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Applying microCT and 3D visualization to Jurassic silicified conifer seed cones: A virtual advantage over thin-sectioning

机译:将microCT和3D可视化技术应用于侏罗纪硅化针叶树种子锥:较薄切片的虚拟优势

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摘要

• Premise of the study: As an alternative to conventional thin-sectioning, which destroys fossil material, high-resolution X-ray computed tomography (also called microtomography or microCT) integrated with scientific visualization, three-dimensional (3D) image segmentation, size analysis, and computer animation is explored as a nondestructive method of imaging the internal anatomy of 150-million-year-old conifer seed cones from the Late Jurassic Morrison Formation, USA, and of recent and other fossil cones.• Methods: MicroCT was carried out on cones using a General Electric phoenix v|tome|x s 240D, and resulting projections were processed with visualization software to produce image stacks of serial single sections for two-dimensional (2D) visualization, 3D segmented reconstructions with targeted structures in color, and computer animations.• Results: If preserved in differing densities, microCT produced images of internal fossil tissues that showed important characters such as seed phyllotaxy or number of seeds per cone scale. Color segmentation of deeply embedded seeds highlighted the arrangement of seeds in spirals. MicroCT of recent cones was even more effective.• Conclusions: This is the first paper on microCT integrated with 3D segmentation and computer animation applied to silicified seed cones, which resulted in excellent 2D serial sections and segmented 3D reconstructions, revealing features requisite to cone identification and understanding of strobilus construction.
机译:•研究前提:作为传统薄片切片的替代选择,该薄片切片破坏了化石材料,高分辨率X射线计算机断层扫描(也称为显微断层摄影或microCT)与科学可视化相结合,对三维(3D)图像进行分割,分析和计算机动画作为一种非破坏性方法,可以对美国晚侏罗纪莫里森组中1.5亿年前的针叶树种子锥以及最近的和其他化石锥的内部解剖结构进行成像。•方法:进行了MicroCT使用General Electric phoenix v | tome | xs 240D在圆锥上展开,然后使用可视化软件处理所得的投影,以生成用于二维(2D)可视化的连续单个部分的图像堆栈,具有目标颜色的3D分段重建,以及结果:如果以不同的密度保存,microCT会生成内部化石组织的图像,这些图像显示出重要的特征,例如种子的酸碱度ylyltaxy或每锥体规模的种子数。深度嵌入的种子的颜色分割突出显示了种子呈螺旋状排列。结论:这是第一篇有关将MicroCT与3D分割和计算机动画集成到硅化种子锥上的论文,它产生了出色的2D连续切片和分段3D重建,揭示了锥鉴定所必需的功能和了解球根的建设。

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