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首页> 外文期刊>Marine ecology progress series >Behavioural reactions of harbour porpoises Phocoena phocoena to startle-eliciting stimuli: movement responses and practical applications
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Behavioural reactions of harbour porpoises Phocoena phocoena to startle-eliciting stimuli: movement responses and practical applications

机译:港口海豚的行为反应Phocoena Phocoena到Sightle-Eliciting Stimuli:运动反应和实际应用

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Acoustic deterrent devices are frequently used as a mitigation method to exclude harbour porpoises Phocoena phocoena from areas of potential harm, such as wind farm construction sites. However, there is increasing evidence that the devices themselves have the capacity to cause hearing damage. Here, we investigated the response of harbour porpoises to a 15 min sequence of 200 ms sound (peak frequency 10.5 kHz, range 5.5-20.5 kHz, 27 sounds total), which elicits the acoustic startle reflex. We used a duty cycle (0.6%) and sound exposure level that were significantly lower than in conventional acoustic deterrent devices. Harbour porpoises were exposed to startle sounds from a small vessel, and groups were visually tracked during 13 sound exposure sequences and 11 no-sound control trials. Porpoises showed a significant avoidance reaction during exposure, travelling a mean distance of 1.78 km (max. 3.21 km). In all cases, they left the area within 1 km of the sound source in the first 15 min after the start of the startle sequence. No avoidance was exhibited during control trials. Results are consistent with the startle reflex mediating this behaviour at low response thresholds. Our method can be used for mitigating collision risk and the risk of hearing damage from renewable energy installations, their construction and the deterrence device itself.
机译:声学威慑装置经常用作排除港口Proisens Phocoena Phocoena的缓解方法,例如风电场建设场所。然而,有越来越多的证据表明设备本身具有引起听力损坏的能力。在这里,我们调查了港口PORPOINS的响应到15 ms声音的15分钟(峰值频率10.5 kHz,范围5.5-20.5 kHz,27个声音总数),这引出了声学惊吓反射。我们使用了明显低于传统的声学威慑装置的占空比(0.6%)和声曝光水平。港口豚鼠暴露于来自小船只的惊吓声音,在13个声音曝光序列和11个无声音控制试验期间,视觉跟踪组。 Porpoises在暴露过程中显示出显着的避免反应,平均距离为1.78 km(最大3.21 km)。在所有情况下,它们在Sightle序列开始后的前15分钟内留在声源的1千米内。在对照试验期间没有展示避免。结果与在低响应阈值下介导此行为的Sightle Reflex符合。我们的方法可用于减轻碰撞风险以及从可再生能源装置,其结构和威慑设备本身听到损坏的风险。

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