Behavioral response of megafauna to boat collision measured via animal-borne camera and IMU

Overlap between marine megafauna and maritime activities is a topic of global concern. Basking sharks ( Cetorhinus maximus CM) are listed as Globally Endangered under the IUCN, though reported sightings appear to be increasing in Ireland. While such trends in the region are welcome, increasing spati...

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Bibliographic Details
Published in:Frontiers in Marine Science
Main Authors: Chapple, Taylor K., Cade, David E., Goldbogen, Jeremy, Massett, Nick, Payne, Nicholas, McInturf, Alexandra G.
Format: Article in Journal/Newspaper
Language:unknown
Published: Frontiers Media SA 2024
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Online Access:http://dx.doi.org/10.3389/fmars.2024.1430961
https://www.frontiersin.org/articles/10.3389/fmars.2024.1430961/full
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Summary:Overlap between marine megafauna and maritime activities is a topic of global concern. Basking sharks ( Cetorhinus maximus CM) are listed as Globally Endangered under the IUCN, though reported sightings appear to be increasing in Ireland. While such trends in the region are welcome, increasing spatiotemporal overlap between CM and numerous water users poses an increased risk of boat strikes to the animals. To demonstrate the risk and impact of boat strikes on marine megafauna, we present camera-enabled animal-borne inertial measurement unit (IMU) data from a non-lethal boat strike on a CM within a proposed National Marine Park in Ireland. We tagged a ~7-m female CM in County Kerry, Ireland, which was struck by a boat ~6 h after tag deployment. Comparison of pre-strike data with 4 h of video and ~7.5 h of IMU data following the boat strike provides critical insight into the animal’s response. While the CM reacted momentarily with an increase in activity and swam to the seafloor, it quickly reduced its overall activity (i.e., overall dynamic body acceleration, tailbeat cycles, tailbeat amplitude, and vertical velocity) for the remainder of the deployment. Notably, the animal also ceased feeding for the duration of the video and headed towards deep offshore waters, which is in stark contrast to the pre-strike period where the animal was consistently observed feeding along the surface in shallow coastal water. This work provides insight into a CM’s response to acute injury and highlights the need for appropriate protections to mitigate risks for marine megafauna.