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Figure 3 from: Montero-Muñoz I, Levin GA, Cardiel JM (2020) Four new species of Acalypha L. (Euphorbiaceae, Acalyphoideae) from the West Indian Ocean Region. PhytoKeys 140: 57-73. https://doi.org/10.3897/phytokeys.140.50229
Figure 3 Acalypha leandriiA flowering female branch B flowering male branch C detail of node, stipules, and petiole base D detail of node with axillary bud E detail of upper leaf surface showing the leaf base and stipels F mature female bract G ovary and styles H calyx of the female flower I capsule J seed. Based on J. Leandri, R. Capuron & A. Razafindrakoto 2037 (A, C–J) and J. Leandri & P. Saboureau 2996 (B). Illustration by Iris Montero Muñoz.
Figure 2 from: Montero-Muñoz I, Levin GA, Cardiel JM (2020) Four new species of Acalypha L. (Euphorbiaceae, Acalyphoideae) from the West Indian Ocean Region. PhytoKeys 140: 57-73. https://doi.org/10.3897/phytokeys.140.50229
Figure 2 Map of Madagascar and the Mayotte island showing the distributions of Acalypha gillespieae (square), A. leandrii (rhombus), A. mayottensis (triangle) and A. nusbaumeri (circle).
FIG. 7 in Hanging on - lucinid bivalve survivors from the Paleocene and Eocene in the western Indian Ocean (Bivalvia: Lucinidae)
FIG. 7. — Eomiltha Cossmann, 1912 and Retrolucina n. gen., outline drawings of interiors of valves: A, Retrolucina voorhoevei n. comb. (Deshayes, 1857), Recent, Mozambique (USNM 628930); B, Retrolucina voorheoevi Recent, Mozambique (ANSP 234103); C, Retrolucina defrancei (Deshayes, 1857) Eocene, Lutetian, Chaumont-en-Vexin, France (MNHN.F.J07396); D, Retrolucina defrancei (Deshayes, 1857) Eocene. Lutetian, Parnes (NHMUK 33283a); E, F, Eomiltha contorta (Defrance, 1825) Paleocene, Thanetian, Abbecourt (MNHN); G, 'Eomiltha' pandata (Conrad, 1833) Eocene, Claiborne Formation, USA (NHMUK L 4402). Not to scale.
FIG. 5 in Hanging on - lucinid bivalve survivors from the Paleocene and Eocene in the western Indian Ocean (Bivalvia: Lucinidae)
FIG. 5. — Eomiltha Cossmann, 1912 fossils: A, Eomiltha alburgensis (Vincent, 1930) exterior of left valve, Paleocene, Danian, Calcaire de Mons, Mons, Belgium, (RBINS IG 5496), L 32 mm; B, C, Eomitha contorta (Defrance, 1825), exterior and interior of right valve, Paleocene, Thanetian, Abbecourt, Oise, France (MNHN), L 52 mm; D-F, Eomitha contorta (Defrance, 1825) interior and exterior of right valve and exterior of left valve, Paleocene, Thanetian, Sables de Bracheux, Beau- vais, France, (RBINS IG 8260), L 43 mm; G, Eomiltha contorta dorsal view, Abbecourt, (MNHN), L 54 mm; H, I, 'Eomiltha' pandata (Conrad, 1833), Eocene (mid.), Gosport Sand, Claiborne Formation, Alabama, USA (PRI 34183), L 34 mm; J, K, 'Eomiltha' scolaroi Vokes 1969b, holotype, (USNM 646423), early Miocene, Chipola Formation, Farley Creek, Calhoun Co. Florida, USA, L 32.6 mm.
FIG. 3 in Hanging on - lucinid bivalve survivors from the Paleocene and Eocene in the western Indian Ocean (Bivalvia: Lucinidae)
FIG. 3. — Barbierella Chavan, 1938 fossil species: A-D, Barbierella barbieri (Deshayes, 1857) Eocene, Lutetian, Parnes, Oise, France; A, B, exterior and interior of left valve (MNHN.F.A52519 coll. Pacaud), L 6.3 mm; C, D, exterior and interior of right valve (MNHN.F.A52520 coll. Pacaud), L 7.2 mm. Images by Peter Mas- sicard (MNHN); E, F, Barbierella miobarbieri (Sacco, 1901) holotype of Here miobarbieri Sacco, 1901. Exterior and interior of the single right valve, Museo di Geo- logia e Paleontologia della Universita di Torino BS, 154.09.001, Miocene, Elveziano (Langhian?), Bersano, Italy, L 17 mm. Images by Daniele Ormezano (MRSN).
FIG. 1 in Hanging on - lucinid bivalve survivors from the Paleocene and Eocene in the western Indian Ocean (Bivalvia: Lucinidae)
FIG. 1. — Gibbolucina Cossmann, 1904 fossil species: A-G, Gibbolucina callosa (Lamarck, 1806), Eocene, Lutetian, Calcaire Grossier, Grignon, France, NHMUK Earth Science L 14106; A, B, exterior and interior of left valve, L 11.7 mm; C, D, exterior and interior of right valve, L 10.3 mm; E, interior of right valve, L 11.2 mm; F, G, detail of hinge teeth of right (E) and left (B) valves; H, I, Gibbolucina axinoides (Dufour, 1881) exterior and interior of right valve, Eo- cene, Bartonian, Saint-Aignan-Grandlieu, Pierre-Aiguë, Loire-Atlantique, France, (MNHN.F.R53986), L 12 mm; J, K, Gibbolucina lefevrei (Cossmann, 1887) interior and exterior of right valve, Eocene, Bartonian, Bezu le Guery, France (MNHN), L 25 mm; L, Gibbolucina trigonula (Deshayes, 1830) interior of right valve, Miocene, Aquitanian, Villandraut, Gironde, France (MNHN), L 22 mm; M, N, Gibbolucina trigonula (Deshayes, 1830) Miocene, Burdigalian, Corbleu (Moulin de Carro), Landes, France. Images Pierre Lozouet, L 31 mm; O, P, Gibbolucina cf trigonula interior and exterior of right valve, locality as M, L 10 mm. Scale bar: F, G, 1.0 mm.
FIG. 1 in First record of the rare Wide-mouth flounder Kamoharaia megastoma (Kamohara, 1936) (Pleuronectiformes, Bothidae) from the western Indian Ocean collected during the ATIMO VATAE expedition to Madagascar "Deep South"
FIG. 1. — Map of geographical distribution of Kamoharaia megastoma (Kamohara, 1936) in the Western Pacific and southeastern Indian Ocean (red, after Hensley & Amaoka (2001)) and the southwestern Indian Ocean off Madagascar (yellow stars).
Figure S2 in Supplementary information: Bat coronavirus phylogeography in the Western Indian Ocean
Figure S2. Mean CoV prevalence (mean ± 95% confidence interval) as function of the bat species.
Figure 1 from: Stefanoudis PV, Talma S, Samimi-Namin K, Woodall LC (2020) Deep reef ecosystems of the Western Indian Ocean: addressing the great unknown. Research Ideas and Outcomes 6: e53913. https://doi.org/10.3897/rio.6.e53913
Figure 1 Top left to centre right: Photographs representing the different training activities that took place during the workshop. Bottom: Group photo of participants.
Fig. 8 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 8. Munida stomifera sp. nov., holotype, ♀, 2.8 mm (MNHN-IU-2014-13473), Madagascar. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Dactylus of right P2, lateral view. H. Left P3, lateral view. I. Right P4, lateral view. Scale bar: A, E–F, H–I = 1.0 mm; B–D, G = 0.5 mm.
Fig. 4 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 4. Munida euripa sp. nov., holotype, ♂, 11.4 mm (MNHN-IU-2014-13475), Madagascar. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Dactylus of right P2, lateral view. H. Left P3, lateral view. I. Right P4, lateral view. Scale bar: A, E–F, H–I = 3.0 mm; B–D, G = 1.5 mm.
Fig. 5 in New sibling species and new occurrences of squat lobsters (Crustacea, Decapoda) from the western Indian Ocean
Fig. 5. Munida hoda sp. nov., holotype, ♂, 5.3 mm (MNHN-IU-2014-13479), Mozambique. A. Carapace and abdomen, dorsal view. B. Sternal plastron. C. Cephalic region, showing antennular and antennal peduncles, ventral view. D. Right Mxp3, lateral view. E. Right P1, dorsal view. F. Right P2, lateral view. G. Dactylus of right P2, lateral view. H. Left P3, lateral view. I. Left P4, lateral view. Scale bar: A, E–F, H–I = 1.0 mm; B–D, G = 0.5 mm.
Fig. 2 in A new species of Heterospio (Annelida, Longosomatidae) from the Indian Ocean
Fig. 2. Heterospio indica sp. nov., holotype (MNCN 16.01/16996). A. General view (scale bar = 2 mm). B. Anterior end, lateral view (scale bar = 400 Mm). C–E. Chaetal arrangement (scale bar = 200 Mm), details. C. CH10. D. CH13. E. CH14. Abbreviations: bp = branchiophore; bs = branchiostyle; CH = chaetiger; pa = palp; SG = segment.
Figure 7 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 7 Hippocampus nalu in situ, juvenile, approximately 10 mm SL, Sodwana Bay, South Africa at 14 m depth (photograph Richard Smith / oceanrealmimages.com).
Figure 6 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 6 Hippocampus nalu in situ, SAMC-F041934, paratype, male, Sodwana Bay, South Africa at 14 m depth (photograph Richard Smith / oceanrealmimages.com).
Figure 5 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 5 Hippocampus nalu in situ, SAMC-F041933, holotype, female, Sodwana Bay, South Africa at 14 m depth (photograph Richard Smith / oceanrealmimages.com).
Figure 4 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 4 Computed tomography scan of Hippocampus nalu, SAMC-F041933, holotype, female, 18.9 mm SL, 2 Mile Reef, Sodwana Bay, South Africa A lateral view of head and trunk area B anterolateral view of first and second superior trunk ridge spines (STrR1-2) C close-up lateral view of second superior trunk ridge cuspidate spines (STrR2). Abbreviations: ES, double eye spines; SOC, supraoccipital; CO, coronet; SC, supracleithrum; STrR1, first superior trunk ridge spine; STrR2, second superior trunk ridge spines; STrR5, fifth superior trunk ridge spine; STrR12, twelfth superior trunk ridge spine.
Figure 1 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 1 Hippocampus nalu, preserved specimens A SAMC-F041933, holotype female, 18.9 mm SL, and B SAMC-F041934, paratype, male, 22 mm SL; South Africa: Sodwana Bay, 2 Mile Reef (photograph Australian Museum Research Institute).
Figure 2 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 2 Computed tomography scanned skeleton of Hippocampus nalu, SAMC-F041933, holotype, 18.9 mm SL, female SLA ventral view B lateral view C dorsal view.
Figure 3 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 3 Computed tomography scanned skeleton of Hippocampus nalu, SAMC-F041934, paratype, male, 22 mm SLA ventral view B lateral view C dorsal view.
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.