Dear colleagues,
My co-authors and I are pleased to share our recent paper published in Remote Sensing in Ecology and Conservation:
Brown AM, Allen SJ, Kelly N & Hodgson AJ. 2022. Using unoccupied aerial vehicles to estimate availability and group size error for aerial surveys of coastal dolphins. Remote Sens Ecol Conserv. doi:
10.1002/rse2.313
The paper describes a cost-effective approach to collecting availability data using multi-rotor drones launched from a small vessel. Additionally, the study explored the influence of sample size
on availability estimates and their precision, the results of which can inform target sample sizes to minimize bias in future research.
The pdf and supporting information are available (open access) here:
https://doi.org/10.1002/rse2.313
The accompanying data and code are available here:
https://doi.org/10.5061/dryad.qbzkh18mq
Abstract:
Aerial surveys are frequently used to estimate the abundance of marine mammals, but their accuracy is dependent upon obtaining a measure of the availability of animals to visual detection. Existing
methods for characterizing availability have limitations and do not necessarily reflect true availability. Here, we present a method of using small, vessel-launched, multi-rotor Unoccupied Aerial Vehicles (UAVs, or drones) to collect video of dolphins to characterize
availability and investigate error surrounding group size estimates. We collected over 20 h of aerial video of dive-surfacing behaviour across 32 encounters with Australian humpback dolphins (Sousa sahulensis) off north-western Australia. Mean surfacing and
dive periods were 7.85 sec (SE = 0.26) and 39.27 sec (SE = 1.31) respectively. Dolphin encounters were split into 56 focal follows of consistent group composition to which example approaches to estimating availability were applied. Non-instantaneous availability
estimates, assuming a 7 sec observation window, ranged between 0.22 and 0.88, with a mean availability of 0.46 (CV = 0.34). Availability tended to increase with increasing group size. We found a downward bias in group size estimation, with true group size
typically one individual more than would have been estimated by a human observer during a standard aerial survey. The variability of availability estimates between focal follows highlights the importance of sampling across a variety of group sizes, compositions
and environmental conditions. Through data re-sampling exercises, we explored the influence of sample size on availability estimates and their precision, with results providing an indication of target sample sizes to minimize bias in future research. We show
that UAVs can provide an effective and relatively inexpensive method of characterizing dolphin availability with several advantages over existing approaches. The example estimates obtained for humpback dolphins are within the range of values obtained for other
shallow-water, small cetaceans, and will directly inform a government-run program of aerial surveys in the region.
Best wishes,
Dr Alex Brown (he/him)
SMRU Consulting, Scottish Oceans Institute, East Sands, St Andrews, Fife, KY16 8LB, UK | Main Office: +44-1334-466010