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7,081 results for “Habitats”
Figure 1 in Specialist and generalist species in habitat use: implications for conservation assessment in snakes
Figure 1. Relationship between the diversity scores in habitat use and the number of citations (log transformed) for each snake species in the study area. Each point is one snake species: Ca, Coronella austriaca, Cg, Coronella girondica, Hh, Hemorrhois hippocrepis, Mb, Macroprotodon brevis, Mm, Malpolon monspessulanus, Nn, Natrix natrix, Rh, Rhinechis scalaris, Vl, Vipera latastei.
Figure 2 in Specialist and generalist species in habitat use: implications for conservation assessment in snakes
Figure 2. Principal components plot for different snake species. The percentage of the variance explained by the two main factors is indicated on the axes. Three separate groups of species are indicated. Ca, Coronella austriaca, Cg, Coronella girondica, Hh, Hemorrhois hippocrepis, Mb, Macroprotodon brevis, Mm, Malpolon monspessulanus, Nn, Natrix natrix, Rs, Rhinechis scalaris, Vl, Vipera latastei.
Figure 2 in Comparisons of the alpine bird communities across habitats and between autumn and winter in the mid- Yalong Zangbo River valley, Tibet
Figure 2. Dominance–diversity curves of bird assemblages in different alpine habitats in a valley near Lhasa, Tibet.
Figure 1 in Comparisons of the alpine bird communities across habitats and between autumn and winter in the mid- Yalong Zangbo River valley, Tibet
Figure 1. The map shows the vegetation patterns of the study site, and its location and landscape type at a larger geographical scale.
Figure 3 in Comparisons of the alpine bird communities across habitats and between autumn and winter in the mid- Yalong Zangbo River valley, Tibet
Figure 3. Seasonal change of relative abundances of several selected species in alpine habitats (pooled data) in a valley near Lhasa, Tibet.
Patterns and variation of littoral habitat size among lakes
<p>This archive entry contains the R code needed to replicate the statistical analyses in the manuscript "Patterns and variation of littoral habitat size among lakes." The entry also contains the original data used in this study as a CSV file (global_LA.csv).</p> <p> </p>
Fig. 2a-f in Wild bees (Anthophila) of Porto Santo (Madeira Archipelago) and their habitats: species diversity, distribution patterns and bee-plant network *
Fig. 2a-f: a) Andrena dourada, female; b) Andrena portosanctana, female collecting pollen on Cakile maritima; c) Lasioglossum wollastoni, female in front of nesting site; d) Osmia latreillei iberoafricana, male visiting Cakile maritima; e) Amegilla quadrifasciata maderae, female collecting pollen on Echium portosanctensis, f) Bombus terrestris lusitanicus, worker, collecting pollen on Echium portosanctensis. Photos: A. Kratochwil (a, b, e), A. Schwabe (c, d, f).
Fig. 1 in Wild bees (Anthophila) of Porto Santo (Madeira Archipelago) and their habitats: species diversity, distribution patterns and bee-plant network *
Fig. 1: Aspects from some of our sampling sites and their surroundings in March after an extreme dry winter and a wet winter: Left: March 2012 (November 2011–March 2012, no precipitation); right: March 2017 (October 2016–March 2017, 301 mm precipitation); a, b: sand beach with Vila Baleira in the centre; c, d: Pico Juliana and mainly fallow land; e, f: southern-exposed extensively grazed dry grassland; view from Capela da Graça (in the background right: Pico do Facho with Pinus plantations). Photos: A. Schwabe.
Fig. 3 a-h in Ecological characterization of habitats colonized by the freshwater gastropod Viviparus contectus (MILLET, 1813) (Gastropoda, Prosobranchia) - Theoretical and experimental data
Fig. 3 a-h: Logistic regression models of the single environmental variables for the presentation of eventual habitat preferences of V. contectus. For a validation of the models experimental data from diverse field studies were used (e.g., PATZNER & ISARCH 1999, STURM 2000a).
Fig. 1 in Ecological characterization of habitats colonized by the freshwater gastropod Viviparus contectus (MILLET, 1813) (Gastropoda, Prosobranchia) - Theoretical and experimental data
Fig. 1: Stereoscopic photographs showing the front and back of the shell of V. contectus with its typical shape and mouth geometry. The height of the shells measures about 4.5 cm.
Fig. 2 a-h in Ecological characterization of habitats colonized by the freshwater gastropod Viviparus contectus (MILLET, 1813) (Gastropoda, Prosobranchia) - Theoretical and experimental data
Fig. 2 a-h: Box-plots for the statistical evaluation of single environmental variables under incorporation of all malacological data available in the scientific literature and those data with occurrence of V. contectus, respectively. The black boxes range from the first to the third quartile, whereas the ends of the lines mark the minimum and the maximum of the data. The white line indicates the position of the median.
Figs. 27–32. Habitats. 27–28 in New species of the Hydroporus longulus-group from Iran, Armenia and Turkey with a synopsis of the group (Coleoptera: Dytiscidae)
Figs. 27–32. Habitats. 27–28 – Hydroporus jelineki sp. nov. (Ilka, locality {1}, photos by J. Hájek); 29–30 – H. hajeki sp. nov. (Qutur, locality {7}, photos by J. Hájek); 31–32 – H. constantini Hernando & Fresneda, 1996 (Spain, province Santander, Pico Tres Mares, photos by H. Fery).
Figs 83–86. Habitats and adults. 83 in Revision of the genusCaledonica (Coleoptera: Cicindelidae)
Figs 83–86. Habitats and adults. 83 – Province Sud, Sarramea, Plato de Dogny, a path through forest with saplings of Coffea arabica, a biotope of Caledonica mniszechii (Thomson, 1856) and C. bavayi Fauvel, 1882; 84 – Province Sud, Mt. Koghis, a biotope of C. mniszechii, C. acentra Chaudoir, 1869, C. rivalieri Deuve, 1981 and C. bavayi; 85 – a mating pair of C. mniszechii, Plato de Dogny; 86 – C. luiggiorum sp. nov. on the trunk of young Acacia spirorbis tree in a garden, Province Nord.
Figs. 15–22. Socotran endemic Georissus species and their habitats. 15–16 – G in The Hydrophiloid beetles of Socotra Island (Coleoptera: Georissidae, Hydrophilidae)
Figs. 15–22. Socotran endemic Georissus species and their habitats. 15–16 – G. maritimus sp. nov. (15 – dorsal view; 16 – lateral view). 17–18 – G. nemo sp. nov. (17 – dorsal view; 18 – lateral view). 19–20 – the sand tongue 3 km NE of Shuab, type locality of G. maritimus sp. nov. (19 – general view of the habitat; 20 – satellite view showing the position of the locality); 21–22 – the stream at Arhar, type locality of G. nemo sp. nov. (21 – general view of the habitat; 22 – satellite view showing the position of the locality).
Fig. 6 in Activity pattern and resource use of two Callosciurus species in different habitats in northeastern Thailand
Fig. 6. Proportion of food items consumed by (a) Callosciurus finlaysonii (n = 143) and (b) C. caniceps (n = 35).
Fig. 2 in Activity pattern and resource use of two Callosciurus species in different habitats in northeastern Thailand
Fig. 2. Frequencies of detection of active (a) Callosciurus finlaysonii and (b) C. caniceps in each survey time. Data are displayed as mean ± SD. Different letters in the figure indicate a significant difference (Steel-Dwass test; P <0.05).
Fig. 1 in Activity pattern and resource use of two Callosciurus species in different habitats in northeastern Thailand
Fig. 1. Location of the study site in the headquarters (HQ) of the Sakaerat Environmental Research Station and census routes. Upper figure shows the location of Sakaerat Biosphere Reserve and the bottom figure shows an enlarged view of the HQ. Solid lines show the census route of the present study, broken lines show paved survey route of the previous study (Kobayashi et al., 2019b), broken line shows non-paved survey route of the previous study (Kobayashi et al., 2019b) in natural forests (DDF: dry dipterocarp forest in light grey; DEF: dry evergreen forest in dark grey). Dotted areas in the bottom figure are relatively open spaces with few trees, white square is the nursery, and striped squares are buildings.
Fig. 7 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 7. Activity Index showing proportion of each behavioural activity (foraging; socialising; traveling; resting) per sector.
Fig. 8 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 8. Monthly (N=25) and yearly (N=8) sighting rate (please see Material and Methods) for 19 identified Irrawaddy dolphins from Bago-Pulupandan (includes entire period of the sightings of these identified dolphins).
Fig. 3 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 3. Discovery curve of marked individual dolphins in the study area over 25 survey months from 2010 to 2016.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.