从x射线计算机微断层扫描数据中定量分析三维分支系统

Adriana L. McKinney, T. Varga
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引用次数: 0

摘要

肺、血管和植物根等分支结构在生命中起着至关重要的作用。这些分支结构的生长、结构和功能对我们的生活有着巨大的影响。因此,这些结构在其原生环境中的定量大小信息对于研究它们的生长和环境对它们的影响是非常宝贵的。x射线计算机断层扫描(XCT)已成为原位成像和分析分支结构的有效工具。我们开发了一种无成本的工具,可以近似分支结构的表面和体积。我们的无创成像、分割和提取定量信息的方法是通过对土壤介质中植物根的3D断层扫描数据的分析来证明的。在草标本上收集的XCT数据用于可视化其根结构。利用一套开源软件将根从土壤中分割出来,确定其等值面,并以此计算其体积和表面积。这种处理三维数据的方法适用于其他分支结构,即使感兴趣的结构与其环境具有相似的x射线衰减,并且在样本分割方面存在困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative analysis of threedimensional branching systems from X-ray computed microtomography data
Branching structures such as lungs, blood vessels and plant roots play a critical role in life. Growth, structure, and function of these branching structures have an immense effect on our lives. Therefore, quantitative size information on such structures in their native environment is invaluable for studying their growth and the effect of the environment on them. X-ray computed tomography (XCT) has been an effective tool for in situ imaging and analysis of branching structures. We developed a costless tool that approximates the surface and volume of branching structures. Our methodology of noninvasive imaging, segmentation and extraction of quantitative information is demonstrated through the analysis of a plant root in its soil medium from 3D tomography data. XCT data collected on a grass specimen was used to visualize its root structure. A suite of open-source software was employed to segment the root from the soil and determine its isosurface, which was used to calculate its volume and surface. This methodology of processing 3D data is applicable to other branching structures even when the structure of interest is of similar X-ray attenuation to its environment and difficulties arise with sample segmentation.
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