系统对比水下珊瑚礁3D重建前沿方法,助力生态监测
Cutting-edge 3D reconstruction solutions for underwater coral reef images: A review and comparison
- 聚焦相机位姿估计与稠密表面重建两大关键环节
- 基于真实与模拟数据集开展全面评估,验证方法性能
- 为科研与管理提供可落地的技术指南,适合生态研究者
珊瑚是珊瑚礁生态系统中构建栖息地的基础生物,其形成的结构延伸范围广。但珊瑚本身脆弱且易受多种威胁影响,面临严重破坏风险。高精度3D建模技术对保护珊瑚礁至关重要,有助于科学家准确记录和监测珊瑚礁的结构、物种分布及其随时间的变化。基于摄影测量的方法在当前技术中表现突出,尤其得益于近年水下视频技术、计算机视觉及机器学习的发展。尽管图像驱动的3D重建技术持续进步,针对水下珊瑚礁图像的系统性综述与综合评估仍显不足。新兴方法在应对水下成像环境、复杂珊瑚结构及计算资源限制方面仍存挑战。本文聚焦两个核心阶段:相机位姿估计与稠密表面重建,系统回顾并总结经典与新方法,通过真实与模拟数据集进行综合评估。基于分析结果,提出参考建议,并深入探讨现有方法的发展潜力与瓶颈。本工作为科学家与管理者处理水下珊瑚礁图像进行3D重建提供了技术基础与实践指导。
原文摘要 · Abstract (English)
Corals serve as the foundational habitat-building organisms within reef ecosystems, constructing extensive structures that extend over vast distances. However, their inherent fragility and vulnerability to various threats render them susceptible to significant damage and destruction. The application of advanced 3D reconstruction technologies for high-quality modeling is crucial for preserving them. These technologies help scientists to accurately document and monitor the state of coral reefs, including their structure, species distribution and changes over time. Photogrammetry-based approaches stand out among existing solutions, especially with recent advancements in underwater videography, photogrammetric computer vision, and machine learning. Despite continuous progress in image-based 3D reconstruction techniques, there remains a lack of systematic reviews and comprehensive evaluations of cutting-edge solutions specifically applied to underwater coral reef images. The emerging advanced methods may have difficulty coping with underwater imaging environments, complex coral structures, and computational resource constraints. They need to be reviewed and evaluated to bridge the gap between many cutting-edge technical studies and practical applications. This paper focuses on the two critical stages of these approaches: camera pose estimation and dense surface reconstruction. We systematically review and summarize classical and emerging methods, conducting comprehensive evaluations through real-world and simulated datasets. Based on our findings, we offer reference recommendations and discuss the development potential and challenges of existing approaches in depth. This work equips scientists and managers with a technical foundation and practical guidance for processing underwater coral reef images for 3D reconstruction....
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