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Remote High-Definition Rotating Video Enables Fast Spatial Survey of Marine Underwater Macrofauna and Habitats

机译:远程高清视频旋转海洋启用水下大型底栖动物和栖息地的快速空间调查

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摘要

Observing spatial and temporal variations of marine biodiversity from non-destructive techniques is central for understanding ecosystem resilience, and for monitoring and assessing conservation strategies, e.g. Marine Protected Areas. Observations are generally obtained through Underwater Visual Censuses (UVC) conducted by divers. The problems inherent to the presence of divers have been discussed in several papers. Video techniques are increasingly used for observing underwater macrofauna and habitat. Most video techniques that do not need the presence of a diver use baited remote systems. In this paper, we present an original video technique which relies on a remote unbaited rotating remote system including a high definition camera. The system is set on the sea floor to record images. These are then analysed at the office to quantify biotic and abiotic sea bottom cover, and to identify and count fish species and other species like marine turtles. The technique was extensively tested in a highly diversified coral reef ecosystem in the South Lagoon of New Caledonia, based on a protocol covering both protected and unprotected areas in major lagoon habitats. The technique enabled to detect and identify a large number of species, and in particular fished species, which were not disturbed by the system. Habitat could easily be investigated through the images. A large number of observations could be carried out per day at sea. This study showed the strong potential of this non obtrusive technique for observing both macrofauna and habitat. It offers a unique spatial coverage and can be implemented at sea at a reasonable cost by non-expert staff. As such, this technique is particularly interesting for investigating and monitoring coastal biodiversity in the light of current conservation challenges and increasing monitoring needs.
机译:观察来自非破坏性技术的海洋生物多样性的空间和时间变化是理解生态系统恢复力的核心,以及监测和评估节约策略,例如,海洋保护区。通常通过潜水员进行的水下视觉群岛(UVC)获得观察结果。在几篇论文中讨论了潜水员存在所固有的问题。视频技术越来越多地用于观察水下大型宏过和栖息地。大多数不需要潜水员存在的视频技术都使用诱饵远程系统。在本文中,我们提出了一种依赖于包括高清晰度相机的远程未经核准的旋转远程系统的原始视频技术。该系统设置在海底上以记录图像。然后在办公室分析这些以量化生物和非生物海底盖,并识别和计算鱼类和其他物种,如海龟。该技术在新喀里多尼亚南泻湖的高度多元化珊瑚礁生态系统中,基于涵盖主要泻湖栖息地的保护和未受保护区域的协议。该技术能够检测和识别大量物种,特别是捕捞物种,这些物种并没有受到系统的干扰。栖息地可以通过图像轻松调查。大量观察可以每天在海上进行。这项研究表明,这种非突出性技术的强大潜力,用于观察Macrofauna和栖息地。它提供独特的空间覆盖范围,可通过非专业人员以合理的成本在海上实施。因此,在当前的保护挑战和提高监测需求的光线之光中,这种技术特别有趣和监测沿海生物多样性。

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