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36 results for “solitary wasp”
Fig. 2 in Seasonal population abundance of the assembly of solitary wasps and bees (Hymenoptera) according to land-use in Maranhão state, Brazil
Fig. 2. Abundance of solitary bees according to land-use (a), month (b) and interactions between land-use and month (c). Repeated measures ANOVA followed by post hoc Fisher LSD tests (P <0.05). Means ± SE are given.
Fig. 1 in Seasonal population abundance of the assembly of solitary wasps and bees (Hymenoptera) according to land-use in Maranhão state, Brazil
Fig. 1. Abundance of solitary wasps according to land-use (a), month (b) and interaction between land-use and month (c). Repeated measures ANOVA followed by post hoc Fisher LSD tests (P <0.05). Means ± SE are given.
A solitary ground-nesting wasp truncates its parental investment in response to detection of parasites
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FIGURES 49–51 in Additions to the knowledge of solitary wasps (Hymenoptera: Vespidae: Eumeninae), with description of eight new species
FIGURES 49–51. Zethus (Zethus) intermedius sp. nov., ♂, holotype. 49, Propodeum in posterodorsal view. 50, Metasoma in lateral view. 51, Metasoma in posterior view.
FIGURES 35–40. 35–36 in Additions to the knowledge of solitary wasps (Hymenoptera: Vespidae: Eumeninae), with description of eight new species
FIGURES 35–40. 35–36, Symmorphus (Symmorphus) palawanensis sp. nov., ♀, holotype. 37–40, Synagris (Paragris) biplagiata Gusenleitner, 2005, ♂. 35, S1 in ventral view. 36, Metasoma in lateral view. 37, Habitus. 38, Head in frontal view. 39, Vertex in dorsal view. 40, Mandibolar articulation in posteroventral view.
FIGURES 29–34. 29 in Additions to the knowledge of solitary wasps (Hymenoptera: Vespidae: Eumeninae), with description of eight new species
FIGURES 29–34. 29, Symmorphus (Symmorphus) incisus sp. nov., ♀, holotype. 30–34,(Symmorphus) palawanensis sp. nov., ♀, holotype. 29, Metasoma in lateral view. 30, Habitus. 31, Head in frontal view. 32, Pronotum in dorsolateral view. 33, Propodeum in posterodorsal view. 34, T1 in dorsal view.
FIGURES 23–28 in Additions to the knowledge of solitary wasps (Hymenoptera: Vespidae: Eumeninae), with description of eight new species
FIGURES 23–28. Symmorphus (Symmorphus) incisus sp. nov., ♀, holotype. 23, Habitus. 24, Head in frontal view. 25, Head in posterodorsal view. 26, Propodeum in posterodorsal view. 27, T1 in dorsal view. 28, S1 in ventral view.
FIGURES 14–18 in Additions to the knowledge of solitary wasps (Hymenoptera: Vespidae: Eumeninae), with description of eight new species
FIGURES 14–18. Lissodynerus unicus sp. nov., ♀, holotype. 14, Habitus. 15, Head in frontal view. 16, Propodeum in posterior view. 17, Metasoma in dorsolateral view. 18, Metasoma in dorsal view.
FIGURES 13–17. 13 in Description of a new species of Oplitis Berlese, 1884, and the first record of a phoretic uropodid mite (Acari: Oplitidae) on a Neotropical solitary wasp (Hymenoptera: Vespidae)
FIGURES 13–17. 13. Dorsal view of the wasp Zethus pallidus; 14, 15, Detail of the mites attached to the wasp's propodeum; 16, 17, Detail of Oplitis ticumbi attached to the wasp.
FIGURES 1–8. Oplitis ticumbi, female. 1 in Description of a new species of Oplitis Berlese, 1884, and the first record of a phoretic uropodid mite (Acari: Oplitidae) on a Neotropical solitary wasp (Hymenoptera: Vespidae)
FIGURES 1–8. Oplitis ticumbi, female. 1. Dorsal idiosoma; 2. Dorsal shield; 3. ventral idiosoma; 4. Ventral shield; 5. Base of tritosternum; 6. Gnathosoma; 7. Chelicerae; 8: Apical portion of epistome.
FIGURES 11–17 in Dasyproctus helenae, a new species of solitary hunting wasp from India and a checklist of Dasyproctus Lepeletier de Saint Fargeau and Brullé, 1835 from the Indian subcontinent (Hymenoptera: Crabronidae: Crabronini)
FIGURES 11–17. Dasyproctus helenae sp. nov. Holotype ♀. 11. Propodeum; 12. Fore wing; 13. Tergum I; 14. Metasoma, dorsal view; 15. Metasoma, ventral view; 16. Metasoma, lateral view; 17. Pygidial plate.
FIGURES 4–10 in Dasyproctus helenae, a new species of solitary hunting wasp from India and a checklist of Dasyproctus Lepeletier de Saint Fargeau and Brullé, 1835 from the Indian subcontinent (Hymenoptera: Crabronidae: Crabronini)
FIGURES 4–10. Dasyproctus helenae sp. nov. Holotype ♀. 4. Head, dorsal view; 5. Head, lateral view; 6. Head, frontal view; 7. Clypeus; 8. Antenna; 9. Mesosoma, dorsal view; 10. Mesosoma, lateral view.
FIGURES 1–3 in Dasyproctus helenae, a new species of solitary hunting wasp from India and a checklist of Dasyproctus Lepeletier de Saint Fargeau and Brullé, 1835 from the Indian subcontinent (Hymenoptera: Crabronidae: Crabronini)
FIGURES 1–3. Dasyproctus helenae sp. nov. Holotype ♀. 1. Habitus, lateral view; 2. Habitus, dorsal view; 3. Habitus, ventral view.
FIGURES 27–28 in New records of solitary vespid wasps (Hymenoptera: Vespidae: Masarinae and Eumeninae s. l.) from the Nakhchivan Autonomous Republic of Azerbaijan
FIGURES 27–28. Pseudepipona herrichii (de Saussure, 1856) from the Nakhchivan Autonomous Republic of Azerbaijan, ♂. 27, habitus in lateral view. 28, head in frontal view.
FIGURES 8–10. Odynerus varentzowi Morawitz, 1895 in New records of solitary vespid wasps (Hymenoptera: Vespidae: Masarinae and Eumeninae s. l.) from the Nakhchivan Autonomous Republic of Azerbaijan
FIGURES 8–10. Odynerus varentzowi Morawitz, 1895, ♀, holotype. 8, habitus in lateral view. 9, head in frontal view. 10, labels.
FIGURES 1–7 in New records of solitary vespid wasps (Hymenoptera: Vespidae: Masarinae and Eumeninae s. l.) from the Nakhchivan Autonomous Republic of Azerbaijan
FIGURES 1–7. Antepipona specifica (Morawitz, 1895) (1–2) and A. varentzowi (Morawitz, 1895) (3–7) from the Nakhchivan Autonomous Republic of Azerbaijan. 1, 3, 5, habitus in lateral view (1, 3, ♀; 5, ♂). 2, 4, 6, head in frontal view (2, 4, ♀; 6, ♂). 7, apex of antenna (♂).
FIGURES 21–26 in New records of solitary vespid wasps (Hymenoptera: Vespidae: Masarinae and Eumeninae s. l.) from the Nakhchivan Autonomous Republic of Azerbaijan
FIGURES 21–26. Males of Brachyodynerus kusdasi Gusenleitner, 1967 (21–23) and Brachypipona orientalis Gusenleitner, 2004 (24–26) from the Nakhchivan Autonomous Republic of Azerbaijan. 21, 25, habitus in dorsal view. 22, 26, habitus in lateral view. 23–24, head in frontal view.
FIGURES 11–20 in New records of solitary vespid wasps (Hymenoptera: Vespidae: Masarinae and Eumeninae s. l.) from the Nakhchivan Autonomous Republic of Azerbaijan
FIGURES 11–20. Syntypes of Odynerus specificus Morawitz, 1895 (11–15) and O. curialis Morawitz, 1895 (16–20). 11, 13, 16, 18, habitus in lateral view (11, 16, ♀; 13, 18, ♂). 12, 14, 17, 19, head in frontal view (12, 17, ♀; 14, 19, ♂). 15, 20, apex of antenna (♂).
Effect of temperature on the post-diapause development rate, survival, and body mass of the solitary wasp Isodontia elegans
<p>We examined the relationship of post-diapause rearing temperature to developmental rate, survival, and adult body mass of the solitary wasp <em>Isodontia</em> <em>elegans</em> using prepupae from trap-nests. <em>Isodontia</em> <em>elegans</em> is a member of a genus often found in trap-nests in North America and Europe. Trap-nests are commonly used tools for studying cavity-nesting solitary wasps and bees. In temperate zones, progeny in nests usually overwinter as fully prepupae before pupating and emerging as adults. An important aspect of properly using trap-nests is determining temperatures that affect survival and health of developing offspring. After overwintering >600 cocoons containing prepupae after the summers of 2015 and 2016, we placed cocoons on a laboratory thermal gradient where offspring experienced one of 19 constant temperatures from 643°C; emergence of adults was monitored for 100 days. Our conservative estimate for the critical thermal minimum for development is 14°C, whereas that for the critical maximum is ~33°C. Prepupae transitioned to adults most rapidly at 29–33°C, but developmental rate was lower for some progeny exposed to temperatures ≥30°C. Offspring successfully reached the adult stage in <100 days at of temperatures of ~19–33°C. Adults from cocoons reared at lower temperatures weighed on average 6-10% more than expected based on their head widths, whereas those reared at higher temperatures weighed 4–10% less than expected. The difference may be due to greater rates of water loss and lipid metabolism during development at higher temperatures. Pre-overwintering cocoon mass was a significant predictor of relative adult body mass, indicating that adult health is partly related to their condition before overwintering. The trends we observed were similar to those for the bee <em>Megachile</em> <em>rotundata</em>, which we previously studied on the same gradient apparatus. However, data are needed on many other species of wasps and bees from a diversity of environments. </p>
FIGURES 1–4 in To the knowledge of the solitary vespid wasps (Hymenoptera: Vespidae: Masarinae and Eumeninae s. l.) of Uzbekistan
FIGURES 1–4. Nesting of Stenodynerus chitgarensis Giordani Soika, 1970. 1, nesting site (arrow indicates the position of the nest); 2, cell attached to subvertical surface of a stone (scale bar = 1 cm); 3, female building the entrance of the cell; 4, prey extracted from the cell, dorsal and lateral views (scale bar = 1 mm).
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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.