brain injury where DTI is often found to be inadequate. The DKI dataset, which has high-fidelity spatio-angular fields, is difficult to visualize. Glyph-based visualization techniques are commonly used for visualization of DTI datasets; however, due to the rapid changes in orientation, lighting, and occlusion, visually analyzing the much more higher fidelity DKI data is a challenge. In this paper, we provide a systematic way to manage, analyze, and visualize high-fidelity spatio-angular fields from DKI datasets, by using spherical harmonics lighting functions to facilitate insights into the brain microstructure.
机译:扩散峰度成像(DKI)由于具有测量生物组织中水扩散的非高斯性质的能力,因此在医学成像界得到了迅速的采用。与传统的扩散张量成像(DTI)相比,DKI可以提供有关神经组织潜在微结构特征的更多详细信息。在灰质变化和轻度脑外伤的研究中已显示出令人鼓舞的结果,其中经常发现DTI不足。具有高保真时空角场的DKI数据集很难可视化。基于字形的可视化技术通常用于DTI数据集的可视化。但是,由于方向,照明和遮挡的快速变化,以视觉方式分析更高保真度的DKI数据是一个挑战。在本文中,我们提供了一种系统的方法,通过使用球形谐波照明功能来促进对大脑微结构的洞察,从而可以管理,分析和可视化DKI数据集中的高保真时空角场。

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