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Monitoring white whales (Delphinapterus leucas) with echolocation loggers

机译:使用echolocation记录器监视白鲸(Delphinapterus leucas)

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摘要

Monitoring programmes for white whales (Delphinapterus leucas) have been called for repeatedly in recent years because this species is likely to be negatively impacted by climate change, but also because such a broadly dispersed, high trophic feeder can serve as an effective ecosystem sentinel. Arctic ecosystems are difficult to monitor because of the extensive winter ice coverage and extreme environmental conditions in addition to low human population densities. However, passive acoustic monitoring has proved to be a reliable method to remotely survey the presence of some marine mammals in the Arctic. In this study, we evaluate the potential use of echolocation loggers (T-POD and C-POD, Chelonia Ltd.) for remote monitoring of white whales. Captive experiments and open water surveys in three arctic/subarctic habitats (ice-noise-dominated environment, ice-free environment and low-turbidity waters) were used to document detection performance and to explore the use of logger angle and inter-click interval data to look at activity patterns and tidal influences on space use. When acoustic results were compared to concurrent visual observations, echolocation detection was only attributed to periods of white whale presence near the recorder deployment sites. Both T-PODs and C-PODs effectively detected echoloca-tion, even under noisy ice. Diel and tidal behavioural patterns were identified. Acoustically identified movement patterns between sites were visually confirmed. This study demonstrates the feasibility of monitoring white whales using echolocation loggers and describes some important features of their behaviour as examples of the potential application of this passive acoustic monitoring method in Arctic and subarctic regions.
机译:近年来,人们反复呼吁对白鲸(Delphinapterus leucas)进行监测,因为该物种很可能会受到气候变化的不利影响,而且这种分布广泛,营养丰富的饲养者可以作为有效的生态系统前哨。北极生态系统难以监测,因为人口密度低,冬季冰覆盖面广,环境条件极端。但是,被动声学监测已被证明是一种可靠的方法,可以对北极地区某些海洋哺乳动物的存在进行远程调查。在这项研究中,我们评估了回声定位记录仪(T-POD和C-POD,Chelonia Ltd.)在远程监测白鲸中的潜在用途。在三个北极/南北极生境(冰噪声为主的环境,无冰的环境和低浊度的水域)中进行的圈养实验和开放水域调查被用于记录检测性能并探索记录器角度和点击间隔时间数据的使用研究活动模式和潮汐对空间利用的影响。将声学结果与同时进行的视觉观察进行比较时,回声定位检测仅归因于记录仪部署地点附近白鲸的存在时期。即使在嘈杂的冰块下,T-POD和C-POD都可以有效检测回声定位。确定了迪尔和潮汐的行为模式。目视确认听觉上确定的部位之间的运动方式。这项研究证明了使用回声定位记录仪监测白鲸的可行性,并描述了其行为的一些重要特征,作为这种被动声监测方法在北极和北极地区潜在应用的例子。

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  • 来源
    《Polar biology》 |2013年第4期|493-509|共17页
  • 作者单位

    Parques Reunidos Valencia S. A. L'Oceanografic, Ciudad de las Artes y las Ciencias, Junta de murs I vails s, 46013 Valencia, Spain National Marine Mammal Laboratory, Alaska Fisheries Science Center, National Marine Fisheries Service, NOAA, 7600 Sand Point Way N.E., Seattle, WA 98115, USA;

    Centre for Ecology and Evolution, University of Exeter, Tremough Campus, Cornwall TRIO 9EZ, UK Benguela Research and Training, PO Box 786, Walvis Bay, Namibia;

    Harbor Branch Oceanographic Institute, Florida Atlantic University, 5600 US, 1 North Fort Pierce, Boca Raton, FL 34946, USA;

    Helsinki Institute of Physics, University of Helsinki, P.O. Box 6400014, Helsinki, Finland;

    Norwegian Polar Institute, Fram Centre, 9296 Tromsø, Norway;

    City and Borough of Yakutat, PO Box 160, Yakutat, AK 99689, USA;

    P. P. Shirshov Institute of Oceanology, Russian Academy of Sciences, 36, Nahimovski Prospect, 117997 Moscow, Russia;

    Norwegian Polar Institute, Fram Centre, 9296 Tromsø, Norway;

    Applied Physics Laboratory, University of Washington, 1013 NE 40th Street, Box 355640, Seattle, WA 98105, USA;

    P. P. Shirshov Institute of Oceanology, Russian Academy of Sciences, 36, Nahimovski Prospect, 117997 Moscow, Russia;

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

    beluga whales; delphinapterus leucas; echolocation loggers; passive acoustic monitoring; T-POD; C-POD;

    机译:白鲸翠雀回声定位记录器;被动声学监测;T-POD;C-POD;

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