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356 results for “larval instar”
FIGURE 3 in Redescription of Paracles vulpina (Hübner, [1825]) (Lepidoptera: Erebidae), with comments of the aquatic habit of larval instars
FIGURE 3 Immature stages of Paracles vulpina (Hübner, [1825]). a Egg masses on grass leaves and emergence of the first instar stage, b First instar stage, c Last instar stage, d Cocoon and pupa.
FIGURE 4 in Redescription of Paracles vulpina (Hübner, [1825]) (Lepidoptera: Erebidae), with comments of the aquatic habit of larval instars
FIGURE 4 Chaetotaxy of the last instar of Paracles vulpina (Hübner, [1825]). a Thorax, b Abdomen. T1 (prothorax) Vd (dorsal verruca), Vsd (subdorsal verruca), Vl (lateral Verruca), T2-3 (meso and metathorax), Pl (Plastron), A1-9 (abdominal segments 1 to 9), Vsv (subventral verruca).
FIGURE 1 in Redescription of Paracles vulpina (Hübner, [1825]) (Lepidoptera: Erebidae), with comments of the aquatic habit of larval instars
FIGURE 1 Localities and environments where larvae and adults of Paracles vulpina were found. a Map of South America and a closer view of the localities. Red squares = Localities, b Flooded Pampa, Buenos Aires, Argentina. Black circles: larvae eating grass, c Grassland and Caragüatales of Santa Lucía, Montevideo Department, Uruguay, d High grassland, Quebrada del Condorito National Park, Córdoba, Argentina.
FIGURE 2 in Redescription of Paracles vulpina (Hübner, [1825]) (Lepidoptera: Erebidae), with comments of the aquatic habit of larval instars
FIGURE 2 Habitus and genitalia of Paracles vulpina (Hübner, [1825]). a Dorsal (left) and ventral (right) view of adult male, b Dorsal (left) and ventral (right) view of darker adult male, c Dorsal (left) and ventral (right) view of adult female, d Male genitalia, e Aedeagus, f Female genitalia. Scale bar: 10 mm.
FIGURE 14 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 14. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), larva: Legs I–III. Details of tarsus (ta) I–III (normal setae omitted). Abbreviations: elcI—supracoxal seta, z—accompanying seta, ω—solenidion on tarsus, ζ—eupathidium, φ—solenidion on tibia, ε—famulus, κ—microseta, σ—solenidion on genu.
FIGURE 11 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 11. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), larva: Habitus of unfed larva in dorsal view.
FIGURE 13 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 13. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), larva: a—scutum. b—gnathosoma, ventral view. Abbreviations: AL—anterior lateral seta, ASens—anterior sensillum (AM of other authors), PL—posterior lateral seta, PSens—posterior sensillum, as—oral spine like seta, bs—hypostomal seta, cs—adoral seta, elcp—supracoxala, ω—solenidion, ζ—eupathidium.
FIGURE 15 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 15. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), Phenology based on cumulated data of regular field samplings 2000–2001 in the National Park 'Lower Odra Valley'. LA—larva (n=85), PN—protonymph (n=4), DN—deutonymph (n=13), TN—tritonymph (n=5), AD—adult (n=48).
FIGURE 9 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 9. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), adult: a—palp genu, tibia and tarsus (lateral view) and medial view of palp tibia and tarsus, b—scutum with crista metopica and position of lateral eyes, c—posterior dorsal body setae.
FIGURE 5 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 5. Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, larva: a—leg I (basifemur—genu, dorsolateral view), b—leg II (basifemur—genu, ventral view), c—leg III (basifemur—genu, ventral view). Abbreviations: κ—microseta, σ—solenidion on genu.
FIGURE 6 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 6. Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, larva: a—leg I (tibia—tarsus, dorsolateral view), b—leg II (tibia—tarsus, ventral view), c—leg III (tibia—tarsus, ventral view). Abbreviations: ε—famulus, κ—microseta, ω— solenidion on tarsus, ζ—eupathidium, φ—solenidion on tibia, z—accompanying seta.
FIGURE 2 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 2. Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, female: a—leg setae, deutonymph: b—palp, medial aspect, c—crista metopica, d—genital opening, e—anal opening.
FIGURE 1 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 1. Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, female: a—palp, medial aspect, b—non-sensillary seta (AM = AL), c—crista metopica, d—dorsal opisthosomal setae, e—ventral seta, f—genital opening, g—anal opening.
FIGURE 4 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 4. Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, larva: a—gnathosoma, ventral view, b—idiosoma, dorsal view, c—idiosoma, ventral view. Abbreviations: as—adoral seta, bs—hypostomal seta, cs—oral spine like seta, elcp—supracoxala, elcI—supracoxal seta on coxae I, ω—solenidion, ζ—eupathidium.
FIGURE 7 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 7. Attachment sites of larval Erythraeus (Zaracarus) budapestensis Fain and Ripka, 1998, at Uroleucon spp. a—attached to the head and thorax, b—attached to the abdomen, c—attached to the antenna, d—attached to the leg. Not to scale.
FIGURE 12 in Correspondence of larval and postlarval instars in two species of the subgenus Zaracarus (Acari: Erythraeidae: Erythraeus) established with laboratory rearing
FIGURE 12. Erythraeus (Zaracarus) rupestris (Linnaeus, 1758), larva: a—dorsal view of idiosoma with details of posterior dorsal seta and anterior sensillum, b—ventral view of idiosoma with detail of seta ps.
FIGURES 12–14. Copelatus alternatus Sharp, 1882, instar I in An outlook on larval morphology of Copelatinae diving beetles with phylogenetic considerations (Coleoptera: Adephaga, Dytiscidae)
FIGURES 12–14. Copelatus alternatus Sharp, 1882, instar I: (12–13) abdominal segment VIII; (12) dorsal aspect; (13) ventral aspect; (14) urogomphus, dorsal aspect. AB, abdominal segment VIII; UR, urogomphus. Numbers and lowercase letters refer to primary setae and pores, respectively. Spine-like spinulae on abdominal segment VIII not represented. Scale bars = 0.05 mm.
FIGURES 45–47. Copelatus parallelus Zimmermann, 1920, instar I in An outlook on larval morphology of Copelatinae diving beetles with phylogenetic considerations (Coleoptera: Adephaga, Dytiscidae)
FIGURES 45–47. Copelatus parallelus Zimmermann, 1920, instar I: (45–46) abdominal segment VIII; (45) dorsal aspect; (46) ventral aspect; (47) urogomphus, dorsal aspect. AB, abdominal segment VIII; UR, urogomphus. Numbers and lowercase letters refer to primary setae and pores, respectively; * = additional sensilla. Spine-like spinulae on abdominal segment VIII not represented. Scale bars = 0.05 mm.
FIGURES 19–23. First larval instar 19. Nasale, 20. Mandible, 21–23. Epipharynx. 21 in Descriptions of the developmental stages of Cafius nauticus (Fairmaire) (Coleoptera: Staphylinidae: Staphylininae), with comments on its biology
FIGURES 19–23. First larval instar 19. Nasale, 20. Mandible, 21–23. Epipharynx. 21. Olfactory organs; 22. General appearance; 23. Long cuticular processes posteriorly. Abbreviations: 1–2=setae, a–b=pores, LT=lateral tooth, MT=median tooth, OG=olfactory organ, PMT=paramedian tooth.
FIGURES 4–10. Hydrocanthus debilis Sharp, 1882, instar I in Description and chaetotaxic analysis of the larval instars of Hydrocanthus debilis Sharp, 1882 (Coleoptera: Noteridae)
FIGURES 4–10. Hydrocanthus debilis Sharp, 1882, instar I: (4) left antenna, dorsal aspect; (5) right antenna, ventral aspect; (6) left mandible, dorsal aspect; (7) right maxilla, dorsal aspect; (8) left maxilla, ventral aspect; (9) labium, dorsal aspect; (10) labium, ventral aspect. Numbers and lowercase letters indicate primary setae and pores respectively. AN, antenna; LA, labium; MN, mandible; MX, maxilla. Scale bars = 0.04 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.