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Figures 5–7. Amyna axis last instar. 5 Head, frontal 6 in Larva and pupa of Amyna axis (Guenee, 1852) and affirmation of its taxonomic placement in Bagisarinae (Lepidoptera, Noctuidae)
Figures 5–7. Amyna axis last instar. 5 Head, frontal 6 Head, lateral, with prothoracic gland (adenosma) indicated 7 Crochets, with subapical tooth indicated.
Figure 8 in Ultrastructure of the prosomal gland complex in unfed larvae of the fresh-water mite Limnesia maculata (Müller, 1776) (Acariformes, Limnesiidae)
Figure 8 Organization of the labyrinth of coxal glands in unfed larvaeL. maculata.TEM. a – Central portion of the labyrinth with a conspicuous central lumen filled with various membranous and granular structures. Scale bar – 2 μm; b – Portion of the labyrinth with a collapsed lumen penetrated by microvilli. Scale bar – 2 μm; c – Basal lamina penetrating between the gland cells at their base (arrow). Scale bar – 0.5µζ; d – Portion of the convoluted labyrinth showing semi-circled mutual invagination of the gland cells (arrow). Scale bar – 1 μm; e – The apical cell contact with hardly distinguishable septate junction (arrow). Note axial filaments within microvilli (arrowheads). Scale bar – 0.5 μm. gl – glycogen; gll – gland lumen; m – mitochondria; mg – midgut; mt – microtubules; mv – microvilli; n – nucleus; nu – nucleolus; rb – residual body; rer – rough endoplasmic reticulum.
Figure 1 in Ultrastructure of the prosomal gland complex in unfed larvae of the fresh-water mite Limnesia maculata (Müller, 1776) (Acariformes, Limnesiidae)
Figure 1 Podocephalic glands in unfed larvaeL. maculatain sagittal sections. TEM. a – Nearly axial section showing two medial glands located one after another as well as pharynx and chelicera. Scale bar – 20 μm; b – Section slightly apart from the axial line showing medial glands and podocephalic canal.Arrow indicates long extensions of the duct-forming cells flanking lateral lacunas of the intra-alveolar lumen. Scale bar – 10 μm; c – Section through the region of the origin of leg I showing the lateral and the ventral glands as well as the terminal bladder of the coxal gland in a nearly collapsed condition. Scale bar – 20 μm. amg – anterior medial gland; bl – bladder; br – brain; ch – chelicera; hem – hemocyte; ial – intra-alveolar lumen; lg – lateral gland; legI – leg I; ms – muscles; pc – podocephalic canal; ph – pharynx; pmg – posterior medial gland; schs – subcheliceral space; vg – ventral gland.
Figure 14. Metapenaeus dalli Post larvae I in Larval development of the western school prawn Metapenaeus dalli Racek, 1957 (Crustacea: Decapoda: Penaeidae) reared in the laboratory
Figure 14. Metapenaeus dalli Post larvae I (a) lateral view; (b) first antenna; (c) second antenna; (d) mandible; (e) first maxilla; (f) second maxilla; (g) first maxilliped; (h) second maxilliped; (i) third maxilliped; (j) third pereiopod; (k) fifth pereiopod; (l) pleopods; (m) telson and uropods. Scale bars: a–c, g–m = 0.1 mm; d–f = 0.05 mm.
Figure 7 in Improving knowledge of the cyclorrhaphan larva (Diptera)
Figure 7. Coelopa frigida (Coleophidae), third stage preserved larva, lateral view, head to the right, from the 2nd abdominal segment to the pseudocephalon, showing distribution of black spicules, length 5 mm.
Figure 5 in Improving knowledge of the cyclorrhaphan larva (Diptera)
Figure 5. Cibarial ridges and head skeleton pump in the basal sclerites of cyclorrhaphan larvae, mandibles to the left. a, head skeleton in situ, third stage larva of Alipumilio femoratus Shannon (Diptera, Syrphidae), ventro-lateral view, 1 = mandibles, 2 = cibarial ridges on the floor of the basal sclerite; b, Eumerus sp. Meigen (Syrphidae), lateral view, 3 = pharynx running along the floor of the basal sclerite, 4 = valve at the rear of the upturned ventral cornu, 5 = bands of muscle originating on the dorsal cornu and inserting on the roof of the pharynx and the ventral cornu that operate the pump, specimen prepared and donated by C.J. Hartley to the National Museums, Scotland.
Figure 4 in Improving knowledge of the cyclorrhaphan larva (Diptera)
Figure 4. Head skeletons of exemplar saprophages, lateral view, mandible towards centre; figures in parentheses are lengths of the basal sclerites in mm. a, Neophyllomyza acyglossa (Milichiidae) (0.2); b, Leucophora personata (Collin) (Anthomyiidae) (0.4); c, Chyromya femorellum (Fallén) (Chyromyidae) (0.4); d, Strongylophthalmyia ustulata (Zetterstedt) (Strongylophthalmyiidae) (0.4); e, Lonchaea nitens (Lonchaeidae) (0.3); f, Meoneura lamellata Collin (Carnidae) (0.2); g, Stegana coleoptrata (Drosophilidae) (0.4); h, Camilla fuscipes Collin (Camillidae) (0.3); i, Suillia variegata (Loew) (Heleomyzidae) (0.5); j, Lonchaea sylvatica (Lonchaeidae) (0.3).
Figure 50. Pegomya solennis, mandibles removed from a in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 50. Pegomya solennis, mandibles removed from a puparium, ventral view, maximum length 0.1 mm.
Figure 53 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 53. Stegana coleoptrata, thorax and head cleared in KOH, lateral view, head to the right, as = anterior spiracle; ms = mesothorax; mt = metathorax; os = oral sclerite; pro = prothorax; ps = pseudocephalon.
Figures 31 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 31. Neophyllomyza acyglossa. (A) Preserved larva, anterior end, lateral view, length 4.5 mm. Lunging, stills from Film 14: (B) limit of forward extension; (C) bending of the intermediate sclerite; (D) limit of bending in the intermediate sclerite.
Figure 26 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 26. Calliphora vomitoria, pseudocephalon with mandibles and cutting plates depressed, still from a film, apical view.
Figures 43 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 43. Pegomya solennis, larva feeding in a leaf mine on Rumex acetosa (Polygonaceae), stills from Film 18. (A) Position at the start of a feeding lunge; (B) position at the end of a feeding lunge.
Figures 38 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 38. Tephritis vespertina. (A) Feeding damage caused by the third stage larva inside the flowerhead of Hypochoeris radicata L. (Asteraceae); (B) larva in situ.
Figure 24 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 24. Coelopha frigida, preserved larva, abdominal segment 1, thorax and pseudocephalon, lateral view, length 2.9 mm.
Figure 22 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 22. Silba fumosa, mesothorax folding over prothorax during locomotion, lateral view, still from Film 9.
Figures 20. Silba fumosa, a lunge taking about 1 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 20. Silba fumosa, a lunge taking about 1 sec. (A) Start of a lunge, ventral view, from Film 8; (B) start of a lunge, lateral view from Film 9; (C–E) mandible positions at the limit of extension: (C) ventral view; (D) mandibles starting to depress and separate, ventral view; (E) on the substrate, lateral view.
Figures 33 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figures 33. Meiosimyza platycephala, preserved larva, pseudocephalon; (A) lateral view; (B) ventral view, length 0.2 mm.
Figure 21 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 21. Palloptera trimacula, mandibles fully extended and separated on lowering into food, antero-ventral view, still from Film 10.
Figure 54. Lonchaea sylvatica, still from Film 19 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 54. Lonchaea sylvatica, still from Film 19 showing small, sclerotised part of the oral plate (os), appearing below the inclined mandibular hooks (m), ventral view.
Figure 46 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 46 Chaetostomella cylindrica, preserved larva, lateral view, head to the right, length 6.3 mm.
ScienceDex guides
Understand access before you commit
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.