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Extending isolation by resistance to predict genetic connectivity
Robert J. Fletcher
, Jorge A. Sefair
, Nicholas Kortessis
, Roldolfo Jaffe
, Robert D. Holt
, Ellen P. Robertson
, Sarah I. Duncan
, Andrew J. Marx
, James D. Austin
Research output
:
Contribution to journal
›
Article
›
peer-review
9
Scopus citations
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Keyphrases
Genetic Connectivity
100%
Spatial Absorbing Markov Chains
100%
Isolation by Resistance
100%
Landscape Genetics
50%
Circuit Theory
50%
Gene Flow
25%
Complex Landscape
25%
Directional Migration
25%
Endangered Species
12%
Genomic Data
12%
Ecological Setting
12%
Population Genetics Theory
12%
Population Structure
12%
Panama City
12%
Evolutionary Theory
12%
Evolutionary Landscape
12%
Common Processes
12%
Environmental Gradients
12%
Landscape Gradient
12%
Crayfish
12%
Resistance Modeling
12%
Connectivity Modeling
12%
Procambarus
12%
Landscape Resistance
12%
Least Cost Path Analysis
12%
Immunology and Microbiology
Gene Flow
100%
Population Structure
50%
Procambarus
50%
Evolution
50%
Biochemistry, Genetics and Molecular Biology
Genetics
100%
Gene Flow
22%
Population Genetic Theory
11%
Population Structure
11%
Procambarus
11%
Genomics
11%
Evolution
11%
Psychology
Markov Chain
100%
Evolutionary Theory
12%
Neuroscience
Population Genetics
100%