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FIGURE 19 in Four new species of the genus Trachelas L. Koch, 1872 and the first record of T. vulcani Simon, 1896 from South-West China (Araneae: Trachelidae)
FIGURE 19. DistribUtion of new species and T. vulcani Simon, 1896 from SoUthwest China.
Figure 1 from: Sun Y, Li X (2017) A new species of Eurythoe Kinberg, 1857 (Polychaeta: Amphinomidae) from Beibu Gulf, South China Sea. ZooKeys 708: 1-10. https://doi.org/10.3897/zookeys.708.12967
Figure 1 - Alleurythoe tenuichaeta gen. n. & sp. n., a Entire animal in lateral view b Prostomium and caruncle, dorsal view c Caruncle, dorsal view d Caruncle, lateral view. Caruncle, dorsal view f Anterior chaetigers, ventral view g Parapodia of middle chaetigers, lateral view h Branchia of posterior chaetiger i pygidium, dorsal view. a–d, f–i holotype e paratype. Scale bars a 0.5 cm; b 0.5mm, c 0.25 mm; d–e, i 0.2 mm; f 1 mm; g 2 mm; h 0.5 mm.
Figure 2 from: Sun Y, Li X (2017) A new species of Eurythoe Kinberg, 1857 (Polychaeta: Amphinomidae) from Beibu Gulf, South China Sea. ZooKeys 708: 1-10. https://doi.org/10.3897/zookeys.708.12967
Figure 2 - Alleurythoe tenuichaeta gen. n. & sp. n., holotype. a Anterior chaetigers, dorsal view b Anterior chaetigers, ventral view c Parapodia of middle chaetiger, posterior view d Greatly reduced harpoon chaeta, notopodium of chaetiger 5 e–g Reduced harpoon chaeta, notopodium of chaetiger 14 h Harpoon chaeta, notopodium of chaetiger 106 i Acicula, notopodium of chaetiger 106 j Capillary chaeta, neuropodium of chaetiger 85 k Bifurcate chaeta, neuropodium of chaetiger 22 l–m Bifurcate chaetae, neuropodium of chaetiger 85 n Simple chaeta, neuropodium of chaetiger 85. Scale bars: a–b 1 mm; c 0.5 mm; d–n 50 μm.
Figure 1 from: Zhang J, Qiu J-W (2017) A new species of Pectinaria (Annelida, Pectinariidae), with a key to pectinariids from the South China Sea. ZooKeys : 139-150. https://doi.org/10.3897/zookeys..12272
Figure 1 - Pectinaria torquata sp. n. Holotype MBM240082. A ventral view of the whole worm B lateral view of anterior body C lateral view of the posterior including the scaphe D dorsal view of the posterior including the scaphe E an uncinus F scaphal hooks G anterior view of a notochaeta H posterior view of a notochaeta. Abbreviations: al, anal lobe; an, anus; br, branchia; c3 chaetiger 3; (segment 7) c16, chaetiger 16 (segment 20); cv cephalic veil; op opercular palea; pp peristomial palp; s2 dpl, dorsal posterior lobe on segment 2; s21 segment 21 sc, scaphe; sh, scaphal hooks; tc, tentacular cirrus.
Figure 3 from: Zhang J, Qiu J-W (2017) A new species of Pectinaria (Annelida, Pectinariidae), with a key to pectinariids from the South China Sea. ZooKeys : 139-150. https://doi.org/10.3897/zookeys..12272
Figure 3 - Pectinaria torquata sp. n., holotype MBM240082. A dorsal view of whole specimen B ventral view of whole specimen C tube D dorsal view of posterior end E anal flap F scaphal hooks G lateral view of anterior end H ventral view of posterior end. Paratype MBM240083 I lateral view of posterior end. Abbreviations: al, anal lobe; br, branchia; c4, chaetiger 4 (segment 8); c16, chaetiger 16 (segment 20); cv, cephalic veil; op, opercular palea; pp, peristomial palp; s2 dpl, dorsal posterior lobe on segment 2; s20 dpl, dorsal posterior lobe on segment 20; s21, segment 21; sc, scaphe; sh, scaphal hooks; tc, tentacular cirrus.
Figure 2 from: Zhang J, Qiu J-W (2017) A new species of Pectinaria (Annelida, Pectinariidae), with a key to pectinariids from the South China Sea. ZooKeys : 139-150. https://doi.org/10.3897/zookeys..12272
Figure 2 - Pectinaria torquata sp. n. paratype MBM240084. A lateral view of anterior body B ventral view of anterior body C tentacular cirri II D–F close-up of notochaetae from chaetiger 3 G, a notochaeta from chaetiger 5 H–J close-up of notochaeta from chaetiger 12 K uncini from chaetiger 12 Abbreviations: br, branchia; c4, chaetiger 4 (segment 8); cv, cephalic veil; op, opercular palea; pp, peristomial palp; s2 dpl, dorsal posterior lobe on segment 2; s2 vl, ventral lobe on segment 2; tc, tentacular cirrus.
Supplementary material 1 from: Yang M, Li B, Gan Z, Dong D, Li X (2024) A new chemosymbiotic bivalve species of the genus Acharax Dall, 1908 (Bivalvia, Solemyida, Solemyidae) from the Haima cold seep of the South China Sea. ZooKeys 1198: 185-192. https://doi.org/10.3897/zookeys.1198.112618
The mitochondrial gene sequences used in this study
Figure 3 from: Yang M, Li B, Gan Z, Dong D, Li X (2024) A new chemosymbiotic bivalve species of the genus Acharax Dall, 1908 (Bivalvia, Solemyida, Solemyidae) from the Haima cold seep of the South China Sea. ZooKeys 1198: 185-192. https://doi.org/10.3897/zookeys.1198.112618
Figure 3 Phylogenetic relationships of Solemyida by the ML analysis of mitochondrial (COI+16S rRNA+18S rRNA) sequences. The black triangles demonstrate bootstrap values ≥95% for the node.
The support vector regression predicted nine PFTschla in the South China Sea and adjacent Taiwan Strait and East China Sea
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FIGURE 3 in A synopsis of the Tanaidacea (Crustacea: Peracarida) of Singapore, with a review of tanaidacean diversity in Southeast Asia and the South China Sea
FIGURE 3. Range of body length and bathymetric distribution of tanaids recorded from Singapore.
Data for Seamounts enhance the local emission of CO2 in the northern South China Sea
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On the stepped leader properties with the evolution of thunderstorms in the low latitude (23。) of south China.
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Fig. 6 in Stromatoporoids from a Middle Devonian reef in South China and their palaeoecological implication
Fig. 6. Stromatoporoid Clathrocoilona spissa (Lecompte, 1951), from the Jiwozhai reef, Jiwozhai Member, Dushan Formation, Givetian, Middle Devonian; Dushan, Guizhou, South China. A. NIGP 177048; A1, longitudinal section showing the contemporarily encrusting layers, with black and white rectangles illustrating details; A2, A3, enlargement of A1, note the obvious discrepancy between different areas in the same stromatoporoid: the condensed skeletons of A2 are similar to Clathrocoilona spissa (Lecompte, 1951) and thin laminae of A3 are consistent with Clathrocoilona obliterata (Lecompte, 1951). B. NIGP 177049; B1, longitudinal section, note the intra-specific variations (white arrows) of the lower irregular layers similar to Clathrocoilona crassitexta (Lecompte, 1951) and the upper regular layers identical to Clathrocoilona obliterata (Lecompte, 1951); B2, tangential section.
Figure 2. Neohexostoma gymnosardae n in Neohexostoma gymnosardae n. sp. (Monogenea, Hexostomatidae), a gill parasite of Gymnosarda unicolor (Valenciennes) (Teleostei, Scombridae) in the South China Sea
Figure 2. Neohexostoma gymnosardae n. sp. from gills of Gymnosarda unicolor. (A) Whole worm, ventral view (p, peduncle); (B) Reproductive system (MCO, male copulatory organ; vg, vagina; vgd, vaginal ducts; vdf, vas deferens; ov, ovary; vr, vitelline reservoir; gi, genitointestinal canal; u, uterus; te, testes); (C) Male copulatory organ; (D) Vagina; (E) Eggs; (F) Anchors; (G) Clamp with sclerites in front view.
FIGURE 3 in A new species of Uroptychus Henderson, 1888 (Decapoda: Anomura: Chirostylidae) from a seamount in the South China Sea
FIGURE 3. Uroptychus ngae sp. nov., SY358-B1-A1, male paratype, colour in life, dorsal view.
Fig. 15 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 15. Color images of species of genera Lepidozona. A – Lepidozona bisculpta, BL 8 mm, Vietnam, Tonkin Bay, 6–7 m, on old corals; B – Lepidozona bisculpta, with 5 valves, BL 8 mm, Vietnam, Tonkin Bay, 6–7 m, on old corals; C – Lepidozona bisculpta, with 7 valves, BL 8 mm, Vietnam, Tonkin Bay, 6–7 m, on old corals; D – Lepidozona acostata, holotype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; E – Lepidozona acostata, paratype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; F – Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m.
Fig. 12 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 12. Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m; A, C – dorsal scales, marginal spicules, scales and ventral scales; B dorsal scales; D – head of major lateral tooth of radula.
Fig. 14 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 14. Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m; A, B – dorsal scales; C–I – marginal needle, scales and spicules; J – ventral scale; K – nipple projection on dorsal scale; L – central and lateral teeth of radula; M – head of major lateral tooth of radula. Scale bar 100 µm.
Fig. 13 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 13. Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m; A, B – radula.
Fig. 9 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 9. Lepidozona acostata, holotype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; A, C – dorsal scales; B – dorsal scales, marginal spicules and scales, ventral scales; D – radula.
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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.