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Fig. 1 in Fecundity And Offspring Survival Of Copris Tripartitus Waterhouse (Coleoptera, Scarabaeidae: Scarabaeinae) Under Laboratory Rearing Conditions
Fig. 1. Variation in the number of brood balls made by pairs of C. tripartitus.
Fig. 13 in Description Of The Larval And Pupal Stages Of Cryptorhopalum Triste Leconte (Coleoptera: Dermestidae), With Notes On Biology And Rearing
Fig. 13. Pupa within the last larval exuvium, dorsal view.
"Biological and productive aspects of the Hermetia illucens in Ephestia kuehniella rearing residues"
Open the record for dataset details and reuse information.
FIGURE 9 in A new species of Bactrocera Macquart reared from Solanum khasianum Clarke in northern India and a new synonym
FIGURE 9. Bactrocera (Zeugodacus) yoshimotoi (A–B). A: Epandrium posterior view and B: Glans.
Figure 3 from: Heneberg P, Bogusch P, Astapenková A (2024) Rearing Thyridanthrax fenestratus (Diptera, Bombyliidae) on Pemphredon fabricii (Hymenoptera, Crabronidae) prepupae. Journal of Hymenoptera Research 97: 1-13. https://doi.org/10.3897/jhr.97.110282
Figure 3 Representative figure of the 96-well plate at D10 with typically developing P. fabricii (already pupated, two to four days ahead of the metamorphosis to the adults) treated with penconazole (50 μg mL−1) and with prepupae in wells D7, D8, and G5, which are parasitized by Th. fenestratus. The parasitized prepupae did not pupate and remained paralyzed and were killed within the ensuing four days.
Figure 4 from: Heneberg P, Bogusch P, Astapenková A (2024) Rearing Thyridanthrax fenestratus (Diptera, Bombyliidae) on Pemphredon fabricii (Hymenoptera, Crabronidae) prepupae. Journal of Hymenoptera Research 97: 1-13. https://doi.org/10.3897/jhr.97.110282
Figure 4 Representative figures illustrating critical events in the development of Th. fenestratus on overwintering prepupae of P. fabricii. In bombyliid flies, the first stage, triungulin, is active and immediately molts after attaching to its host to the second stage (likely D6), which has already attached itself and is not distinctly curved. This stage can overwinter (as does the pupa). Early third instar (likely D8) and late third instar (likely D14) can be diagnosed by their characteristic curvature. D24 and D34 represent pupae.
Figure 1 from: Heneberg P, Bogusch P, Astapenková A (2024) Rearing Thyridanthrax fenestratus (Diptera, Bombyliidae) on Pemphredon fabricii (Hymenoptera, Crabronidae) prepupae. Journal of Hymenoptera Research 97: 1-13. https://doi.org/10.3897/jhr.97.110282
Figure 1 Map of examined sampling sites that were positive for P. fabricii (circles). Empty circles indicate sampling sites where only P. fabricii was found. Green circles indicate sites where P. fabricii was parasitized by Th. fenestratus. Source data are available in Suppl. material 1.
Figure 2 from: Heneberg P, Bogusch P, Astapenková A (2024) Rearing Thyridanthrax fenestratus (Diptera, Bombyliidae) on Pemphredon fabricii (Hymenoptera, Crabronidae) prepupae. Journal of Hymenoptera Research 97: 1-13. https://doi.org/10.3897/jhr.97.110282
Figure 2 Time-lapse evidence of the development of Th. fenestratus under laboratory conditions following cold-induced diapause. The X-axis indicates days elapsed since the termination of cold-induced diapause. Individual lines represent photographs of the same individual. The individual in the second line spent the cold-induced diapause as a fully grown larva; all others spent the winter attached to the defecated prepupa but did not grow before the cold-induced diapause. Letters indicate the treatment (DMSO = control, P = penconazole, D = difeconazole, T = tebuconazole; numbers (200, 400, 500, 800, 1200, 2000) indicate the dilution of the study compounds (for more details, refer to Heneberg and Bogusch 2022); letters with numbers indicate the positions in 96-well plates.
Supplementary material 1 from: Heneberg P, Bogusch P, Astapenková A (2024) Rearing Thyridanthrax fenestratus (Diptera, Bombyliidae) on Pemphredon fabricii (Hymenoptera, Crabronidae) prepupae. Journal of Hymenoptera Research 97: 1-13. https://doi.org/10.3897/jhr.97.110282
Coordinates of sampling sites used to generate Fig. 1
Fig. 2 in Induced spawning and early ontogeny in hatchery-reared catfish Zungaro jahu (Siluriformes: Pimelodidae)
Fig. 2. Drawings of free embryos (a-c), larvae (d-e) and juvenile (f) of hatchery - raised jahus. a) free embryo (18 h post hachting, HPH; 5.3 mm TL) presenting pigmented retina, opened mouth and slightly pigmented primordial fin fold; bar = 0.5 mm. b) free embryo (24 HPH, 5.9 mm TL) showing developing mental barbel and pigmented primordial fin fold except in the caudal portion; bar= 0.5 mm. c) free embryo (36 HPH, 6.4 mm TL) showing growing mental barbels, primordial fin fold chromatophores vertically arranged, yolk sac well reduced in size, outline of adipose fin was present, dorsoflexion of notochord was completed; bar = 0.5 mm. d) larva (128 HPH, 8.6 mm TL) showing developing maxillary and mental barbels, outline of pelvic, and anal fins; bar = 0.5 mm. e) larva (152 HPH, 14.4 mm TL) in which pectoral, dorsal and caudal fins are seen; bar = 1.0 mm. f) juvenile jahu (224 HPH, 16.6 mm TL); bar = 1.0 mm.
Trends in weather conditions favor generalist over specialist species in rear-edge alpine bird communities
<p>Using the community of six passerine species breeding in the alpine zone of the Cantabrian mountains (NW Iberian Peninsula), we sought to document the changes in bird abundance across the elevational gradient during the last decade, evaluate the relationship between bird abundance and local climatic conditions (i.e. weather conditions), and discuss the mechanisms by which these conditions might be mediating the observed abundance trends in a global warming context. We estimated bird abundance at the home range level using point count transects and distance sampling during the breeding season, and fitted generalized linear mixed models to describe their temporal trends across the elevational gradient. We used a structural equation modeling approach to estimate the direct, indirect and total effects of weather and temporal variables, while considering the correlations and causal relationships among them and with the elevational gradient.</p>
Fig. 1 in Isodontia Mexicana (Hymenoptera, Sphecidae), A New Invasive Wasp Species In The Fauna Of Ukraine Reared From Trap-Nests In The Crimea
Fig. 1. Nesting site, nests, and imago of Isodontia mexicana: 1 — nesting site (arrow indicates the position of trap-nest); 2 — trap-nest containing three wasp nests; 3 — dissected nests in reed stems; 4 — cells with cocoons and remains of tree crickets; 5 — female reared from one nest. Scale bars 1 cm.
Comparison of the oviposition and predation impact on Dendroctonus micans (Kug.) of wild and laboratory-reared Rhizophagus grandis Gyll. on oriental spruce in Turkey
<p>Laboratory and statistical results</p>
Divergent specialization of simple venom gene profiles among rear-fanged snake genera (Helicops and Leptodeira, Dipsadinae, Colubridae) datasets
<p>Table S1: GenBank accession numbers for mitochondrial sequences by species.</p>
FIGURE 10 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 10. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), adult: Leg setae.
FIGURE 8 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 8. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), adult: Habitus, dorsal view.
FIGURE 3 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 3. Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, larva: General view.
Rearing Horses Statue
Rearing Horses Statues Made of Marble Source: Objaverse 1.0 / Sketchfab
Figures 48-51 from: Quicke D, Smith M, Miller S, Hrcek J, Butcher B (2012) Colastomion Baker (Braconidae, Rogadinae): nine new species from Papua New Guinea reared from Crambidae. Journal of Hymenoptera Research 28: 85-121. https://doi.org/10.3897/jhr.28.3484
Figures 48-51 - Colastomion pukpuk sp. n. holotype, Cell^D® light photomicrographs. 48 Face 49 propodeum showing largely smooth anterior 50 wings 51 metasomal tergites 2–6.
Figures 2-5 from: Quicke D, Smith M, Miller S, Hrcek J, Butcher B (2012) Colastomion Baker (Braconidae, Rogadinae): nine new species from Papua New Guinea reared from Crambidae. Journal of Hymenoptera Research 28: 85-121. https://doi.org/10.3897/jhr.28.3484
Figures 2-5 - Colastomion gregarius sp. n. light photomicrographs. 2 Habitus, lateral view 3 face 4 head and mesosoma, lateral view 5 basal venation of fore wing.
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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.