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zenodo40/100

Figures 4–8. Stegonopsis convergens Hendel, 1913, male. 4 in Species of the genus Steganopsis from China (Diptera: Lauxaniidae)

Figures 4–8. Stegonopsis convergens Hendel, 1913, male. 4. Syntergosternite and epandrium, lateral view; 5. Syntergosternite, anterior view; 6. Epandrium, posterior view; 7. Aedeagal complex, ventral view; 8. Aedeagal complex, lateral view.

opencc-by-4.0Dec 2023View details →
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Figs 4–8 in Diagnosis Of The Coenosia Mollicula-Group (Diptera: Muscidae), With Descriptions Of Five New Species From China

Figs 4–8. Coenosiaadrohalter sp. n., male: 4 = dorsalviewofabdomen, 5 = sternite 5 inven- tralview, 6 = posteriorviewofcerci, 7 = terminaliainprofile, 8 = halter. Scales: 0.5 mmfor

opencc-by-4.0Dec 2014View details →
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Figs 1–8. Ctenoceratoda spp. 1–4 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)

Figs 1–8. Ctenoceratoda spp. 1–4 = C. persephone sp. n., Mongolia: 1 = paratype, male, Khovd aimak, 2 = holotype, male, Govi Altay aimak, 3 = paratype female, Khovd aimak, 4 = paratype, female, Khovd aimak; 5–6 = C. khorgossi (Alphéraky, 1882), Kirghisia, Issyk-Kul: 5 = male, 6 = female; 7–8 = C. argyrea (Varga, 1992), Mongolia, Govi Altay aimak: 7 = holotype, male, 8 = paratype female

opencc-by-4.0Mar 2018View details →
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Figs 1–8. 1–4 – habitus. 1–2 in Two new species of the genus Coraebus from China (Coleoptera: Buprestidae: Agrilinae: Coraebini)

Figs 1–8. 1–4 – habitus. 1–2 – Coraebus businskyorum Xu & Kubáň, sp. nov. (1 – holotype J, Hubei,10.5 mm; 2 – paratype ♀, Hubei, 10.8 mm); 3–4 – C. amplithorax (Fairmaire, 1889) (3 – J, China, Yunnan, Deqen (VKCP), 8.5 mm; 4 – lectotype ♀, China, Yunnan, Deqen (MNHN), 8.8 mm). 5–6 – metatibia (5 – C. businskyorum sp. nov., J, holotype; 6 – C. amplithorax, J, same specimen as in Fig. 3). 7–8 – aedeagus (7 – C. businskyorum sp. nov., holotype; 8 – C. amplithorax, same specimen as in Fig. 3).

opencc-by-4.0Nov 2013View details →
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Figs 2–9. 2–4, 8–9 in Hydroporus toubkal sp. nov. from the High Atlas, Morocco, a new member of the H. longulus group (Coleoptera: Dytiscidae: Hydroporinae)

Figs 2–9. 2–4, 8–9 – Hydroporus toubkal sp. nov.: 2 – median lobe of aedeagus in ventral view; 3 – median lobe in lateral view; 4 – left paramere; 8 – gonocoxosternum; 9 – gonocoxae. 5 – H. longulus Mulsant & Rey, 1861, median lobe of aedeagus in lateral view (adapted from FERY 1999). 6 – H. nevadensis Sharp, 1882, median lobe of aedeagus in lateral view (adapted from FERY 1999). 7 – H. jacobsoni Zaitzev, 1927, median lobe of aedeagus in lateral view (adapted from FERY 2009).

opencc-by-4.0Nov 2013View details →
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Figs 1–8. Scaphisoma Leach, 1815 from Wuyishan Mts. 1, 3–4 in Scaphisomatini (Coleoptera: Staphylinidae: Scaphidiinae) from two biosphere reserves in eastern China, with descriptions of two new species

Figs 1–8. Scaphisoma Leach, 1815 from Wuyishan Mts. 1, 3–4 – Scaphisoma krali sp. nov.; 2, 5–8 – Scaphisoma sekerkai sp. nov. 1–2 – habitus in dorsal view; 3, 5 – aedeagus in dorsal view; 4, 8 – aedeagus in lateral view; 6 – basal bulb and internal sac in dorsal view; 7 – paramere in ventral view. Scale bars: Figs 1–2 = 1 mm; 3–8 = 0.1 mm.

opencc-by-4.0Dec 2021View details →
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Figs. 1–10. Noideattella amboa, new species. 1. Habitus male, dorsal view. 2. Same, ventral view. 3. Same, lateral view. 4. Cephalothorax, dorsal view. 5. Same, ventral view. 6. Palp male, prolateral view. 7. Cephalothorax male, anterior view. 8. Palp male, retrolateral view. 9. Genitalia female, ventral view. 10 in Noideattella and Tolegnaro, Two New Genera of Goblin Spiders from Madagascar, with Comments on the Gamasomorphoid and Silhouettelloid Oonopids (Araneae, Oonopidae)

Figs. 1–10. Noideattella amboa, new species. 1. Habitus male, dorsal view. 2. Same, ventral view. 3. Same, lateral view. 4. Cephalothorax, dorsal view. 5. Same, ventral view. 6. Palp male, prolateral view. 7. Cephalothorax male, anterior view. 8. Palp male, retrolateral view. 9. Genitalia female, ventral view. 10. Same, dorsal view. Scale bars = 0.2 mm, except genitalia: 0.1 mm.

opencc-by-4.0May 2012View details →
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FIGURES 1–15. Pelicinus marmoratus Simon, male. 1. Carapace, dorsal view. 2. Same, anterior view. 3. Same, lateral view. 4. Sternum, ventral view. 5. Chelicerae, anterior view. 6. Same, posterior view. 7. Mouthparts, ventral view. 8 in The Goblin Spider Genus Pelicinus (Araneae, Oonopidae), Part 1

FIGURES 1–15. Pelicinus marmoratus Simon, male. 1. Carapace, dorsal view. 2. Same, anterior view. 3. Same, lateral view. 4. Sternum, ventral view. 5. Chelicerae, anterior view. 6. Same, posterior view. 7. Mouthparts, ventral view. 8. Labrum and endites, dorsal view. 9. Serrula, dorsal view. 10. Abdomen, anterior view. 11. Epigastric area, ventral view. 12. Spinnerets, distal view. 13. Claws, leg II, lateral view. 14. Same, leg III. 15. Same, leg IV.

opencc-by-4.0Apr 2012View details →
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Figs 4–8 in The genus Alexeter Förster (Hymenoptera, Ichneumonidae) in China, with descriptions of three new species

Figs 4–8. Alexeter flavicoxa sp. nov., holotype, ♀ (GSFGPM). 4. Mesosoma, lateral view. 5. Mesoscutum and Scutellum, dorsal-lateral view. 6. Hind yongtarsomeres, lateral view. 7. Wings. 8. Propodeum, dorsal view. Scale bars: 4–6 = 0.2 mm; 7 = 0.5 mm; 8 = 0.1 mm.

opencc-by-4.0Jan 2022View details →
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FIGURES 1–15. Triaeris stenaspis Simon, female. 1. Habitus, dorsal view. 2. Carapace, dorsal view. 3. Same, lateral view. 4. Same, anterior view. 5. Sternum, ventral view. 6. Chelicerae, anterior view. 7. Same, posterior view. 8. Mouthparts, ventral view. 9 in Got Males?: The Enigmatic Goblin Spider Genus Triaeris (Araneae, Oonopidae)

FIGURES 1–15. Triaeris stenaspis Simon, female. 1. Habitus, dorsal view. 2. Carapace, dorsal view. 3. Same, lateral view. 4. Same, anterior view. 5. Sternum, ventral view. 6. Chelicerae, anterior view. 7. Same, posterior view. 8. Mouthparts, ventral view. 9. Labrum and endites, dorsal view. 10. Serrula, dorsal view. 11. Pedicel area, ventral view. 12. Spinnerets, apical view. 13. Anterior lateral spinneret, same. 14. Posterior median spinneret, same. 15. Posterior lateral spinneret, same.

opencc-by-4.0Sep 2012View details →
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Рис. 2. UPGMA — фенограма генетических дистанций (Nei, 1972) между видами и популяциями двустворчатых моллюсков. П р и м е ч а н и е. Aa — A. anatina, Ac — A. cygnea, Pc — P. complanata, Sw — S. woodiana. Речные системы: 1 — Дунай, 2 — р. Тиса, 3 — Верхний Днестр, 4 — Нижний Днестр, 5 — р. Ингул, 6 — р. Западный Буг, 7 — р. Припять, 8 — р. Верхний Днепр, 9 — р. Рось, 10 — р. Псёл, 11 — р. Северский Донец, 12 — р. Салгир. in Genetic And Morphological Variability And Differentiation Of Freshwater Mussels (Bivavia, Unionidae, Anodontinae) In Ukraine

Рис. 2. UPGMA — фенограма генетических дистанций (Nei, 1972) между видами и популяциями двустворчатых моллюсков. П р и м е ч а н и е. Aa — A. anatina, Ac — A. cygnea, Pc — P. complanata, Sw — S. woodiana. Речные системы: 1 — Дунай, 2 — р. Тиса, 3 — Верхний Днестр, 4 — Нижний Днестр, 5 — р. Ингул, 6 — р. Западный Буг, 7 — р. Припять, 8 — р. Верхний Днепр, 9 — р. Рось, 10 — р. Псёл, 11 — р. Северский Донец, 12 — р. Салгир.

opencc-by-4.0Mar 2014View details →
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Figures 1–8. Cotyclytus spp. 1–4 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)

Figures 1–8. Cotyclytus spp. 1–4) Cotyclytus parumnotatus (Zajciw, 1963), neotype male: 1) Dorsal habitus; 2) Ventral habitus; 3) Head and pronotum, frontal view; 4) Head and pronotum, oblique view. 5–8) Cotyclytus stillatus (Aurivillius, 1909), male from Bolivia: 5) Dorsal habitus; 6) Ventral habitus; 7) Head and pronotum, frontal view; 8) Head and pronotum, oblique view.

opencc-by-4.0Apr 2022View details →
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FIGURES. 4–8 in Descriptions of the Mature Larvae of Three Australian Ground-Nesting Bees(Hymenoptera: Colletidae: Diphaglossinae and Neopasiphaeinae)

FIGURES. 4–8. SEM micrographs of mature larva of L. wanni. 4, 5. Head frontal view and only approximate lateral view (note both left and right antennae visible). 6. Frontal view of mouthparts showing: (a) conspicuous pattern of spicules on labrum between labral tubercles; (b) elongate maxillary palpi; (c) recessed labial palpi; and (d) recessed and somewhat obscure salivary opening lacking lips. 7. SEM micrograph of left side of metasomal segments 5–9, showing projecting spiracles of segments 6–8. 8. Close-up of projecting spiracle.

opencc-by-4.0Jun 2022View details →
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Text-fig. 4. Porechye open pit coal mine. a: photography of the Lipovtsy Formation section; b: stratigraphic column, 1 – sandstone, 2 – conglomerate, 3 – coal, 4 – tuff dated by U-Th-Pb geochronology, 5 – siltstone, 6 – mudstone, 7 – palynological samples with angiosperm pollen, 8 – dispersed angiosperm cuticles. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 4. Porechye open pit coal mine. a: photography of the Lipovtsy Formation section; b: stratigraphic column, 1 – sandstone, 2 – conglomerate, 3 – coal, 4 – tuff dated by U-Th-Pb geochronology, 5 – siltstone, 6 – mudstone, 7 – palynological samples with angiosperm pollen, 8 – dispersed angiosperm cuticles.

opencc-by-4.0Dec 2021View details →
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Text-fig. 8. Pterocaryoxylon sp., a–c, e: UF 279-85024; d, f: UF 279-24551. a, b: Wood semi-ring-porous, vessels solitary and in short radial multiples, axial parenchyma scanty vasicentric, marginal, and in narrow lines, TS. c: Crowded alternate intervessel pitting, simple perforation plate (PP), TLS. d: Vessel-axial parenchyma pitting similar to intervessel pitting, RLS. e: Rays mostly 1–3 cells wide, occasionally 4 cells, uniseriate rays probably mostly square to upright cells, TLS. f: Rays heterocellular, body cells procumbent. Scale bars: 200 µm in a, b; 100 µm in e, f; 50 µm in c; 20 µm in d. in A Diverse Assemblage Of Late Eocene Woods From Oregon, Western Usa

Text-fig. 8. Pterocaryoxylon sp., a–c, e: UF 279-85024; d, f: UF 279-24551. a, b: Wood semi-ring-porous, vessels solitary and in short radial multiples, axial parenchyma scanty vasicentric, marginal, and in narrow lines, TS. c: Crowded alternate intervessel pitting, simple perforation plate (PP), TLS. d: Vessel-axial parenchyma pitting similar to intervessel pitting, RLS. e: Rays mostly 1–3 cells wide, occasionally 4 cells, uniseriate rays probably mostly square to upright cells, TLS. f: Rays heterocellular, body cells procumbent. Scale bars: 200 µm in a, b; 100 µm in e, f; 50 µm in c; 20 µm in d.

opencc-by-4.0Feb 2022View details →
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Text-fig. 1. a: Idealised section of the Intra-Sudetic Basin (from Opluštil et al. 2016); b: Geological sketch map of the IntraSudetic Basin, here simplified (after Prouza and Tásler 2001, Pešek 2004). Explanations: 1 – Bohdašín Formation (Triassic), 2 – Bohuslavice Formation (Thuringian), 3 – Trutnov Formation (Saxonian), 4–13 Broumov Formation (Autunian): 4 – Martínkovice Member, 5 – Martínkovice Member with Jetřichovice, Hejtmánkovice and Vižňov horizons, 6–13 – Olivětín Member: 6 – Walchia bone coal facies, 7 – Basaltoides of the Šonov Group, 8 – Volcanoclastic facies, 9 – Aleuropelites, 10 – Ignimbrites, 11 – Rhyolite tuffs, 12 – Ruprechtice Limestone Horizon, 13 – Otovice Limestone Horizon. Localities: O1 – Otovice "Černý potok", O2 – Otovice "Stěnava", O3 – Otovice "Chmelnice", O4 – Otovice "Vápenka", R1 – Ruprechtice "Vápencové lomy", R2 – Ruprechtice "Pod Světlinou", R3 – Olivětín "Nad náhonem". in Actinopterygians Of The Broumov Formation (Permian) In The Czech Part Of The Intra-Sudetic Basin (The Czech Republic)

Text-fig. 1. a: Idealised section of the Intra-Sudetic Basin (from Opluštil et al. 2016); b: Geological sketch map of the IntraSudetic Basin, here simplified (after Prouza and Tásler 2001, Pešek 2004). Explanations: 1 – Bohdašín Formation (Triassic), 2 – Bohuslavice Formation (Thuringian), 3 – Trutnov Formation (Saxonian), 4–13 Broumov Formation (Autunian): 4 – Martínkovice Member, 5 – Martínkovice Member with Jetřichovice, Hejtmánkovice and Vižňov horizons, 6–13 – Olivětín Member: 6 – Walchia bone coal facies, 7 – Basaltoides of the Šonov Group, 8 – Volcanoclastic facies, 9 – Aleuropelites, 10 – Ignimbrites, 11 – Rhyolite tuffs, 12 – Ruprechtice Limestone Horizon, 13 – Otovice Limestone Horizon. Localities: O1 – Otovice "Černý potok", O2 – Otovice "Stěnava", O3 – Otovice "Chmelnice", O4 – Otovice "Vápenka", R1 – Ruprechtice "Vápencové lomy", R2 – Ruprechtice "Pod Světlinou", R3 – Olivětín "Nad náhonem".

opencc-by-4.0Dec 2021View details →
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Text-fig. 7. Vertical polished sections of samples from selected layers. a: Layer No. 2, completely bioturbated, collection of the Czech Geological Survey (abbr. BK), BK 7; b: Layer No. 3, low: nearly completely bioturbated, upper: cross- to ripple bedding, weakly bioturbated, BK 6; c: Layer No. 7, incompletely bioturbated siltstone/mudstone, BK 5; d: Layer No. 8, low: totally bioturbated background with Zoophycos ichnofabric, upper: spotted, completely bioturbated siltstone, BK 4; e: Layer No. 8, low: in Early Complex Tiering Pattern: Upper Ordovician, Barrandian Area, The Czech Republic

Text-fig. 7. Vertical polished sections of samples from selected layers. a: Layer No. 2, completely bioturbated, collection of the Czech Geological Survey (abbr. BK), BK 7; b: Layer No. 3, low: nearly completely bioturbated, upper: cross- to ripple bedding, weakly bioturbated, BK 6; c: Layer No. 7, incompletely bioturbated siltstone/mudstone, BK 5; d: Layer No. 8, low: totally bioturbated background with Zoophycos ichnofabric, upper: spotted, completely bioturbated siltstone, BK 4; e: Layer No. 8, low:

opencc-by-4.0Dec 2021View details →
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Text-fig. A1. a: Ulmus longifolia UNGER, 1847 (Unger 1847: pl. 26, fig. 5). b: Ulmus braunii HEER, 1856 (Heer 1856: pl. 79, fig. 17). c: Ulmus affinis A.MASSAL., 1853 (Massallongo 1854: pl. 4, fig. 8). d, e: Ulmus carpinifolia GLED., 1773 syn. of Ulmus minor MILL., 1768, (herbarium K566057), UK. Scale bars 30 mm (a–e). in The Late Early Pleistocene Flora Of Oriolo, Faenza (Italy): Assembly Of The Modern Forest Biome

Text-fig. A1. a: Ulmus longifolia UNGER, 1847 (Unger 1847: pl. 26, fig. 5). b: Ulmus braunii HEER, 1856 (Heer 1856: pl. 79, fig. 17). c: Ulmus affinis A.MASSAL., 1853 (Massallongo 1854: pl. 4, fig. 8). d, e: Ulmus carpinifolia GLED., 1773 syn. of Ulmus minor MILL., 1768, (herbarium K566057), UK. Scale bars 30 mm (a–e).

opencc-by-4.0Aug 2022View details →
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Text-fig. 3. "Rzehakia beds" at Líšeň-Neklež locality. 1 – topsoil, 2 – greenish-gray clay, locally yellow-brown, 3 – ochre-brown coarse sand, 4 – conglomerate with clasts of granodiorite, 5 – grey-brown medium-grained sand, 6 – light yellowish fine sand, 7 – re-sedimented red-brown eluvium of granodiorite, 8 – re-sedimented red-brown granodiorite debris, 9 – granodiorite, 10 – fossil macroflora. in A New Early Miocene (Ottnangian) Flora Of The "Rzehakia Beds" From Brno-Líšeň

Text-fig. 3. "Rzehakia beds" at Líšeň-Neklež locality. 1 – topsoil, 2 – greenish-gray clay, locally yellow-brown, 3 – ochre-brown coarse sand, 4 – conglomerate with clasts of granodiorite, 5 – grey-brown medium-grained sand, 6 – light yellowish fine sand, 7 – re-sedimented red-brown eluvium of granodiorite, 8 – re-sedimented red-brown granodiorite debris, 9 – granodiorite, 10 – fossil macroflora.

opencc-by-4.0Aug 2022View details →
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Text-fig. A3. a: Leaf morphotype 1 Tebano MSF SG 049. b: Leaf morphotype 2 Oriolo MSF 631. c: Leaf morphotype 3 Oriolo MSF n.n. d, f: Leaf morphotype 4. d: Oriolo MSF 891. e: Oriolo MSF 856. f: Oriolo MSF 858. g: Leaf morphotype 5 Oriolo MSF 783. h: Leaf morphotype 6 Oriolo MSF 952. i: Leaf morphotype 7 Oriolo MSF 862. j, l: Leaf morphotype 8. j: Oriolo MSF 912. k: Oriolo MSF 662. l: Oriolo MSF 662-1. m: Leaf morphotype 9 Oriolo MSF 715. n: Leaf morphotype 10 Oriolo MSF 716. o: Leaf morphotype 11, overview and detail of margin Oriolo MSF 880. p–z: Various rosaceous leaves/ leaflets. p: Oriolo MSF 943. q: Oriolo MSF 890. r: Oriolo MSF 950. s: Oriolo MSF 958. t: Oriolo MSF 966 aff. Sorbus. u: Oriolo MSF 956. v: Oriolo MSF 961. w: Oriolo MSF 962. x: Oriolo MSF 874. y: Oriolo MSF 883. z: Oriolo MSF 960. in The Late Early Pleistocene Flora Of Oriolo, Faenza (Italy): Assembly Of The Modern Forest Biome

Text-fig. A3. a: Leaf morphotype 1 Tebano MSF SG 049. b: Leaf morphotype 2 Oriolo MSF 631. c: Leaf morphotype 3 Oriolo MSF n.n. d, f: Leaf morphotype 4. d: Oriolo MSF 891. e: Oriolo MSF 856. f: Oriolo MSF 858. g: Leaf morphotype 5 Oriolo MSF 783. h: Leaf morphotype 6 Oriolo MSF 952. i: Leaf morphotype 7 Oriolo MSF 862. j, l: Leaf morphotype 8. j: Oriolo MSF 912. k: Oriolo MSF 662. l: Oriolo MSF 662-1. m: Leaf morphotype 9 Oriolo MSF 715. n: Leaf morphotype 10 Oriolo MSF 716. o: Leaf morphotype 11, overview and detail of margin Oriolo MSF 880. p–z: Various rosaceous leaves/ leaflets. p: Oriolo MSF 943. q: Oriolo MSF 890. r: Oriolo MSF 950. s: Oriolo MSF 958. t: Oriolo MSF 966 aff. Sorbus. u: Oriolo MSF 956. v: Oriolo MSF 961. w: Oriolo MSF 962. x: Oriolo MSF 874. y: Oriolo MSF 883. z: Oriolo MSF 960.

opencc-by-4.0Aug 2022View details →

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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