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1,946 results for “immature stages”
Fig. 1 in Development and morphological characterization of the immature stages of Tetrastichus giffardianus Silvestri (Hymenoptera: Eulophidae)
Fig. 1. Tetrastichus giffardianus larvae (A) and pupae (B) inside a Ceratitis capitata puparium; (C) emergence of adults; (D) C. capitata puparium with T. giffardianus emergence hole.
Fig. 5 in A redescription of Antispastis clarkei Pastrana (Lepidoptera, Glyphipterigidae) immature stages, with notes on the life history and phylogenetic placement of the genus
Fig. 5. Scanning electron micrographs of Antispastis clarkei fourth (last) larval instar: A–C, head, under lateral, dorsal and ventral views, respectively; D, stemmata, lateral; E, labrum, dorsal; F, antenna, dorsal (asterisk indicates expanded antocoria); G,labium,lateral (asterisk indicates the spinneret); H, prothoracic dorsal shield,dorsal;I, prothoracic upper-coxal plate, lateral; J, spiracle of second abdominal segment, latero-ventral; K, mesothoracic leg, mesal; L, pretarsus in detail, latero-posterior; M, pseudopodium of third abdominal segment, latero-ventral; N, O, last abdominal segments, lateral and posterior, respectively. Scale bars = 200, 150, 200, 30, 50, 40, 10, 200, 80, 40, 100, 20, 80, 150, 150 µm, respectively.
Fig. 4 in A redescription of Antispastis clarkei Pastrana (Lepidoptera, Glyphipterigidae) immature stages, with notes on the life history and phylogenetic placement of the genus
Fig. 4. Scanning electron micrographs of Antispastis clarkei egg (A–C) and first larval instar (D–N): A, general view of egg, latero-dorsal; B, micropylar region on anterior pole, lateral; C, aeropyle, dorsal; D, general view of first instar, lateral; E, F, head, dorsal and anterior, respectively; G, detail of mandible, antenna and maxilla, antero-lateral (asterisk indicates corrugated nature of the mandibular base in association with the antennal antocoria); H, labium, antero-lateral (arrow indicates spinneret); I, stemmata, lateral; J, mesothoracic leg, postero-dorsal; K, tarsal claw in detail, mesal (asterisk indicates associated spatulate seta); L, M, prothoracic and third abdominal spiracles lateral; N, last abdominal segments postero-dorsal. Scale bars = 150, 15, 5, 100, 50, 30, 15, 10, 10, 10, 5, 10, 5, 20 µm, respectively.
Fig. 8 in A redescription of Antispastis clarkei Pastrana (Lepidoptera, Glyphipterigidae) immature stages, with notes on the life history and phylogenetic placement of the genus
Fig. 8. Transverse histological sections of Antispastis clarkei mine on Solanum johannae leaves. A, initial, filiform portion (location indicated by unbroken line in Fig. 7E); B, detail of initial portion (enlarged area marked with a rectangle in A) with cut anticlinal cell wall of palisade parenchyma cells; C, final, blotch portion (location indicated by dashed line in Fig. 7E); D, E, details of blotch portion (enlarged areas marked with rectangles in C) with intact cells in adaxial epidermis and spongy parenchyma. Asterisks indicate intact cells of palisade parenchyma. Open arrows indicate cellular fragments left on palisade parenchyma after insect feeding. Ab, abaxial epidermis; Ad, adaxial epidermis; Lm, leaf mine; Pp, palisade parenchyma; Sp, spongy parenchyma. Scale bars = 50, 40, 100, 50, 50 µm, respectively.
Figs. 43–44 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 43–44. Cyclocephala melanocephala, third instar larva; 43, raster; 44, setae detail; a, pali; b, hamate setae; c, short setae; d, long setae. Scale, Fig. 43 = 1 mm; Fig. 44 = 0.5 mm.
Figs. 26–42 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 26–42. Cyclocephala melanocephala, third instar larva; 26–28, right legs and pleurites (anterior, medial, posterior); 29–31, right pro-, meso- and metapretarsus, dorsal; 32–33, detail of perforations of mesothoracic spiracle (dorsal arm, medial area); 34–42, mesothoracic spiracle and abdominal spiracles I–VIII. Scale, Fig. 26 = 0.3 mm; Figs. 29, 34 = 0.1 mm; Fig. 32 = 0.05 mm.
Figs. 23–25 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 23–25. Cyclocephala melanocephala, third instar larva; 23, maxilla, internal; 24, maxilla, hypopharynx, ligula, dorsal; 25, maxilla, labium, ventral. ppa, posterior preoral area. Scale = 0.5 mm.
Figs. 7–12 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 7–12. Cyclocephala melanocephala, third instar larva; 7, cranium and clypeus, dorsal; 8, labrum, dorsal (epipharyngeal ventral setae omitted); 9–12, left antenna (dorsal, internal, external, ventral; external and internal sides with apex detail; some sensilla numbered to easily the correspondence; sensillum h can be absent). Chaetotaxy (italic) on the text. Scale = 0.5 mm (antennal details with magnification four times bigger than antennae).
Figs. 7–12. Platycoelia valida, third instar larva. 7 in Description of immature stages of Platycoelia valida Burmeister, 1844 (Coleoptera: Melolonthidae: Rutelinae: Anoplognathini)
Figs. 7–12. Platycoelia valida, third instar larva. 7, maxillary stridulatory teeth. Last antennomere: 8a, ventral view, 8b, dorsal view, showing sensory spots. Prothoracic spiracle: 9a, dorsal view, 9b, lateral view, 9c, respiratory plate holes. 10, raster. Lateral view of claw: 11a, mesotarsus, 11b, metatarsus. 12, lateral view of complete body. Scale lines = 0.5 mm, except in Figs. 10, 12 = 5 mm.
Fig. 13 in Description of immature stages of Platycoelia valida Burmeister, 1844 (Coleoptera: Melolonthidae: Rutelinae: Anoplognathini)
Fig. 13. Pupa of Platycoelia valida. 13a, ventral view, 13b, lateral view, 13c, dorsal view. Ventral view of last abdominal segment showing genital ampulla: 13d, male, 13e, female, 13f, detail of dorsal view of genital plate of female. Scale lines = 2 mm.
Fig. 4 in Morphology of immature stages and mating behavior in Liogenys fusca (Blanchard) (Coleoptera, Melolonthidae, Melolonthinae)
Fig. 4. Sequential activities involved in the mating behavior of Liogenys fusca observations (numbers indicate the proportion of individual/pairs that engaged in each activity; n = 50).
Fig. 2 in Biology of the immature stages of Strymon crambusa (Lycaenidae, Theclinae) on Oxalidaceae
Fig. 2. Strymon crambusa, immatures and adult reared under laboratory conditions on Oxalis: (A) egg on the peduncle of inflorescences O. cordata; (B) first instar, (C) second instar, (D) third instar and (E) fourth instar on O. densifolia; (F) pupa; (G) adult male, dorsal view and (H) ventral view.
Figs. 61–62 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 61–62. Male genitalia of species of Siderone Hübner, [1823] in lateral view. 61: Siderone galanthis catarina Dottax and Pierre, 2009 comb. nov. (Santa Catarina, Brazil). 62: Siderone syntyche mars Bates, 1860 (Huánuco, Peru). Scale bar = 1 mm.
Fig. 58. Neighbor joining tree using Kimura-2 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Fig. 58. Neighbor joining tree using Kimura-2-Parameter distance model of 37 sequences of species of Siderone Hübner [1823] and Coenophlebia C. Felder and R. Felder, 1862, with 658 base pairs of the mitochondrial gene cytochrome oxidase, Subunit I. Scale bar = 1% of distance.
Figs. 33–36 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 33–36. Head capsules of fifth instars in anterior and lateral views. 33 and 34: Zaretis strigosus (Gmelin, [1790]). 35 and 36: Siderone galanthis catarina Dottax and Pierre, 2009 comb. nov. Scale bar = 1 mm.
Figs. 44–57 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 44–57. Host plant and immature stages of Siderone galanthis catarina Dottax and Pierre, 2009 comb. nov. 44: Host plant, Casearia sylvestris (Salicaceae). 45: Egg, lateral. 46: Second instar resting in frass chain. 47: Second instar, dorsal. 48 and 49: Third instar, lateral and dorsal. 50 and 51: Fourth instar, lateral and dorsal. 52 and 53: Fifth instar, lateral and dorsal. 54: Fifth instar, head capsule in anterior view. 55 and 56: Pupa, ventral, dorsal and lateral views. Scale bars = 1 mm.
Figs. 5–8 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 5–8. Siderone galanthis catarina Dottax and Pierre, 2009 comb. nov. (Santa Catarina, Brazil). 5 and 6: Male, dorsal and ventral. 7 and 8: Female, dorsal and ventral. Scale bar = 1 cm.
Figs. 9–22 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 9–22. Immature stages of Zaretis strigosus (Gmelin, [1790). 9 and 10: First instar, lateral and dorsal. 11 and 12: Second instar, lateral and dorsal. 13 and 14: Third instar, lateral and dorsal. 15 and 16: Fourth instar, lateral and dorsal. 17 and 18: Fifth instar, lateral and dorsal. 19: Fifth instar, head capsule, anterior view. 20–22: Pupa, ventral, dorsal and lateral views. Scale bars = 1 mm.
Figs. 23–26 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 23–26. Schematics of the first instar of Zaretis strigosus (Gmelin, [1790]) and Siderone galanthis catarina Dottax and Pierre, 2009 comb. nov. 23 and 24: Head capsule, anterior and posterior. 25: Prothoracic plate, dorsal. 26: Thorax and abdomen, lateral.
Figs. 1–4 in External morphology of immature stages of Zaretis strigosus (Gmelin) and Siderone galanthis catarina Dottax and Pierre comb. nov., with taxonomic notes on Siderone (Lepidoptera: Nymphalidae: Charaxinae)
Figs. 1–4. Zaretis strigosus (Gmelin, [1790]) (Santa Catarina, Brazil). 1 and 2: Male, dorsal and ventral. 3 and 4: Female, dorsal and ventral. Scale bar = 1 cm.
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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.