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FIGURE 3 in Redescription of the longnose houndshark Iago garricki (Carcharhiniformes Triakidae), based on specimens recently collected from the South China Sea
FIGURE 3. Ventral views of head. A. ASIZP 81240, 280 mm TL, juvenile female. B. ASIZP 81242, 515 mm TL, adult male.
FIGURE 2 in Redescription of the longnose houndshark Iago garricki (Carcharhiniformes Triakidae), based on specimens recently collected from the South China Sea
FIGURE 2. Fresh coloration (previously frozen) of Iago garricki specimens collected from the South China Sea. A. ASIZP 81240, 280 mm TL, juvenile female. B. ASIZP 81241, 435 mm TL, adult male. C. NMMB-P36356, 495 mm TL, adult male. D. NMMB-P36357, 500 mm TL, adult male E. ASIZP 81242, 515 mm TL, adult male. Scale bar = 10 cm.
FIGURE 1 in Redescription of the longnose houndshark Iago garricki (Carcharhiniformes Triakidae), based on specimens recently collected from the South China Sea
FIGURE 1. Holotype of Iago garricki. MNHN-IC-1978-0694, 599 mm TL, adult female. Preserved condition.
FIGURE 2 in Redescription of Lophiodes lugubris (Alcock, 1894), with the largest record of Lophiodes triradiatus (Lloyd, 1909) from the South China Sea (Lophiiformes Lophiidae)
FIGURE 2. Proportions of lengths of illicium (IL), second dorsal-fin spine (DS2), and third dorsal-fin spine (DS3), versus SL, in Lophiodes lugubris, showing the growth changes.
FIGURE 1 in Redescription of Lophiodes lugubris (Alcock, 1894), with the largest record of Lophiodes triradiatus (Lloyd, 1909) from the South China Sea (Lophiiformes Lophiidae)
FIGURE 1. Lophiodes lugubris (Alcock, 1894). A. Original drawing, reproduced from Alcock (1895). B‒C. NMMB-P36203, 214 mm SL, fresh caught specimen, from off Dongsha Island. B. After frozen, dorsal view. C. After preservation, ventral view.
FIGURE 4 in Redescription of Lophiodes lugubris (Alcock, 1894), with the largest record of Lophiodes triradiatus (Lloyd, 1909) from the South China Sea (Lophiiformes Lophiidae)
FIGURE 4. Otoliths of species of Lophiidae from Taiwan. Images are view of left otoliths unless otherwise indicated. a, ventral views; b, inner views; scale bar = 1 mm. 1. Lophiodes bruchius, 279 mm SL, northern Taiwan. 2–5. Lophiomus setigerus: 2, 187 mm SL, northern Taiwan; 3, 70.6 mm SL, Daxi; 4, 89.6 mm SL, Dong-gang; 5, 272 mm SL, northern Taiwan. 6. Lophiodes lugubris, 214 mm SL, Dongsha Island. 7–9. Lophiodes naresi: 7, 96.0 mm SL, Dong-gang; 8, 157 mm SL, Dongsha Island; 9, 214 mm SL, Dongsha Island. 10–12. Lophius litulon: 10, no data; 11, 66.2 mm TL, Dong-gang; 12, 94.6 mm TL, Dong-gang. 13. Lophiodes miacanthus, 90.0 mm SL, Daxi. 14. Lophiodes triradiatus, 404 mm SL, Dongsha Island.
Model outputs in the northern shelf of the South China Sea
<p>The data used in the figure of manuscript are available in Figure.rar file. The 201706XX_Chla_budget_2.mat files are the model outputs of the chlorophyll budget terms after process. The Biogeo*.mat files are the model outputs of the chlorophyll biological terms after process. The nutrient*.mat files are the model outputs of the nutrients (no3 and po4). *NoR means the NoRiver run. *ZMix means the ZMix run.</p>
Monsoon-regulated marine carbon reservoir effect in the northern South China Sea
<p>ΔR result from east of Hainan Island and Xisha Island, South China Sea</p>
FIGURE 5 in Microfungi associated with ornamental palms: Byssosphaeria phoenicis sp. nov. (Melanommataceae) and Pseudocoleophoma rhapidis sp. nov. (Dictyosporiaceae) from south China
FIGURE 5. Pathogenicity test results of Pseudocoleophoma rhapidis inoculated into healthy, Rhapis excelsa plants. Infected leaves with disease symptoms at ten days post-inoculation with a Mycelial plug. b Conidial suspension. Close up of leaf-spots on leaves inoculated with c–e Conidial suspension. e Mycelial plug.
FIGURE 4 in Microfungi associated with ornamental palms: Byssosphaeria phoenicis sp. nov. (Melanommataceae) and Pseudocoleophoma rhapidis sp. nov. (Dictyosporiaceae) from south China
FIGURE 4. Pseudocoleophoma rhapidis (ZHKU 21-0010, holotype). a Habitat. b Leaf spots on Rhapis excelsa. c Conidiomata on substrate. d Cross-section of conidiomata. e, f Conidiogenous cells and conidia. g Conidia. h, i Colony on PDA (i from the bottom). Scale bars: d = 100 µm, e–g = 25 µm.
FIGURE 3 in Microfungi associated with ornamental palms: Byssosphaeria phoenicis sp. nov. (Melanommataceae) and Pseudocoleophoma rhapidis sp. nov. (Dictyosporiaceae) from south China
FIGURE 3. Byssosphaeria phoenicis (ZHKU 21-0012, holotype). a Habitat. b–d Ascomata on substrate. e Vertical section of an ascoma. f Setae. g Peridium. h Pseudoparaphyses. i, j Asci. k–m Ascospores. n An ascospore in Indian Ink to show a sheath. o Colony on PDA (above view). p Colony on PDA (reverse view). Scale bars: c, d = 1 mm, e = 300 μm, f, g = 100 μm, h = 10 μm, i, j = 40 μm, k–n = 15 μm.
FIGURE 2 in Microfungi associated with ornamental palms: Byssosphaeria phoenicis sp. nov. (Melanommataceae) and Pseudocoleophoma rhapidis sp. nov. (Dictyosporiaceae) from south China
FIGURE 2. Phylogram generated from maximum likelihood analysis based on combined ITS, LSU, SSU, and tef-1α sequence alignment. Maximum likelihood bootstrap support values greater than 60% and Bayesian posterior probabilities greater than 0.95 are given at the nodes. The tree is rooted with Periconia igniaria (CBS 379.86). Ex-type strains are in bold and the newly generated sequences are indicated in red bold.
FIGURE 1 in Microfungi associated with ornamental palms: Byssosphaeria phoenicis sp. nov. (Melanommataceae) and Pseudocoleophoma rhapidis sp. nov. (Dictyosporiaceae) from south China
FIGURE 1. Phylogram generated from maximum likelihood analysis based on combined ITS, LSU, SSU, and tef-1α sequence alignment. Maximum likelihood bootstrap support values greater than 60% and Bayesian posterior probabilities greater than 0.95 are given at the nodes. The tree is rooted with Hysterium angustatum (MFLU 16-1179). Ex-type cultures are in bold and the newly generated sequences are indicated in red bold
FIGURE 2. Bendiella vivipara n in Two new ovoviviparous species of the family Selachinematidae and Sphaerolaimidae (Nematoda, Chromadorida & Monhysterida) from the northern South China Sea
FIGURE 2. Bendiella vivipara n. sp. Light miCrographs. A: Anterior body region of an ovoviviparous female. B: CutiCle of male, showing amphid. C: BuCCal Cavity of a female showing paired rhabdions in buCCal Cavity. D: BuCCal Cavity of a female, showing dentiCles in buCCal Cavity. E: Posterior body region of pharynx, Cardia, and anterior body region of intestine of male. F: Vulva region. Arrow shows position of vulva.
FIGURE 1. Bendiella vivipara n in Two new ovoviviparous species of the family Selachinematidae and Sphaerolaimidae (Nematoda, Chromadorida & Monhysterida) from the northern South China Sea
FIGURE 1. Bendiella vivipara n. sp. A: Viviparous female. Total body. B: Anterior body region of male. C: Anterior body region of female. D: Posterior body region of female. E: Posterior body region of male. F: CloaCal region with spiCule, gubernaCulum, and three papillose preCloaCal supplements.
FIGURE 5. Parasphaerolaimus jintiani n in Two new ovoviviparous species of the family Selachinematidae and Sphaerolaimidae (Nematoda, Chromadorida & Monhysterida) from the northern South China Sea
FIGURE 5. Parasphaerolaimus jintiani n. sp. Light miCrographs. A: Anterior body region of viviparous female. B: Male head. C: Amphid of male. D: Lateral longitudinal unstriated band (arrow) on CutiCle. E: SpiCular apparatus. F: Female posterior end, showing vulva region (arrow).
FIGURE 4. Parasphaerolaimus jintiani n in Two new ovoviviparous species of the family Selachinematidae and Sphaerolaimidae (Nematoda, Chromadorida & Monhysterida) from the northern South China Sea
FIGURE 4. Parasphaerolaimus jintiani n. sp. A: Entire male, showing lateral longitudinal unstriated band on CutiCle. B: Entire female. C: Anterior body region of female. D: Male head. E: Female head. F: Female posterior body region. G: Male posterior body region.
FIGURE 12 in The talitrid amphipod genus Talorchestia from the South China Sea to the Indonesian Archipelago (Crustacea, Senticaudata)
FIGURE 12. Talorchestia gracilis, male, neotype, 12.2 mm, Pulau Layang-Layang, Swallow Reef, South China Sea, UKMMZ-1428. Scale lines represent 0.5 mm.
FIGURE 15 in The talitrid amphipod genus Talorchestia from the South China Sea to the Indonesian Archipelago (Crustacea, Senticaudata)
FIGURE 15. Talorchestia seringat, male, holotype, ~8.8 mm, ZRC 2016.0099, Lazarus Island, Singapore. Scale lines represent 0.5 mm.
FIGURE 9 in The talitrid amphipod genus Talorchestia from the South China Sea to the Indonesian Archipelago (Crustacea, Senticaudata)
FIGURE 9. Talorchestia gracilis, male, neotype, 12.2 mm, UKMMZ-1428, female, 11.6 mm, UKMMZ-1427, Pulau Layang- Layang, Swallow Reef, South China Sea. Scale lines for male H, U1, U2, UR, EP1-3 represent 0.5 mm, remainder represent 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)
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.