A statistical explanation of MaxEnt for ecologists
Statistical explanation of MaxEnt
Dados Bibliográficos
| ID | 23375952 |
|---|---|
| Autores | Jane Elith (0000-0002-8706-0326, The University of Melbourne, autor correspondente), Steven J Phillips (AT&T (United States)), Trevor Hastie (0000-0002-0164-3142, Stanford University), Miroslav Dudík, Miroslav Dudı́k (0009-0001-8565-0621, Yahoo (United States)), Yung En Chee (0000-0002-8478-373X, The University of Melbourne), Colin J Yates (0000-0003-2286-8700) |
| Ano | 2011 |
| Volume | 17 |
| Fascículo | 1 |
| Páginas | 43-57 |
| Data de publicação | 2011-01-01 |
| Peer Reviewed | Sim |
| Open Access | Sim |
| Tipo | ARTICLE |
| Periódico | Diversity and Distributions (JOURNAL) |
| Identificadores do periódico | ISSN: 1366-9516 • E-ISSN: 1472-4642 |
| Editora | Wiley (PUBLISHER • GB) |
| DOI | 10.1111/j.1472-4642.2010.00725.x |
| OpenAlex | W1568201516 |
| Idioma | EN |
| Citações recebidas | 135 |
| Referências citadas | 53 |
MaxEnt is a program for modelling species distributions from presence-only species records. This paper is written for ecologists and describes the MaxEnt model from a statistical perspective, making explicit links between the structure of the model, decisions required in producing a modelled distribution, and knowledge about the species and the data that might affect those decisions. To begin we discuss the characteristics of presence-only data, highlighting implications for modelling distributions. We particularly focus on the problems of sample bias and lack of information on species prevalence. The keystone of the paper is a new statistical explanation of MaxEnt which shows that the model minimizes the relative entropy between two probability densities (one estimated from the presence data and one, from the landscape) defined in covariate space. For many users, this viewpoint is likely to be a more accessible way to understand the model than previous ones that rely on machine learning concepts. We then step through a detailed explanation of MaxEnt describing key components (e.g. covariates and features, and definition of the landscape extent), the mechanics of model fitting (e.g. feature selection, constraints and regularization) and outputs. Using case studies for a Banksia species native to south-west Australia and a riverine fish, we fit models and interpret them, exploring why certain choices affect the result and what this means. The fish example illustrates use of the model with vector data for linear river segments rather than raster (gridded) data. Appropriate treatments for survey bias, unprojected data, locally restricted species, and predicting to environments outside the range of the training data are demonstrated, and new capabilities discussed. Online appendices include additional details of the model and the mathematical links between previous explanations and this one, example code and data, and further information on the case studies.
Biology · Geography · Data Analysis with R · Ecology · Species Distribution and Climate Change
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Application of maximum entropy (MaxEnt) to understand the spatial dimension of human-wildlife conflict (HWC) risk in areas adjacent to Gonarezhou National Park of Zimbabwe
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Assessing the importance of topographic variables for the spatial distribution of tree species in a tropical mountain forest
Improving Peary Caribou Presence Predictions in MaxEnt Using Spatialized Snow Simulations
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Mid-Pleistocene and Holocene demographic fluctuation of Scots pine (Pinus sylvestris L.) in the Carpathian Mountains and the Pannonian Basin
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Species distribution modelling of ancient cattle from early Neolithic sites in SW Asia and Europe
Attributing deforestation-driven biodiversity decline in the Gran Chaco to agricultural commodity supply chains
The relative influence of climate and housing development on current and projected future fire patterns and structure loss across three California landscapes
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The role of environmental factors in the spatiotemporal distribution of millet in Late Neolithic to Bronze Ages sites in the Tibetan plateau and surrounding regions
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Distribution parameters of guanaco (Lama guanicoe), pampas deer (Ozotoceros bezoarticus) and marsh deer (Blastocerus dichotomus) in Central Argentina
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Predicting the Current and Future Distribution of the Invasive Weed Ageratina adenophora in the Chitwan–Annapurna Landscape, Nepal
Digital footprints
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Climate mitigation and adaptation potential of an endangered tree across land-use types under climate change
Climate change-induced shifts in the ecological niches of Parkia biglobosa (Jacq.) and Vitellaria paradoxa CF Gaertn, two species of agroforestry parks in Benin, West Africa
Geospatial modelling of Agro-climatic suitability for Coffea arabica under CMIP6 scenarios in the Western Highlands of Ethiopia
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Impacts of climate change on the distribution of Sichuan snub‐nosed monkeys ( Rhinopithecus roxellana ) in Shennongjia area, China
Differences between ecological niches in northern and southern populations of Angolan black and white colobus monkeys ( Colobus angolensis palliatus and Colobus angolensis sharpei ) throughout Kenya and Tanzania
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Novel methods improve prediction of species’ distributions from occurrence data
Original Article
Species Distribution Models
Maximum entropy modeling of species geographic distributions
Modeling of species distributions with Maxent
Sample selection bias and presence‐only distribution models
A new look at the statistical model identification
Regression Shrinkage and Selection Via the Lasso
| Obras citantes distintas | 135 |
|---|---|
| Citações por ano | 9 |
| Intervalo de citações | 2011 - 2026 (16) |
| Velocidade de citação | current |
| Altamente citado | Sim |
| Tipos de citação | Neutras: 115 |