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Spatial patterns of arctic sponge ground fauna and demersal fish are detectable in autonomous underwater vehicle (AUV) imagery

机译:在自主水下航行器(AUV)影像中可检测到北极海绵地面动物群和沉鱼的空间格局

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摘要

Deep-sea sponge grounds are important habitats that provide several ecosystem services, yet relatively little is known about their distribution and ecology. While most surveys have focused on the broad-scale distribution patterns of sponge grounds (100s-1000s m), only rarely have the finer-scale (<10 m) spatial distribution patterns of the primary organisms been studied. In this study, the autonomous underwater vehicle (AUV) Hugin 1000 was used to map an area of an arctic sponge ground located on the summit of the Schulz Bank (Arctic Mid-Ocean Ridge), with the aim of detecting small-scale spatial patterns produced by the dominant megafauna. Using low-light cameras to construct a photomosaic comprising of 9,953 images and a virtual quadrat spatial sampling approach, density hotspots of the most prominent megafauna were visualized. The primary megafauna detected were demosponges, hexactinellids, ascidians, cnidarians, echinoderms, and demersal fish species. Most megafauna, like the primary structure-forming sponge species Geodia parva and Stelletta rhaphidiophora, were distributed evenly throughout the sample area, though species like Lissodendoryx (Lissodendoryx) complicata and Gersemia rubiformis displayed clear fine-scale spatial preferences. The three demersal fish species, Macrourus berglax, Reinhardtius hippogIossoides, and Amblyraja hyperborea, were uniformly distributed throughout the sample area. Based on the presence of skate egg cases and juveniles within many images, it is likely that the site is being used as a nursery ground for A. hyperborea. This study demonstrates the potential of using AUVs to detect fine-scale spatial patterns of the structure-forming sponges and demersal fish species. The use of AUVs for deepwater benthic surveys can help visualize how fauna (e.g. fish) utilise deep-sea habitats, and act as a tool for quantifying individuals through relatively unbiased means (e.g. pre-programmed track, no sampling). Such information is crucial for future conservation and management efforts.
机译:深海海绵地是提供多种生态系统服务的重要栖息地,但对其分布和生态学知之甚少。尽管大多数调查都集中在海绵地面的广泛分布模式(100s-1000s m)上,但很少研究原始生物的更小尺度(<10 m)的空间分布模式。在这项研究中,使用自动水下航行器(AUV)Hugin 1000绘制了位于舒尔茨银行(北极中洋脊)顶峰上的北极海绵地面的区域,以检测小型空间格局由占主导地位的大型动物生产。使用低光相机构建包含9,953张图像的虚拟马赛克,并使用虚拟的正交空间采样方法,可以看到最突出的大型动物的密度热点。所检测到的主要大型动物是鸡毛,百虫类,海鞘类,刺胞动物,棘皮动物和海底鱼类。大多数大型动物,如形成主要结构的海绵物种Geodia parva和Stelletta rhaphidiophora,均均匀分布在整个样本区域,尽管复杂的Lissodendoryx(Lissodendoryx)和Gersemia rubiformis等物种表现出明显的精细的空间偏好。三个水下鱼类,Macrourus berglax,Reinhardtius hippogIossoides和Amblyraja hyperborea,在整个样本区域内均匀分布。基于许多图像中存在滑冰蛋盒和幼鱼,该地点可能被用作双歧杆菌的育苗场。这项研究证明了使用AUV来检测形成结构的海绵和水下鱼类物种的精细空间格局的潜力。在深水底栖动物调查中使用AUV可以帮助可视化动物(例如鱼类)如何利用深海栖息地,并通过相对无偏的方式(例如预先编程的航迹,不取样)充当量化个体的工具。这些信息对于将来的保护和管理工作至关重要。

著录项

  • 来源
    《Deep-Sea Research》 |2019年第11期|103137.1-103137.12|共12页
  • 作者单位

    Univ Bergen Dept Biol Sci POB 7803 N-5020 Bergen Norway|Univ Bergen KG Jebsen Ctr Deep Sea Res POB 7803 N-5020 Bergen Norway;

    Univ Bergen Dept Biol Sci POB 7803 N-5020 Bergen Norway|Univ Bergen KG Jebsen Ctr Deep Sea Res POB 7803 N-5020 Bergen Norway|Bangor Univ Sch Ocean Sci Menai Bridge LL59 5AB Anglesey Wales;

    Univ Bergen Dept Biol Sci POB 7803 N-5020 Bergen Norway|Univ Bergen KG Jebsen Ctr Deep Sea Res POB 7803 N-5020 Bergen Norway|NORCE Norwegian Res Ctr NORCE Environm Nygardsgaten 112 N-5008 Bergen Norway;

    Bangor Univ Sch Ocean Sci Menai Bridge LL59 5AB Anglesey Wales|Univ Rhode Isl Dept Biol Sci Kingston RI 02881 USA;

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

    Arctic mid-ocean ridge; Autonomous underwater vehicle; Deep sea; Demersal fish; Seamount; Sponge ground;

    机译:北极洋中脊;自主水下航行器;深海;海底鱼类;海山;海绵地面;

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