Dear All,
This recent paper sheds light on how harbour
porpoises communicate acoustically using specific
patterns of clicks with source properties comparable to normal echolocation
clicks.
Requests for reprints can be directed to tubbert@sol.dk
All the best,
Karin Tubbert Clausen
CLICK COMMUNICATION IN HARBOUR PORPOISES
PHOCOENA PHOCOENA
Karin Tubbert
Clausen1*, Magnus Wahlberg2, 3, Kristian Beedholm1,
Stacy DeRuiter4,5 and Peter Teglberg Madsen1,5
1 Zoophysiology, Department of Biological Sciences, Aarhus
University, Build. 1131,
C.F. Moellers
Alle, 8000 Aarhus C, Denmark
2 Fjord & Baelt, Margrethes Plads 1, 5300 Kerteminde, Denmark
3 University of Southern Denmark, Hindsholmsvej 11, 5300
Kerteminde, Denmark
4 IFREMER, Service Acoustique et Sismique, BP 70, 29280 Plouzan¨¦,
France
5 Woods Hole Oceanographic Institution, Woods Hole, 02543 MA, USA
ABSTRACT
Sound plays an
important role for toothed whales in foraging and communication. However,
little is known about acoustic communication in the toothed whale species that
only produce narrow band high frequency (NBHF) clicks, such as the harbour
porpoise Phocoena phocoena. To study acoustic behaviour and to quantify
the source parameters of porpoise communication signals, the acoustic and
swimming behaviour of three adults and one calf were recorded using an array of
hydrophones, acoustic tags and an overhead video camera. We tested the
hypothesis that different behavioural interactions between porpoises involve
specific click patterns for communication and measured the source
characteristics of these click patterns to estimate the active space of porpoise
click communication. Our results provide strong evidence that porpoises
communicate acoustically using specific patterns of clicks with source
properties comparable to normal echolocation clicks, and that they employ
stereotyped aggressive click patterns, exposing conspecifics to received levels
of up to 180 dB re 1 μPa (pp). The measured source properties render
estimated active spaces of less than 1000 meters for porpoises’ communication
sounds. Compared to other cetaceans, porpoises must therefore remain much
closer to be able to communicate acoustically.
Keywords:
harbour porpoise, Phocoena phocoena, click communication, mother-calf pair,
active space
Karin Tubbert Clausen
Zoophysiology, Department of
Biological Sciences
Aarhus University, Build. 1131,
CF Mollers Alle
8000 Aarhus C, Denmark
Web: www.marinebioacoustics.com
