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基于使用嵌套式漂流水听器记录仪阵列进行三维声学定位和跟踪推断柯氏喙鲸的潜水行为。

Diving behavior of Cuvier's beaked whales inferred from three-dimensional acoustic localization and tracking using a nested array of drifting hydrophone recorders.

作者信息

Barlow Jay, Griffiths Emily T, Klinck Holger, Harris Danielle V

机构信息

National Oceanic and Atmospheric Administration National Marine Fisheries Service, Southwest Fisheries Science Center, Marine Mammal and Turtle Division, 8901 La Jolla Shores Drive, La Jolla, California 92037, USA.

Ocean Associates, Inc., 4007 North Arlington Street, Arlington, Virginia 22207, USA.

出版信息

J Acoust Soc Am. 2018 Oct;144(4):2030. doi: 10.1121/1.5055216.

DOI:10.1121/1.5055216
PMID:30404483
Abstract

Echolocation pulses from Cuvier's beaked whales are used to track the whales' three-dimensional diving behavior in the Catalina Basin, California. In 2016, five 2-element vertical hydrophone arrays were suspended from the surface and drifted at ∼100-m depth. Cuvier's beaked whale pulses were identified, and vertical detection angles were estimated from time-differences-of-arrival of either direct-path signals received on two hydrophones or direct-path and surface-reflected signals received on the same hydrophone. A Bayesian state-space model is developed to track the diving behavior. The model is fit to these detection angle estimates from at least four of the drifting vertical arrays. Results show that the beaked whales were producing echolocation pulses and are presumed to be foraging at a mean depth of 967 m (standard deviation = 112 m), approximately 300 m above the bottom in this basin. Some whales spent at least some time at or near the bottom. Average swim speed was 1.2 m s, but swim direction varied during a dive. The average net horizontal speed was 0.6 m s. Results are similar to those obtained from previous tagging studies of this species. These methods may allow expansion of dive studies to other whale species that are difficult to tag.

摘要

来自柯氏喙鲸的回声定位脉冲被用于追踪加利福尼亚州卡特琳娜盆地中这些鲸鱼的三维潜水行为。2016年,五个双元件垂直水听器阵列从海面垂下,并在约100米深处随波漂流。识别出柯氏喙鲸的脉冲,并根据两个水听器接收到的直达路径信号或同一水听器接收到的直达路径和海面反射信号的到达时间差来估计垂直探测角度。开发了一个贝叶斯状态空间模型来追踪潜水行为。该模型与来自至少四个漂流垂直阵列的这些探测角度估计值相拟合。结果表明,喙鲸正在发出回声定位脉冲,据推测它们在平均深度967米(标准差 = 112米)处觅食,该深度在该盆地底部上方约300米处。一些鲸鱼在海底或靠近海底处停留了至少一段时间。平均游速为1.2米/秒,但在潜水过程中游动方向会发生变化。平均净水平速度为0.6米/秒。结果与之前对该物种的标记研究所得结果相似。这些方法可能会使潜水研究扩展到其他难以标记的鲸鱼物种。

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