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307 results for “benthic foraminifera”

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zenodo32/100

FIGURE 4 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 4. (Unless otherwise specified all scale bars = 100 µm). 1–3. Rudigaudryina minor (Chapman, 1902), 1. QM#G465826 from OTI 39, side view. Scale bar = 500 µm. 2–3. QM#G465830 from OTI 39 lateral view (2) and oral view (3). Scale bar for 2 = 200 µm. 4–5. Siphoniferoides siphonifera (Brady, 1881), QM#G465792 from T2–1. 4. Lateral view, scale bar = 200 µm. 5. Oral view. 6–7. Sahulia barkeri (Hofker, 1978), QM# G465827 from OTI 39. 6. Aboral view. 7. Lateral view. 8– 13. Textularia agglutinans d'Orbigny, 1839. 8–9. QM#G465957 from OTI 43 lateral (8) and oral (9) views. Scale bar for 8 = 50 µm. Scale bar for 9 = 20 µm. 10–11. QM#G465959 from OTI 50 lateral (10) and oral (11) views. Scale bar for 10 = 200 µm. 12–13. QM#G465903 from ST/HW 10 lateral (12) and oral (13) views. 14–16. Textularia candeiana d'Orbigny, 1839, QM#G465966 from CHANNEL. 14 Lateral view. 15. Peripheral view, scale bar = 200 µm. 16. Oral view. 17–20. Textularia jparkeri n. sp. 17–18. QM#G465953 from CHANNEL. 17. Lateral view, scale bar = 500 µm. 18. Oral view, scale bar = 200 µm. 19–20. QM# G466055 from CHANNEL, lateral (19) and oral (20) views. Scale bars = 200 µm.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 6 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 6. (Unless otherwise specified all scale bars = 100 µm). 1–7. Adelosina carinatastriata Wiesner, 1923. 1–2. QM#G466097 from WL 21, lateral view (1) and oral (2) views. 3–5. QM#G465820 from OTI 36, lateral (3), peripheral (4) and oral views (5). 6–7. QM#G465919 from WL 7, lateral (6) and oral (7) views. 8–13. Adelosina cf. A. pulchella (d'Orbigny, 1826). 8–10. QM#G466087 from ST/HW 10 lateral view (8), oral view (9) and peripheral view (10). 11–13. QM#G466067 from HL 40 lateral views (11, 12) and oral view (13). 14–17. Spiroloculina angulata Cushman, 1917. 14–15. QM#G465824 from OTI 36 lateral view (14) and oral view (15). Scale bars = 50 µm. 16–17. QM#G466066 from T3–6 lateral (16) and oral (17) views. 18–19. Spiroloculina corrugata Cushman & Todd 1944, QM#G466059 from OTI 39. 18. Lateral view. 19. Peripheral view. 20–21. Spiroloculina cf. S. depressa d'Orbigny, 1826, QM#G465893 from ST/HW 8. 20. Lateral view 21. Oral view.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 3 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 3. (Unless otherwise specified all scale bars = 100 µm). 1–3. Reophax nana Rhumbler, 1911, QM#G465920 from WL 7. 1. Lateral view, scale bar = 200 µm. 2. Oblique oral view, scale bar = 200 µm. 3. Close-up oral view, scale bar = 20 µm. 4. Ammobaculites sp. 1, QM#G465924 from WL15. Lateral view. 5–12. Rotaliammina chitinosa (Collins, 1958). 5–6. QM#G466031 from T2–5, spiral (5) and close-up spiral (6) views. Scale bar for 5 = 1 mm. 7–8. QM#G465776 from ST/HW 2, spiral (7) and close-up spiral (8) views. Scale bar for 7 = 500 µm. 9–10. QM#G466022 from T1–4 spiral (9) and close-up spiral (10) views. Scale bar for 9 = 500 µm. 11. QM#G465940 from OTI 20, spiral view. 12. QM#G466054 from CHANNEL, umbilical view. Scale bar = 50 µm. 13–14. Trochammina cf. T. subconica (Parr, 1950), QM#G465937 from OTI 50. 13. Lateral view. 14. Oral view. 15–16. Bdelloindina cf. B. aggregata Carter, 1877, QM#G466025 from T1–2. 15. Lateral view, scale bar = 200 µm. 16. Close-up lateral view, scale bar = 50 µm. 17. Haddonia torresiensis Chapman, 1898, QM#G465906 from ST/HW 2, lateral view. Scale bar = 500 µm. 18–20. Rudigaudryina minor (Chapman, 1902). 18. QM#G465960 from OTI 50, lateral view. Scale bar = 500 µm. 19. QM#G465891 from ST/HW 8, lateral view. Scale bar = 500 µm. 20. QM#G465826 from OTI 39, lateral view. Scale bar = 500 µm.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 12 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 12. (Unless otherwise specified all scale bars = 100 µm). 1–4. Miliolinella sp. 3, QM#G465973 from OTI 51. 1. Lateral view. 2. Peripheral view, scale bar = 50 µm. 3. Underside view, scale bar = 50 µm. 4. Oral view, scale bar = 50 µm. 5– 6. Parahauerinoides fragilissima (Brady, 1884), MU62849 from OTI 47. 5. Lateral view. 6. Peripheral view. 7–8. Pseudomassilina australis (Cushman, 1932), MU62899 from T2–3. 7. Lateral view. 8. Underside view. 9–11. Pseudomassilina macilenta (Brady, 1884). 9–10. QM#G465925 from OTI 12, lateral (9) and oral (10) views. 11. QM#G465947 from WL 15, lateral view. 12–13. Pyrgo sp. 1, MU 62903 from CHANNEL. 12. Lateral view. 13. Oral view. 14–16. Pyrgo sp. 2, QM#G465950 from HL 40. 14. Lateral view. 15. Peripheral view. 16. Oral view. 17. Pyrgo sp. 3, QM#G465956 from CHANNEL, lateral view. 18–20. Triloculina barnadi Haig, 1988, QM#G465791 from ST/HW 2, lateral (18) and oral (19) views. 20. QM#G465835 from OTI 36, lateral view.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 20 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 20. (Unless otherwise specified all scale bars = 100 µm). 1–3. Neoconorbina? sp. 1, from T1–4. 1–2. QM#G466023 from T1–4, spiral view (1) and close-up spiral (2) view. Scale bar for 2 = 50 µm. 3. QM#G466082 from T1–2 umbilical view, scale bar = 50 µm. 4–5. Buliminoides williamsoniana (Brady, 1881), QM#G465931 from WL 21. 4. Lateral view. 5. Peripheral view. 6–9. Pileolina? minogasaformis Ujiié, 1992. 6–7. QM#G465970 from OTI 48, spiral (6) and peripheral (7) views. Scale bar for 7 = 50 µm. 8–9. QM#G466016 from OTI 53, peripheral (8) and umbilical (9) views. Scale bar = 50 µm. 10–14. Cibicidoides cf. C. basilanensis McCulloch, 1977. 10. QM#G466004 from OTI 53. Spiral view, scale bar = 50 µm. 11 – 12. QM#G466005 from OTI 53, peripheral (11) and umbilical (12) views. Scale bar = 50 µm. 13–14. QM#G466139 from ST/ HW 10, peripheral (13) and umbilical (14) views. Scale bar = 50 µm. 15–17. Epistomaroides polystomelloides (Parker & Jones, 1865), QM#G466009 from OTI 48. Scale bar = 200 µm. 15. Spiral view. 16. Umbilical view. 17. Peripheral view. 18–20. Epistomaroides punctatus (Said, 1949) 18–19. QM#G465796 from T2–3. 18. Spiral view. 19. Peripheral view. 20. QM#G466014 from T1–10, peripheral/spiral view.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 11 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 11. (Unless otherwise specified all scale bars = 100 µm). 1–2. Quinqueloculina sp. 3, QM#G465918 from WL 1. 1. Lateral view. 2. Oral view. 3–5. Quinqueloculina sp. 4, QM#G465831 from OTI 39. 3. Lateral view. 4. Oral view. 5. Peripheral view. 6–7. Quinqueloculina sp. 5, QM#G465782 from ST/HW 2. 6. Lateral view, scale bar = 200 µm. 7. Oral view, scale bar = 200 µm. 8–9. Quinqueloculina sp. 6, QM#G465910 from T3–2. 8. Lateral view. 9. Peripheral view. 10–11. Quinqueloculina sp. 7, QM#G465951 from S8. 10. Lateral view, scale bar = 500 µm. 11. Close-up lateral view, scale bar = 50 µm. 12–15. Miliolinella circularis (Bornemann, 1855). 12–13. QM#G465898 from ST/HW 10, lateral (12) and oral (13) views. 14–15. QM#G465980 from OTI 54, lateral (14) and oral (15) views. 16–17. Miliolinella sp. 1, QM#G465944 from OTI 20. 16. Lateral view. 17. Oral view. 18–20. Miliolinella sp. 2, QM#G465901 from ST/HW 10. 18. Lateral view. 19. Lateral view. 20. Oral view.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 16 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 16. (Unless otherwise specified all scale bars = 100 µm). 1–8. Marginopora vertebralis Quoy & Gaimard, 1830. 1. QM#G466020 from T1–2, close-up oral view. Scale bar = 500 µm. 2–4. QM#G465967 from OTI 48, lateral (2), oral (3) and peripheral (4) views. Scale bar for 2 = 200 µm. 5–8. QM#G465961 from T1–2. 5. Lateral view showing internal structure, scale bar = 500 µm. 6. Oral view, scale bar = 500 µm. 7. Close-up oral view. 8. Close–up oral view, scale bar = 10 µm. 9–12. Sorites orbiculus Forskål, 1775. 9–10. QM#G466115 from ST/HW 4, lateral (9) and oral (10) views. 11 –12. QM#G465936 from HL 37, lateral (11) and close-up oral (12) views. Scale bar for 18 = 200 µm. 13–14. Conicospirillinoides sp. 1, QM#G465963 from OTI 51. Scale bar = 50 µm. 13. Apical view. 14. Peripheral view. 15. Planispirillina inaequalis Brady, 1879, QM#G465942 from OTI 12. Ventral view. 16–20. Planispirillina spinigera (Chapman, 1900). 16–17. QM#G465962 from OTI 20, dorsal (16) and peripheral (17) views. 18–20. QM#G465968 from OTI 51, dorsal (18), peripheral (19) and ventral lateral (20) views. Scale bar for 19 = 50 µm.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 10 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 10. (Unless otherwise specified all scale bars = 100 µm). 1–2. Quinqueloculina seminula (Linneaus, 1758), QM#G466095 from OTI 53. 1. Lateral view. 2. Oral view. 3–5. Quinqueloculina subgranulata (Cushman, 1918), QM#G465836 from OTI 39. 3. Lateral view. 4. Peripheral view. 5. Oral view. 6–7. Quinqueloculina subparkeri McCulloch, 1977, QM#G465894 from ST/HW 10. 6. Lateral view. 7. Oral view. 8–10. Quinqueloculina subpolygona Parr, 1945. 8–9. QM#G465985 from HIL 39, lateral view (8) and oral view (9). 10. QM#G465986 from HIL 39, peripheral view. 11 –15. Quinqueloculina transversestriata (Brady, 1881). 11–13. QM#G465784 from ST/HW 2, lateral (11), peripheral (12) and oral (13) views. 14–15. QM#G466098 from OTI 52 lateral (14) and oral (15) views. 16–17. Quinqueloculina cf. Q. victoriensis Collins, 1974, QM#G465908 from T1–6. 16. Lateral view. 17. Oral view. 18–19. Quinqueloculina sp. 1, QM#G465823 from OTI 36. 18. Lateral view. 19. Oral view. 20–21. Quinqueloculina sp. 2, QM#G466101 from WL 19. 20. Lateral view. 21. Peripheral view.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 14 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 14. (Unless otherwise specified all scale bars = 100 µm). 1–4. Pseudohauerina involuta (Cushman, 1946). 1–2. QM#G465873 from CHANNEL, lateral (1) and angled lateral (2) views. 3–4. QM#G465874 from CHANNEL, lateral (3) and oral (4) views. Scale bars = 200 µm. 5–10. Alveolinella quoyi (d'Orbigny, 1826). 5–7. QM#G465965 from CHANNEL, oral (5), lateral (6) and peripheral (7) views. 8–9. QM#G465964 from CHANNEL, oral (8) and lateral (9) views. Scale bar for 8 = 200 µm. 10. QM#G465865 from CHANNEL, lateral view, scale bar = 500 µm. 11 –16. Monalysidium acicularis (Batsch, 1791). 11–13. QM#G465778 from ST/HW 2, lateral view (11, 12) and oral (13) views. Scale bar = 200 µm. 14–16. QM#G465888 from ST/HW 4 lateral (14, 15) and oral (16) views. 17–20. Peneroplis pertusus (Forskål, 1775). 17–18. QM#G465882 from ST/HW 2, lateral (17) and oral (18) views. 19–20. QM#G465804 from T2–3, lateral (19) and oral (20) views.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 15 in Benthic Foraminifera from the Capricorn Group, Great Barrier Reef, Australia

FIGURE 15. (Unless otherwise specified all scale bars = 100 µm). 1–5. Peneroplis pertusus (Forskål, 1775). 1–3. QM#G465896 from ST/HW 10, lateral (1, 2) and oral (3) views. 4–5. QM#G465805 from T2–3, lateral (4) and oral (5) views. 6–7. Peneroplis planatus (Fichtel & Moll, 1798) QM#G465995 from T1–10, lateral (6) and oral (7) views. Scale bar = 500 µm. 8–13. Parasorites sp. 1. 8–9. QM#G465802 from T2–3, lateral (8) and oral (9) views. Scale bar = 200 µm. 10. QM#G465781 from ST/HW 2, lateral view. Scale bar = 200 µm. 11 –13. QM#G465982 from OTI 54, lateral (11), close up of intradermal plates (12) and oral (13) views. Scale bar for 12 = 50 µm. 14–20. Marginopora vertebralis Quoy & Gaimard, 1830. 14–16. QM#G465793 from T2–1, lateral view (14), scale bar = 200 µm. 15. Oral view. 16. Close-up oral view, scale bar = 50 µm. 17–18. QM#G466030 from T2–5, lateral (17) and close-up oral (18) views. Scale bar for 17 = 1 mm. 19–20. QM#G466020 from T1–2, lateral (19), oral (20) views. Scale bar for 19 = 2 mm. Scale bar for 20 = 1 mm.

opennotspecifiedDec 2016View details →
zenodo32/100

Organic geochemical proxies, foraminieral assemblages and isotopic geochemistry of benthic foraminifera from core NYA17-154

<p>The dataset contains all the data from cor NYA17-154 presented in Tesi et al. 2021 Science Advances</p> <p><strong>Rapid Atlantification along the Fram Strait at the beginning of the 20<sup>th</sup> century </strong></p> <p>Tesi. Tommaso<sup>1*</sup>, Francesco &nbsp;Muschitiello<sup>2,3*</sup>, Gesine Mollenhauer<sup>4</sup>, Stefano Miserocchi<sup>1</sup>, Leonardo Langone<sup>1</sup>, Chiara Ceccarelli<sup>5</sup>, Giuliana Panieri<sup>6</sup>, Jacopo Chiggiato<sup>7</sup>, Alessio &nbsp;Nogarotto<sup>1,8</sup>, Jens Hefter<sup>4</sup>, Gianmarco Ingrosso<sup>1</sup>, Federico Giglio<sup>1</sup>, Patrizia Giordano<sup>1</sup>, Lucilla Capotondi<sup>7</sup></p> <p>(1) Istituto di Scienze Polari - Consiglio Nazionale delle Ricerche ISP-CNR,&nbsp; 40129 Bologna, Italy</p> <p>(2) Department of Geography - University of Cambridge, Cambridge, CB2 3EN, UK</p> <p>(3) NORCE Norwegian Research Centre, 5007 Bergen, Norway</p> <p>&nbsp;(4) Alfred Wegener Institute - Helmholtz Center for Polar and Marine Sciences, 27570 Bremerhaven, Germany</p> <p>(5) Dipartimento di Scienze Biologiche, Geologiche ed Ambientali &ndash; BiGeA, 40126 Bologna, Italy</p> <p>(6) CAGE ‐ Center of Arctic Gas Hydrate, Environment and Climate, Department of Geolosciences, UiT The Arctic University of Norway, Troms&oslash;, Norway</p> <p>&nbsp;(7) Istituto di Scienze Marine - Consiglio Nazionale delle Ricerche ISMAR-CNR,&nbsp; 40129 Bologna, Italy</p> <p>(8) Campus Scientifico, Universit&agrave; Ca&rsquo; Foscari Venezia, 30172 Venezia Mestre, Italy</p> <p>&nbsp;</p> <p>The data encompasses:</p> <p>- age-depth model</p> <p>- alkenone derived sea surface temperature</p> <p>- TEX86-L derived water temperature</p> <p>- stable oxygen isotope data of N. labradorica</p> <p>- benthic foraminifera assemblages</p> <p>- retene content</p>

opencc-by-4.0Oct 2021View details →
dryad32/100

Data from: Abyssal benthic foraminifera in the eastern equatorial Pacific (IODP Exp 320) during the middle Eocene

Open the record for dataset details and reuse information.

publicJul 2013View details →
dryad32/100

Data from: Environmental monitoring through protist NGS metabarcoding: assessing the impact of fish farming on benthic foraminifera communities

Open the record for dataset details and reuse information.

publicApr 2014View details →
zenodo28/100

Fig. 5 in Seasonal response of benthic foraminifera to anthropogenic pressure in two stations of the Gulf of Trieste (northern Adriatic Sea, Italy): the marine protected area of Miramare versus the Servola water sewage outfall

Fig. 5: Distribution of the foraminiferal density of those species and genera comprising at least 4% of the assemblage in at least one sample from the studied stations. Red histogram: Ser station; blue histogram: Res station. Note that y-axis scale is variable depending on species foraminiferal density.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Fig. 3 in Annular Chambers In Cretaceous Orbitolinidae (Larger Benthic Foraminifera): An Overview

Fig. 3 Annular chambers in Coskinolinella daguini Delmas &amp; Deloffre (upper Aptian Reocín Formation of Spain; a–-c, d?, f), Coskinolinella santanderensis Ramírez del Pozo (early Albian of Spain; g-h), Pseudorbitolina schroederi Luger (upper Maastrichtian Tarbur Formation of Iran; e, i–j, k, m-n: reconstruction of Henson, 1948), and some comparisons with Gusicella minima (Henson) (upper Maastrichtian Tarbur Formation of Iran; l, o). a subaxial section. Note the presence of foramina (left side) of unknown distribution pattern throughout the test. b–c oblique sections. d Drawing of the dorsal side of an isolated specimen with two annular chambers highlighted in colours (modified from Hofker, 1965, fig. 1, without scale, illustrated as C. daguini it might in fact belong to C. santanderensis). e subaxial section. Note the concentric arrangement of foramina (radial tubular apertures sensu Henson, 1948) in line between subsequent chambers in the middle part of the annular chambers (solid red left in the test, dotted red in the reconstructed part). f tangential section; approximate position shown in b (1------2). g-h tangential section showing intercalary beams. i axial section of a megalospheric specimen (em = embryo). j Detail from Fig. 3e (axial section) showing aligned tubular apertures (= tubular foramina, t.f.) sensu Henson (1948). k Schematic drawing modified from Henson (1948, fig. 16a) showing aligned tubular foramina (t.f., arrows towards test base) and primary chambers (p.ch.) in axial section (arrows); t.a. aperture at test base. l Part of the test in axial section showing aligned tubular foramina at the transition marginal to central zone. m–n Tangential sections showing aligned main partitions (m: thin-section, n: reconstruction from Henson, 1948, fig. 16e). o Part of the test in tangential section showing from left to right the cellular subepidermal network, and aligned vertical main partitions and tubular foramina.

opencc-by-4.0Oct 2022View details →
zenodo28/100

Plate 5 in A new record of larger benthic foraminifera from Jeju Island (South Korea)

Plate 5. Scanning electron microscope images of Sorites orbiculus (Forsskål in Niebuhr, 1775). A. peripheral, apertural view; B-G. closeup of apertural side. Scales = 100 μm; H-M. close-up of broken part, some diatoms (white arrowhead) are on the inner surface of chamberlet. Scales = 10 μm.

opencc-by-4.0Aug 2024View details →
zenodo28/100

Fig. 2. a in Benthic and Planktic Foraminifera as Indicators of Late Glacial to Holocene Paleoclimatic Changes in a Marginal Environment: An Example from the Southeastern Bay of Biscay

Fig. 2. a – age model and AMS radiocarbon ages for Cores FC WH and CADIAC WH; b – X-Ray photograph of Core CADIAC WH and grain-size parameters.

opencc-by-4.0Dec 2013View details →
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Fig. 3 in Benthic and Planktic Foraminifera as Indicators of Late Glacial to Holocene Paleoclimatic Changes in a Marginal Environment: An Example from the Southeastern Bay of Biscay

Fig. 3. Benthic foraminiferal fauna characteristics of Core FC WH: a – densities of the main (&gt; 5% in at least one sample) living benthic foraminifera (ind. 50 cm–3 of wet sediment); b – species richness of the living benthic fauna; c – densities of the main (&gt; 5% in at least one sample) dead benthic foraminiferal species (ind. 50 cm–3 of wet sediment); d – species richness of the dead benthic fauna.

opencc-by-4.0Dec 2013View details →
zenodo28/100

Fig. 8 in Moulladella Jourdanensis (Foury & Moullade, 1966) N. Gen., N. Comb.: Valanginian-Early Late Barremian Larger Benthic Foraminifera From The Northern Neotethyan Margin

Fig. 8 Geographic distribution of occurrences of Moulladella jourdanensis (Foury &amp; Moullade) n. gen., n. comb. 1: Organya, Pyrenees, Spain 2: Alpilles, Southern France 3: Provence, Southern France 4: Alpes occidentales and Jura, South- Eastern France and Switzerland 5: Northern Calcareous Alps, Austria 6: Pădurea Craiului, Apuseni Mountains, Romania 7: Reşiţa-Moldova Nouă zone, Southern Carpathians, Romania 8: Vâlcan and Vânturariţa Mountains, Southern Carpathians, Romania 9: Dâmbovicioara zone, Southern Carpathians, Romania 10: Dobrogea, South-East Romania 11: Jerma River canyon, Eastern Serbia 12: Western Bulgaria.

opencc-by-4.0Oct 2018View details →
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Fig. 2 in Moulladella Jourdanensis (Foury & Moullade, 1966) N. Gen., N. Comb.: Valanginian-Early Late Barremian Larger Benthic Foraminifera From The Northern Neotethyan Margin

Fig. 2 Schematic test reconstruction of Moulladella jourdanensis (Foury &amp; Moullade) n. gen., n. comb. modified from Peybernès (2004, fig. 3, for Conicopfenderina? balkanica). Pseudo-kerioteka refers to the thin section 14731 Jerma river, Serbia (above), and RR4027 Kurilovo, Serbia (scale bar = 0.2 mm).

opencc-by-4.0Oct 2018View details →

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Allen Brain Atlas

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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