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Three-dimensional reconstruction and quantitative analysis of the brain stem nuclei based on fast centroid auto-registration

机译:基于快速质心自动配准的脑干核三维重建和定量分析

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This paper introduces a three-dimensional (3D) reconstruction algorithm of the brain stem nuclei based on fast centroid auto-registration. The research is based on methods and theories of computer stereo vision, and by image information processing three-point pattern local search, registration and auto-tracing for the centroids of the brain stem nuclei were accomplished. We adopt two-peak threshold, edge detection and grayscale image enhancement to extract contours of the nuclei's structures. The experimental results obtain the spatial structure information and 3D image of the brain stem nuclei, show spatial relationship between 14 pairs of nuclei, and quantitate morphological parameters of each type of nuclei's 3D structure. This work is significant to neuroanatomy research and clinic applications. Furthermore, a software system named BRAIN.HUK is established.
机译:本文介绍了一种基于快速质心自动配准的脑干核三维(3D)重建算法。该研究基于计算机立体视觉的方法和理论,并通过图像信息处理完成了三点模式的局部搜索,对脑干核质心的配准和自动跟踪。我们采用两峰阈值,边缘检测和灰度图像增强来提取原子核结构的轮廓。实验结果获得了脑干核的空间结构信息和3D图像,显示了14对核之间的空间关系,并定量了每种核3D结构的形态参数。这项工作对神经解剖学研究和临床应用具有重要意义。此外,建立了一个名为BRAIN.HUK的软件系统。

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