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Naval sonar disrupts foraging in humpback whales

机译:海军声纳干扰了座头鲸的觅食

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Modern long-range naval sonars are a potential disturbance for marine mammals and can cause disruption of feeding in cetaceans. We examined the lunge-feeding behaviour of humpback whales Megaptera novaeangliae before, during and after controlled exposure experiments with naval sonar by use of acoustic and motion sensor archival tags attached to each animal. Lunge-feeding by humpback whales entails a strong acceleration to increase speed before engulfing a large volume of prey-laden water, which can be identified by an acoustic signature characterized by a few seconds of high-level flow-noise followed by a rapid reduction, coinciding with a peak in animal acceleration. Over 2 successive seasons, 13 humpback whales were tagged. All were subject to a no-sonar control exposure, and 12 whales were exposed to 2 consecutive sonar exposure sessions, with 1 h between sessions. The first sonar session resulted in an average 68% reduction in lunge rate during exposure compared to pre-exposure, and this reduction was significantly greater than any changes observed during the no-sonar control. During the second sonar session, reduction in lunge rate was 66% during sonar exposure compared to the pre-exposure level, but was not significant compared to the no-sonar control, likely due to a larger inter-individual variability because some individuals appeared to have habituated whereas others had not. Our results indicate that naval sonars operating near humpback whale feeding grounds may lead to reduced foraging and negative impacts on energy balance.
机译:现代远程海军声纳是对海洋哺乳动物的潜在干扰,可导致鲸类的摄食中断。我们通过使用附着在每只动物身上的声学和运动传感器档案标签,在使用海军声纳进行受控暴露实验之前,期间和之后检查了座头鲸Megaptera novaeangliae的弓箭食性。用座头鲸喂食,在吞没大量捕食性水之前需要有很强的加速度来提高速度,这可以通过声学特征来识别,其特征是几秒钟的高水平流动噪声,然后迅速降低,与动物加速度的峰值相吻合。在连续2个季节中,标记了13条座头鲸。所有动物均接受非声纳控制暴露,并且12头鲸鱼连续2次暴露于声纳中,两次之间间隔1小时。与暴露前相比,第一次声纳试验可使暴露期间的弓步率平均降低68%,并且该降低幅度明显大于无声纳控制期间观察到的任何变化。在第二次声纳会议期间,声纳暴露期间的弓步速度与接触前相比降低了66%,但与无声纳控制相比没有明显意义,这可能是由于个体之间的差异较大,因为某些个体似乎已经习惯了,而其他人则没有。我们的研究结果表明,在座头鲸觅食场附近运行的海军声纳可能会导致觅食减少以及对能量平衡的负面影响。

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