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Underwater photogrammetry in Antarctica: long-term observations in benthic ecosystems and legacy data rescue

机译:南极洲水下摄影测量:底栖生态系统和遗产数据救援的长期观察

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摘要

The need for sound baseline information about community structure and composition against which changes can be detected and quantified is a well-recognised priority in Antarctica. Here, the collection of such data is challenging, especially at sea, where long-term monitoring is usually logistically feasible only in the proximity of permanent research stations. In recent years, underwater photogrammetry has emerged as a non-destructive and low-cost method for high-resolution topographic reconstruction. We decided to apply this technique to videos, recorded during standard SCUBA surveys of Antarctic benthos in Tethys Bay (Ross Sea, Antarctica) in 2006 and 2015 and originally not meant for photogrammetry. Our aim was to assess the validity and utility of the photogrammetric method to describe benthic communities from the perspective of long-term monitoring. For this purpose, two of the transects surveyed in 2015 were revisited in 2017. Videos were processed with photogrammetric procedures to obtain 3D models of the seafloor and inhabiting organisms. Overall, a total of six 20m-long transects, corresponding to a total area of200m(2) of seafloor were analysed. Accuracy of the resulting models, expressed in terms of Length Measurement Error (LME), was 1.9mm on average. The 2017 transects showed marked differences in some species, such as a 25-49% increase in the number of sea urchins Sterechinus neumayeri (Meissner, 1900) and the complete disappearance of some sponges Mycale (Oxymycale) acerata Kirkpatrick, 1907. Our analyses confirm the efficacy of photogrammetry for monitoring programmes, including their value for the re-analysis of legacy video footage.
机译:需要对社区结构和组成的声音基线信息进行声音基线信息,以检测和量化的变化是南极洲的公认优先级。在这里,这些数据的集合是挑战,特别是在海上,长期监测通常仅在近期研究站的邻近来逻辑上可行。近年来,水下摄影措施已成为高分辨率地形重建的非破坏性和低成本方法。我们决定将这种技术应用于Video,在2006年和2015年在Thethys Bay(Ross Sea,Antarctica)的南极Benthos的标准Scuba调查期间记录,最初并不意味着摄影措施。我们的目的是评估摄影测量方法的有效性和效用,从长期监测的角度来看底栖社区。为此目的,2015年调查的两次横断面是在2017年重新预订的。通过摄影测量程序处理视频,以获得海底和居住的生物的3D模型。总的来说,分析了总共六个20米长的横断面,对应于海底200m(2)的总面积。以长度测量误差(LME)表示的所得模型的准确性平均为1.9mm。 2017年横断面显示出一些物种的显着差异,例如海胆纯净的人数增加25-49%(Meissner,1900),以及一些海绵的完全消失,1907年。我们的分析确认摄影测量对监测程序的功效,包括它们的重新分析录像镜头的价值。

著录项

  • 来源
    《Polar biology》 |2019年第6期|1061-1079|共19页
  • 作者单位

    Univ Genoa Sect Genoa Italian Natl Antarctic Museum MNA POB 16132 Genoa Italy|Univ Siena Dept Phys Sci Earth & Environm DSFTA POB 53100 Siena Italy;

    Natl Inst Water & Atmospher Res NIWA POB 14901 Wellington New Zealand;

    Univ Genoa Sect Genoa Italian Natl Antarctic Museum MNA POB 16132 Genoa Italy|Univ Genoa Dept Earth Environm & Life Sci DISTAV POB 16132 Genoa Italy;

    Univ Waikato 58 Cross Rd Tauranga 3110 New Zealand;

    Natl Inst Water & Atmospher Res NIWA POB 11115 Hamilton New Zealand;

    Inst Marine Sci UOS La Spezia Res Natl Council CNR ISMAR SP POB 19032 Lerici La Spezia Italy;

    Natl Inst Water & Atmospher Res NIWA POB 14901 Wellington New Zealand;

    Bruno Kessler Fdn 3D Opt Metrol Unit FBK 3DOM POB 38122 Trento Italy;

    Univ Toulon & Var Images & Models Aix Marseille Univ LIS Lab Lab Informat & Syst I&m Team CNRS Campus Luminy Bat A 163 Ave Luminy Case 925 F-13288 Marseille France|Swiss Fed Inst Technol Theoret Phys CH-8093 Zurich Switzerland;

    ENEA Marine Environm Res Ctr POB 19032 Lerici La Spezia Italy;

    KOPRI Songdo Miraero 26 Incheon 21990 South Korea;

    Univ Genoa Sect Genoa Italian Natl Antarctic Museum MNA POB 16132 Genoa Italy|Univ Genoa Dept Earth Environm & Life Sci DISTAV POB 16132 Genoa Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antarctica; Photogrammetry; SCUBA-recorded videos; Long-term monitoring; Image-based analysis;

    机译:南极洲;摄影测量;潜水记录的视频;长期监控;基于图像的分析;

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