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FIGURE 8. Specimen 16 in The decline of silky lacewings and morphological diversity of long-nosed antlion larvae through time

FIGURE 8. Specimen 16 (IGR.ARC-205.2), continued. A–B. Composite fluorescence images in dorsal view, note the surface details. A. Blue light (GFP). B. Green light (TRITC). C. Composite bright-field image.

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FIGURE 10. Specimen 32 in The decline of silky lacewings and morphological diversity of long-nosed antlion larvae through time

FIGURE 10. Specimen 32 (PED 0055); Burmese amber. A. Dorsal view. B. Dorsal view, colour marked. C. Ventral view. D. Close-up of labrum (arrow) in dorsal view. E. Close-up of empodium (arrow) of third walking appendage. F. Close-up of abdomen. Abbreviations: ad = abdomen; at = antenna; hc = head capsule; lp = labial palp; ms = mesothorax; mt = metathorax; pt = prothorax; sy = stylet.

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Figure 3 in Parasitism rate of Plutella xylostella (Lepidoptera: Plutellidae) larvae in greenhouse by Tetrastichus howardi (Hymenoptera: Eulophidae) females at different densities

Figure 3. Progeny per Tetrastichus howardi (Hymenoptera: Eulophidae) female with a density of one, three, six, nine, 12, 15 or 18 females of this parasitoid per Plutella xylostella (Lepidoptera: Plutellidae) pupae.

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Figure 2 in Parasitism rate of Plutella xylostella (Lepidoptera: Plutellidae) larvae in greenhouse by Tetrastichus howardi (Hymenoptera: Eulophidae) females at different densities

Figure 2. Total progeny of Tetrastichus howardi (Hymenoptera: Eulophidae) per pupa of Plutella xylostella (Lepidoptera: Plutellidae) with different densities of females of this parasitoid in semi-field conditions.

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Figure 3 in Diversity of cellulolytic and xylanolytic fungi associated with the digestive tract of aquatic insect larvae in streams of the Amazon Forest and Cerrado in Brazil

Figure 3. Percentage of fungal isolates from the DT of Stenochironomus (Diptera: Chironomidae) from trunks in Amazon Forest (A), trunks in Cerrado (B) and leaves in Cerrado (C) producers and non-producers of xylanase (Xyl) and cellulase (CMCase).

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Figure 2 in Diversity of cellulolytic and xylanolytic fungi associated with the digestive tract of aquatic insect larvae in streams of the Amazon Forest and Cerrado in Brazil

Figure 2. Principal component analysis (PCA) of the physicochemical parameters of the streams sampled in the Amazon Forest - Amazonas (A) and Cerrado - Tocantins (T) in the north of Brazil.

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Figure 1 in Diversity of cellulolytic and xylanolytic fungi associated with the digestive tract of aquatic insect larvae in streams of the Amazon Forest and Cerrado in Brazil

Figure 1. Map of the sampling sites of Stenochironomus (Diptera:Chironomidae) in low-order streams in the Adolpho Ducke Forest Reserve in the state of Amazonas (Amazon Forest Biome) and at the Lajeado State Park (LSP) in the state of Tocantins, (Cerrado Biome) Brazil.

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Рис. 3. Platarctia ornata: 1–4 — имаго, виΑ сверху (1, 2 — самцы; 3, 4 — самки); 5–10 — гусеницы сеΑьмого возраста (5, 6 — форма с черными и рыжими воΛосками; 7, 8 — форма с рыжими воΛосками; 9, 10 — форма с черными воΛосками); 11 — кокон; 12–14 — кукоΛка; 15 — неΑавно отроΑившийся самец. 5, 7, 9, 13 — виΑ сбоку; 6, 8, 10, 14 — виΑ сверху; 12 — виΑ снизу. Δанные сбора имаго: 1 — Буреинский заповеΑник, 4 км В корΑона «Новый МеΑвежий», 1400 м наΑ ур. м., 24.06.2014; 2, 3 — Буреинский заповеΑник, корΑон «Новый МеΑвежий», ex pupa 12–13.09.2018; 4 — там же, 4.07.2018 Fig. 3. Platarctia ornata: 1–4 — imago, dorsal view (1, 2 — males; 3, 4 — females); 5–10 — seventh instar larvae (5, 6 — with black and red hairs; 7, 8 — with red hairs; 9, 10 — with black hairs only); 11 — cocoon; 12–14 — pupа; 15 — newly emerged male. 5, 7, 9, 13 — lateral view; 6, 8, 10, 14 — dorsal view; 12 — ventral view. Data labels for imago insects: 1 — Bureinsky State Nature Reserve, 4 km E Novyi Medvezhii cordon, 1400 m above sea level, 24.06.2014; 2, 3 — Bureinsky State Nature Reserve, Novyi Medvezhii cordon, ex pupa 12–13.09.2018; 4 — same location, 4.07.2018 in Moths (Lepidoptera, Macroheterocera, Excluding Geometridae And Noctuidae S.L.) Of The Bureinsky State Nature Reserve And Adjacent Territories (Khabarovsk Krai, Russia)

Рис. 3. Platarctia ornata: 1–4 — имаго, виΑ сверху (1, 2 — самцы; 3, 4 — самки); 5–10 — гусеницы сеΑьмого возраста (5, 6 — форма с черными и рыжими воΛосками; 7, 8 — форма с рыжими воΛосками; 9, 10 — форма с черными воΛосками); 11 — кокон; 12–14 — кукоΛка; 15 — неΑавно отроΑившийся самец. 5, 7, 9, 13 — виΑ сбоку; 6, 8, 10, 14 — виΑ сверху; 12 — виΑ снизу. Δанные сбора имаго: 1 — Буреинский заповеΑник, 4 км В корΑона «Новый МеΑвежий», 1400 м наΑ ур. м., 24.06.2014; 2, 3 — Буреинский заповеΑник, корΑон «Новый МеΑвежий», ex pupa 12–13.09.2018; 4 — там же, 4.07.2018 Fig. 3. Platarctia ornata: 1–4 — imago, dorsal view (1, 2 — males; 3, 4 — females); 5–10 — seventh instar larvae (5, 6 — with black and red hairs; 7, 8 — with red hairs; 9, 10 — with black hairs only); 11 — cocoon; 12–14 — pupа; 15 — newly emerged male. 5, 7, 9, 13 — lateral view; 6, 8, 10, 14 — dorsal view; 12 — ventral view. Data labels for imago insects: 1 — Bureinsky State Nature Reserve, 4 km E Novyi Medvezhii cordon, 1400 m above sea level, 24.06.2014; 2, 3 — Bureinsky State Nature Reserve, Novyi Medvezhii cordon, ex pupa 12–13.09.2018; 4 — same location, 4.07.2018

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Рис. 4. Grammia quenseli liturata: 1–4 — имаго (1, 2 — самцы, 3, 4 — самки); 5–7 — гусеницы сеΑьмого возраста (5, 6 — форма с ΑорсаΛьной Λинией, 7 — форма без ΑорсаΛьной Λинии); 8–10 — кукоΛка; 11, 12 — кремастер кукоΛки. 1–4, 5, 7, 10 — виΑ сверху; 6, 9, 12 — виΑ сбоку; 8, 11 — виΑ снизу. Δанные сбора имаго: 1, 3 — Буреинский заповеΑник, окрестности корΑона «Новый МеΑвежий», 5–6.07.2018; 2, 4 — там же, ex pupa 23–30.08.2018 Fig. 4. Grammia quenseli liturata: 1–4 — imago (1, 2 — males, 3, 4 — females); 5–7 — seventh instar larvae (5, 6 — with white dorsal line, 7 — without dorsal line); 8–10 — pupa; 11, 12 — cremaster. 1–4, 5, 7, 10 — dorsal view; 6, 9, 12 — lateral view; 8, 11 — ventral view. Data labels for imago: 1, 3 — Bureinsky State Nature Reserve, near Novyi Medvezhii cordon, 5–6.07.2018; 2, 4 — same location, 23–30.08.2018 in Moths (Lepidoptera, Macroheterocera, Excluding Geometridae And Noctuidae S.L.) Of The Bureinsky State Nature Reserve And Adjacent Territories (Khabarovsk Krai, Russia)

Рис. 4. Grammia quenseli liturata: 1–4 — имаго (1, 2 — самцы, 3, 4 — самки); 5–7 — гусеницы сеΑьмого возраста (5, 6 — форма с ΑорсаΛьной Λинией, 7 — форма без ΑорсаΛьной Λинии); 8–10 — кукоΛка; 11, 12 — кремастер кукоΛки. 1–4, 5, 7, 10 — виΑ сверху; 6, 9, 12 — виΑ сбоку; 8, 11 — виΑ снизу. Δанные сбора имаго: 1, 3 — Буреинский заповеΑник, окрестности корΑона «Новый МеΑвежий», 5–6.07.2018; 2, 4 — там же, ex pupa 23–30.08.2018 Fig. 4. Grammia quenseli liturata: 1–4 — imago (1, 2 — males, 3, 4 — females); 5–7 — seventh instar larvae (5, 6 — with white dorsal line, 7 — without dorsal line); 8–10 — pupa; 11, 12 — cremaster. 1–4, 5, 7, 10 — dorsal view; 6, 9, 12 — lateral view; 8, 11 — ventral view. Data labels for imago: 1, 3 — Bureinsky State Nature Reserve, near Novyi Medvezhii cordon, 5–6.07.2018; 2, 4 — same location, 23–30.08.2018

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Fig. 3 in A modern type of ant-like stone beetle larva preserved in 99-million-year-old Kachin amber (Coleoptera: Staphylinidae, Scydmaeninae)

Fig. 3 – Schematic restorations of ant-like stone beetles. A – The new fossil (based on Fig. 1); not to scale. B – Stage 2 larva of the extant species Stenomastigus longicornis (based on Jałoszyński & Kilian 2016 figs 1–4 p. 153); not to scale; note the similarities to the fossil larva. C–G – Restorations of different fossils, all to the same scale for size comparison. C–E – Fossils of adult ant-like stone beetles. C) Clidicostigus arachnipes (based on Jałoszyński et al. 2017 fig. 3A p. 114). D) Cascomastigus monstrabilis (based on Yin et al. 2017b fig. 1a p. 2). E) Cascomastigus minor (based on Yin et al. 2018b fig. 2A; width of body estimated based on the other species). F) The new fossil (same as A), but to scale. G) Estimated size of a possible stage 3 larva following the stage 2 larva which the new fossil presumably represents (by simply resizing the latter to 200%).

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Fig. 2 – Specimen SNHMB.G 8109, Kachin amber. A – Ventral view. B in A modern type of ant-like stone beetle larva preserved in 99-million-year-old Kachin amber (Coleoptera: Staphylinidae, Scydmaeninae)

Fig. 2 – Specimen SNHMB.G 8109, Kachin amber. A – Ventral view. B – Detail of head, ventral. C – Colour-marked version of B. D – Detail of trunk appendage. Abbreviations: cl = claw; cx = coxa; de = distal visible element of maxillary palp; fe = femur; gl = possible galea; li = labium; lr = labrum; md = mandible; pe = proximal visible element of maxillary palp; pm = proximal region of maxilla (stipes?); ti = tibio-tarsus; tr = trochanter.

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Fig. 9 in Description of the larva of Zwicknia gattolliati Vinçon & Reding, 2018, with notes on the distribution of the genus Zwicknia Murányi, 2014 in Italy (Plecoptera: Capniidae)

Fig. 9 – Zwicknia bifrons (Newman, 1838), adult male, epiproct, lateral view. Figs 10-12 – Zwicknia gattolliati Vinçon & Reding, 2018. 10, adult male, epiproct, lateral view; 11, female larva, wingpads, dorsal view; 12, female

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Figs 1-4 in Description of the larva of Zwicknia gattolliati Vinçon & Reding, 2018, with notes on the distribution of the genus Zwicknia Murányi, 2014 in Italy (Plecoptera: Capniidae)

Figs 1-4 – Zwicknia gattolliati Vinçon & Reding, 2018, adult female. 1, hindleg, lateral view; 2, tibia of middle leg, lateral view; 3, middle leg, lateral view; 4, sternites, ventral view. Figs 5-6 – Zwicknia gattolliati Vinçon & Reding, 2018. 5, adult female, cerci, ventral view; 6, adult

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Figs 17-20 in Description of the larva of Zwicknia gattolliati Vinçon & Reding, 2018, with notes on the distribution of the genus Zwicknia Murányi, 2014 in Italy (Plecoptera: Capniidae)

Figs 17-20 – Zwicknia gattolliati Vinçon & Reding, 2018, male larva. 17, head and pronotum, lateral view; 18, cerci, dorso-lateral view; 19, wingpads, dorsal view; 20, epiproct and tergites, dorsal view. Figs 21-23 – Zwicknia gattolliati

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Fig. 2 in Life History and Larva of Allomorpha hirasana (Hymenoptera, Tenthredinidae) Feeding on Symplocos in Japan

Fig. 2. Allomorpha hirasana, female adult. —A, Habitus, dorsal view; B, same, lateral view; C, same, ventral view; D, head, frontal view.

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Fig. 3 in Life History and Larva of Allomorpha hirasana (Hymenoptera, Tenthredinidae) Feeding on Symplocos in Japan

Fig. 3. Allomorpha hirasana, all photographed in Nakagawa, 2020. —A, Female adult, emerged on April 25 (same individual as in Fig. 2); B, earthen cell, half broken, with cast larval skin, April 26; C, basal part of leaf with remains of egg inside, an arrow showing exit of larva, May 10, upper surface; D, same, under surface; E, male first instar larva and three holes on a leaf made (eaten) by the larva, May 9; F, second instar larva, with cast larval skin (arrowed), May 17; G, third instar larva, May 25; H, fourth instar larva, just after third molt, with cast larval skin (arrowed), May 26; I, J, same larva, May 28; K, prepupa and cast larval skin (arrowed), June 5.

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Figs. 20–21 in On the mature larva of the western eyed click beetle Alaus melanops LeConte, 1863 with comparison to related species (Coleoptera: Elateridae)

Figs. 20–21. Habitats of Alaus melanops LeConte, 1863 in Oregon, USA, forest of Ponderosa Pine Zone.

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Figs. 1 and 2. Alaus melanops LeConte, 1863. 1 in On the mature larva of the western eyed click beetle Alaus melanops LeConte, 1863 with comparison to related species (Coleoptera: Elateridae)

Figs. 1 and 2. Alaus melanops LeConte, 1863. 1, Adult (habitus, dorsal); 2, larva (habitus, dorsal).

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Fig. 2 in The abundance of specialist and generalist lepidopteran larvae on a single host plant species: Does spatial scale matter?

Fig. 2. Specialist lepidopteran species on Roupala montana. (A–C) Chlamydastis platyspora: (A) larva, (B) larva inside the shelter, (C) adult; (E–G) Stenoma cathosiota: (E) larva, (F) shelter, (G) adult; (H–J) species of new genus of Depressariidae: (H) larva,(I) shelter, (J) adult; (K–M) Idalus lineosus: (K–L) 6th instar showing variation in color, (M) adult; (N–O) Symmachia hippodice: (N) larva, (O) adult female, (P) adult male; (Q–S) Eomichla sp.: (Q–R) larva inside the shelter, (S) adult.

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Figs. 9–19. Alaus melanops LeConte, 1863, larva. 9 in On the mature larva of the western eyed click beetle Alaus melanops LeConte, 1863 with comparison to related species (Coleoptera: Elateridae)

Figs. 9–19. Alaus melanops LeConte, 1863, larva. 9, Antenna, dorsal; 10, antenna, ventral; 11, clypeus (= nasale), dorsal; 12, frons, dorsal; 13, mandible, dorsal; 14, hypopharyngeal complex, dorsal; 15, galea and lacinia, dorsal; 16, maxillary palp, dorsal; 17, maxillary palp, ventral; 18, labium, dorsal; 19, labium, ventral.

opencc-by-4.0Dec 2015View details →

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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record