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Whistle characteristics and daytime dive behavior in pantropical spotted dolphins (Stenella attenuata) in Hawai'i measured using digital acoustic recording tags (DTAGs). | LitMetric

AI Article Synopsis

  • The study investigates the daytime acoustic and diving behavior of pantropical spotted dolphins in Hawai'i, utilizing over 14 hours of data collected via digital acoustic recording tags.
  • Researchers analyzed whistle characteristics, foraging buzzes, and dive profiles, finding that the dolphins primarily dove to shallow depths, spending most of their time in the upper 10 meters of the water column.
  • Findings indicate limited feeding behavior during daylight hours, as evidenced by the few recorded foraging buzzes, contributing to the understanding of baseline bioacoustics and diving behavior in these dolphins.

Article Abstract

This study characterizes daytime acoustic and dive behavior of pantropical spotted dolphins (Stenella attenuata) in Hawai'i using 14.58 h of data collected from five deployments of digital acoustic recording tags (DTAG3) in 2013. For each tagged animal, the number of whistles, foraging buzzes, dive profiles, and dive statistics were calculated. Start, end, minimum, and maximum frequencies, number of inflection points and duration were measured from 746 whistles. Whistles ranged in frequency from 9.7 ± 2.8 to 19.8 ± 4.2 kHz, had a mean duration of 0.7 ± 0.5 s and a mean of 1.2 ± 1.2 inflection points. Thirteen foraging buzzes were recorded across all tags. Mean dive depth and duration were 16 ± 9 m and 1.9 ± 1.0 min, respectively. Tagged animals spent the majority of time in the upper 10 m (76.9% ± 16.1%) of the water column. Both whistle frequency characteristics and dive statistics measured here were similar to previously reported values for spotted dolphins in Hawai'i. Shallow, short dive profiles combined with few foraging buzzes provide evidence that little spotted dolphin feeding behavior occurs during daytime hours. This work represents one of the first successful DTAG3 studies of small pelagic delphinids, providing rare insights into baseline bioacoustics and dive behavior.

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Source
http://dx.doi.org/10.1121/1.4955081DOI Listing

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