Assessing trends in population size of three unmarked species: A comparison of a multi-species N-mixture model and random encounter models

被引:1
作者
Bollen, Martijn [1 ,2 ,3 ,7 ]
Palencia, Pablo [4 ,5 ]
Vicente, Joaquin [4 ]
Acevedo, Pelayo [4 ]
Del Rio, Lucia [4 ]
Neyens, Thomas [2 ,6 ]
Beenaerts, Natalie [1 ]
Casaer, Jim [3 ]
机构
[1] UHasselt Hasselt Univ, Ctr Environm Sci, Diepenbeek, Belgium
[2] UHasselt Hasselt Univ, Data Sci Inst, Fac Sci, Diepenbeek, Belgium
[3] Res Inst Nat & Forest, Brussels, Belgium
[4] CSIC UCLM JCCM, Inst Invest Recursos Cineget IREC, Ciudad Real, Spain
[5] Univ Torino, Dipartamiento Sci Veterinarie, Turin, Italy
[6] Katholieke Univ Leuven, Leuven Biostat & Stat Bioinformat Ctr, Leuven, Belgium
[7] UHasselt Hasselt Univ, Ctr Environm Sci, Agoralaan,Bldg D, Diepenbeek, Belgium
来源
ECOLOGY AND EVOLUTION | 2023年 / 13卷 / 10期
基金
比利时弗兰德研究基金会;
关键词
abundance; camera trapping; N-mixture model; population trends; random encounter model; unmarked; ESTIMATING ANIMAL DENSITY; ESTIMATING ABUNDANCE; CAMERA TRAPS; DISTANCE; BIAS;
D O I
10.1002/ece3.10595
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Estimation of changes in abundances and densities is essential for the research, management, and conservation of animal populations. Recently, technological advances have facilitated the surveillance of animal populations through the adoption of passive sensors, such as camera traps (CT). Several methods, including the random encounter model (REM), have been developed for estimating densities of unmarked populations but require additional information. Hierarchical abundance models, such as the N-mixture model (NMM), can estimate abundances without performing additional fieldwork but do not explicitly estimate the area effectively sampled. This obscures the interpretation of its densities and requires its users to focus on relative measures of abundance instead. Hence, the main objective of our study is to evaluate if REM and NMM yield consistent results qualitatively. Therefore, we compare relative trends: (i) between species, (ii) between years and (iii) across years obtained from annual density/abundance estimates of three species (fox, wild boar and red deer) in central Spain monitored by a camera trapping network for five consecutive winter periods. We reveal that NMM and REM provided density estimates in the same order of magnitude for wild boar, but not for foxes and red deer. Assuming a Poisson detection process in the NMM was important to control for inflation of abundance estimates for frequently detected species. Both methods consistently ranked density/abundance across species (between species trend), but did not always agree on relative ranks of yearly estimates within a single population (between years trend), nor on its linear population trends across years (across years trend). Our results suggest that relative trends are generally consistent when the range of variability is large, but can become inconsistent when the range of variability is smaller.
引用
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页数:19
相关论文
共 54 条
[31]   Indicators of ecological change: new tools for managing populations of large herbivores [J].
Morellet, Nicolas ;
Gaillard, Jean-Michel ;
Hewison, A. J. Mark ;
Ballon, Philippe ;
Boscardin, Yves ;
Duncan, Patrick ;
Klein, Francois ;
Maillard, Daniel .
JOURNAL OF APPLIED ECOLOGY, 2007, 44 (03) :634-643
[32]   Estimating animal density without individual recognition using information derivable exclusively from camera traps [J].
Nakashima, Yoshihiro ;
Fukasawa, Keita ;
Samejima, Hiromitsu .
JOURNAL OF APPLIED ECOLOGY, 2018, 55 (02) :735-744
[33]   Prior specification in Bayesian occupancy modelling improves analysis of species occurrence data [J].
Outhwaite, Charlotte L. ;
Chandler, Richard E. ;
Powney, Gary D. ;
Collen, Ben ;
Gregory, Richard D. ;
Isaac, Nick J. B. .
ECOLOGICAL INDICATORS, 2018, 93 :333-343
[34]   Assessing the camera trap methodologies used to estimate density of unmarked populations [J].
Palencia, Pablo ;
Rowcliffe, J. Marcus ;
Vicente, Joaquin ;
Acevedo, Pelayo .
JOURNAL OF APPLIED ECOLOGY, 2021, 58 (08) :1583-1592
[35]   Innovations in movement and behavioural ecology from camera traps: Day range as model parameter [J].
Palencia, Pablo ;
Fernandez-Lopez, Javier ;
Vicente, Joaquin ;
Acevedo, Pelayo .
METHODS IN ECOLOGY AND EVOLUTION, 2021, 12 (07) :1201-1212
[36]   Optimising monitoring for trend detection after 16 years of woodland-bird surveys [J].
Prowse, Thomas A. A. ;
O'Connor, Patrick J. ;
Collard, Stuart J. ;
Peters, Kristian J. ;
Possingham, Hugh P. .
JOURNAL OF APPLIED ECOLOGY, 2021, 58 (05) :1090-1100
[37]  
RiutortMayol G., 2020, Practical Hilbert space approximate Bayesian Gaussian processes for probabilistic programming
[38]   Estimating animal density using camera traps without the need for individual recognition [J].
Rowcliffe, J. Marcus ;
Field, Juliet ;
Turvey, Samuel T. ;
Carbone, Chris .
JOURNAL OF APPLIED ECOLOGY, 2008, 45 (04) :1228-1236
[39]   Wildlife speed cameras: measuring animal travel speed and day range using camera traps [J].
Rowcliffe, J. Marcus ;
Jansen, Patrick A. ;
Kays, Roland ;
Kranstauber, Bart ;
Carbone, Chris .
REMOTE SENSING IN ECOLOGY AND CONSERVATION, 2016, 2 (02) :84-94
[40]   Bias in estimating animal travel distance: the effect of sampling frequency [J].
Rowcliffe, J. Marcus ;
Carbone, Chris ;
Kays, Roland ;
Kranstauber, Bart ;
Jansen, Patrick A. .
METHODS IN ECOLOGY AND EVOLUTION, 2012, 3 (04) :653-662