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Figure 6 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.

Figure 6. – Dorsal fin on a live paratype of Thymallus ligericus n. sp. MNHN 2018-0726, 290 mm SL ♀, Lignon River at Boën-surLignon, 29 May 2015, Persat, Juglaret and Buttazzoni coll.

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Figure 4 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.

Figure 4. – Mouth in ventral view of Thymallus spp. A: Holotype of Thymallus ligericus n. sp. MNHN 2018-0722, 337 mm SL J, Alagnon River at La Chapelle d'Alagnon, 9 Sep. 2016, Persat and FDAAPPMA15 coll.; B: Thymallus thymallus UCBLZ 2012.9.1010, 376 mm TL, Rhône drainage, Ain River at Crotenay, 10 Jun. 2014, Persat and FDAAPPMA39 coll.

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Figure 2 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.

Figure 2. – Specimens of Thymallus spp. in lateral view. Holotype of Thymallus ligericus n. sp. MNHN 2018- 0722, 337 mm SL J, Alagnon River at La Chapelle d'Alagnon, 9 Sep. 2016, Persat and FDAAPPMA 15 coll., in live (A) and after preservation (B); Paratype of Thymallus ligericus n. sp. MNHN 2019-0267 (C), 269 mm SL ♀, Loire River at Chadron, 22 Sep. 2016, Persat and ONEMA43 coll; UCBLZ – 2012.9.1011 (D), 292 mm TL, Rhône drainage, Ain River at Crotenay, 10 Jun. 2014, Persat and FDAAPPMA39 coll.

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Figure 1 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.

Figure 1. – The three supplementary measurements made on the ventral side of the head, in addition to those of Surre et al. (1986): the mandible width, the chin length (from the basibranchial junction to the extremity of the mandible) and the ventral snout length (from the same point to the extremity of the snout).

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Figure 3 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.

Figure 3. – Head profiles of Thymallus spp. A: Paratype of Thymallus ligericus n. sp. MNHN 2018-0728, 300 mm SL J, Dore River at Vertolaye, 29 May 2015, Persat, Juglaret and Buttazzoni coll.; B: Thymallus thymallus UCBLZ – 2012.9.1010, 376 mm TL, Rhône drainage, Ain River at Crotenay, 10 Jun. 2014, Persat and FDAAPPMA39 coll.

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FIGURE 1 in Bajoprosopon piardi n. gen. and sp. from the Middle Jurassic of France, with a revised diagnosis of the family Prosopidae von Meyer, 1860 (Brachyura, Podotremata) and notes on the availability of names introduced by Hermann von Meyer (1835, 1857)

FIGURE 1. Map showing the environs of Caen and Bayeux (northwest France) and the type locality, Les Fours à Chaux (asterisk), of Bajoprosopon piardi n. gen. and sp. The simplified log (right) illustrates the lithology, lithostratigraphical nomenclature and chronostratigraphy (after Pavia et al., 2015).

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FIGURE 4 in Bajoprosopon piardi n. gen. and sp. from the Middle Jurassic of France, with a revised diagnosis of the family Prosopidae von Meyer, 1860 (Brachyura, Podotremata) and notes on the availability of names introduced by Hermann von Meyer (1835, 1857)

FIGURE 4. Holotype of Bajoprosopon piardi n. gen. and sp. (MAB k.3764) from the upper Bajocian 'Oolithe ferrugineuse de Bayeux' Formation (upper garantiana ammonite Zone, dichotoma ammonite Subzone) at the 'Les Fours à Chaux' outcrop between Croisilles and Les Moutiers-en-Cinglais (Calvados, France; Figure 1). A, dorsal view of carapace. B, frontal view of carapace. C, left lateral view of carapace. Scale bar equals 5 mm.

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Fig. 13 in Un nuevo geotṙpido ibérico, Bolbelasmus casanovaorum n. sp. (Coleoptera: Geotrupidae).

Fig. 13.– Entorno inmediato hacia el noreste. Encinares en muy buen estado de conservación de Quercus ilex susp ballota, con muchos quejigos y madroños (Arbutus unedo L.) y matorral de jara pringosa (Cistus ladanifer L.).

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Fig. 11 in Un nuevo geotṙpido ibérico, Bolbelasmus casanovaorum n. sp. (Coleoptera: Geotrupidae).

Fig. 11.– Lugar exacto, "CASAS de CArAcuel", en donde se colectó en sus tiempos este ejemplar de Bolbelasmus que ahora es Holotypus de Bolbelasmus casanovaorum n. sp. En este valle existen pequeñas explotaciones con cabras y ovejas y algunas vacas.

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Fig. 12 in Un nuevo geotṙpido ibérico, Bolbelasmus casanovaorum n. sp. (Coleoptera: Geotrupidae).

Fig. 12.– Entorno inmediato hacia el oeste. Cultivos extensivos de cereal (principalmente avena, pero también trigo y centeno); encinares de Quercus ilex L. subsp. ballota (Desf.) Samp. con bastante quejigo, Quercus faginea subsp. faginea Lam. y matorral de jara Cistus ladanifer y junto al arroyo, algunas olmedas (Ulmus minor Mill.).

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Figures 25–27 in Hemiscorpius novaki sp. n. from Somaliland (Scorpiones: Hemiscorpiidae)

Figures 25–27: 25–26 (top & middle). Somaliland, near Berbera, 10°14'25.8"N 45°04'55.4"E, 407 m a. s. l.. Collection locality of the female allotype of Hemiscorpius novaki sp. n. together with a Compsobuthus sp. n. 25. Panoramic view of the locality, showing the precise spot of collection of the female allotype of Hemiscorpius novaki sp. n. 26. Detail of the locality. Female allotype was collected under the large overturned boulder on the left side of the photo. 27 (bottom). Somaliland, near Berbera, 10°16'01"N 45°06'21.3"E, 367 m a. s. l. Collection locality of the female paratype of Hemiscorpius novaki sp. n. together with Leiurus quinquestriatus Ehrenberg, 1828 and Parabuthus granimanus Pocock, 1895.

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Figures 23–24 in Hemiscorpius novaki sp. n. from Somaliland (Scorpiones: Hemiscorpiidae)

Figures 23–24: 23 (top). Male holotype of Hemiscorpius novaki sp. n. 24 (bottom). Somaliland, near Berbera, 10°12.3667'N 44°52.811'E, 417 m a. s. l. Collection locality of the male holotype of Hemiscorpius novaki sp. n.

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Figures 1–10 in Hemiscorpius novaki sp. n. from Somaliland (Scorpiones: Hemiscorpiidae)

Figures 1–10: Hemiscorpius novaki sp. n. 1–7: ♂ holotype in dorsal and ventral views, trichobothrial pattern, metasoma and telson lateral view, fourth metasomal segment in lateral view, movable finger, and carapace. 8–10. ♀ allotype, dorsal and ventral views, and chela external view.

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Figures 9–15 in Compsobuthus sindicus sp. n. from Pakistan (Scorpiones: Buthidae)

Figures 9–15: Compsobuthus sindicus sp. n. 9–11. Metasomal segments II and IV and chela of female allotype. 12–15. Trichobothrial pattern of chela, patella (dorsal end external aspects) and femur of male holotype.

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Figures 1–8 in Compsobuthus sindicus sp. n. from Pakistan (Scorpiones: Buthidae)

Figures 1–8: 1–4. Compsobuthus rugosulus (Pocock, 1900). 1–2. Dorsal and ventral views, ♂(32 mm), Pakistan, Sind Province, Tandojan (Tando Jam), FKCP. 3–4. Dorsal and ventral views, ♀ (38 mm), Pakistan, North West Frontier Province, Dhaki, Dera Ismail Khan, FKCP. 5–8. Compsobuthus sindicus sp. n. 5–6. Dorsal and ventral views, ♂(30 mm) holotype. 7–8. Dorsal and ventral views, ♀ (33.5 mm) allotype.

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◂Fig. 17 Iberozospeum costulatum n. sp. (a–e) holotype, 1.43 mm height [MNCN 15.05/200128, ex. ZUPV 1952], Mina del Pedreo (Bizkaia: Arcentales; 43.26800 -3.21402, 440 m). (f–g) paratype shells from the type locality [ZUPV 1952, F: juvenile shell, G: shell of 1.51 mm height. (h–i) no paratype shell of 1.48 mm height [ZUPV 3807] from Cueva del Cesáreo (Cantabria: Liérganes: Extremera; 43.32034 -3.72279, 258 m). (j–k) paratype shells from Cueva de Cuvias Negras (Cantabria: Soba: Asón; 43.25132 -3.60688, 250 m) [CSQS·w/o nº]. (l) no paratype shell from Cueva del Cesáreo [CSQS·w/o nº]. Photos a–i by Carlos Prieto; j–l by Sergio Quiñonero and Álvaro Alonso in Molecular investigation and description of Iberozospeum n. gen., including the description of one new species (Eupulmonata, Ellobioidea, Carychiidae)

◂Fig. 17 Iberozospeum costulatum n. sp. (a–e) holotype, 1.43 mm height [MNCN 15.05/200128, ex. ZUPV 1952], Mina del Pedreo (Bizkaia: Arcentales; 43.26800 -3.21402, 440 m). (f–g) paratype shells from the type locality [ZUPV 1952, F: juvenile shell, G: shell of 1.51 mm height. (h–i) no paratype shell of 1.48 mm height [ZUPV 3807] from Cueva del Cesáreo (Cantabria: Liérganes: Extremera; 43.32034 -3.72279, 258 m). (j–k) paratype shells from Cueva de Cuvias Negras (Cantabria: Soba: Asón; 43.25132 -3.60688, 250 m) [CSQS·w/o nº]. (l) no paratype shell from Cueva del Cesáreo [CSQS·w/o nº]. Photos a–i by Carlos Prieto; j–l by Sergio Quiñonero and Álvaro Alonso

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◂Fig.15 Scanning electron micrographs (SEM) showing transverse rows of dentition on Dinaride Zospeum and Iberozospeum radulae; (a) Z. pretneri, (NMBE 553290), Gornja Cerovačka pećina, Croatia, transverse rows of teeth on long, slender basal plates (bp), rachidian (r) and lateral teeth (l), arrows indicate medial grooves on mesocones of individual teeth; (b) Z. isselianum, NMBE 553389, Turjeva jama, Slovenia, ibid.; (c) Iberozospeum sp. (RMNH.MOL.234,116), Cueva a Sul, straight transverse rows of small, seemingly bi-cuspid lateral teeth (l) with reduced mesocones on compact basal plates; (d) ibid., close up view of rachidian teeth (r), lateral fang-like teeth (l) and transitional teeth (t); (e) I. vasconicum, (AJC 1848), Cueva Ermita de Sandaili, rachidian teeth (r) flanked by 4-cuspid lateral teeth (l), C. ibazoricum-like in form; (f) Iberozospeum sp. (RMNH. MOL.234108), Cueva la Torcona, lateral teeth showing reduced mesocones (me) flanked by long, fang-like endo- and ectocones (e), rachidian tooth (r) (flipped over in upper righthand corner of image); (g) I. zaldivarae (AJC 1876a), Cueva de Las Paúles, transverse rows of teeth showing varying cusp lengths; (h) ibid., close up view (left to right) of marginal (m) and transitional teeth (t) on short, compact basal plates (bp). — Magnification varies for each perspective, see scale bars; all Figs taken by M. Ruppel, (ret.) Goethe University Frankfurt am Main in Molecular investigation and description of Iberozospeum n. gen., including the description of one new species (Eupulmonata, Ellobioidea, Carychiidae)

◂Fig.15 Scanning electron micrographs (SEM) showing transverse rows of dentition on Dinaride Zospeum and Iberozospeum radulae; (a) Z. pretneri, (NMBE 553290), Gornja Cerovačka pećina, Croatia, transverse rows of teeth on long, slender basal plates (bp), rachidian (r) and lateral teeth (l), arrows indicate medial grooves on mesocones of individual teeth; (b) Z. isselianum, NMBE 553389, Turjeva jama, Slovenia, ibid.; (c) Iberozospeum sp. (RMNH.MOL.234,116), Cueva a Sul, straight transverse rows of small, seemingly bi-cuspid lateral teeth (l) with reduced mesocones on compact basal plates; (d) ibid., close up view of rachidian teeth (r), lateral fang-like teeth (l) and transitional teeth (t); (e) I. vasconicum, (AJC 1848), Cueva Ermita de Sandaili, rachidian teeth (r) flanked by 4-cuspid lateral teeth (l), C. ibazoricum-like in form; (f) Iberozospeum sp. (RMNH. MOL.234108), Cueva la Torcona, lateral teeth showing reduced mesocones (me) flanked by long, fang-like endo- and ectocones (e), rachidian tooth (r) (flipped over in upper righthand corner of image); (g) I. zaldivarae (AJC 1876a), Cueva de Las Paúles, transverse rows of teeth showing varying cusp lengths; (h) ibid., close up view (left to right) of marginal (m) and transitional teeth (t) on short, compact basal plates (bp). — Magnification varies for each perspective, see scale bars; all Figs taken by M. Ruppel, (ret.) Goethe University Frankfurt am Main

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◂Fig. 13 Crystallographic structure on the columellar lamellae of Dinaride Zospeum and Iberozospeum shells; (a) Zospeum spelaeum, (AJC 847), Betalov Spodmol jama, Slovenia (45.7922 14.1877), pattern of low, non-overlapping, wedges of crystallographic structure on the lamella; (b) Zospeum spelaeum, (MCBI CSR SASA 37049a), Velika Pasica, Slovenia (N45.9189 E14.4934), non-overlapping wedges of crystallographic structure on lamella in old shell; (c) Iberozospeum sp., (RMNH.MOL. 234,120), Cueva Refugio, Trucios, overview of dense, overlapping, scale-like wedges of localized, crystallographic structure on upper part of the lower lamella; (d) ibid., closeup view of c; (e) Iberozospeum sp., (RMNH.MOL. 234,104), Cueva del Comediante, Santander, upper part of the lamella of chemically treated shell showing dense, overlapping wedges of localized, crystallographic structure; (f) Iberozospeum sp., (RMNH. MOL. 234,141), Cueva a Sul, Oviedo, localized, overlapping wedges of crystallographic structure on lamella of chemically treated shell; (g) Iberozospeum vasconicum, (AJC 1849), Cueva Arrikrutz, overview of dense, localized, crystallographic structure on lower part of the lamella; h, ibid., closeup view of g. — Magnification varies for each perspective, see scale bars; Figs. a–b, g–h) imaged by M. Ruppel, (ret.) Goethe University Frankfurt am Main; Figs. c–f imaged by Dirk Vendermarel, Naturalis Biodiversity Center in Molecular investigation and description of Iberozospeum n. gen., including the description of one new species (Eupulmonata, Ellobioidea, Carychiidae)

◂Fig. 13 Crystallographic structure on the columellar lamellae of Dinaride Zospeum and Iberozospeum shells; (a) Zospeum spelaeum, (AJC 847), Betalov Spodmol jama, Slovenia (45.7922 14.1877), pattern of low, non-overlapping, wedges of crystallographic structure on the lamella; (b) Zospeum spelaeum, (MCBI CSR SASA 37049a), Velika Pasica, Slovenia (N45.9189 E14.4934), non-overlapping wedges of crystallographic structure on lamella in old shell; (c) Iberozospeum sp., (RMNH.MOL. 234,120), Cueva Refugio, Trucios, overview of dense, overlapping, scale-like wedges of localized, crystallographic structure on upper part of the lower lamella; (d) ibid., closeup view of c; (e) Iberozospeum sp., (RMNH.MOL. 234,104), Cueva del Comediante, Santander, upper part of the lamella of chemically treated shell showing dense, overlapping wedges of localized, crystallographic structure; (f) Iberozospeum sp., (RMNH. MOL. 234,141), Cueva a Sul, Oviedo, localized, overlapping wedges of crystallographic structure on lamella of chemically treated shell; (g) Iberozospeum vasconicum, (AJC 1849), Cueva Arrikrutz, overview of dense, localized, crystallographic structure on lower part of the lamella; h, ibid., closeup view of g. — Magnification varies for each perspective, see scale bars; Figs. a–b, g–h) imaged by M. Ruppel, (ret.) Goethe University Frankfurt am Main; Figs. c–f imaged by Dirk Vendermarel, Naturalis Biodiversity Center

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◂Fig. 14 Scanning electron micrographs (SEM) showing radular ribbon form, middle adhesive zone (az) and rows of dentition (rd) of Dinaride and Iberian individuals (notation denotes aspects on one Dinaride Zospeum and one Iberozospeum ribbon); (a) Z. exiguum (NMBE 553384), Križna jama, Slovenia (45.7452, 14.4673), long and narrow, tapered anterior end (tae), short adhesive zone (az), bottom furled with narrow obtuse or straight base (nosb); (b) Z. pretneri, (NMBE 553290), Gornja Cerovačka pećina, Croatia (44.2701, 15.8855), ibid., with straight base; (c) I. vasconicum, (AJC 1848), Cueva Ermita de Sandaili (42.9994, -2.4381), moderately long and broad, tapered anterior end (tae), prominent adhesive zone (az), straight base (sb); (d) I. zaldivarae, (AJC 1876), Cueva de Las Paúles (43.1282, -2.7362), ibid.; (e) Iberozospeum sp. (RMNH.MOL. 234,109), Cueva de la Foz, long and broad, ibid; (f) Iberozospeum sp., (RMNH.MOL. 234,144), Cueva de Rales, very long and broad, ibid; (g) Iberozospeum sp., (RMNH.MOL. 234,116), Cueva a Sul, long and broad, ibid; (h) Iberozospeum sp., (RMNH.MOL. 234,108), Cueva de Torcona, very long and broad, ibid. — Magnification varies for each perspective, see scale bars; all Figs imaged by M. Ruppel, (ret.) Goethe University Frankfurt am Main in Molecular investigation and description of Iberozospeum n. gen., including the description of one new species (Eupulmonata, Ellobioidea, Carychiidae)

◂Fig. 14 Scanning electron micrographs (SEM) showing radular ribbon form, middle adhesive zone (az) and rows of dentition (rd) of Dinaride and Iberian individuals (notation denotes aspects on one Dinaride Zospeum and one Iberozospeum ribbon); (a) Z. exiguum (NMBE 553384), Križna jama, Slovenia (45.7452, 14.4673), long and narrow, tapered anterior end (tae), short adhesive zone (az), bottom furled with narrow obtuse or straight base (nosb); (b) Z. pretneri, (NMBE 553290), Gornja Cerovačka pećina, Croatia (44.2701, 15.8855), ibid., with straight base; (c) I. vasconicum, (AJC 1848), Cueva Ermita de Sandaili (42.9994, -2.4381), moderately long and broad, tapered anterior end (tae), prominent adhesive zone (az), straight base (sb); (d) I. zaldivarae, (AJC 1876), Cueva de Las Paúles (43.1282, -2.7362), ibid.; (e) Iberozospeum sp. (RMNH.MOL. 234,109), Cueva de la Foz, long and broad, ibid; (f) Iberozospeum sp., (RMNH.MOL. 234,144), Cueva de Rales, very long and broad, ibid; (g) Iberozospeum sp., (RMNH.MOL. 234,116), Cueva a Sul, long and broad, ibid; (h) Iberozospeum sp., (RMNH.MOL. 234,108), Cueva de Torcona, very long and broad, ibid. — Magnification varies for each perspective, see scale bars; all Figs imaged by M. Ruppel, (ret.) Goethe University Frankfurt am Main

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◂Fig. 1 Morphology of thecate and coccoid cells, with labelled thecal plates. a–c, i, m Light microscopy, d–h, k–l scanning electron microscopy. a Ventral view of strain GeoM*788; b dorsal view of strain GeoM*793; c apical view of strain GeoK*044; d ventral view of strain GeoK*037; e dorsal view of strain GeoM*788; f apical view of strain GeoK*024, with the dehiscence of epithecal opening indicated by a blue line; g antapical view of strain GeoK*044; h leftlateral view of strain GeoM*866; i motile cell of strain GeoK*037; k–m coccoid cells showing variability in shape and size of strains k GeoM*866, l GeoM*793 and m GeoK*024. Abbreviations: n′: apical plate, n′′: precingular plate, n′′′: postcingular plate, n′′′′: antapical plate, na: anterior intercalary plate, nC: cingular plate, Sa: anterior sulcal plate, Sd: right sulcal plate, Sp: posterior sulcal plate. Ss: left sulcal plate. Scale bar: 10 µm. UA: 15 kV in Morphological and molecular variability of Peridinium volzii Lemmerm. (Peridiniaceae, Dinophyceae) and its relevance for infraspecific taxonomy

◂Fig. 1 Morphology of thecate and coccoid cells, with labelled thecal plates. a–c, i, m Light microscopy, d–h, k–l scanning electron microscopy. a Ventral view of strain GeoM*788; b dorsal view of strain GeoM*793; c apical view of strain GeoK*044; d ventral view of strain GeoK*037; e dorsal view of strain GeoM*788; f apical view of strain GeoK*024, with the dehiscence of epithecal opening indicated by a blue line; g antapical view of strain GeoK*044; h leftlateral view of strain GeoM*866; i motile cell of strain GeoK*037; k–m coccoid cells showing variability in shape and size of strains k GeoM*866, l GeoM*793 and m GeoK*024. Abbreviations: n′: apical plate, n′′: precingular plate, n′′′: postcingular plate, n′′′′: antapical plate, na: anterior intercalary plate, nC: cingular plate, Sa: anterior sulcal plate, Sd: right sulcal plate, Sp: posterior sulcal plate. Ss: left sulcal plate. Scale bar: 10 µm. UA: 15 kV

opencc-by-4.0Oct 2021View 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