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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Remote sensing and mapping habitat features pertinent to fin whale life histories in coastal and offshore waters of Vancouver Island,British Columbia
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Remote sensing and mapping habitat features pertinent to fin whale life histories in coastal and offshore waters of Vancouver Island,British Columbia

机译:不列颠哥伦比亚省温哥华岛沿海和近海水域沿海和近海水域的遥感和映射栖息地有关

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摘要

Current knowledge of the population size and movement of fin whales in the northeast Pacific is lacking, but is critical in implementing effective management actions. Here we used ocean gliders to survey the deep-coastal and offshore waters of Vancouver Island to add to what is known about fin whale habitat use in the Canadian Pacific. Passive acoustic recordings were made continuously, from which fin whale vocalizations were used as a proxy to presence. Oceanographic and preyscape variables were also taken to better delineate habitat units in horizontal and vertical space. Comparisons were made between on-shelf and shelf-break zones, and measures taken in- and out-side submarine canyons. Temporal comparisons between winter and spring were also possible. An on-shelf and shelf-break divide was seen, with cooler, fresher waters present closer to the coast for both deployments. The spring deployment showed fin whale acoustic presence focused around topographical features, including the shelf-break and canyons. The most prevalent cue was their 40-Hz call, which suggests foraging. Echosounder readings suggested denser aggregations of larger bodied zooplankton prey were present at canyon heads and along the shelf break. During the winter, calls in the acoustic record were more numerous than in the spring, and dominated by the 20-Hz call. A proportion of the recordings also showed 'song' patterning, which suggests breeding activity. Interpolated surfaces were used to examine the spatiotemporal relationships between the high-resolution habitat point data and presence of far-propagating fin whale calls. The predicted use of habitat by fin whales, as represented by their calls, was examined through Random Forest machine learning models using oceanographic and preyscape measures as input variables from these interpolations. Distance from the shelf break and preyscape variables were determined important in predicting whale habitat use in the spring, with model accuracy exceeding 80%. Call presence showed a much weaker relationship to environmental variables for the winter recordings with reduced accuracy of model predictions (13%). An understanding of habitat selection by fin whales may also aid in determining the importance of habitat units and areas that may critical to life history functions.
机译:目前缺乏东北太平洋人口规模和鳍鲸的流动知识,但在实施有效的管理行动方面是至关重要的。在这里,我们使用海边滑翔机来调查温哥华岛的深海和近海水域,以添加到加拿大太平洋的鳍鲸栖息地所知的内容。被动声学记录是不断制造的,从中使用鳍鲸的发声作为存在的代理。海洋和藻曲面变量也被带到水平和垂直空间中更好的描绘栖息地单位。在现货和货架和货架间的区域之间进行了比较,并采取措施和外侧潜水艇峡谷。冬季和春季之间的时间比较也是可能的。看到了一个货架和货架分裂,较冷,较凉爽的水域越来越靠近海岸的部署。春季部署显示鳍鲸声的存在,集中在地形特征上,包括货架休息和峡谷。最普遍的提示是他们的40赫兹呼叫,这表明觅食。 Echosounder读数建议更大身体浮游动物猎物的密集聚集在峡谷头和架子突破时存在。在冬季,声学记录的呼叫比在春天的众多,并由20-Hz呼叫主导。录音的比例也显示出“歌曲”图案,这表明繁殖活动。内插表面用于检查高分辨率栖息地数据与远传播鳍鲸呼叫的存在之间的时空关系。通过使用海洋和占用曲线测量的随机林机器学习模型来研究预测使用鳍鲸的栖息地使用鳍鲸,作为来自这些插值的输入变量。距离货架休息和Preyscape变量的距离在预测弹簧中使用的鲸鱼栖息地使用的重要性,模型精度超过80%。呼叫存在与冬季录制的环境变量有多弱,模型预测的准确性降低(13%)。对鳍鲸的栖息地选择的理解也可能有助于确定栖息地单位和对生命历史功能至关重要的地区的重要性。

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