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6,186 results for “larvae”
Figure 52 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 52. Stegana coleoptrata, preserved larva, thorax and head, head to the right, lateral view, length 1.3 mm.
Figure 40 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 40. Acidia cognata, leaf mine in Tussilago farfara L. Asteraceae: t = between the arrows, part of a feeding track; a = arcs within a feeding track.
Figures 41 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 41. Head skeletons of phytophagous species, lateral views, mandibles to the left. (A) Tephritis vespertina, length 0.3 mm; (B) Acidia cognata, length 0.6 mm; (C) Chaetostomella cylindrica, length 0.6 mm; (D) Botanophila seneciella, length 0.7 mm. Botanophila seneciella, drawing of mandible and intermediate sclerite: (E) lateral view with muscle tendons; (F) ventral view; (G) Pegomya solennis, length 0.5 mm.
Figure 11 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 11. Microdon analis, position of mandibles and labial plate + sclerites during a feeding lunge inside a Lasius ant larva (Formicidae), still from Film 5. lp = labial plate and sclerites; m = mandible, ma = apodeme at base of mandible.
Figures 12 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 12. Melangyna cincta, preserved larva. (A) Prothorax and apex of head skeleton, apico-ventral view; (B) prothorax and apex of head skeleton, lateral view; (C) drawing of apical end of the head skeleton, lateral view. a = antenna; c = connecting tissue; lb = labrum; lm = labium; m = mandible; ma = postero-ventral muscle attachment apodeme; os = labial sclerite; ts = triangular sclerite.
Figures 4 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 4. Lonchoptera lutea, feeding on biofilm coating dead wood, stills from Film 2. (A) Pseudocephalon lowered into biofilm; (B) extrudable cones swing round to front of pseudocephalon; (C) pseudocephalon lifted up; (D) limit of pseudocephalon lifting.
Figure 7 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 7. Polyporivora picta, labial teeth and mandible with serrated margin outside the upper two labial teeth.
Figure 9 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 9. Microdon analis, drawing of the articulation point between the mandible and the labium, lateral view, length of mandible 0.3 mm. lm = labium; lp = labial plate; ls = labial sclerite; m = mandible; mt = muscle tendon; sd = salivary duct; sj = socket joint.
Figures 6. Polyporivora picta, head skeleton from a in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 6. Polyporivora picta, head skeleton from a puparium. (A) Lateral view, labial teeth to the right, length 0.6 mm; (B) apical view of labial teeth.
Figure 8 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 8. Microdon analis, head skeleton, removed from a puparium, lateral view, mandibles to the left, length 1.4 mm.
Figure 2 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 2. Lonchoptera lutea, larva with extended front compartment, still from a film. p = prothotax; m = mesothorax; m+a1 = fused metathorax + first abdominal segment.
Figs. 46–48 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs. 46–48. Habitus of the pupa of Ora depressa (Fabricius, 1801). 46 – dorsal aspect. 47 – lateral aspect. 48 – ventral aspect. Scale bar = 1.0 mm.
Figs 1–2 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 1–2. Habitus of Ora depressa (Fabricius, 1801), dorsal aspect. 1 – last instar larva. 2 – male adult. Scale bars = 1 mm.
Figs 14–16 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 14–16. Mandible of the last instar larva of Ora depressa (Fabricius, 1801). 14 – ventral aspect. 15 – close-up of the rectangular area indicated in figure 14. 16 – close-up of the rectangular area indicated in figure 14 in dorsal aspect. Scale bar: 0.2 mm.
Figs 39–45 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 39–45. Abdomen of the last instar larva of Ora depressa (Fabricius, 1801). 39 – close-up of the chaetotaxy of tergites 1–7. 40 – close-up of the chaetotaxy of sternites 1–7. 41 – tergite 8, dorsal aspect. 42 – tergite 9, ventral aspect. 43 – sternite 8, ventral aspect. 44 – sternite 9, ventral aspect. 45 – marginal seta of sternite 9. Scale bars: 39 = 0.02 mm; 40 = 0.1 mm; 41–44 = 0.5 mm; 45 = 0.003 mm.
Figs 36–38 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 36–38. Leg of the last instar larva of Ora depressa (Fabricius, 1801). 36 – prothoracic leg. 37 – tibiotarsus and pretarsus of prothoracic leg. 38 – close-up of tibiotarsal organ. Scale bars: 36 = 0.5 mm; 37 = 0.1 mm; 38 = 0.01 mm.
Figs 8–9 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 8–9.Antenna of the last instar larva of Ora species. 8 – right antenna of Ora depressa (Fabricius, 1801), dorsal aspect. 9 – antennal sensorium of Ora sp. Scale bars = 0.1 mm.
Figs 32–35 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 32–35. Thorax of the last instar larva of Ora depressa (Fabricius, 1801), dorsal aspect, showing long hair-like setae (squares with a cross), club-like setae (squares), ungrooved scale-like setae (circles with dot), and pore-like sensilla (circles). 32 – pronotum. 33 – mesonotum. 34 – metanotum. 35 – close-up of several grooved scale-like setae and one club-like seta of thorax. Scale bars: 32–34 = 0.5 mm; 35 = 0.02 mm.
Figs 25–27 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 25–27. Labium of the last instar larva of Ora depressa (Fabricius, 1801). 25 – labium, ventral aspect. 26 – close-up of the apical portion of right palpus, showing conical basiconic sensillum (Conical B), elongate basiconic sensillum (Elongate B), styloconic sensilla (S), and coeloconic sensilla (C). 27 – close-up of the rectangular area indicated in figure 25, showing the multifid setae of stiff plate (hypopharynx). Scale bars: 25 = 0.2 mm; 26 = 0.002 mm; 27 = 0.01 mm.
Figs 53–58 in The last instar larva and pupa of Ora depressa (Coleoptera: Scirtidae), a marsh beetle with underwater pupation
Figs 53–58. Pupa of Ora depressa (Fabricius, 1801), ventral aspect. 53 – left side of head and prothorax. 54 – close-up of the rectangular area indicated in figure 53. 55 – close-up of the rectangular area indicated in figure 54. 56 – female attachment organ. 57 – terminal portion of the abdomen of male. 58 – close-up of male attachment organ. Scale bars: 53 = 0.5 mm; 54, 56–57 = 0.2 mm; 55, 58 = 0.05 mm.
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.