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Long-term passive acoustic recordings track the changing distribution of North Atlantic right whales (Eubalaena glacialis) from 2004 to 2014
Authors
AD Whitt
AJ Pershing
+49 more
AN Rice
AR Knowlton
ASM Vanderlaan
CG Fox
CW Clark
CW Clark
D Risch
DJ Rugh
DK Mellinger
DK Mellinger
DP Costa
DP Salisbury
GC Hays
H Bailey
HE Winn
I Opzeeland Van
IR Urazghildiiev
J Bort
JJ Roberts
JL Morano
JM Hoop van der
K Thomisch
K-O Jacobsen
KA Mullen
KB Hodge
KE Hunt
LY Rizzo
MA Silva
MF Baumgartner
MF Baumgartner
MH Laurinolli
MR Brown
MS Soldevilla
PJ Clapham
PJ Corkeron
PO Thomas
PT Stevick
R Gambell
RC Connor
RR Reeves
S Parks
SD Kraus
SE Mussoline
SE Parks
SM Parijs Van
SM Parijs Van
TA Branch
TVN Cole
Y Benjamini
Publication date
1 October 2017
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Scientific Reports 7 (2017): 13460, doi:10.1038/s41598-017-13359-3.Given new distribution patterns of the endangered North Atlantic right whale (NARW; Eubalaena glacialis) population in recent years, an improved understanding of spatio-temporal movements are imperative for the conservation of this species. While so far visual data have provided most information on NARW movements, passive acoustic monitoring (PAM) was used in this study in order to better capture year-round NARW presence. This project used PAM data from 2004 to 2014 collected by 19 organizations throughout the western North Atlantic Ocean. Overall, data from 324 recorders (35,600 days) were processed and analyzed using a classification and detection system. Results highlight almost year-round habitat use of the western North Atlantic Ocean, with a decrease in detections in waters off Cape Hatteras, North Carolina in summer and fall. Data collected post 2010 showed an increased NARW presence in the mid-Atlantic region and a simultaneous decrease in the northern Gulf of Maine. In addition, NARWs were widely distributed across most regions throughout winter months. This study demonstrates that a large-scale analysis of PAM data provides significant value to understanding and tracking shifts in large whale movements over long time scales.This research was funded and supported by many organizations, specified by projects as follows: Data recordings from region 1 were provided by K. Stafford and this research effort was funded by the National Science Foundation #NSF-ARC 0532611. Region 2 data were provided by D. K. Mellinger and S. Nieukirk, funded by National Oceanic and Atmospheric Agency (NOAA) and the Office of Naval Research (ONR) #N00014–03–1–0099, NOAA #NA06OAR4600100, US Navy #N00244-08-1-0029, N00244-09-1-0079, and N00244-10-1-0047
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