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Rapid literature mapping on the recent use of machine learning for wildlife imagery

Authors :
Nakagawa, Shinichi
Lagisz, Malgorzata
Francis, Roxane
Tam, Jessica
Li, Xun
Elphinstone, Andrew
Jordan, Neil R.
O'Brien, Justine K.
Pitcher, Benjamin J.
Van Sluys, Monique
Sowmya, Arcot
Kingsford, Richard T.
Source :
Peer Community Journal, Vol 3, Iss , Pp - (2023)
Publication Year :
2023
Publisher :
Peer Community In, 2023.

Abstract

Machine (especially deep) learning algorithms are changing the way wildlife imagery is processed. They dramatically speed up the time to detect, count, and classify animals and their behaviours. Yet, we currently have very few systematic literature surveys on its use in wildlife imagery. Through a literature survey (a ‘rapid’ review) and bibliometric mapping, we explored its use across: 1) species (vertebrates), 2) image types (e.g., camera traps, or drones), 3) study locations, 4) alternative machine learning algorithms, 5) outcomes (e.g., recognition, classification, or tracking), 6) reporting quality and openness, 7) author affiliation, and 8) publication journal types. We found that an increasing number of studies used convolutional neural networks (i.e., deep learning). Typically, studies have focused on large charismatic or iconic mammalian species. An increasing number of studies have been published in ecology-specific journals indicating the uptake of deep learning to transform the detection, classification and tracking of wildlife. Sharing of code was limited, with only 20% of studies providing links to analysis code. Much of the published research and focus on animals came from India, China, Australia, or the USA. There were relatively few collaborations across countries. Given the power of machine learning, we recommend increasing collaboration and sharing approaches to utilise increasing amounts of wildlife imagery more rapidly and transform and improve understanding of wildlife behaviour and conservation. Our survey, augmented with bibliometric analyses, provides valuable signposts for future studies to resolve and address shortcomings, gaps, and biases.

Subjects

Subjects :
Archaeology
CC1-960
Science

Details

Language :
English
ISSN :
28043871
Volume :
3
Issue :
-
Database :
Directory of Open Access Journals
Journal :
Peer Community Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.1c5dd4783c0343f5978caabeb55ffcee
Document Type :
article
Full Text :
https://doi.org/10.24072/pcjournal.261