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Ecosystem Scale Acoustic Sensing Reveals Humpback Whale Behavior Synchronous with Herring Spawning Processes and Re-Evaluation Finds No Effect of Sonar on Humpback Song Occurrence in the Gulf of Maine in Fall 2006

机译:生态系统规模的声学传感揭示了与鲱鱼产卵过程同步的座头鲸行为,并且重新评估发现声纳对2006年秋季缅因湾座头鲸的发生没有影响

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摘要

We show that humpback-whale vocalization behavior is synchronous with peak annual Atlantic herring spawning processes in the Gulf of Maine. With a passive, wide-aperture, densely-sampled, coherent hydrophone array towed north of Georges Bank in a Fall 2006 Ocean Acoustic Waveguide Remote Sensing (OAWRS) experiment, vocalizing whales could be instantaneously detected and localized over most of the Gulf of Maine ecosystem in a roughly 400-km diameter area by introducing array gain, of 18 dB, orders of magnitude higher than previously available in acoustic whale sensing. With humpback-whale vocalizations consistently recorded at roughly 2000/day, we show that vocalizing humpbacks (i) were overwhelmingly distributed along the northern flank of Georges Bank, coinciding with the peak spawning time and location of Atlantic herring, and (ii) their overall vocalization behavior was strongly diurnal, synchronous with the formation of large nocturnal herring shoals, with a call rate roughly ten-times higher at night than during the day. Humpback-whale vocalizations were comprised of (1) highly diurnal non-song calls, suited to hunting and feeding behavior, and (2) songs, which had constant occurrence rate over a diurnal cycle, invariant to diurnal herring shoaling. Before and during OAWRS survey transmissions: (a) no vocalizing whales were found at Stellwagen Bank, which had negligible herring populations, and (b) a constant humpback-whale song occurrence rate indicates the transmissions had no effect on humpback song. These measurements contradict the conclusions of Risch et al. Our analysis indicates that (a) the song occurrence variation reported in Risch et al. is consistent with natural causes other than sonar, (b) the reducing change in song reported in Risch et al. occurred days before the sonar survey began, and (c) the Risch et al. method lacks the statistical significance to draw the conclusions of Risch et al. because it has a 98–100% false-positive rate and lacks any true-positive confirmation.
机译:我们显示座头鲸的发声行为与缅因湾的年度大西洋鲱鱼产卵高峰过程同步。通过在2006年秋季的海洋声波遥感(OAWRS)实验中将无源,宽孔径,密集采样的相干水听器阵列拖到乔治银行北部,可以即时检测到鲸鱼的发声并将其定位在缅因州海湾大部分生态系统中通过引入18 dB的阵列增益,在直径约400公里的区域中,比以前在声鲸感测中可获得的数量级高。座头鲸的发声持续记录在大约2000天/天,我们发现发声的座头鲸(i)绝大多数分布在Georges Bank的北翼,与峰值产卵时间和大西洋鲱鱼的产地相符,以及(ii)发声行为是强烈的昼夜行为,与大型夜间鲱鱼浅滩的形成同步,夜间的通话率大约是白天的十倍。座头鲸的发声包括(1)适于狩猎和进食行为的高昼夜非歌声,以及(2)在昼夜周期内具有恒定发生率且不随昼间鲱鱼而变的歌曲。在OAWRS调查传播之前和期间:(a)在鲱鱼种群微不足道的斯泰尔瓦根银行没有发现鲸鱼,并且(b)座头鲸-鲸鱼歌曲的发生率恒定表明该传播对座头鲸没有影响。这些测量结果与Risch等人的结论相反。我们的分析表明:(a)Risch等人报道的歌曲发生变化。 (b)Risch等人报道的歌曲减少的变化与声纳以外的自然原因是一致的。发生在声纳调查开始前的几天,以及(c)Risch等人。该方法缺乏统计学意义来得出Risch等人的结论。因为它具有98-100%的假阳性率,并且没有任何真阳性确认。

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