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Fig. 4 in Patterns of drilling predation of cassid gastropods preying on echinoids from the middle Miocene of Poland
Fig. 4. Morphotypes of drill holes observed on tests of Echinocyamus linearis. A–F. Circular drill holes. A. Circular drill hole on MWG/ZI/022. B. Circular drill hole on MWG/ZI/005 in view perpendicular to the test surface (B1) and its close up in slightly oblique view (B2). Note that the walls of the drill hole are perpendicular to the test surface. C. Circular (subcircular) drill hole on MWG/ZI/023. D. Circular drill hole on oral side of MWG/ZI/024; d, drill hole; ps, peristom; pp, periproct. E. Circular (subcircular) drill hole on MWG/ZI/025. F. Circular (subcircular) drill hole on MWG/ZI/026. G. Drill hole transitional in outline circular (subcircular)/irregular on MWG/ZI/027. H, I. Complex drill holes on MWG/ZI/028 (H1) and MWG/ZI/29 (I1) with explanatory drawings (H2 and I2); c, circular part of drill hole; i, irregular part of drill hole. J–P. Irregular drill holes. J. Irregular drill hole on MWG/ZI/030. K. Irregular drill hole on MWG/ZI/031. Note three radial crevices running from the drill hole margin. L. Irregular drill hole on MWG/ZI/032. Drill hole outline slightly modified due to the occurrence of ambulacral pore. M. Irregular drill hole? on MWG/ZI/033. The upper part of drill hole appears to be partially defined by series of ambulacral pores. N. Irregular drill hole on MWG/ZI/008. Drill hole margin apparently defined by the plate margins. O. Large irregular drill hole on aboral side of MWG/ZI/034. P. Irregular drill hole on MWG/ZI/035. Drill hole outline strongly modified due to the occurrence of ambulacral pores. All specimens collected from coarse−grained Heterostegina Sands. Scale bars 0.2 mm.
Fig. 11 in Patterns of drilling predation of cassid gastropods preying on echinoids from the middle Miocene of Poland
Fig. 11. Drilling predation intensities recognised for the particular size classes of preys; Fq, relative frequency of drill holes; grey areas indicate size classes represented by 30 or more specimens. E. linearis and E. pusillus collected from the coarse−grained Heterostegina Sands, and E. pseudopusillus from the fine−grained Heterostegina Sands. Confidence intervals computed from the formulas presented in captions to Fig. 9.
Fig. 2 in Patterns of drilling predation of cassid gastropods preying on echinoids from the middle Miocene of Poland
Fig. 2. Relative abundances of Echinocyamus species in particular samples compared to the results of grain−size analysis of the samples.
Fig. 1 in Quantification of prey consumption by the predators Chauliognathus flavipes (Coleoptera: Cantharidae), Cycloneda sanguinea (Coleoptera: Coccinellidae), and Orius insidiosus (Heteroptera: Anthocoridae)
Fig. 1. Mean number of prey (± SE) consumed by (A) Orius insidiosus, (B) Cycloneda sanguinea, and (C) Chauliognathus flavipes predators. Columns with the same letter (within predator species) are not different (Tukey's multiple comparison test, P <0.05).
Fig. 2 in Quantifying insect predation in laboratory arenas: the effect of prey acclimation
Fig. 2. Behavioral responses of Orgyia leucostigma caterpillars that acclimated on the plant for less than 20 min (20 min), from 20 to <40 min (40 min), and from 40 to 60 min (60 min) to the attacks of Polistes fuscatus wasps. *P <0.05; ns: P> 0.05. No response = caterpillars that did not respond to predators by dropping. Drop = caterpillars that dropped from the leaf in response to the predator.
Fig. 1 in Quantifying insect predation in laboratory arenas: the effect of prey acclimation
Fig. 1. The mortality of Orgyia leucostigma caterpillars that acclimated on the plant for less than 20 min (20 min), from 20 to <40 min (40 min), and from 40 to 60 min (60 min) before exposure to Polistes fuscatus wasps. Treatments with the same letter are not significantly different (P> 0.05).
Prey diversity in the deep ocean: metabarcoding feeding ecology of the commercially important queen snapper in the US Caribbean
<p>These data contains the raw information for the article " Prey diversity in the deep ocean: metabarcoding feeding</p> <p>ecology of the commercially important queen snapper in the US Caribbean"</p>
Linked collectors and determiners for: Prey identification of free-ranging domestic cats (Felis catus) from rural and natural areas of Spain through scat analysis.
Natural history specimen data linked to collectors and determiners held within, "Prey identification of free-ranging domestic cats (Felis catus) from rural and natural areas of Spain through scat analysis". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff">https://bionomia.net/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff">https://gbif.org/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff</a>. Formatted as a Frictionless Data package.
FIG. 8. — A in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 8. — A young couple, Balang Ngeluun and Sinah Balang Ngeluun, posing with their two children and older members of the community with the domestic pig Sus scrofa Linnaeus, 1758 (berak) about to be slaughtered for their namechanging irau in Bario, April 1987. Photo credit: Kaz Janowski.
FIG. 7 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 7. — Balang Pelaba, Baye Ripug, Pun Nibu and another unidentified man participating in a competition to eat fat from a domestic pig (berak) at the namechanging irau held for Balan, the first child of Paran To'oh and Sinah Paran To'oh, in Pa' Dalih in April 1987. Photo credit: Kaz Janowski.
FIG. 3 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 3. — The Kelabit culture hero Tuked Rini shimmering with lalud (cosmic power). Painting by Stephen Baya, 2009.
FIG. 2 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 2. — Huge acorns in the forests of the Kelabit Highlands, the favourite food of the wild pig species Sus scrofa Linnaeus, 1758 and Sus barbatus Müller, 1838. Photo credit: Kaz Janowski, 1988.
FIG. 6 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 6. — Judin, Elvis and other young men of Pa' Dalih scalding the head of a wild pig (baka) of the species Sus barbatus Müller, 1838 prior to scraping off the hairs. Elvis holds Molly Janowski between his knees. Photo credit: Sally Greenhill, 1987.
FIG. 10 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 10. — Participant who has been smeared with blood in ritual to establish new headhouse in Bidayuh village, Kampong Gumbang, 29 June 2017. Photo credit: Kaz Janowski.
FIG. 4 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 4. — Kelabit hunting equipment and hunted meat from a wild pig (baka), probably Sus barbatus Müller, 1838. This includes a basket (bekang) containing the meat; a shotgun and cartridges; a quiver for blowpipe darts (selongan) together with small gourd (bua tabu kre) containing flights for the darts (ra'o); and a large forest knife (tongol). Photo credit: Monica Janowski, 1993.
FIG. 9. — Two young men distributing meat from a domestic pig Sus scrofa Linnaeus, 1758 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 9. — Two young men distributing meat from a domestic pig Sus scrofa Linnaeus, 1758 (berak) at irau in Bario, 1987. Photo credit: Kaz Janowski.
FIG. 1 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 1. — The longhouse community of Pa' Dalih, Kelabit Highlands in 1987. Photo credit: Kaz Janowski.
Figure 6–8 in A new species of Chrysobothris Eschscholtz (Coleoptera: Buprestidae) from nests of Cerceris fumipennis Say (Hymenoptera: Crabronidae) in northeastern Florida, USA, with new state records for species of Chrysobothris and a list of buprestid prey species taken by the wasp in Florida
Figure 6–8. Chrysobothris cerceripraeda Westcott and Thomas, n. sp. 6) Male aedeagus, dorsal. 7) Male aedeagus, ventral. 8) Female terminal ventrite.
Figures 1–5 in A new species of Chrysobothris Eschscholtz (Coleoptera: Buprestidae) from nests of Cerceris fumipennis Say (Hymenoptera: Crabronidae) in northeastern Florida, USA, with new state records for species of Chrysobothris and a list of buprestid prey species taken by the wasp in Florida
Figures 1–5. Chrysobothris cerceripraeda Westcott and Thomas, n. sp., male. 1) Dorsal habitus. 2) Front of head. 3) Ventral habitus. 4) Prosternum. 5) Protibia.
Figure 10–13. Locality photographs. 10 in A new species of Chrysobothris Eschscholtz (Coleoptera: Buprestidae) from nests of Cerceris fumipennis Say (Hymenoptera: Crabronidae) in northeastern Florida, USA, with new state records for species of Chrysobothris and a list of buprestid prey species taken by the wasp in Florida
Figure 10–13. Locality photographs. 10) View of salt marsh surrounding Pelotes Island Nature Preserve, Duval Co., FL. 11) Dirt road that runs length of Pelotes Island Nature Preserve. All Cerceris fumipennis Say nests were found on or next to road. 12) Drs. Leroy Whilby, FDACS-DPI CAPS, and Adam Silagyi, formerly FDACS-DPI CAPS, excavating nest of Cerceris fumipennis on Pelotes Island. 13) Excavation from nest of Cerceris fumipennis showing a common prey species, Chrysobothris shawnee Wellso and Manley.
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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.