Subject: New publication: critical review of inferring foraging from location and dive data in pinnipeds (Matt Carter, Plymouth University)
Dear MARMAM colleagues,
On behalf of my co-authors I am pleased to share the publication of the following review article on inferring foraging from location and dive data in pinnipeds.
Navigating uncertain waters: a critical
review of inferring foraging behaviour from location and dive data in pinnipeds (2016) Carter, MID; Bennett,
KA; Embling, CB; Hosegood, PJ; Russell, DJF. Movement Ecology 4 (25). DOI: 10.1186/s40462-016-0090-9
ABSTRACT:
In the last thirty years, the emergence and progression of biologging technology has led to great advances in marine predator ecology. Large databases of location and dive observations from biologging devices have been compiled for an increasing number of diving
predator species (such as pinnipeds, sea turtles, seabirds and cetaceans), enabling complex questions about animal activity budgets and habitat use to be addressed. Central to answering these questions is our ability to correctly identify and quantify the
frequency of essential behaviours, such as foraging. Despite technological advances that have increased the quality and resolution of location and dive data, accurately interpreting behaviour from such data remains a challenge, and analytical methods are only
beginning to unlock the full potential of existing datasets. This review evaluates both traditional and emerging methods and presents a starting platform of options for future studies of marine predator foraging ecology, particularly from location and two-dimensional
(time-depth) dive data. We outline the different devices and data types available, discuss the limitations and advantages of commonly-used analytical techniques, and highlight key areas for future research. We focus our review on pinnipeds - one of the most
studied taxa of marine predators - but offer insights that will be applicable to other air-breathing marine predator tracking studies. We highlight that traditionally-used methods for inferring foraging from location and dive data, such as first-passage time
and dive shape analysis, have important caveats and limitations depending on the nature of the data and the research question. We suggest that more holistic statistical techniques, such as state-space models, which can synthesise multiple track, dive and environmental
metrics whilst simultaneously accounting for measurement error, offer more robust alternatives. Finally, we identify a need for more research to elucidate the role of physical oceanography, device effects, study animal selection, and developmental stages in
predator behaviour and data interpretation.
The article is full open access and available for download at the following link:
http://rdcu.be/lZ08
Please don’t hesitate to contact me directly for any queries.
Best wishes,
Matt Carter
PhD Student
Marine Biology and Ecology Research Centre
School of Marine Science and Engineering
Plymouth University
https://www.researchgate.net/profile/Matt_Carter2
