Scripps Institution of Oceanography, University of California San Diego, La Jolla, CA, 92093-0205, USA.
University of San Diego, 5998 Alcala Park, San Diego, CA, 92110, USA.
Sci Rep. 2022 May 20;12(1):8553. doi: 10.1038/s41598-022-12186-5.
Bowhead whales (Balaena mysticetus) face threats from diminishing sea ice and increasing anthropogenic activities in the Arctic. Passive acoustic monitoring is the most effective means for monitoring their distribution and population trends, based on the detection of their calls. Passive acoustic monitoring, however, is influenced by the sound propagation environment and ambient noise levels, which impact call detection probability. Modeling and simulations were used to estimate detection probability for bowhead whale frequency-modulated calls in the 80-180 Hz frequency band with and without sea ice cover and under various noise conditions. Sound transmission loss for bowhead calls is substantially greater during ice-covered conditions than during open-water conditions, making call detection ~ 3 times more likely in open-water. Estimates of daily acoustic detection probability were used to compensate acoustic detections for sound propagation and noise effects in two recording datasets in the northeast Chukchi Sea, on the outer shelf and continental slope, collected between 2012 and 2013. The compensated acoustic density suggests a decrease in whale presence with the retreat of sea ice at these recording sites. These results highlight the importance of accounting for effects of the environment on ambient noise and acoustic propagation when interpreting results of passive acoustic monitoring.
弓头鲸(Balaena mysticetus)面临着北极海冰减少和人类活动增加的威胁。基于它们叫声的检测,被动声学监测是监测其分布和种群趋势的最有效手段。然而,被动声学监测受到声音传播环境和环境噪声水平的影响,这会影响叫声的检测概率。利用建模和模拟的方法,在有和没有海冰覆盖的情况下,以及在不同噪声条件下,对 80-180 Hz 频段的弓头鲸调频叫声的检测概率进行了估计。在有冰覆盖的情况下,弓头鲸叫声的传输损耗要比在开阔水域的情况下大得多,这使得在开阔水域中检测到叫声的可能性增加了约 3 倍。利用每日声学检测概率的估计值,对 2012 年至 2013 年在楚科奇海东北部外大陆架和大陆坡两个记录点采集的两个记录数据集进行了声传播和噪声效应的声学检测补偿。经补偿后的声学密度表明,在这些记录点,随着海冰的消退,鲸鱼的存在减少了。这些结果强调了在解释被动声学监测结果时,考虑环境对环境噪声和声学传播的影响的重要性。