An assessment of integrated population models: bias, accuracy, and violation of the assumption of independence.
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Summary
Simulation methods are used to assess how the violation of the assumption of independence affects the statistical properties of the parameter estimators and observe an overall gain in precision and accuracy when all three data sets were analyzed simultaneously.
- Type
- article
- Published
- 2010-01-01
- Cited by
- 205
- References
- 24
- Access
- Open access
- OpenAlex
- https://openalex.org/W1964941349
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41787037
Keywords
Independence (probability theory), Estimator, Population, Econometrics, Sample size determination
References
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- Matrix population models : construction, analysis, and interpretation
- WinBUGS - A Bayesian modelling framework: Concepts, structure, and extensibility
- A Bayesian integrated population dynamics model to analyze data for protected species
- The efficient integration of abundance and demographic data
- Estimating Animal Abundance: Review III
- Population growth in snow geese: a modeling approach integrating demographic and survey information.
- A UNIFIED FRAMEWORK FOR MODELLING WILDLIFE POPULATION DYNAMICS †
- Modeling Survival and Testing Biological Hypotheses Using Marked Animals: A Unified Approach with Case Studies
- THE POTENTIAL OF INTEGRATED POPULATION MODELLING †
- Integrating Mark–Recapture–Recovery and Census Data to Estimate Animal Abundance and Demographic Parameters
- State-space models for the dynamics of wild animal populations
- General methods for monitoring convergence of iterative simulations
- R2WinBUGS: A Package for Running WinBUGS from R
- Use of Integrated Modeling to Enhance Estimates of Population Dynamics Obtained from Limited Data
- FITTING POPULATION MODELS INCORPORATING PROCESS NOISE AND OBSERVATION ERROR
- UNDERSTANDING AND PREDICTING THE EFFECTS OF SPARSE DATA ON DEMOGRAPHIC ANALYSES
- Embedding Population Dynamics Models in Inference
- Markov Chain Monte Carlo in Practice
- Managing threatened species: the ecological toolbox, evolutionary theory and declining-population paradigm
Cited by
- Demographic Consequences of Poison-Related Mortality in a Threatened Bird of Prey
- Disease and demography in the Woodchester Park badger population
- The demography of the Greenland white-fronted goose
- Insights into processes of population decline using an integrated population model: The case of the St. Lawrence Estuary beluga (Delphinapterus leucas)
- Estimating golden‐cheeked warbler immigration: implications for the spatial scale of conservation
- Mixture of inhomogeneous matrix models for species‐rich ecosystems
- Demographics of reintroduced populations: Estimation, modeling, and decision analysis
- Combining information in hierarchical models improves inferences in population ecology and demographic population analyses
- Comparative demographics of a Hawaiian forest bird community
- The metabolic costs of gardening tasks in children.
- Studying the demographic drivers of an increasing Imperial Eagle population to inform conservation management
- Estimation of immigration rate using integrated population models
- Nestboxes and immigration drive the growth of an urban Peregrine Falcon Falco peregrinus population
- An integrated population model for a long-lived ungulate: more efficient data use with Bayesian methods
- Experimental island invasion of house mice
- Are the numbers adding up? Exploiting discrepancies among complementary population models
- Using integrated population modelling to quantify the implications of multiple threatening processes for a rapidly declining population
- Massive immigration balances high anthropogenic mortality in a stable eagle owl population: Lessons for conservation
- Integrating demographic data: towards a framework for monitoring wildlife populations at large spatial scales
- Goodness‐of‐fit of integrated population models using calibrated simulation
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