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Figs 8–13. 8 – anterior spiracle. 9 in Micromorphology of egg and larva of Eristalis fratercula, with an updated key of Eristalis species with known third instar larvae (Diptera: Syrphidae)
Figs 8–13. 8 – anterior spiracle. 9 – two patches of sclerotized spicules. 10 – mesothoracic proleg; 11 – first abdominal proleg; 12 – sixth abdominal proleg; 13 – posterior breathing tube. Abbreviations: cs – central scars; fa – facets; ip – incurved plate; is – interspiracular setae; so – spiracular openings; sp – spiracular plate.
Figs 2–7 in Micromorphology of egg and larva of Eristalis fratercula, with an updated key of Eristalis species with known third instar larvae (Diptera: Syrphidae)
Figs 2–7. Third instar larva of Eristalis fratercula (Zetterstedt, 1838). 2 – head and thoracic segments (pro- and mesothorax), ventral view; 3 – antennomaxillary organs; 4 – details of the cephalic region and lips; 5–6 – long branched spicules in the upper margin on the lateral lips; 7 – longitudinal grooves and anterior spiracles, dorsal view. Abbreviations: am – antennomaxillary organs; an – antenna; as – anterior spiracles; bs – branched spicules; dl – dorsal lips; es – extra pair of sensilla; ll – lateral lips; mp – maxillary palp; mtp – mesothoracic prolegs; ts – tuft of long setae; vl – ventral lips.
Fig. 5 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 5. Female of Tetrastichus brachyopae reared from puparium of Brachyopa panzeri for the first time.
Fig. 4 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 4. Morphology of Brachyopa panzeri puparium. A — opened pupa in dorsal view; B — upal spiracle, lateral view; C — pupal spiracle, apical view; D — spiracular openings of pupal spiracles (SO).
Fig. 3 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 3. Scanning electron microphotograph of larval spiracular plate on the apex of breathing tube of Brachyopa panzeri (SEM). Labels: CS — central scars; IS — interspiracular branched setae; SP — spiracular opening.
Fig. 1 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 1. The dorsal (A) and ventral (B) views of third-instar larva of Brachyopa panzeri. Labels: P — prothorax, Ms — mesothorax, Mt — metathorax, A1, A7, A8 segments of the body (segments A2–6 similar to A1); cd — central dark area, V7 — ventral sensillum of second abdominal segment; prp — posterior breathing tube; lp — lappets, am — atenno-maxillary organ; vl — ventral lip; w — larval discs.
CLSM data of 1st instar larva of Dilar montanus
<p>The 1st instar larva of<em> Dilar montanus </em>Yang was mounted between two cover slips with double-sided tape spacers in a drop of methyl-salicylate and scanned from both sides with an argon laser emitting light of 488 – 579 nm wave length using a Zeiss LSM 880. The obtained datasets were stitched together using the “align manually with landmarks” tool of the TrackEM plugin for ImageJ and exported as a .tiff images stack. The voxel size for the dataset is 1.489 µm x 1.489 µm x 8.277 µm.</p>
Fig. 9. Last instar larva. A in Phylogenetic analysis and systematics of the Acrapex unicolora Hampson species complex (Lepidoptera, Noctuidae, Noctuinae, Apameini), with the description of Fve new species from the Afrotropics
Fig. 9. Last instar larva. A. Acrapex simillima le Ru sp. nov. B. A. unicolora (Hampson, 1910). Scale bar = 10 mm.
Fig. 7 Habitus. a Chrysomya bezziana. b Cochliomyia hominivorax. c Wohlfahrtia magnifica. d in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 7 Habitus. a Chrysomya bezziana. b Cochliomyia hominivorax. c Wohlfahrtia magnifica. d Lucilia cuprina. Abbreviations: a1–a7 abdominal segments 1–7, ad anal division, pc pseudocephalon, t1–t3 thoracic segments 1–3. Scale bar=0.1 mm
Fig. 6 in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 6 Cephaloskeleton of OTMA. a Chrysomya bezziana, lateral view. b Chrysomya bezziana, ventral view. c Cochliomyia hominivorax, lateral view. d Cochliomyia hominivorax, ventral view. e Wohlfahrtia magnifica, lateral view. f Wohlfahrtia magnifica, ventral view. Scale bar=0.1 mm. Abbreviations: a length of apical part of labrum, b length of basal part of labrum, db dorsal bridge, dc dorsal cornua, is intermediate sclerite, la lateral arm, lb labrum, mh mouthhook, pb parastomal bar, vc ventral cornua, vp vertical plate
Fig. 5 in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 5 First instar of Wohlfahrtia magnifica. a Third abdominal segment, dorsal view. b Third abdominal segment, ventral view. c Anal division, papilla p5. d Anal division, posterior end, dorsal view. e Anal division, posterior end, ventral view
Fig. 4 in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 4 First instar of Wohlfahrtia magnifica. a Anterior end of body, lateral view. b Anterior end of body, ventral view. c Antennal complex. d Maxillary palpus. e Ventral organ. f Keilin's organ. g Third thoracic segment, spines. h Second abdominal segment, spines. Abbreviations: as anterior spiracle, lb labrum, mh mouthhooks
Fig. 3 in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 3 First instar of Cochliomyia hominivorax. a Abdominal segments 1–3, ventral view. b Abdominal segment 2, spines. c Anal division, ventral view. d Anal division, posterior spiracles. Abbreviations: a1–a3 abdominal segments 1–3, ao anal opening, ap anal pad, asb anterior spinose band, at anal tuft, lcw lateral creeping welt, psb posterior spinose band, st peristigmatic tufts
Fig. 2 in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 2 First instar of Cochliomyia hominivorax. a Anterior end of body, antero-lateral view. b Anterior end of body, ventral view. c Antennal complex. d Maxillary palpus. e Functional mouth opening. f Ventral organ. g Keilin's organ. h First thoracic segment, spines
Fig. 1 in Morphology of the first instar larva of obligatory traumatic myiasis agents (Diptera: Calliphoridae, Sarcophagidae)
Fig. 1 First instar of Chrysomya bezziana. a Anterior end of body, lateral view. b Functional mouth opening. c Antennal complex. d Maxillary palpus. e Ventral organ. f Third abdominal segment, ventral view, anterior spines. g Anal division, posterior view. Abbreviations: abr antennal basal ring, ad antennal dome, an antennal complex, ao anal opening, ap anal pad, cir cirri, mh mouthhooks, mp maxillary palpus, ll labial lobe, lo labial organ, ns1 first additional sensillum coeloconicum, ns2 second additional sensillum coeloconicum, or oral ridges, p1–p7 papillae 1–7 sb1–sb3 sensilla basiconica, sc1–sc3 sensilla coeloconica, sp posterior spiracle, vo ventral organ
Fig. 1 4. Terellia tussilaginis, larva. 1 in Description Of The Third Instar Larvae Of Terellia Tussilaginis And T. Gynaecochroma (Diptera, Tephritidae)
Fig. 1 4. Terellia tussilaginis, larva. 1 — habitus, left; 2 — habitus5, ventral; 3 — larvae in seed; 4 — anterior spiracle; 5 — gnathocephalon, anterior view: ant — antenna; lso — lateral sensory organ; mh — mouthhook; max org — maxillary sensory organ; or rdg — oral ridges; s — sensillum.
Figure 11 in Ontogenetic instars ofEthiovertex africanus (Evans, 1953) (Acari, Oribatida, Scutoverticidae)
Figure 11 Ethiovertex africanus (Evans, 1953), dissected larva (a–f), protonymph (g, h) and deutonymph (i), microscope images: a – cerotegument on dorsolateral part of prodorsum; b – rostral seta; c – interlamellar and bothridial seta; d – notogastral setaec1 andc2 ; e – notogastral seta
Figure 5 in Ontogenetic instars ofEthiovertex africanus (Evans, 1953) (Acari, Oribatida, Scutoverticidae)
Figure 5 Ethiovertex africanus (Evans, 1953), juvenile instars (e–j: from dissected specimen): a – larva, dorsal view (part of right half of body omitted); b – protonymph, dorsal view (part of right half of body omitted); c – deutonymph, dorsal view (part of right half of body omitted – tritonymph, dorsal view (part of right half of body omitted); e – larval notogastral setah1; f – larval notogastral seta h2 ; g – larval epimeral seta 1a; h – larval subcapitulum, ventral view; i – larval palp, right, antiaxial view; j – larval chelicera, left, paraxial view. Scale bars 100 μm (b–d), 50 μm (a), 20 μm (h, j), 10 μm (e–g, i).
Figure 8 in Ontogenetic instars ofEthiovertex africanus (Evans, 1953) (Acari, Oribatida, Scutoverticidae)
Figure 8 Ethiovertex africanus (Evans, 1953), dissected legs of tritonymph (d): a – leg I (trochanter omitted), right, antiaxial view; b – leg II (trochanter omitted), right, antiaxial view; c – leg III, left, antiaxial view; d – leg IV, left, antiaxial view. Scale bar 50 μm.
Figure 2 in Ontogenetic instars ofEthiovertex africanus (Evans, 1953) (Acari, Oribatida, Scutoverticidae)
Figure 2 Ethiovertex africanus (Evans, 1953), adult: a – dorsal view (legs omitted); b – ventral view (legs omitted); c – right lateral view (gnathosoma and legs omitted). Scale bar 100 μm.
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.