TY - JOUR
T1 - Characterizing chilean blue whale vocalizations with DTAGs
T2 - A test of using tag accelerometers for caller identification
AU - Saddler, Mark R.
AU - Bocconcelli, Alessandro
AU - Hickmott, Leigh S.
AU - Chiang, Gustavo
AU - Landea-Briones, Rafaela
AU - Bahamonde, Paulina A.
AU - Howes, Gloria
AU - Segre, Paolo S.
AU - Sayigh, Laela S.
N1 - Publisher Copyright:
© 2017. Published by The Company of Biologists Ltd.
PY - 2017/11/15
Y1 - 2017/11/15
N2 - Vocal behavior of blue whales (Balaenoptera musculus) in the Gulf of Corcovado, Chile, was analysed using both audio and accelerometer data from digital acoustic recording tags (DTAGs). Over the course of three austral summers (2014, 2015 and 2016), seventeen tags were deployed, yielding 124 h of data. We report the occurrence of Southeast Pacific type 2 (SEP2) calls, which exhibit peak frequencies, durations and timing consistent with previous recordings made using towed and moored hydrophones. We also describe tonal downswept (D) calls, which have not been previously described for this population. As being able to accurately assign vocalizations to individual whales is fundamental for studying communication and for estimating population densities from call rates, we further examine the feasibility of using high-resolution DTAG accelerometers to identify low-frequency calls produced by tagged blue whales. We crosscorrelated acoustic signals with simultaneous tri-axial accelerometer readings in order to analyse the phase match as well as the amplitude of accelerometer signals associated with low-frequency calls, which provides a quantitative method of determining if a call is associated with a detectable acceleration signal. Our results suggest that vocalizations from nearby individuals are also capable of registering accelerometer signals in the tagged whale's DTAG record. We cross-correlate acceleration vectors between calls to explore the possibility of using signature acceleration patterns associated with sounds produced within the tagged whale as a new method of identifying which accelerometer-detectable calls originate from the tagged animal.
AB - Vocal behavior of blue whales (Balaenoptera musculus) in the Gulf of Corcovado, Chile, was analysed using both audio and accelerometer data from digital acoustic recording tags (DTAGs). Over the course of three austral summers (2014, 2015 and 2016), seventeen tags were deployed, yielding 124 h of data. We report the occurrence of Southeast Pacific type 2 (SEP2) calls, which exhibit peak frequencies, durations and timing consistent with previous recordings made using towed and moored hydrophones. We also describe tonal downswept (D) calls, which have not been previously described for this population. As being able to accurately assign vocalizations to individual whales is fundamental for studying communication and for estimating population densities from call rates, we further examine the feasibility of using high-resolution DTAG accelerometers to identify low-frequency calls produced by tagged blue whales. We crosscorrelated acoustic signals with simultaneous tri-axial accelerometer readings in order to analyse the phase match as well as the amplitude of accelerometer signals associated with low-frequency calls, which provides a quantitative method of determining if a call is associated with a detectable acceleration signal. Our results suggest that vocalizations from nearby individuals are also capable of registering accelerometer signals in the tagged whale's DTAG record. We cross-correlate acceleration vectors between calls to explore the possibility of using signature acceleration patterns associated with sounds produced within the tagged whale as a new method of identifying which accelerometer-detectable calls originate from the tagged animal.
KW - Acoustic behavior
KW - Balaenoptera musculus
KW - Cross-correlation
KW - D call
KW - Downsweep call
KW - DTAG
UR - http://www.scopus.com/inward/record.url?scp=85034079342&partnerID=8YFLogxK
U2 - 10.1242/jeb.151498
DO - 10.1242/jeb.151498
M3 - Article
C2 - 28883086
AN - SCOPUS:85034079342
SN - 0022-0949
VL - 220
SP - 4119
EP - 4129
JO - Journal of Experimental Biology
JF - Journal of Experimental Biology
IS - 22
ER -