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FIG. 2. — A-D, Marcelohelia caribbiensis n. gen., n in Revision of the family Felixaraeidae (Scleractinia; Cretaceous)
FIG. 2. — A-D, Marcelohelia caribbiensis n. gen., n. sp., holotype (IGM 8724); A, transversal thin section; B, colony surface; C, transversal thin section, detail; D, longitudinal thin section; E, F, Marcelohelia sp. (USNM #411); E, transversal thin section; F, longitudinal thin section; G, Brachycaulia jacobi Beauvais, 1982, holotype (MNHN.F.R10975), transversal thin section; H, I, Paracycloseris elizabethae Wells, 1934; H, holotype (USNM I-74489), oral view; I, USNM J71-128b, transversal thin section. Scale bars: A, B, D-I, 10 mm; C, 3 mm.
FIG. 4 in Revision of the family Felixaraeidae (Scleractinia; Cretaceous)
FIG. 4. — Stratigraphic distribution of genera of the Felixaraeidae family. Above Tethyan genera, below genera restricted to the Western Hemisphere. Only the type genus was found in both areas.
FIG. 1 in Revision of the family Hemiporitidae (Scleractinia, Late Cretaceous)
FIG. 1. — Schematic illustration showing how the calicular outer (c min, c max) and inner (cl min, cl max) diameter values were measured. Abbreviations: see Material and methods.
FIG. 2. — A-F in Revision of the family Hemiporitidae (Scleractinia, Late Cretaceous)
FIG. 2. — A-F, Hemiporites jacobi Alloiteau, 1952: A-E, holotype MNHN.F.R10937 (transverse thin section); F, unnumbered thin section that may belong to the holotype (longitudinal thin section); G-I, Cerionefocoenia iberica Reig Oriol, 1995, holotype MGSB 55826; G, H, transverse thin sections; I, longitudinal thin section; J-L, Pachynefocoenia danieli Reig Oriol, 1989, holotype MGSB 47205. Scale bars: A-C, F-L, 2 mm; D, E, 500 µm.
Barcode database of scleractinian corals (Cnidaria, Scleractinia) in two tropical marine protected areas (Perhentian and Redang Islands Marine Parks, Malaysia)
<p class="MsoNormal"><span>Coral reefs are particularly vulnerable to climate change as an elevation of sea surface temperatures would cause most coral species to bleach rapidly by expulsing their algal symbionts Symbiodiniaceae. Loss of these symbionts in coral species during stress-related "bleaching" events can lead to mass mortality of these corals and the collapse of the associated reef ecosystem. This makes the inventory of the diversity of coral species and their symbionts, in particular, genetic diversity, critical to the understanding of the assessment of coral reef resilience and ecosystem sustainability. The use of DNA barcoding has been proven useful in biodiversity assessments and monitoring schemes of marine ecosystems, particularly the highly diverse coral reef ecosystems. However, this information is lacking in Malaysia. Therefore, a comprehensive reference database of genetic sequences that represent the present coral reef biodiversity in the country would be needed. Here, we barcoded the scleractinian coral samples, the reef-building corals, collected from the two marine protected areas of Malaysia, Perhentian and Redang Islands Marine Parks, using the cytochrome c oxidase I (COI) marker. The data released from this project represent the first comprehensive reference database of the scleractinian coral diversity on the northeastern coasts of Malaysian coral reefs. A total of 62 nucleotide COI sequences of scleractinian corals collected from the two marine parks were obtained. Of these, a total of 34 taxa belonging to nine families were included in the dataset. This dataset added information on the occurrence and distribution of scleractinian coral species from the two tropical marine protected areas in the South China Sea (Western Pacific).</span></p>
Fig. 33 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 33. Acropora cf. willisae. Specimen number: VAM69. (A) live colony; (B) branch fragment; (C) axial corallites; (D) radial corallite; (E) coenosteum between corallites.
Fig. 32 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 32. Acropora cf. vermiculata. Specimen number: VAM70. (A) live colony; (B) branch detail; (C) radial corallites; (D) axial corallite; (E) coenosteum between corallites.
Fig. 31 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 31. Acropora valida Specimen number: VAM62. (A) live colony; (B) axial corallite; (C) branch fragment; (D) radial corallites; (E) coenosteum between corallites.
Fig. 29 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 29. Acropora cf. subulata. Specimen number: VAM4. (A) live colony; (B) branch fragment; (C); radial corallites (D) axial corallite.
Fig. 30 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 30. Acropora tenuis. Specimen number: (A, B, C, E) VAM 17; (D) VAM48. (A) live colony; (B) portion of colony; (C, D) portion of branch showing radial corallites; (E) axial corallite.
Fig. 27 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 27. Acropora robusta. (A) live colony; (B) main branch tip; (C, D) radial corallites on branchlets; (E) axial corallite; (F) sub-immersed radials and intercorallite area.
Fig. 25 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 25. Acropora nasuta. Specimen number: (A, B) VAM51; (C–F) VAM75. (A) live colony with (B) branch fragment; (C, D) portion of branch showing radial corallites; (E) axial corallite; (F) coenosteum between corallites.
Fig. 24 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 24. Acropora cf. nana. Specimen number: VAM78. (A) live colony; (B) branch fragment; (C) radial corallites; (D) axial corallite; (E) coenosteum between corallites.
Fig. 21 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 21. Acropora microphthalma. Specimen number: (A, B, D–F) VAM21; (C) VAM14. (A) live colony; (B) branch fragment; (C, D) axial corallite; (E) radial corallites; (F) coenosteum between corallites.
Fig. 26 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 26. Acropora polystoma. Specimen number: VAM34. (A) live colony with (B) branch fragment; (C) radial corallites and (D) axial corallite; (E) coenosteum between corallites.
Fig. 28 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 28. Acropora selago. Live colony. Note that this specimen was unfortunately lost from the collection before photographic processing, therefore skeleton photographs are not available.
Fig. 23 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 23. Acropora muricata. Specimen number: VAM33. (A) live colony; (B) branch fragment; (C) portion of branch showing radial corallites; (D) axial corallite.
Fig. 20 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 20. Acropora loripes. Specimen number: VAM80. (A) live colony; (B, C) branch fragment with radial corallites; (D) axial corallite; (E) coenosteum between corallites.
Fig. 19 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 19. Acropora latistella. Specimen number: (A–C, E) VAM55; (D) VAM10. (A) live colony; (B, E) radial corallites; (C) branch fragment; (D) axial corallite.
Fig. 18 in An annotated and illustrated checklist of species of the coral genus Acropora (Cnidaria: Scleractinia) from Vamizi Island, Mozambique
Fig. 18. Acropora intermedia. Specimen number: VAM41. (A) live colony with (B) branch fragment; (C) axial corallite; (D, E) portion of branch showing radial corallites.
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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.
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.