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1,070 results for “dung beetle”
Figs. 1–3 in New Observations on Three Species of Eucraniine Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae) in Mendoza and San Juan Provinces, Argentina
Figs. 1–3. Localities and habitats for Eucraniini in San Juan and Mendoza, Argentina. 1) Habitat of Anomiopsoides cavifrons and Eucranium belenae in sand dunes south of the town of Caucete (San Juan); 2) Habitat of A. cavifrons in sandy area near the small community of Marayes (San Juan); 3) Habitat of Anomiopsoides fedemariai and E. belenae on the sandy riverbank of the R´ıo Mendoza, where it is intersected by RN 142 (Mendoza).
Fig. 1 in How Do Regeneration Stages of Caatinga Forests Influence the Structure of Dung Beetle (Coleoptera: Scarabaeidae) Assemblage?
Fig. 1. Location in Brazil (A) and aerial view (B) of Tamanduá Farm with plots of the sampling sites (INI = initial stage of regeneration; INT = intermediate; LAT = late), Para´ıba, northeastern Brazil.
Fig. 3 in How Do Regeneration Stages of Caatinga Forests Influence the Structure of Dung Beetle (Coleoptera: Scarabaeidae) Assemblage?
Fig. 3. Species abundance rank of dung beetles obtained in initial, intermediate and late fragments of Caatinga on Tamanduá Farm, Para´ıba, Brazil.
Fig. 2 in How Do Regeneration Stages of Caatinga Forests Influence the Structure of Dung Beetle (Coleoptera: Scarabaeidae) Assemblage?
Fig. 2. General linear models characterizing dung beetle abundance (A, C, E) and richness (B, D, F) in three Caatinga regeneration stages with two bait types and in two seasonal periods in Caatinga fragments on Tamanduá Farm, Para´ıba, Brazil.
Figs. 11–15. Attavicinus monstrosus structural features. Scale bars equal 0.5 in Attavicinus, a New Generic Name for the Myrmecophilous Dung Beetle Liatongus monstrosus (Scarabaeidae: Scarabaeinae)
Figs. 11–15. Attavicinus monstrosus structural features. Scale bars equal 0.5 mm. 11) Pygidium and propygidium, male; 12) Pygidium and propygidium, female; 13) Male genitalia, lateral view; 14) Mesoscutum-scutellum; 15) Ventral surface of mesoventrite, metaventrite and leg bases with right metaleg removed.
Figs. 3–8. Attavicinus monstrosus head structures. Scale bars equal 0.5 in Attavicinus, a New Generic Name for the Myrmecophilous Dung Beetle Liatongus monstrosus (Scarabaeidae: Scarabaeinae)
Figs. 3–8. Attavicinus monstrosus head structures. Scale bars equal 0.5 mm. 3) Antenna; 4) Epipharynx, ventral; 5) Mandible, ventral; 6) Mandible, dorsal; 7) Maxillae, dorsal and ventral views (scale bar 5 0.5 mm); 8) Labium, ventral.
Figs. 2–3 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Figs. 2–3. Seasonality of coprophagous beetles in Kampinoski Park Narodowy, Poland. 2) Temporal changes in abundance (individuals/kg of moose dung) and dry weight (g/kg of moose dung) of captured beetles; 3) Temporal changes in abundance and dry weight of two dung beetle nesting guilds.
Fig. 6 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 6. Seasonality with one evident population peak of the most abundant coprophagous beetle species on moose dung in Kampinoski Park Narodowy, Poland.
Fig. 5 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 5. Temporal changes in Shannon-Weaver (H') and Pielou's evenness (J) indices of the coprophagous beetle fauna in Kampinoski Park Narodowy, Poland.
Fig. 4 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 4. Monthly dominance structures of captured coprophagous beetles in Kampinoski Park Narodowy, Poland. Ac. de – Acrossus depressus; Ac. ru – Acrossus rufipes; Ag. ne – Agoliinus nemoralis; An. st – Anoplotrupes stercorosus; Ch. di – Chilothorax distinctus; Eu. co – Eurodalus coenosus; Ge. st – Geotrupes stercorarius; k – number of species; Li. ze – Limarus zenkeri; n – number of individuals; O – other species (may include both nesting guilds); Pl. bo – Planolinoides borealis; Pl. fa – Planolinus fasciatus; Tr. ve – Trypocopris vernalis; Grey slices – paracoprids, white slices – endocoprids.
Fig. 1 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 1. Baited pitfall trap used to capture coprophagous beetles in Kampinoski Park Narodowy, Poland. Photograph by D. Marczak.
Fig. 7 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 7. Seasonality with two or more apparent population peaks of the most abundant coprophagous beetle species on moose dung in Kampinoski Park Narodowy, Poland.
Figs. 1–3. 1 in New Country Records of Scarab Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae) in Swaziland and Zambia
Figs. 1–3. 1) Maps depicting the approximate locations of the main sampling sites (numbered and named) in A) Zambia and B) Swaziland; 2) Habitats at sampling localities – A) Savanna-forest at Mbuluzi Game Reserve, Lubombo, Swaziland, March 2016, B) Montane grassland at Malolotja Nature Reserve, Hhohho, Swaziland, March 2016, C) Miombo woodland, 30 km SSW of Kitwe, Copperbelt Province, Zambia, December 2011; 3) Newly recorded species of scarabaeine dung beetles from Swaziland – A) Copris fidius, B) Catharsius tricornutus, C) Proagoderus lanista. All photographs by Conrad P. D. T. Gillett.
Fig. 1 in Records of Perching by Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae) in the Northeastern Atlantic Forest of Brazil
Fig. 1. Dung beetles perching on leaves in northeastern Brazilian Atlantic Forest remnants. A) Canthon staigi; B) Canthidium sp. 1; C) Canthidium sp. 2. Photographs by Hugo Neves (A), Rafael Barros (B), and Adriano DeSouza (C).
Fig. 1. a in Staining Method for Assessing the Ecological Function of Excrement Removal by Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae)
Fig. 1. a) Illustration of the arena used for collecting dung beetles and assessing unstained excrement removal with 5 cm of height on the margin (double-pointed arrow) and demonstration of the possible unstained excrement removed during the 48 hours of assessment (telecoprids on the surface and/or paracoprids in subterranean galleries), b) Photographs of the arena with a plastic cover protection and unstained material removed by paracoprids, c) Illustration of the arena used for collecting dung beetles and assessing stained excrement removal with 5 cm of height on the margin (double-pointed arrow) and demonstration of the possible stained excrement removed during the 48 hours of assessment (telecoprids on the surface and/or paracoprids in subterranean galleries), d) Photographs of the arena with a plastic cover protection and stained material removed by paracoprids, e) Photograph of control arena; f) Sample design to evaluate the effect of the stain on excrement attractiveness and manipulation by dung beetles.
Fig. 2 in Staining Method for Assessing the Ecological Function of Excrement Removal by Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae)
Fig. 2. Mean (± SD) amount of excrement removed and amount relocated between treatments according to two functional guilds. The same letters indicate no significant differences (p> 0.05) between treatments within a variable. UE = unstained excrement; SE = stained excrement.
Figs. 1-2. Sisyphus schaefferi. 1 in Peeling Dung Pellets: An Unrecorded Behavior in the Roller Dung Beetle Sisyphus schaefferi Linnaeus (Coleoptera: Scarabaeidae: Sisyphini)
Figs. 1-2. Sisyphus schaefferi. 1) Beginning to raise an edge of crust by pushing it with its clypeus; 2) With the dung ball and, on the left, the abandoned crust.
Fig. 1 in A Novel Method for Measuring Dung Removal by Tunneler Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae) in Pastures
Fig. 1. Methodology for measuring dung removal by tunneller dung beetles. A) Bucket design, B) Bucket cut in half lengthwise. Galleries, beetles, and quantity of dung removed by the beetles are shown.
Figure 3 in Ateuchus fedescobari - a new dung beetle (Coleoptera: Scarabaeinae) species from Colombia, and redescription of the rare A. punctatissimus (Génier, 2010) from Brazil
Figure 3. Ateuchus (Lobidion) fedescobari sp. nov. female paratype. (a) habitus; (b) ventral view; (c) head frontal view; (d) pronotal microsculpturation and posterior 'U'-shaped punctuation.
Figure 4 in Ateuchus fedescobari - a new dung beetle (Coleoptera: Scarabaeinae) species from Colombia, and redescription of the rare A. punctatissimus (Génier, 2010) from Brazil
Figure 4. Known distribution of Ateuchus (Lobidion) punctatissimus (Génier) (red triangle) and Ateuchus (Lobidion) fedescobari sp. nov. (pink circle).
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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)
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.