Effect of Landscape Structure on Species Diversity
Publication Date
June 19, 2013
Journal
PLOS ONE
Authors
Paulo R. A. Campos, Alexandre Rosas, Viviane M. De Oliveira & Marcelo A. F. Gomes
Volume
8
Issue
6
Pages
e66495
DOI
https://dx.plos.org/10.1371/journal.pone.0066495
Publisher URL
http://journals.plos.org/plosone/article?id=10.1371%2Fjournal.pone.0066495
PubMed
http://www.ncbi.nlm.nih.gov/pubmed/23840490
PubMed Central
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3686687
Europe PMC
http://europepmc.org/abstract/MED/23840490
Web of Science
000322361200087
Scopus
84879198893
Mendeley
http://www.mendeley.com/research/effect-landscape-structure-species-diversity-1
Events
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Mendeley | Further Information

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Scopus | Further Information

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Figshare

  • {"files"=>["https://ndownloader.figshare.com/files/1093831"], "description"=>"<p>Number of species is plotted against area for and speciation rate . The symbols denote diferrent set of parameter values : and (circles), and (triangles up), and (diamonds), and (left triangles). The line is the theoretical prediction for the species-area curve if dispersal is not limited as given by Eq. (5). The data points represent an average over independent runs. The error bars correspond to one standard error.</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics", "curves", "dispersal"], "article_id"=>725805, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.g007", "stats"=>{"downloads"=>0, "page_views"=>5, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Species_area_curves_for_different_values_of_dispersal_parameter_/725805", "title"=>"Species-area curves for different values of dispersal parameter.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-06-19 01:36:45"}
  • {"files"=>["https://ndownloader.figshare.com/files/1093830"], "description"=>"<p>Number of species is plotted against area for and dispersal parameter and distinct values of the clumping parameter : (open circles), (open diamonds) and (filled triangles). Left panel: , middle panel: and left panel: . The data points represent an average over independent runs. The error bars correspond to one standard error.</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics", "dispersal", "species-area"], "article_id"=>725804, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.g006", "stats"=>{"downloads"=>1, "page_views"=>10, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Effect_of_dispersal_on_the_species_area_relationship_/725804", "title"=>"Effect of dispersal on the species-area relationship.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-06-19 01:36:44"}
  • {"files"=>["https://ndownloader.figshare.com/files/1093827"], "description"=>"<p>Upper panels: the parameter values are , (left set of panels) and (right set of panels). Lower panels: the parameter values are , (left set of panels) and (right set of panels). The Hurst exponents are indicated in the figures.</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics", "abundance"], "article_id"=>725801, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.g004", "stats"=>{"downloads"=>1, "page_views"=>4, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Species_abundance_distributions_/725801", "title"=>"Species abundance distributions.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-06-19 01:36:41"}
  • {"files"=>["https://ndownloader.figshare.com/files/1093825"], "description"=>"<p>The parameter values are lattice size , speciation rate , and Hurst exponents (left panel) and (right panel). The occupation probabilities are (circles), (triangles) and (diamonds). The data points represent an average over independent runs. The error bars are smaller than the symbols.</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics", "biodiversity"], "article_id"=>725799, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.g003", "stats"=>{"downloads"=>0, "page_views"=>6, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Change_of_the_biodiversity_levels_with_the_occupation_probability_/725799", "title"=>"Change of the biodiversity levels with the occupation probability.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-06-19 01:36:39"}
  • {"files"=>["https://ndownloader.figshare.com/files/1093820"], "description"=>"<p>Species-area relationships for different values of the Hurst exponent and fixed fraction of suitable habitats . The parameter values are ; Hurst exponent: (circles), (diamonds), (triangles up), (triangles left) and (stars); and speciation rate: (left panel) and (right panel). The data points represent an average over independent runs. The error bars are smaller than the symbols.</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics", "biodiversity"], "article_id"=>725794, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.g002", "stats"=>{"downloads"=>0, "page_views"=>4, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Effect_of_on_biodiversity_levels_/725794", "title"=>"Effect of on biodiversity levels.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-06-19 01:36:34"}
  • {"files"=>["https://ndownloader.figshare.com/files/1093832"], "description"=>"<p>The fractal dimension of the distribution of the first (second) commonest species.</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics"], "article_id"=>725806, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.t001", "stats"=>{"downloads"=>0, "page_views"=>5, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Fractal_species_distribution_/725806", "title"=>"Fractal species distribution.", "pos_in_sequence"=>0, "defined_type"=>3, "published_date"=>"2013-06-19 01:36:46"}
  • {"files"=>["https://ndownloader.figshare.com/files/1093811"], "description"=>"<p>In the left panels the Hurst exponent is set at , while for the middle and right panels its value is set at and respectively. In the upper panels the sites in a grid are are color-coded according to an elevation scale , with scale identifier shown along the right side bar. To each site in the grid corresponds a height, as provided by the fractional Brownian motion (fBm) algorithm. The lower panels are obtained from their corresponding configurations in the upper panels by fixing the fraction of suitable habitats at .</p>", "links"=>[], "tags"=>["Computational biology", "Ecosystem modeling", "ecology", "Ecological metrics", "Relative abundance distribution", "biogeography", "ecosystems", "Population ecology", "Spatial and landscape ecology", "theoretical ecology", "Evolutionary biology", "Evolutionary ecology", "geography", "Interdisciplinary physics", "fragmented", "landscapes", "varying", "spatial"], "article_id"=>725785, "categories"=>["Physics", "Biological Sciences", "Earth and Environmental Sciences"], "users"=>["Paulo R. A. Campos", "Alexandre Rosas", "Viviane M. de Oliveira", "Marcelo A. F. Gomes"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0066495.g001", "stats"=>{"downloads"=>0, "page_views"=>6, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Instances_of_fragmented_landscapes_with_varying_degree_of_spatial_autocorrelation_/725785", "title"=>"Instances of fragmented landscapes with varying degree of spatial autocorrelation.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-06-19 01:36:25"}
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