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Echolocation-based foraging by harbor porpoises and sperm whales, including effects of noise and acoustic propagation

机译:基于回声定位的港湾鼠类和抹香鲸觅食,包括噪音和声传播的影响

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摘要

In this thesis, I provide quantitative descriptions of toothed whale echolocation and foraging behavior, including assessment of the effects of noise on foraging behavior and the potential influence of ocean acoustic propagation conditions on biosonar detection ranges and whale noise exposure. In addition to presenting some novel basic science findings, the case studies presented in this thesis have implications for future work and for management. In Chapter 2, I describe the application of a modified version of the Dtag to studies of harbor porpoise echolocation behavior. The study results indicate how porpoises vary the rate and level of their echolocation clicks during prey capture events; detail the differences in echolocation behavior between different animals and in response to differences in prey fish; and show that, unlike bats, porpoises continue their echolocation buzz after the moment of prey capture. Chapters 3-4 provide case studies that emphasize the importance of applying realistic models of ocean acoustic propagation in marine mammal studies. These chapters illustrate that, although using geometric spreading approximations to predict communication/target detection ranges or noise exposure levels is appropriate in some cases, it can result in large errors in other cases, particularly in situations where refraction in the water column or multi-path acoustic propagation are significant. Finally, in Chapter 5, I describe two methods for statistical analysis of whale behavior data, the rotation test and a semi-Markov chain model. I apply those methods to test for changes in sperm whale foraging behavior in response to airgun noise exposure. Test results indicate that, despite the low-level exposures experienced by the whales in the study, some (but not all) of them reduced their buzz production rates and altered other foraging behavior parameters in response to the airgun exposure.
机译:在本文中,我提供了齿鲸回声定位和觅食行为的定量描述,包括评估噪声对觅食行为的影响以及海洋声传播条件对生物声纳探测范围和鲸鱼噪声暴露的潜在影响。除了提出一些新颖的基础科学发现外,本文提出的案例研究还对未来的工作和管理产生了影响。在第2章中,我描述了Dtag的修改版本在港口海豚回声定位行为研究中的应用。研究结果表明,在猎物捕获事件中,海豚如何改变其回声定位喀哒声的速率和水平。详细说明不同动物之间回声定位行为的差异以及对猎物鱼类差异的响应;并表明,与蝙蝠不同,海豚在捕获猎物后会继续发出回声。第3-4章提供了案例研究,强调了在海洋哺乳动物研究中应用逼真的海洋声传播模型的重要性。这些章节说明,尽管在某些情况下使用几何扩展近似来预测通信/目标检测范围或噪声暴露水平是适当的,但在其他情况下却可能导致较大的误差,尤其是在水柱或多径折射的情况下声音传播很重要。最后,在第5章中,我描述了两种用于鲸鱼行为数据的统计分析的方法,即旋转测试和半马尔可夫链模型。我将这些方法用于测试因气枪噪声而引起的抹香鲸觅食行为的变化。测试结果表明,尽管在研究中鲸鱼经历了低水平的暴露,但其中一些(但不是全部)降低了嗡嗡声的产生速度,并响应气枪暴露而改变了其他觅食行为参数。

著录项

  • 作者

    DeRuiter Stacy L;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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