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回声定位点击特征的变化,在白天/晚上和有/没有船只噪音的情况下,江豚的回声定位点击特征的变化。

Variations in echolocation click characteristics of finless porpoise in response to day/night and absence/presence of vessel noise.

机构信息

Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

Distinguished Doctoral Program of Platforms (WISE), Kyoto University, Kyoto, Japan.

出版信息

PLoS One. 2023 Aug 4;18(8):e0288513. doi: 10.1371/journal.pone.0288513. eCollection 2023.

Abstract

Small odontocetes produce echolocation clicks to feed and navigate, making it an essential function for their survival. Recently, the effect of vessel noise on small odontocetes behavior has attracted attention owing to increase in vessel activities; however, the effects of the surrounding environmental factor, vessel noise, and day/night on echolocation click characteristics have not been well studied. Here, we examined the effects of vessel noise and day/night on variations in echolocation clicks and click trains parameters. Passive acoustic monitoring of on-axis echolocation clicks produced by free-ranging finless porpoises (Neophocaena asiaeorientalis sunameri) was performed at two sites in Japan, Seto Inland Sea and Mikawa Bay, in June-September 2021 and March-August 2022, using A-tag and SoundTrap 300HF. Generalized Linear Model was used to elucidate the effect of vessel noise, day/night, and surrounding environmental factors (water temperature, synthetic flow velocity, and noise level) on echolocation click and click train parameters. Echolocation click and click train parameters were strongly affected by day/night, whereas the absence/presence vessel noise did not exhibit statistically significant influence. Particularly, -3 dB bandwidth was wider, click duration was shorter, and inter-click intervals in a train were shorter at night, which may facilitate information processing at night, thereby compensating for the lack of visual information. The interaction between day/night and the absence/presence of vessel noise affected the source level of finless porpoises, with higher levels observed in the absence of vessel noise during the daytime compared to other conditions at the site with low vessel traffic. Overall, these results suggest that echolocation clicks by finless porpoise were likely to fluctuate to adapt with surrounding complex environmental conditions, especially day/night.

摘要

小型齿鲸通过回声定位咔哒声来觅食和导航,这对它们的生存至关重要。最近,由于船只活动的增加,船只噪音对小型齿鲸行为的影响引起了人们的关注;然而,周围环境因素、船只噪音以及昼夜变化对回声定位咔哒声特征的影响尚未得到很好的研究。在这里,我们研究了船只噪音和昼夜变化对回声定位咔哒声和咔哒声序列参数变化的影响。2021 年 6 月至 9 月和 2022 年 3 月至 8 月,在日本濑户内海和三河湾的两个地点,使用 A-tag 和 SoundTrap 300HF 对自由游动的江豚(Neophocaena asiaeorientalis sunameri)产生的轴上回声定位咔哒声进行了被动声学监测。广义线性模型用于阐明船只噪音、昼夜和周围环境因素(水温、合成流速和噪声水平)对回声定位咔哒声和咔哒声序列参数的影响。回声定位咔哒声和咔哒声序列参数受到昼夜变化的强烈影响,而船只噪音的有无则没有表现出统计学上的显著影响。特别是,夜间的-3dB 带宽更宽,咔哒声持续时间更短,咔哒声序列中的间隔更短,这可能有助于夜间的信息处理,从而弥补视觉信息的不足。昼夜变化和船只噪音有无之间的相互作用影响了江豚的声源级,与其他条件相比,在船只交通量低的地点,白天在没有船只噪音的情况下,声源级更高。总的来说,这些结果表明,江豚的回声定位咔哒声可能会波动,以适应周围复杂的环境条件,特别是昼夜变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4067/10403093/da1b018fbbd5/pone.0288513.g001.jpg

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