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7,081 results for “Habitats”
Fig. 4 in Impacto de um desastre natural sobre o habitat e a ocorrência de Lontra longicaudis (Mustelidae, Carnivora) na Serra da Prata, Paraná, Brasil
Fig. 4. Imagem de satélite dos rios estudados entre agosto de 2012 e julho de 2013, Parque Nacional de Saint-Hilaire/Lange, Serra da Prata, ParanÁ, Brasil. A, Rio das Pombas (controle); B, Rio Santa Cruz (afetado). Pontos Pretos indicam o intervalo dos 30 trechos de 100 m ao longo dos rios estudados; CÍrculo Pontilhado, sequÊncia de quedas d'Água no Rio das Pombas e barragem de captaçÃo d'agua no Rio Santa Cruz; Triângulos, localizaçÃo das tocas e Quadrados, localizaçÃo dos vestÍgios (pegadas e fezes) das lontras no Rio Santa Cruz (para evitar a excessiva sobreposiçÃo de pontos na imagem do Rio das Pombas foram indicadas apenas as tocas das lontras).
Fig. 3 in Impacto de um desastre natural sobre o habitat e a ocorrência de Lontra longicaudis (Mustelidae, Carnivora) na Serra da Prata, Paraná, Brasil
Fig. 3. Rio Santa Cruz apÓs os deslizamentos de terra, fotografia capturada pela equipe de campo em outubro de 2012, Parque Nacional de Saint-Hilaire/ Lange, Serra da Prata, ParanÁ, Brasil. CÍrculo: localizaçÃo de uma pessoa para noçÃo de escala ~ 1,80 m.
Fig. 2 in Impacto de um desastre natural sobre o habitat e a ocorrência de Lontra longicaudis (Mustelidae, Carnivora) na Serra da Prata, Paraná, Brasil
Fig. 2. Rio Santa Cruz antes dos deslizamentos de terra. Ao fundo vÊ-se a represa de captaçÃo de Água. Fotografia da vistoria realizada pelos analistas ambientais do Parque Nacional de Saint-Hilaire/Lange em abril de 2010, Serra da Prata, ParanÁ, Brasil.
Fig. 1. A in Impacto de um desastre natural sobre o habitat e a ocorrência de Lontra longicaudis (Mustelidae, Carnivora) na Serra da Prata, Paraná, Brasil
Fig. 1. A: localizaçÃo geogrÁfica do Parque Nacional de Saint-Hilaire/Lange (PNSHL). B: contorno branco, limites do PNSHL; retângulo pontilhado: Área afetada pelos deslizamentos de terra em março de 2011 (projetada na imagem C); triângulos: localizaçÃo das Áreas de estudo (Rio Santa Cruz, Área afetada e Rio das Pombas, Área controle). C: imagem de satélite dos deslizamentos de terra no PNSHL (destaques em tonalidade clara); seta: leito do Rio Santa Cruz.
Fig. 1 in Habitat heterogeneity on feeding habit of two sympatric and congeneric characidae fishes in two tropical reservoirs
Fig. 1. NMDS plot showing relation of food item abundance found in the diet of Astyanax aff. bimaculatus Linnaeus, 1758 and A. parahybae Eigenmann, 1908 in Lajes and Santana reservoirs, state of rio de Janeiro, Brazil (Ap, Astyanax parahybae; Ab, Astyanax aff. bimaculatus; Ljs, Lajes; Snt, Santana).
Fig. 7 in Distribution of insect galls in xeric and mesic habitats of Floresta Nacional de Silvânia, Brazil
Fig. 7. Comparison of the estimated insect gall richness (1st order Jackknife estimator) between savanna and forest habitats in the Flona-Silvânia, Goiás, Brazil.
Figs 1-4 in Distribution of insect galls in xeric and mesic habitats of Floresta Nacional de Silvânia, Brazil
Figs 1-4. Location and characterization of the study area: 1, location of the Flona-Silvânia (marked by the star) in the city of Silvânia, State of Goiás, Midwest of BraZil; 2, map of the Flona-Silvânia showing the areas of savanna (clear areas) and forest (dark areas); 3, characteriZation of the xeric habitat composed by typical savanna vegetation; 4, characterization of the mesic habitat composed by gallery forest vegetation.
Fig. 5 in Distribution of insect galls in xeric and mesic habitats of Floresta Nacional de Silvânia, Brazil
Fig. 5. Venn diagrams of the host plant families, host plant species and insect gall morphotypes occurring in the forest and savanna habitats of the Flona-Silvânia, Goiás, Brazil.
Fig. 6 in Distribution of insect galls in xeric and mesic habitats of Floresta Nacional de Silvânia, Brazil
Fig. 6. Sample-based species accumulation curve for insect gall richness observed (continuous lines) and estimated (tracked lines) in the savanna (gray lines) and forest (black lines) habitats of the Flona-Silvânia, Goiás, Brazil.
Fig. 3 in Feeding habits and habitat of herbivorous mammals from the Early-Late Hemphillian (Miocene) of Costa Rica
Fig. 3. Comparative analysis of carbon and oxygen stable isotope values in dental enamel from fossil herbivorous mammals of the San Gerardo de Limoncito locality.
Fig. 1. A in Feeding habits and habitat of herbivorous mammals from the Early-Late Hemphillian (Miocene) of Costa Rica
Fig. 1. A. Geographic location of studied area. B. Geological map of the San Gerardo de Limoncito area, modified from Denyer and Alvarado (2007).
Map B 1 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Map B 1. number of records per UTM 10 x 10 km square in the dataset for the analysis of the phenology.
Map B 1 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Map B 1. Number of records per UTM 10 x 10 km square in the dataset for the analysis of the habitat preferences.
Fig. 43 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 43. Principal component analysis of species according to their relative abundance in the different two-month periods.
Fig. 42 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 42. Graphical representation of the species used in the PCA-ordination according to the species main habitat. Length of the coloured parts of the stacks represent the relative number of records for each species per habitat type.
Fig. 41 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 41. Principal component analysis of species according to their relative abundance in the different main habitat types.
Fig. 20. a in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 20. a, Eluma caelata; b, Cylisticus convexus; c, Porcellio monticola; d, Porcellio scaber; e, Porcellio spinicornis; f, Porcellionides pruinosus; g, Porcellium conspersum; h, Trachelipus rathkii.
Fig. 19. a in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 19. a, Oniscus asellus; b, Philoscia affinis; c, Philoscia muscorum; d, Platyarthrus hoffmannseggii; e, Armadillidium album; f, Armadillidium nasatum; g, Armadillidium opacum; h, Armadillidium pulchellum.
Fig. 16 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 16. Corrected number of observations per two-month period for Trichoniscus provisorius (N = 157).
Fig. 29 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 29. Corrected number of observations per two-month period for Armadillidium pulchellum (N = 54).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.