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2,651 results for “habit”
FIGURE 3. 1-2 in Burrowing and mud-mound building life habits of fiddler crab Uca lactea in the Bay of Bengal coast, India and their geological and geotechnical importance
FIGURE 3. 1-2. White paraffin wax casts of the Uca lactea burrows in natural position in the field. Note simple unbranched I-shaped burrow morphology with lower bulged portion and narrow apertural neck. 3. Uca lactea simple mud-mound with a central circular burrow aperture. 4-5. Uca lactea compound mud-mounds with multiple circular to elliptical burrow apertures. 6. A compound mud-mound with projected down mud tongues (arrowed) denoting high water content of the mud slur. 7. Mud-mounds with apertural and rolled out mud lumps (arrowed) indicating low water content of the mud slur. 8. Mud-mound with mud rod (arrowed) ejected out of burrow mouth indicating paste-like viscosity of the mud slur. 9-11. Serial horizontal sections of mud-mound showing successive appearance of burrow openings (arrowed): one in top and three in base level showing downward bulging without any sign of convergence.
Fig. 1 in Diet composition and feeding habits of the eyespot skate, Atlantoraja cyclophora (Elasmobranchii: Arhynchobatidae), off Uruguay and northern Argentina
Fig. 1. Study area showing the location of trawl stations (black dots) and cells of the fishing grid (black rectangles) where individuals of Atlantoraja cyclophora were captured off North Argentina and Uruguay.
Fig. 4 in Diet composition and feeding habits of the eyespot skate, Atlantoraja cyclophora (Elasmobranchii: Arhynchobatidae), off Uruguay and northern Argentina
Fig. 4. Mean number of shrimps and teleosts consumed for Atlantoraja cyclophora from off Uruguay and northern Argentina by season and region, respectively.
Fig. 3 in Diet composition and feeding habits of the eyespot skate, Atlantoraja cyclophora (Elasmobranchii: Arhynchobatidae), off Uruguay and northern Argentina
Fig. 3. Changes in consumption of different prey with body size, maturity stage, season and region of Atlantoraja cyclophora from off Uruguay and northern Argentina estimated by generalized linear models for number of shrimps, crabs and teleosts. In shrimps: warm season with solid lines and open circles; cold season with dashed lines and solid circles. In teleosts: north region with solid lines and open circles; south region with dashed lines and solid circles.
Fig. 2 in Diet composition and feeding habits of the eyespot skate, Atlantoraja cyclophora (Elasmobranchii: Arhynchobatidae), off Uruguay and northern Argentina
Fig. 2. Cumulative mean Shannon diversity index as a function of sample size for prey of Atlantoraja cyclophora from off Uruguay and northern Argentina. Dashed lines indicate standard deviation.
Fig. 5 in Diet composition and feeding habits of the eyespot skate, Atlantoraja cyclophora (Elasmobranchii: Arhynchobatidae), off Uruguay and northern Argentina
Fig. 5. Quantile regressions of carapace width (CW) of crabs, cephalothorax length (CL) of shrimps and total length (TL) of teleosts and total length of Atlantoraja cyclophora. The solid, dashed and dotted lines are 5%, 50% and 95% quantile regressions, respectively.
Figure 2 in Food habits of indian crested porcupine (Hystrix indica) (Kerr 1792), in district Bagh, Azad Jammu and Kashmir
Figure 2. Percent relative frequency of different parts of plants recovered from the fecal samples collected from the study area.
Figure 3 in Food habits of indian crested porcupine (Hystrix indica) (Kerr 1792), in district Bagh, Azad Jammu and Kashmir
Figure 3. Seasonal variation in the percentage of different parts of plant recovered from fecal samples in the study area.
Linked collectors and determiners for: Revision of the genus Odocnemis Allard, 1876 (Coleoptera: Tenebrionidae: Helopini) from Turkey, the Caucasus and Iran with observations on feeding habits.
Natural history specimen data linked to collectors and determiners held within, "Revision of the genus Odocnemis Allard, 1876 (Coleoptera: Tenebrionidae: Helopini) from Turkey, the Caucasus and Iran with observations on feeding habits". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/726c8af4-e8a8-46cb-ab0b-0ef22e432dae">https://bionomia.net/dataset/726c8af4-e8a8-46cb-ab0b-0ef22e432dae</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/726c8af4-e8a8-46cb-ab0b-0ef22e432dae">https://gbif.org/dataset/726c8af4-e8a8-46cb-ab0b-0ef22e432dae</a>. Formatted as a Frictionless Data package.
Data from: Andriollo T., Michaux J.R., Ruedi M. (2021). Food for everyone: differential feeding habits of cryptic bat species inferred from DNA metabarcoding. Molecular Ecology
<p><strong>Supporting data for:</strong> Andriollo T., Michaux J.R., Ruedi M. (2021). Food for everyone: differential feeding habits of cryptic bat species inferred from DNA metabarcoding. Molecular Ecology. https://doi.org/ 10.1111/mec.16073</p> <p>Raw DNA sequences of prey of <em>Plecotus auritus</em>, <em>P. austriacus</em> and <em>P. macrobullaris</em> with complete sampling information and taxonomic assignations. Data separated by semicolums as follows:</p> <p>Sample name; Dataset; Colony; Bat species; Date; Season; Read numbers (Size); DNA sequence; Lowest taxonomic identification (ID_MOTU); Family; Order; Class; Is the sequence attributable to the diet or not (Diet)</p>
Figure 1 in Food habits and daily activity patterns of the North African ocellated lizard Timon pater from northeastern Algeria
Figure 1. Mean monthly temperature (°C, bars) and rainfall (mm, line) at the study area in north-eastern Algeria.
Figure 3 in Food habits and daily activity patterns of the North African ocellated lizard Timon pater from northeastern Algeria
Figure 3. Daily activity patterns of Timon pater at the study area, expressed as the mean number of individuals seen at each daytime interval along several independent 1000-m-long transects.
Figure 2 in Food habits and daily activity patterns of the North African ocellated lizard Timon pater from northeastern Algeria
Figure 2. Monthly variation in the number of faecal pellets collected (A) (total sample, n5164) and in the mean volume of each pellet (B) (total sample, n5139) of Timon pater at the study area.
Figure 3 in Food habits of the barn owl Tyto alba in the National Reserve Pampa del Tamarugal, Atacama Desert, North Chile
Figure 3. Variation of small mammal diversity in the diet of Tyto alba along Chile, measured using the Shannon– Wiener index (H9). (a) Variation across the latitudinal gradient; (b) variation across the rainfall gradient.
Figure 1 in Food habits of the barn owl Tyto alba in the National Reserve Pampa del Tamarugal, Atacama Desert, North Chile
Figure 1. Map of South America, showing the 10 study sites along Chile: 1, Tamarugal; 2, Chiu-Chiu; 3, Fray Jorge; 4, Puchuncavı´; 5, La Campana; 6, La Dehesa; 7, Baños del Flaco; 8, Burca; 9, Lastarria; 10, Torres del Paine.
Figure 2 in Food habits of the barn owl Tyto alba in the National Reserve Pampa del Tamarugal, Atacama Desert, North Chile
Figure 2. Rarefaction curve for the species richness found in the pellets of the barn owl (mean and standard deviations) based on the number of replicates sampled. The asymptotic curve indicates that total species richness in the Tamarugal was reached after ca 63 samples. Calculation was performed using the EstimateS 7.5 program.
FIG. 2 in Feeding habits of the first European colobine, (Mammalia, Primates): evidence from a comparative dental microwear analysis with modern cercopithecids
FIG. 2. — Dental facets nine of second molars for extant and extinct cercopithecids displaying dental microwear scars: A, Nasalis larvatus (Wurmb, 1787) (ZSM-1907-4023); B, Lophocebus albigena (Gray, 1850) (RMCA-83-006-0276); C, Chlorocebus aethiops (Linnaeus, 1758) (MNHN-CG-1972-309); D, Papio hamadryas hamadryas Linnaeus, 1758 (SNG-15831); E, Mesopithecus delsoni/ pentelicus (HD-340); F, M. pentelicus (NHMW-1998z77-14). Scale bars: 300 μm.
Fig. 1 in Feeding habits and morphometry of Iheringichthys labrosus (Lütken, 1874) in the Uruguay River (Uruguay)
Fig. 1. Map of the study area. Samples sites are located on the Uruguay River: LC: Las Cañas, NB: Nuevo Berlín and Y: Yaguareté.
Fig. 2 in Feeding habits and morphometry of Iheringichthys labrosus (Lütken, 1874) in the Uruguay River (Uruguay)
Fig. 2. Amundsen diagrams for individuals of the size class 1(a-c) and 2 (b-d). Superior diagrams correspond to individual obtained in May and inferior to individual obtained in November. COP: Copepoda, TRIC: Trichoptera, OTH: others, HYD: Hydracharina, CLAD: Cladocera, GAS: Gastropoda, NEM: Nematoda, OST: Ostracoda, BIV: Bivalvia, DIP: Diptera, EPH: Ephemeroptera, IMM. BIV: immature bivalvia, ODO: Odonata, COL: Coleoptera, COLL: Collembola.
Fig. 4 in Feeding habits and morphometry of Iheringichthys labrosus (Lütken, 1874) in the Uruguay River (Uruguay)
Fig. 4. Correspondence analysis between prey items (circles) and studied months (squares). (a) Prey items of individuals of the size class 1 (b) Prey items of individuals of the size class 2. Note that the analysis resolved in only one dimension.
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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)
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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.