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首页> 外文期刊>Marine Geology >Introducing Fiji and ICY image processing techniques in ichnological research as a tool for sedimentary basin analysis
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Introducing Fiji and ICY image processing techniques in ichnological research as a tool for sedimentary basin analysis

机译:介绍斐济和冰冷图像处理技术在Ichnological Research中作为沉积盆地分析的工具

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In recent years, image treatment has been appraised as a very powerful tool to facilitate ichnological analysis, especially in marine cores of modern sediments, supporting the determination of certain ichnological features. However, it is still a new approach and detailed research is necessary to encounter a faster and more efficient method. The present study focuses on two image processing techniques, Fiji and ICY, and their comparison with a refined version of the well-established high-resolution image treatment. Strengths and weaknesses of the methodologies for the determination of three main features were explored: i) visibility of trace fossils; ii) quantification of the percentage of bioturbated surface, and iii) penetration depth estimation. Refined high resolution image treatment gives the best results for enhanced visibility of trace fossils, whereas Fiji is found to be a sound and rapid option. One disadvantage shared by Fiji and ICY is the binary character of the produced images, which may impede later ichnotaxonomical differentiation. Both Fiji and ICY (+ Fiji) are rapid alternatives for quantifying the bulk amount of bioturbated surface. The Magic Wand Method (+ RefineEdge), based on high-resolution image treatment, provides good results regardless of the contrast of the images, and it additionally allows for a more detailed quantification. The semi-automatic character of ICY favors quick estimation of penetration depth and facilitates differentiation between distinct tracemaker communities, based on a rapid quantification of pixel values. Thus, Fiji and ICY methods offer good results and are much less time-consuming than high-resolution image treatment. They are proposed as faster alternatives for the estimation of ichnological features, especially useful at the beginning stages of research, when a large number of samples must be analyzed.
机译:近年来,图像治疗被评为一种非常强大的工具,以促进Ichnological分析,特别是在现代沉积物的海洋核心中,支持确定某些IChnological特征。然而,它仍然是一种新的方法,详细的研究是遇到更快和更有效的方法。本研究重点介绍了两种图像处理技术,斐济和冰冷,以及与成熟的高分辨率图像处理的精细版本的比较。探索了确定三个主要特征的方法的优势和弱点:i)痕量化石的可见性; ii)分量的生物化表面和III的百分比渗透深度估计。精致的高分辨率图像处理为痕量化石的增强可见性提供了最佳结果,而斐济被发现是一种声音和快速选择。斐济和冰冷共享的一个缺点是所产生的图像的二进制特征,这可能妨碍略高于ichnotaxoMical分化。斐济和冰冷(+斐济)都是量化生物干扰表面的批量含量的快速替代品。无论图像的对比度如何,基于高分辨率图像处理的魔杖方法(+ refineEdge)提供了良好的结果,而且还允许更详细的量化。基于像素值的快速量化,冰冷的半自动性能快速估计穿透深度并有助于不同的曲法架社区之间的差异。因此,斐济和冰冷的方法提供了良好的效果,并且比高分辨率图像处理更少耗时。当必须分析大量样品时,估计IChnologication功能的替代方法更快,特别是在研究的开始阶段。

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