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2,453 results for “Architecture”
FIGURE 6 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 6. Queen of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species. A. Facial view. B. Dorsal detail of head and mesosoma. C. Outer surface of metatibia and metatarsus.
FIGURE 9 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 9. Male terminalia of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species. A. Sternum VI. B. Sternum VII. C. Genital capsule (left half is dorsal, right half is ventral).
FIGURE 2 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 2. Worker of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species. A. Lateral habitus. B. Dorsal habitus.
FIGURE 5 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 5. Queen of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species. A. Lateral habitus. B. Dorsal habitus.
FIGURE 8 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 8. Drone of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species. A. Facial view. B. Outer surface of metatibia and metatarsus. C. Ventral view of metasomal apex. D. Ventral oblique aspect of metasomal apex, showing length and angulation of setae on sternal brushes.
FIGURE 16 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 16. Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species, from La Guajira, Colombia. A. Diagrammatic outline of sagittal section of nest and contents (note that nest entrance was removed and would be facing outward toward the viewer), B. Photograph of medial section of brood cells. C. Photograph of honey pots and brood cells.
FIGURE 13 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 13. Nest of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species, in La Guajira, Colombia (photographs by M.S. Engel). A. Location of nest in the side of a divi-divi tree (Libidibia coriaria (Jacq.) Schltdl.) (Fabaceae: Caesalpinioideae) (arrow shows position of nest entrance). B. Detail of nest entrance.
FIGURE 11 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 11. Diagram of entire mature larva of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species, lateral view, head toward left, showing distribution of paired segmental dorsolateral body tubercles and small size of larva.
FIGURE 15 in Nest Architecture, Immature Stages, and Ethnoentomology of a New Species of Trigonisca from Northern Colombia (Hymenoptera: Apidae)
FIGURE 15. Sampled nest of Trigonisca (Trigonisca) mepecheu Engel and Gonzalez, new species, from La Guajira, Colombia (photographs by M.S. Engel). A. Section of Libidibia coriaria (Jacq.) Schltdl. (Fabaceae: Caesalpinioideae), with side removed to expose nest within. B. Detail of brood cells in situ. C. Detail of brood cells in situ.
Figure 10. Hinge architecture. A in Reconstructing the Anomalodesmata (Mollusca: Bivalvia): morphology and molecules
Figure 10. Hinge architecture. A, Pandora patula; B, Laternula constricta; C, Myochama anomioides; D, Cleidothaerus albidus; E, Lyonsiella formosa; F, Poromya buttoni; G, Euciroa galatheae; H, Cuspidaria undata. A–D, F, G redrawn from Prezant (1998), E redrawn from Allen & Turner (1974), H redrawn from Poutiers (1984).
Figure 18. Neochlamisus platani. A in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 18. Neochlamisus platani. A, adult habitus, with prothorax distended as a result of preservation. B, case series from egg case (left) to pupal case (right). C–H, scanning electron micrographs. C, egg case, lateral aspect. D, egg stalk. E, egg case surface. F, instar-II case, showing external texture variation between maternal and larval sections. G, instar-I case, forewall removed, internal aspect. H, instar-I case, exterior trichome coat of larval section.
Figure 19. Neochlamisus platani. A in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 19. Neochlamisus platani. A, instar-II case, dorsal aspect. B, instar-III case, lateral aspect. C, instar-IV case, lateral aspect. D, larva, instar IV, lateral aspect. E–J, Scanning electron micrographs. E, instar-III case, forewall removed, internal aspect. F, instar-III case, forewall removed, internal surface with trichome. G, instar-IV case, external surface with stellate trichomes. H, instar-IV case, cross-section of wall showing trichome–faecal matrix. I, pupal case, crosssection of wall. J, Pupal case, cross-section near apex.
Figure 17. Neochlamisus eubati. A, adult habitus. B in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 17. Neochlamisus eubati. A, adult habitus. B, case series from egg case (left) to pupal case (right). C, egg case, lateral aspect. D, instar-I case. E, instar-I case, base opening. F, instar-II case, lateral aspect. G, ventral aspect, with suture. H, instar-III case, ventral aspect. I, instar-III case, dorsal aspect. J, instar-IV case, ventral aspect. K, instar-IV case, lateral aspect.
Figure 16. Neochlamisus cribipennis. A in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 16. Neochlamisus cribipennis. A, larval instar III, live feeding on host plant leaf (photo by CGB). B, pupa attached to host leaf petiole (photo by CGB). C, instar-IV case, ventral suture split open. D, instar-IV case, wall cross-section showing trichome in faecal matrix, scanning electron micrograph.
Figure 15. Neochlamisus cribipennis. A, adult habitus. B in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 15. Neochlamisus cribipennis. A, adult habitus. B, case series from egg case (left) to pupal case (right); instar-III and pupal cases are broken, exposing stage inside. C, egg case, scanning electron micrograph. D, egg case, lateral wall, scanning electron micrograph. E–G, instar-III case. E, lateral aspect. F, ventral aspect. G, base opening.
Figure. 14. Neochlamisus comptoniae. A, adult habitus. B in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure. 14. Neochlamisus comptoniae. A, adult habitus. B, case series from egg case (left) to pupal case (right). C–E, egg case. C, lateral aspect. D, apex with egg stalk. E, roof. F, instar-I case, lateral view. G, instar-I case, ventrolateral view. H, larval instar-II case, opening. I, larval instar III. J, instar-III case, lateral view.
Figure 13. Neochlamisus chamaedaphnes. A in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 13. Neochlamisus chamaedaphnes. A, instar-II case, lateral aspect, with striations that vary in colour. B–D, G, scanning electron micrographs. B, instar-II case, lateral aspect. C, instar-II case, ventral suture split open. D, instar-IV case, lateral aspect. E, pupal case, ventral aspect. F, pupal case, lateral aspect. G, pupal case, boundary between egg case and larva-I sections.
Figure 11. Neochlamisus bimaculatus. A, adult habitus. B in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 11. Neochlamisus bimaculatus. A, adult habitus. B, case series from egg case (left) to pupal case (right). C–E, H–I, scanning electron micrographs. C, egg case, lateral aspect, broken medially. D, egg case, egg stalk. E, egg case, flange. F, instar-II case, lateral aspect. G–I, instar-IV case. G, ventral aspect. H, internal aspect with forewall removed. I, internal aspect, faecal layers of wall.
Figure 8 in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 8. Neochlamisus bebbianae III: Betula host form. A, instar-I case, lateral aspect. B, instar-II case, lateral aspect. C, instar-II case, ventral aspect. D, instar-III case, ventral aspect. E, instar-IV case, lateral aspect. F, pupal case, ventral aspect.
Figure. 1. A, Neochlamisus bebbianae IV in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure. 1. A, Neochlamisus bebbianae IV: Acer (maple) host form coating her faeces on her eggs. B, egg case of Neochlamisus platani. C, third instar of Neochlamisus chamaedaphnes walking with its portable case. D, second instar of Neochlamisus bebbianae, Salix (willow) host form. All photos by CGB.
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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.