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Non-stationarity in the co-occurrence patterns of species across environmental gradients
Avi Bar-Massada
, Jonathan Belmaker
Department of Biology and Environment (Oranim Campus)
Research output
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Contribution to journal
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Article
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peer-review
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Keyphrases
Environmental Gradients
100%
Co-occurrence Patterns
100%
Non-stationarity
100%
Biotic Interactions
42%
Focal Species
42%
Tree Species
42%
Species Coexistence
42%
Environmental Range
42%
Environmental Conditions
28%
Model Simulation
28%
Environmental Response
28%
Non-focal
28%
Joint Species Distribution Model
28%
Range Centre
28%
Range Margin
28%
Habitat Suitability
14%
Confounding Factors
14%
Relative Abundance
14%
Full Agreement
14%
Predictive Ability
14%
Antagonistic Interactions
14%
Community Assembly
14%
Potential Signal
14%
Biological Interactions
14%
Strong Dependence
14%
Null Model
14%
Species Segregation
14%
Co-occurrence Analysis
14%
Metacommunity Model
14%
Range Periphery
14%
Species Aggregation
14%
Conterminous US
14%
Earth and Planetary Sciences
Environmental Gradient
100%
Nonstationarity
100%
Environmental Niche Modeling
66%
Environmental Response
66%
Empirical Analysis
33%