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602 results for “Cryptocephalinae”
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.
Figure 4. Neochlamisus bebbianae I in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 4. Neochlamisus bebbianae I: Salix bebbianae (willow) host form. A, instar-I case, lateral aspect. B, instar-I case, ventral aspect. C, instar-II case, dorsal aspect. D, instar-II case, lateral aspect, scanning electron micrograph. E, instar-IV case, lateral aspect. F, instar-IV case, trichomes on external surface. G, instar-IV case, internal surface. H, instar-IV case, wall section showing trichome–faecal matrix.
Figure 3. Neochlamisus bebbianae I in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 3. Neochlamisus bebbianae I: Salix bebbianae (willow) host form. A, case series from egg case (left) to pupal case (right). B, egg case, lateral aspect, scanning electron micrograph. C, egg case, scanning electron micrograph.
Figure 12. Neochlamisus chamaedaphnes. A, adult habitus. B in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 12. Neochlamisus chamaedaphnes. A, adult habitus. B, case series from egg case (left) to pupal case (right). C–G, scanning electron micrographs. C, egg case, lateral aspect. D, egg case surface with trichomes. E, instar-I case, lateral aspect. F, instar-I case, egg section showing faecal plates. G, instar-I case, larval section with faecal rows.
Figure 10. Neochlamisus bebbianae IV in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 10. Neochlamisus bebbianae IV: Acer (maple) host form. A, instar-II case, ventral aspect. B, instar-II case, lateral aspect, orientation of faecal rows, scanning electron micrograph. C, Instar-III case, lateral aspect. D, instar-III case, base opening. E, instar-III case, ventral faecal wedge at base, scanning electron micrograph. F, instar-III case, internal surface, scanning electron micrograph. G, larval instar-IV, lateral aspect. H, Pupal case, lateral aspect.
Figure 7 in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 7. Neochlamisus bebbianae III: Betula (river birch) host form. A, adult habitus. B, case series from egg case (left) to pupal case (right). C–F, egg case, scanning electron micrographs. C, lateral aspect. E–F, external surface.
Figure 9. Neochlamisus bebbianae IV in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 9. Neochlamisus bebbianae IV: Acer (maple) host form. A, adult habitus. B, case series from egg case (left) to pupal case (right). Instar-II case: broken. C, egg case, with twisted egg stalk. D, egg-case roof sealed. E, egg-case roof unsealed by instar-I larva. F, instar-I case, egg stalk intact. G–I, scanning electron micrographs. G, instar-I case, internal aspect. H, instar-I case, cross-section of apex showing faecal matrix. I, instar-I case, cross-section of wall showing dense faecal matrix.
Figure 6. Neochlamisus bebbianae II in Faecal case architecture in the gibbosus species group of Neochlamisus Karren, 1972 (Coleoptera: Chrysomelidae: Cryptocephalinae: Chlamisini)
Figure 6. Neochlamisus bebbianae II: Alnus (alder) host form. A, adult habitus with prothorax unnaturally distended while preserved. B, case series from egg case (left) to pupal case (right). C, egg case apex showing egg stalk. D, egg case, sealed roof. E, instar-I case, lateral aspect. F, instar-II case, ventral aspect. G, instar-IV case, lateral aspect. H, pupal case, dorsolateral aspect. I–J, pupal case, surface textures, scanning electron micrographs.
Fig. 8 – Distribution maps. a in Five new species of the genus Griburius Haldeman from Central America (Coleoptera: Chrysomelidae, Cryptocephalinae)
Fig. 8 – Distribution maps. a, Griburius febriculosus; b, G. gracilis; c, G. mokaya; d, G. puncturatus; e, G. textus.
Fig. 7 – Griburius gamma. a–b in Five new species of the genus Griburius Haldeman from Central America (Coleoptera: Chrysomelidae, Cryptocephalinae)
Fig. 7 – Griburius gamma. a–b, habitus, dorsal and lateral view (HT, male); c, frontal view, male; d, frontal view, female; e–f, colour variation, male (e) and females (f-g); m–o, median lobe of aedeagus in ventral (m), dorsal (n) and lateral (o) view [0.5 mm]; h, antenna [1.5 mm]; i, spermatheca [0.3 mm]. Square brackets: length of scale segment.
Fig. 6 – Griburius equestris. a–b in Five new species of the genus Griburius Haldeman from Central America (Coleoptera: Chrysomelidae, Cryptocephalinae)
Fig. 6 – Griburius equestris. a–b, habitus, dorsal and lateral view (NT, female); c, frontal view, male; d, frontal view, female; e–f, colour variation, females; g, posterior view, male; m–o, median lobe of aedeagus in ventral (m), dorsal (n) and lateral (o) view [0.6 mm]; h, antenna [0.9 mm]; i, spermatheca [0.5 mm]. Square brackets: length of scale segment.
Fig. 4 in Five new species of the genus Griburius Haldeman from Central America (Coleoptera: Chrysomelidae, Cryptocephalinae)
Fig. 4 – Griburius puncturatus sp. nov. a–b, habitus, dorsal and lateral view (HT, male); d, frontal view, male; d, frontal view, female; e–f, colour variation, female; m–o, median lobe of aedeagus in ventral (m), dorsal (n) and lateral (o) view [0.5 mm]; h, antenna [1.6 mm]; i, spermatheca [0.3 mm]. Square brackets: length of scale segment.
Fig. 1 in Five new species of the genus Griburius Haldeman from Central America (Coleoptera: Chrysomelidae, Cryptocephalinae)
Fig. 1 – Griburius febriculosus sp. nov. a–b, habitus, dorsal and lateral view (PT, male); c, frontal view, male; d, frontal view, female; e–f, colour variation, female; m–o, median lobe of aedeagus in ventral (m), dorsal (n) and lateral (o) view [0.7 mm]; h, antenna [1.7 mm]; c spermatheca [0.3 mm]. sd, setose depressions. Square brackets: length of scale segment.
Fig. 3 in Five new species of the genus Griburius Haldeman from Central America (Coleoptera: Chrysomelidae, Cryptocephalinae)
Fig. 3 – Griburius mokaya sp. nov. a–b, habitus, dorsal and lateral view (HT, male); c, frontal view, male; d, frontal view, female; e–f, colour variation, female (e) and male (f); g, posterior view, male; m–o, median lobe of aedeagus in ventral (m), dorsal (n) and lateral (o) view [0.5 mm]; h, antenna [1.5 mm]; i, spermatheca [0.6 mm]. Square brackets: length of scale segment.
FIGURES 106 – 107. Metallactus decumanus. 106, Trochanter. 107 in Morphology of the prothorax and procoxa in the New World Cryptocephalini (Coleoptera: Chrysomelidae: Cryptocephalinae)
FIGURES 106 – 107. Metallactus decumanus. 106, Trochanter. 107, View of spiral ridge of trochanter.
FIGURE 1 in Morphology of the prothorax and procoxa in the New World Cryptocephalini (Coleoptera: Chrysomelidae: Cryptocephalinae)
FIGURE 1. Habitus of Bassareus brunnipes.
Fig. 1 in Tituboea purcharti sp. nov., the first representative of Clytrini from Socotra Island (Coleoptera: Chrysomelidae: Cryptocephalinae)
Fig. 1. Habitus of Tituboea purchati sp. nov. (holotype, male, 9.6 mm).
ScienceDex guides
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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.