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Figure 2 in Diet composition, guild structure and trophic relationships of wintering birds of prey in an estuarine wetland (The Evros Delta National Park, Greece)
Figure 2. Cluster analysis (dendrogram) based on the biomass proportions of the diets of the seven species of birds of prey studied in Evros Delta.
Figure 1 in Diet composition, guild structure and trophic relationships of wintering birds of prey in an estuarine wetland (The Evros Delta National Park, Greece)
Figure 1. Diet compiled for the most important prey taxa of the seven species of birds of prey studied in the Evros Delta, a) by biomass (upper graph) and b) by numbers (lower graph) (Shannon index/Evenness are shown below each species name).
Fig. 1 in Occurrence of coccinellids that prey on Diaphorina citri (Hemiptera: Liviidae) on Euphorbia heterophylla (Euphorbiaceae) and Chamaecrista fasciculata (Fabaceae) in a south Florida residential area
Fig. 1. Nectary plants monitored for presence of coccinellids. (A) Chamaecrista fascisculata foliage. (B) Euphorbia heterophylla with adult Harmonia axyridis. Arrows show nectaries.
Fig. 1 in Does diet of prey affect life table parameters of the predator Podisus nigrispinus (Hemiptera: Pentatomidae)?
Fig. 1. Nymph absolute survival (according to Kaplan-Meier estimator) of Podisus nigrispinus (Hemiptera: Pentatomidae) reared with soybean plants supplemented with Anticarsia gemmatalis (Lepidoptera: Erebidae) caterpillars fed an artificial diet (T1); on soybean plants with caterpillars fed soybean leaves (T2); on soybean plants with Tenebrio molitor (Coleoptera: Tenebrionidae) pupae (T3); or on soybean plants with A. gemmatalis pupae from caterpillars fed soybean leaves (T4).
Fig. 2 in Atopozelus opsimus (Hemiptera: Reduviidae) preying on Mastigimas anjosi (Hemiptera: Calophyidae), a pest of tropical cedar, Cedrela fissilis (Meliaceae)
Fig. 2. Atopozelus opsimus (Hemiptera: Reduviidae) immature preying on Mastigimas anjosi (Hemiptera: Calophyidae) nymphs.
Fig. 1 in Atopozelus opsimus (Hemiptera: Reduviidae) preying on Mastigimas anjosi (Hemiptera: Calophyidae), a pest of tropical cedar, Cedrela fissilis (Meliaceae)
Fig. 1. Eggs deposited on the primary leaflet vein (A); Atopozelus opsimus (Hemiptera: Reduviidae) protecting their eggs and nymphs (B).
Fig. 1 in Fluorescence in fireflies (Coleoptera: Lampyridae): using sentinel prey to investigate a possible aposematic signal
Fig. 1. Seasonal changes in the number of recorded attacks on artificial prey having fluorescent (short-dashed line) and non-fluorescent (long-dashed line) markings between Oct 2017 and Feb 2018. For each trial, 36 observations were made for each treatment; in the fifh and sixth trials there were only 34 observations due to sampling difficulties. Total number of models attacked is also shown.
Fig. 2 in Fluorescence in fireflies (Coleoptera: Lampyridae): using sentinel prey to investigate a possible aposematic signal
Fig. 2. Relationship between climatic variables and the total number of attacks recorded on artificial prey (both treatments combined) during each wk-long assay conducted from Oct 2017 through May 2018 (n = 11 wk): (a) photoperiod (d length in h), (b) average temperature per wk.
Fig. 3 in Fluorescence in fireflies (Coleoptera: Lampyridae): using sentinel prey to investigate a possible aposematic signal
Fig. 3. Dorsal and ventral aspects of the head area of an Ellychnia corrusca adult illuminated with (a, b) Nightsea BlueStar light emitting 440 to 460 nm, and photographed with a longpass yellow filter (500 nm cutoff), and (c, d) the same individual under white light illumination.
Fig. 1 in Predatory behaviors: Pristimantis savagei (Anura: Craugastoridae) as prey of Trechalea sp. spiders (Araneae: Trechaleidae) in a sector of the Piedemonte Llanero, Villavicencio, Colombia
Fig. 1. Site of Pristimantis savagei predation by Trechalea sp., in a sector of Piedemonte Villavicencio-Meta, Colombia. The red dot indicates the exact site of discovery in the Caño Buque.
Fig. 2 in Predatory behaviors: Pristimantis savagei (Anura: Craugastoridae) as prey of Trechalea sp. spiders (Araneae: Trechaleidae) in a sector of the Piedemonte Llanero, Villavicencio, Colombia
Fig. 2. Record of predation of Pristimantis savagei by Trechalea sp., in a sector of Piedemonte, Villavicencio-Meta, Colombia.
Fig. 3 in Predatory behaviors: Pristimantis savagei (Anura: Craugastoridae) as prey of Trechalea sp. spiders (Araneae: Trechaleidae) in a sector of the Piedemonte Llanero, Villavicencio, Colombia
Fig. 3. Warning stance of the spider Trechalea sp. The individual was on a rock at an approximate height of 150 cm, less than 1 m from the water source.
Fig 3 in Effects of plants and supplemental prey on establishment of Dicyphus hesperus (Hemiptera: Miridae)
Fig 3. Average number of Dicyphus hesperus per sample on each treatment (tomato with Ephestia eggs, mullein with and without Ephestia eggs) over 15 wk. The experiment was completed in the greenhouse at the University of Florida in Gainesville, Florida, USA, and data shown are means ± SE. Different letters describe significant differences in population size of D. hesperus on 3 different treatments each wk.
Fig 2 in Effects of plants and supplemental prey on establishment of Dicyphus hesperus (Hemiptera: Miridae)
Fig 2. Adult longevity of Dicyphus hesperus reared from first instar nymphs on 4 treatments. Experiment conducted in the growth room of the University of Florida/IFAS Gulf Coast Research and Education Center, Wimauma, Florida, USA. Data shown are means ± SE; capital letters indicate significant differences within treatments for adult longevity, and lowercase letters indicate significant differences for survival of D. hesperus (Tukey's, α <0.05).
Fig. 3 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 3. Spatial distribution of Lithobates catesbeianus invasive populations and predation reports of native anurans in Brazil. White circles: American Bullfrog populations in Brazil (Both et al. 2011; Instituto Horus 2016); yellow stars: predation reports of adult Boana raniceps and adult Phyllomedusa distincta in southern and southeastern Brazil; light green circles: locations of 41 published predation records.
Fig. 2 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 2. (A) Predation of an adult Phyllomedusa distincta by Lithobates catesbeianus, (B) Adult P. distincta partially digested, removed from the oral cavity of L. catesbeianus.
Fig. 1 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 1. Adult Lithobates catesbeianus swallowing an adult Boana raniceps in an artificial permanent pond within pasture area in southern Brazil.
Figs 2-6. Agonistic behavior between a in The hard task of a short-tailed mouse opossum (Monodelphis) to prey a harvestman (Arachnida: Opiliones)
Figs 2-6. Agonistic behavior between a harvestman of the family Gonyleptidae and the mouse opossum Monodelphis dimidiata (Wagner, 1847). The interaction starts with the mouse opossum in an attack position, facing the harvestman (Fig. 2), then the marsupial staggers side to side (Fig. 3) and is knocked out (Fig. 4). This sequence of events is repeated two times, until the mouse opossum assumes its third attack position and attacks the harvestman (Fig. 5). The mouse opossum removes the harvestman's legs one by one to then feed on its body (Fig. 6). Image edited in the Inkscape software.
Fig. 2 in Habitat complexity does not influence prey consumption in an experimental three-level trophic chain
Fig. 2. Percentage of Chironomidae larvae consumed by Moenkhausia forestii Benine, Mariguela & C. de Oliveira, 2009 in low, intermediate and high habitat complexities in the presence and in the absence of the piscivore Hoplerythrinus unitaeniatus (Spix & Agassiz 1829).
Fig. 1 in Physiological responses of anti-predation in prey fish to the threat of piscivorous fish in different underwater visibility conditions
Fig. 1. Mean and standard error of plasma cortisol levels for Astyanax bimaculatus (Linnaeus, 1758) shoals in treatments with clear (white box) and turbid water (striped box). Different letters above bars indicate significant differences at P<0.05 in the Kruskal Wallis test between predator types. There were no differences between plasma cortisol levels in clear and turbid water treatments.
ScienceDex guides
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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.