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首页> 外文期刊>Canadian Journal of Zoology >Fine-scale habitat selection by coastal bottlenose dolphins: application of a new land-based video-montage technique
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Fine-scale habitat selection by coastal bottlenose dolphins: application of a new land-based video-montage technique

机译:沿海宽吻海豚的精细栖息地选择:一种新的陆基视频剪辑技术的应用

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摘要

Cetacean distribution and underwater topography are frequently correlated. These patterns are commonly studied on large spatial scales, over tens of kilometres, but very rarely on a fine scale. Sightings of bottlenose dolphins, Tursiops truncatus, within the Moray Firth, Scotland, were previously found to be concentrated within deep, narrow channels. To understand why such areas were selected, more-detailed information on the distribution of dolphins was required. This study describes the development of a video technique to study the spatial distribution and relative abundance of bottlenose dolphins. We then used the methodology to investigate whether water depth and seabed gradient influence the dolphins' distribution patterns. Furthermore, temporal patterns of use were examined with respect to seasonal, tidal, and diurnal cycles. The distribution of dolphins was significantly related to topography: dolphins were sighted most frequently in the deepest regions with the steepest seabed gradients. There was a clear temporal pattern in the use of the area, with sightings peaking during July. However, the presence of dolphins was not significantly related to tidal or diurnal cycles. The topography of the area appears to be a significant influence on its intensive use by dolphins, and patterns of use indicate that topography may facilitate foraging during seasonal migrations of fish.
机译:鲸类分布与水下地形经常相关。这些模式通常在数十公里以上的大空间尺度上进行研究,但很少在精细尺度上进行研究。以前发现苏格兰海鳗峡湾的宽吻海豚Tursiops truncatus集中在狭窄的深水沟内。为了理解为什么选择这些区域,需要有关海豚分布的更多详细信息。这项研究描述了视频技术的发展,以研究宽吻海豚的空间分布和相对丰度。然后,我们使用该方法来研究水深和海底坡度是否影响海豚的分布方式。此外,还检查了季节性,潮汐和昼夜周期的时间使用模式。海豚的分布与地形显着相关:在海床梯度最深的最深区域中,海豚最常见。该地区的使用存在明显的时间格局,七月份的景点见顶。但是,海豚的存在与潮汐或昼夜周期没有明显关系。该地区的地形似乎对其海豚的密集利用产​​生重大影响,而且使用方式表明,该地形可能在鱼类季节性迁徙期间促进觅食。

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