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Fig. 7. A–G in On a collection of Homolidae from the South China Sea, with descriptions of two new species of Homologenus A. Milne-Edwards, in Henderson, 1888, and the identities of Homologenus malayensis Ihle, 1912, and Lamoha superciliosa (Wood-Mason, in Wood-Mason & Alcock, 1891)
Fig. 7. A–G, Lamoha longirostris (Chen, 1986). A, paralectotype male (22.9 × 18.6 mm) (ZRC 1999.0007), East China Sea; B, male (24.9 × 20.5 mm) (ZRC 2016.0556), South China Sea; C, male (29.2 × 24.2 mm) (ZRC 2008.990), Philippines; D, female (24.9 × 20.3 mm) (ZRC 2016.0555), South China Sea; E, female (23.4 × 19.4 mm) (ZRC 2016.0556), South China Sea; F, male (15.3 × 12.6 mm) (ZRC 2016.0556), South China Sea; G, L. superciliosa (Wood-Mason, in Wood-Mason & Alcock, 1891), male (11.8 × 9.9 mm) (OUMNH 2008-09-0039), Laccadive Sea. H, L. superciliosa (Wood-Mason, in Wood-Mason & Alcock, 1891), female (15.6 × 13.0 mm) (USNM 42696), Arabian Sea.
Fig. 12. Homologenus malayensis Ihle, 1912. A–D, I–L in On a collection of Homolidae from the South China Sea, with descriptions of two new species of Homologenus A. Milne-Edwards, in Henderson, 1888, and the identities of Homologenus malayensis Ihle, 1912, and Lamoha superciliosa (Wood-Mason, in Wood-Mason & Alcock, 1891)
Fig. 12. Homologenus malayensis Ihle, 1912. A–D, I–L, male (carapace width 6.2 mm, rostrum damaged) (ZRC 2016.0194), Papua New Guinea; E–H, female (16.0 × 13.9 mm) (ZRC 2016.0196), Papua New Guinea. A, left third maxilliped; B, dorsal view of right cheliped carpus; C, left G1; D, left G2; E–L, female left P2–P5 merus, respectively; I–L, male left P2–P5, respectively. Scales: C, D = 0.5 mm; E–L = 5.0 mm.
Fig. 11. Homologenus malayensis Ihle, 1912 in On a collection of Homolidae from the South China Sea, with descriptions of two new species of Homologenus A. Milne-Edwards, in Henderson, 1888, and the identities of Homologenus malayensis Ihle, 1912, and Lamoha superciliosa (Wood-Mason, in Wood-Mason & Alcock, 1891)
Fig. 11. Homologenus malayensis Ihle, 1912, female (16.0 × 13.9 mm) (ZRC 2016.0196), Papua New Guinea. A, frontal view of cephalothorax; B, rostrum, pseudorostrum and orbit; C, left third maxilliped; D, dorsal view of right cheliped carpus; E, outer view of left chela; F, posterior carapace margin and male pleonal somites 1.
Fig. 16. Homologenus brevipes n in On a collection of Homolidae from the South China Sea, with descriptions of two new species of Homologenus A. Milne-Edwards, in Henderson, 1888, and the identities of Homologenus malayensis Ihle, 1912, and Lamoha superciliosa (Wood-Mason, in Wood-Mason & Alcock, 1891)
Fig. 16. Homologenus brevipes n. sp., overall habitus. A, holotype ovigerous female (15.0 × 10.7 mm) (NTOU), Taiwan; B, paratype ovigerous female (15.4 × 13.5 mm) (ZRC 2016.0572), Taiwan; C, paratype male (7.6 × 5.9 mm) (ZRC 2016.0574), Taiwan.
Fig. 1 in Mesophotic mushroom coral records at Brunei Darussalam support westward extension of the Coral Triangle to the South China Sea waters of Northwest Borneo
Fig. 1. Map of N.W. Borneo region. White stars designate Fungiidae survey locations. MP = Mampak Patches and LR = Louisa Reef (this study); LL = Layang Layang atoll, KK = islands of the Tungku Abdul Rahman Park near Kota Kinabalu, K = Kudat area (from the literature). Dashed black line represents current western limit of the Coral Triangle (map modified from Google Earth image).
Fig. 6. A in The mushroom coral fauna (Scleractinia: Fungiidae) of Brunei Darussalam (South China Sea) and its relation to the Coral Triangle
Fig. 6. A, Ctenactis albitentaculata at Littledale Shoal, north; B, Ctenactis crassa at Otterspool Rock; C, Ctenactis echinata at Abana Rock, south; D, Herpolitha limax at Littledale Shoal, south; E, Sandalolitha dentata at Porter Patch; F, Sandalolitha robusta at Littledale Shoal, south; G, Podabacia crustacea at Pelong Rocks, south-southwest; H, Podabacia motuporensis at Two Fathom Rock.
Fig. 5. A in The mushroom coral fauna (Scleractinia: Fungiidae) of Brunei Darussalam (South China Sea) and its relation to the Coral Triangle
Fig. 5. A, Heliofungia actiniformis at Littledale Shoal, north; B, Polyphyllia talpina at Pelong Rocks, southwest; C, Pleuractis granulosa at Littledale Shoal, south; D, Pleuractis gravis at Littledale Shoal, south; E, Pleuractis moluccensis at Pelong Rocks, southwest; F, Pleuractis paumotensis at Abana Rock, south; G, Pleuractis taiwanensis at Pelong Rocks, north; H, Lobactis scutaria at Pelong Rocks, northeast.
Fig. 4. A in The mushroom coral fauna (Scleractinia: Fungiidae) of Brunei Darussalam (South China Sea) and its relation to the Coral Triangle
Fig. 4. A, Cycloseris explanulata at Porter Patch; B, Cycloseris wellsi at Abana Rock, north; C, Cycloseris mokai at Littledale Shoal, south; D, Lithophyllon scabra at Hornet Reef (Brunei Patches); E, Lithophyllon concinna at Abana Rock, south; F, Lithophyllon repanda at Abana Rock, north; G, Lithophyllon undulatum at Abana Rock, south; H, Halomitra pileus at Abana Rock, south; I, Danafungia horrida at Pelong Rocks, northeast; J, Danafungia scruposa at Pelong Rocks, southwest; K, Fungia fungites at Abana Rock, south.
Fig. 7. Zoopilus echinatus. A fragment with regenerated margins from Silk Rock, 10 m depth, 21 October 2008, Coll. L. Devantier. A in The mushroom coral fauna (Scleractinia: Fungiidae) of Brunei Darussalam (South China Sea) and its relation to the Coral Triangle
Fig. 7. Zoopilus echinatus. A fragment with regenerated margins from Silk Rock, 10 m depth, 21 October 2008, Coll. L. Devantier. A, upper surface; B, lower surface. Scale bar = 0.5 cm.
Fig. 2 in The mushroom coral fauna (Scleractinia: Fungiidae) of Brunei Darussalam (South China Sea) and its relation to the Coral Triangle
Fig. 2. Species richness estimators (Colwell, 2009) for Fungiidae recorded at 17 sites off Brunei. The curves indicate that the occurrence of one additional species is possible when the maximum number of observed species (S Obs = 32) is compared to the maximum expected numbers (ICE, Chao 2 = 33). Only two species (Uniques) are each represented by a single individual.
Fig. 3. A, B in The mushroom coral fauna (Scleractinia: Fungiidae) of Brunei Darussalam (South China Sea) and its relation to the Coral Triangle
Fig. 3. A, B, Cycloseris fragilis, complete coral at Hornet Reef (Brunei Patches), fragmenting coral at Abana Rock, north; C, Cycloseris sinensis, fragmenting coral at Abana Rock, north; D–F, Cycloseris cyclolites at Hornet Reef (Brunei Patches), complete coral, fragmenting coral upper and lower side; G, H, Cycloseris somervillei at Chearnley Shoal, upper and lower side of a coral; I, Cycloseris costulata at Pelong Rocks, northeast; J, Cycloseris tenuis at Hornet Reef (Brunei Patches); K, Cycloseris vaughani at Colombo Reef (Champion Shoal).
Fig. 2 in Ninh Hai waters (south Vietnam): a hotspot of reef corals in the western South China Sea
Fig. 2. Dendrogram of similarity in coral community types, derived from the species–abundances (4th root transformed) of corals in 24 sites using Eucidean distance and complete linkage.
Fig. 1 in Ninh Hai waters (south Vietnam): a hotspot of reef corals in the western South China Sea
Fig. 1. Sites for inventory of reef building scleratinian corals (• in 2003 & 2004 and * in 2011 & 2012), and reef distribution in the Ninh Hai coastal waters
Fig. 6 in Two New Species Of Acutigebia (Crustacea: Decapoda: Gebiidea: Upogebiidae) From The South China Sea
Fig. 6. Acutigebia laticauda, new species: Holotype female, 58C-S63. A, pereopod 1, outer view; B, pereopod 2, outer view; C, pereopod 4, outer view; E, pleopod 1 with egg. Scale bar = 1.32 mm (A, C), 1 mm (B, D, E).
Fig. 5 in Two New Species Of Acutigebia (Crustacea: Decapoda: Gebiidea: Upogebiidae) From The South China Sea
Fig. 5. Acutigebia laticauda, new species: Holotype female, 58C-S63. A, anterior carapace, dorsal view; B, anterior carapace, lateral view; C, abdominal somite 6, telson and uropods, dorsal view; D, maxilliped 3, outer view. Scale bar = 1 mm (A, B, D), 0.5 mm (C).
Fig. 2 in Two New Species Of Acutigebia (Crustacea: Decapoda: Gebiidea: Upogebiidae) From The South China Sea
Fig. 2. Acutigebia serrifera, new species: A, B, C, D, E, Holotype male, 80X-156-1; D, paratype female, 80X-156-1. A, anterior carapace, dorsal view; B, anterior carapace, lateral view; C, abdominal somite 6, telson and uropods, dorsal view; D, anterior carapace, dorsal view (rostrum broken); E, maxilliped 3, outer and inner view. Scale bar = 0.6 mm (A, B, D), 1 mm (C), 0.8 mm (E).
Fig. 3 in Two New Species Of Acutigebia (Crustacea: Decapoda: Gebiidea: Upogebiidae) From The South China Sea
Fig. 3. Acutigebia serrifera, new species: A, C–F, Holotype male, 80X-156-1; B, G, paratype female, 80X-156-1. A, pereopod 1, outer view; B, pereopod 1, outer view; C, pereopod 2, outer view; D, pereopod 3, outer view; E, pereopod 4, outer view; F, pereopod 5, outer view; G, pleopod 1 with egg. Scale bar = 1 mm (A, C–F), 0.6 mm (B), 0.5 mm (G).
Fig. 1 in Two New Species Of Acutigebia (Crustacea: Decapoda: Gebiidea: Upogebiidae) From The South China Sea
Fig. 1. Acutigebia serrifera, new species: A, Holotype male, 80X- 156-1, entire animal, lateral view; B, paratype female, 80X-156-1, entire animal, lateral view. Scale bar = 1 mm.
Fig. 4 in Two New Species Of Acutigebia (Crustacea: Decapoda: Gebiidea: Upogebiidae) From The South China Sea
Fig. 4. Acutigebia laticauda, new species: Holotype female, 58C- S63, entire animal, lateral view. Scale bar = 1 mm.
Figures 16–18 in Taxonomic notes on Hydroidomedusae (Cnidaria) from South China Sea III: Family Rathkeidae and Zancleopsidae
Figures 16–18. Zancleopsis oblongus Xu, Huang & Wang, sp. nov. 16. Lateral view. 17. Enlarged lateral view of long tentacular bulb. 18. Enlarged lateral view of short tentacular bulb. Scale bars: 16 = 1.0 mm; 17–18 = 0.1 mm.
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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)
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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.