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Surface and curve skeleton from a structure tensor analysis applied on mastoid air cells in human temporal bones

机译:来自结构张量分析的表面和曲线骨架应用于人类颞骨乳突气室

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The mastoid of human temporal bone contains numerous air cells connected to each others. In order to gain further knowledge about these air cells, a more compact representation is needed to obtain an estimate of the size distribution of these cells. Already existing skeletonization methods often fail in producing a faithful skeleton mostly due to noise hampering the binary representation of the data. This paper proposes a different approach by extracting geometrical information embedded in the Euclidean distance transform of a volume via a structure tensor analysis based on quadrature filters, from which a secondary structure tensor allows the extraction of surface skeleton along with a curve skeleton from its eigenvalues. Preliminary results obtained on a X-ray micro-CT scans of a human temporal bone show very promising results.
机译:人类颞骨的乳突包含大量彼此连接的气室。为了获得有关这些气室的更多知识,需要更紧凑的表示形式以获得这些气室的尺寸分布的估计值。现有的骨架化方法通常常常由于噪声妨碍数据的二进制表示而无法产生忠实的骨架。本文提出了一种不同的方法,该方法通过基于正交滤波器的结构张量分析来提取嵌入到体积的欧几里德距离变换中的几何信息,从中,二级结构张量可以从其特征值中提取表面骨架以及曲线骨架。在人类颞骨的X射线微CT扫描上获得的初步结果显示出非常有希望的结果。

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