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End to End Digitisation and Analysis of Three-Dimensional Coral Models from Communities to Corallites

机译:端到端数字化和三维珊瑚模型的分析从社区到硬珊瑚

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摘要

Coral reefs hosts nearly 25% of all marine species and provide food sources for half a billion people worldwide while only a very small percentage have been surveyed. Advances in technology and processing along with affordable underwater cameras and Internet availability gives us the possibility to provide tools and softwares to survey entire coral reefs. Holistic ecological analyses of corals require not only the community view (10s to 100s of meters), but also the single colony analysis as well as corallite identification. As corals are three-dimensional, classical approaches to determine percent cover and structural complexity across spatial scales are inefficient, time-consuming and limited to experts. Here we propose an end-to-end approach to estimate these parameters using low-cost equipment (GoPro, Canon) and freeware (123D Catch, Meshmixer and Netfabb), allowing every community to participate in surveys and monitoring of their coral ecosystem. We demonstrate our approach on 9 species of underwater colonies in ranging size and morphology. 3D models of underwater colonies, fresh samples and bleached skeletons with high quality texture mapping and detailed topographic morphology were produced, and Surface Area and Volume measurements (parameters widely used for ecological and coral health studies) were calculated and analysed. Moreover, we integrated collected sample models with micro-photogrammetry models of individual corallites to aid identification and colony and polyp scale analysis.
机译:珊瑚礁拥有近25%的海洋物种,为全球半数人提供食物来源,而只有极小一部分被调查。技术和处理技术的进步以及价格合理的水下摄像头和互联网的可用性使我们能够提供工具和软件来调查整个珊瑚礁。珊瑚的整体生态分析不仅需要社区视野(10s至100s米),还需要单菌落分析以及珊瑚岩识别。由于珊瑚是三维的,因此在空间尺度上确定覆盖率和结构复杂性的经典方法效率低下,耗时且仅限于专家。在这里,我们提出一种端到端方法,使用低成本设备(GoPro,佳能)和免费软件(123D Catch,Meshmixer和Netfabb)估算这些参数,从而使每个社区都能参与对其珊瑚生态系统的调查和监视。我们展示了我们对9种水下菌落的大小和形态的研究方法。制作了具有高质量纹理映射和详细地形形态的水下菌落,新鲜样本和漂白骨骼的3D模型,并计算和分析了表面积和体积测量值(广泛用于生态和珊瑚健康研究的参数)。此外,我们将收集的样本模型与单个珊瑚岩的显微照相术模型集成在一起,以帮助鉴定以及菌落和息肉的尺度分析。

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