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7,081 results for “Habitats”
Fig. 2 in Characterization of artificial larval habitats of Anopheles darlingi (Diptera: Culicidae) in the Brazilian Central Amazon
Fig. 2. Artificial larval habitats evaluated herein and their local structural characteristics: (A) fish ponds, (B) clay pits and (C) dams.
Fig. 5. Native plant hosting M in Distribution, habitat use and plant associations of Moluchia brevipennis (Saussure, 1864) (Blattodea: Ectobiidae): an endemic cockroach from Chilean Mediterranean Matorral biome
Fig. 5. Native plant hosting M. brevipennis cockroaches at our study site. (A) Cockroaches feeding pollen from Oenothera acaulis (Onagraceae) flowers, (B) Puya venusta (Bromeliaceae) inflorescences with cockroaches reaching nectar sources, (C) Carpobrotus chilensis (Aizoaceae) with cockroach inside inflorescence and climbing branch, (D) Haplopappus chrysantemifolius (Asteraceae) with adult and nymphs feeding on florets from floral head, black bar indicates a 1 cm scale.
Fig. 2 in Distribution, habitat use and plant associations of Moluchia brevipennis (Saussure, 1864) (Blattodea: Ectobiidae): an endemic cockroach from Chilean Mediterranean Matorral biome
Fig. 2. Distribution of sampled sites at Los Molles. Right panel show South America map highlighting central Los Molles locality in Chile's Mediterranean Matorral area. Left panel correspond to a detailed map of Los Molles showing sampling details. Black dots correspond to active collecting and gray dots to trapping, see Table 1 for more details.
Figs 1–5 in A Description of Cochliopodium a Freshwater Habitat megatetrastylus n. sp. Isolated from
Figs 1–5. Light microscopic and fine structure images of Cochliopodium megatetrastylus n. sp. 1–3. Morphology of living C. megatetrastylus n. sp. during locomotion. 1 – locomoting amoebae with anterior hyaloplasm fringe; 2 – morphology of the relatively short subpseudopodia that become adhesive laterally and posteriorly, and attach to the substratum; 3 – aggregation and fusion of amoebae (inset shows a large and nearby small cyst). All scale bars: 20 µm; 4 – fine structure of a cell in cross-section showing the nucleus (N) and prominent nucleolus (Nu), vacuole (V), emergent pseudopodia (Ps) from the ventral surface, and showing scales (arrow) covering the dorsal surface. Scale bar: 2 µm; 5 – tubulo-cristate mitochondria (M) near the cell periphery, coated with surface scales (arrows) shown in profile. Double-headed arrows indicate the distance (~ 0.2 µm) between the bases of a pair of opposite styles that support the apical collar. Scale bar: 0.5 µm.
Figs 6, 7 in A Description of Cochliopodium a Freshwater Habitat megatetrastylus n. sp. Isolated from
Figs 6, 7. Fine structure details of the nucleus of Cochliopodium megatetrastylus n. sp. 6 – examples of nuclei varying from somewhat rounded with undulating margin to those with lobe-like extensions (arrow); 7 – a lenticular shaped nucleus viewed in one plane of section. Scale bars: 1 µm.
Fig. 10 in A Description of Cochliopodium a Freshwater Habitat megatetrastylus n. sp. Isolated from
Fig. 10. Diagram of C. megatetrastylus n. sp. scale showing the grid-like base plate and the apical conical collar supported on four styles. Scale bar: 0.1 µm.
Fig. 1 in Heterotrophic Flagellates from Freshwater and Soil Habitats in Subtropical China (Wuhan Area, Hubei Province)
Fig. 1. Location of studied sites. 1 – Yangtze River, 2 – Moshan hill, 3 – Donghu Lake, 4 – Luojiashan hill.
Fig. 4. 1, 2 in Heterotrophic Flagellates from Freshwater and Soil Habitats in Subtropical China (Wuhan Area, Hubei Province)
Fig. 4. 1, 2 – Petalomonas minuta (small cell with single anterior flagellum and longitudinal groove); 3, 4 – P. pusilla (small cell with single anterior flagellum and truncate anterior end); 5–7 – Phalansterium sp. (colonies of unikont spherical cell surrounded by mucilage); 8–12 – Phyllomitus apiculatus (cells with visible flagellar pocket, two heterodynamic flagella, anterior flagellum curves back over the rostrum (8), big food vacuoles), (12) whole mount (TEM); 13, 14 – Protaspa simplex (gliding spherical cells, cell body wags in unison with the flagellar beat); 15, 16 – Pteridomonas pulex (single apical flagellum emerging from a slight depression at the top of the cell, flagellum is surrounded by 12 stiffarms, body attaches to substrate by thin stalk); 17–19 – Rhynchomonas nasuta (oval cell bears undulating proboscis and long posterior flagellum), (19) whole mount (TEM); 20, 21 – Salpingoeca amphoridium (cell with narrow neck inside amphora-like lorica); 22 – S. gracilis (cylindrical cell inside cyathiform lorica); 23–25 – S. minor (spherical cell with narrow neck inside round lorica); 26–29 – Spongomonas uvella, (spherical cells with two isokont long acronematic flagella form colonies surrounded minute granules) (29) whole mount (TEM). Scale bars: 4 µm (3, 4), 5 µm (18, 23–25, 28, 29), 6 µm (1, 2), 8 µm (5, 7, 17, 19), 10 µm (6, 8–10, 12–14, 20, 27), 15 µm (11, 15, 21, 22, 26), 25 µm (16).
Figure 3 in Habitat selection of Williams' Jerboa (Allactaga williamsi Thomas, 1897) in Ardabil Province, Iran
Figure 3. Percent cover of dominant plant species in burrow plots (white columns) and paired plots (dark columns). Acronyms: Artemisia herba-alba (AH), Trifolium montanum (TM), Festuca ovina (FO), Acantholimon senganense (AS), Bromus scoparius (BS), Acantholimon acerosum (AA), and Acantholimon embergeri (AE).
Figure 3 in Diet and habitat use of the endangered Persian leopard (Panthera pardus saxicolor) in northeastern Iran*
Figure 3. Leopard distribution map (based on direct observation, scat, track, and prey carcass locations) and habitat overlap of the leopard with wild pig (Sus scrofa), porcupine (Hystrix indica), wild goat (Capra aegagrus), wild sheep (Ovis orientalis), and pika (Ochotona rufescens) in SNP.
Figure 2 in Impacts of anthropogenic activities and habitat degradation on breeding waterbirds
Figure 2. Distribution and observation frequency of urbanization, industrialization, pollution, overgrazing, disturbance, and illegal reed cutting and burning threats in 2002.
Figure 2 in Surveillance of population dynamics and breeding habitat diversity of Anopheles subpictus in different areas of Odisha, East Central India
Figure 2. House Index of Anopheles subpictus of different localities under study. (Buguda, Ballipadar, Aska, Bhetanai, Bhanjanagar and Baunsalundi).
Figure 3 in Surveillance of population dynamics and breeding habitat diversity of Anopheles subpictus in different areas of Odisha, East Central India
Figure 3. Container Index of Anopheles subpictus of different localities under study. (Buguda, Ballipadar, Aska, Bhetanai, Bhanjanagar and Baunsalundi)
Figure 1 in First report of Drupella cornus Röding, 1798 (Gastropoda: Muricidae), a biological indicator of coral reef habitat of Lakshadweep Archipelago, India
Figure 1. Drupella cornus Röding, 1798, collected at benthic coral reef habitat of Minicoy Island, Lakshadweep.
Figure 5 in Earthworm diversity and abundance in different habitats at Satyajit Ray Film and Television Institute, Kolkata
Figure 5. Shannon-Wiener Diversity Index (Shannon H' Log Base 10) and Evenness Index (Shannon J') in different habitats.
Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D in A note on the defence by Eurema blanda Boisduval (Lepidoptera: Pieridae) pupae in response to oviposition behaviour of the chalcid wasp Brachymeria sp. (Hymenoptera: Chalcididae)
Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D. Left and right ways movement of pupa in response to Brachymeria sp. E. Female Brachymeria sp. F. Newly emerged Eurema blanda from collected pupae.
Figures 4-7 in Cocoon morphology of Bicyrtes variegatus (Oliver, 1789) (Hymenoptera: Crabronidae), with notes on habitat and biological interactions
Figures 4-7. Details of cocoon structures of Bicyrtes variegatus (Oliver). 4. Apical portion, internal view. 5. Basal portion, internal view, showing the fecal mass. 6. External surface, white arrows point the pores. 7. Internal domes of the pores, covered with light brownish silken threads. / Detalles de las estructuras del capullo de Bicyrtes variegatus (Oliver). 4. Porción apical, vista interna. 5. Porción basal, vista interna, que muestra la masa fecal. 6. Superficie externa, flechas señalan los poros. 7. Cúpulas internas de los poros cubiertas con hilos sedosos de color marrón claro.
Figure 3 in Community assemblage of the Carabidae fauna in newly created habitats
Figure 3: DCA analysis of the restoration areas in comparison with the reference sites including all species (species are log transformed). The first two positions of the sample codes stand for sampling site (cf. Figure 1), the next whether the sample is from a reference site ('R') or a restoration site ('N') and the last two for the year of sampling.
Fig. 2 in Community assemblage of the Carabidae fauna in newly created habitats
Fig. 2. The number of species trapped in the restoration site Hullenzand during the first ten years after top soil removal. Species are grouped according to their habitat preference (after Turin et al., 1991).
Fig. 1 in Association of Ovalisia rutilans (Fabricius, 1777) (Coleoptera: Buprestidae) with thermophilous habitats toward its range edge in northern Poland
Fig. 1. Occurrence of Ovalisia rutilans in Poland (according to Burakowski et al. 1985, Gutowski & Ůugowoj 2000, Z. Chrul, J. Kurzawa, K.Maciejewski, pers.com. – see Appendix). The square indicates the study area.
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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.