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Visualizing diffusion tensor imaging data with merging ellipsoids

机译:通过合并椭球可视化扩散张量成像数据

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Diffusion tensor fields reveal the underlying anatomical structures in biological tissues such as neural fibers in the brain. Most current methods for visualizing the diffusion tensor field can be categorized into two classes: integral curves and glyphs. Integral curves are continuous and represent the underlying fiber structures, but are prone to integration error and loss of local information. Glyphs are useful for representing local tensor information, but do not convey the connectivity in the anatomical structures well. We introduce a simple yet effective visualization technique that extends the streamball method in flow visualization to tensor ellipsoids. Each tensor ellipsoid represents a local tensor, and either blends with neighboring tensors or breaks away from them depending on their orientations and anisotropies. The resulting visualization shows the connectivity information in the underlying anatomy while characterizing the local tenors in detail. By interactively changing an iso-value parameter, users can examine the diffusion tensor field in the entire spectrum between the continuous integral curves and the discrete glyphs. Expert evaluation indicates that this method conveys very useful visual information about local anisotropy in white matter fibers. Such information was previously unavailable in tractography models. Our method provides a visual tool for assessing variability in DTI fiber tract integrity and its relation to function.
机译:扩散张量场揭示了生物组织(例如大脑中的神经纤维)中潜在的解剖结构。当前用于可视化扩散张量场的大多数方法可以分为两类:积分曲线和字形。积分曲线是连续的,代表了潜在的纤维结构,但易于出现积分误差和局部信息丢失。字形对于表示局部张量信息很有用,但不能很好地传达解剖结构中的连通性。我们介绍了一种简单而有效的可视化技术,该技术将流可视化中的流球方法扩展到张量椭球体。每个张量椭球代表一个局部张量,并且与相邻的张量混合或根据它们的方向和各向异性而脱离它们。所得的可视化结果显示了底层解剖结构中的连通性信息,同时详细描述了局部进程。通过交互式更改等值参数,用户可以检查连续积分曲线和离散字形之间的整个频谱中的扩散张量场。专家评估表明,该方法可传达有关白质纤维局部各向异性的非常有用的视觉信息。这种信息以前在束缚摄影模型中是不可用的。我们的方法为评估DTI纤维束完整性及其与功能的关系提供了可视化工具。

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