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954 results for “Hong Kong”
Figure 5. Pseudostegias setoensis Shiino, 1933 in Three abdominal parasitic isopods (Isopoda: Epicaridea: Bopyridae: Athelginae) on hermit crabs from China and Hong Kong
Figure 5. Pseudostegias setoensis Shiino, 1933 (USNM1155302), scanning electron micrographs. Male (A–D), damage to body of host (E–G): (A) ventral view; (B) right antennae; (C) right pereopod 1; (D) left pereopod 7; (E) abdomen of host showing hole left by mouthparts of female (upward facing arrowhead) and attachment site of left pereopod 1 (downward facing arrowhead); (F) close-up of hole left by mouthparts of female; (G) close-up of attachment site of left pereopod 1, showing where dactyl and propodus were positioned (arrowhead). Scale bars: 1 mm for A; 100 µm for B, C, F, G; 200 µm for D; 500 µm for E.
Figure 4. Pseudostegias setoensis Shiino, 1933 in Three abdominal parasitic isopods (Isopoda: Epicaridea: Bopyridae: Athelginae) on hermit crabs from China and Hong Kong
Figure 4. Pseudostegias setoensis Shiino, 1933. (A–G) Female (USNM1155302): (A) ventral view; (B) ventral view of posterior region within brood chamber, with digitiform extensions (horizontal arrowheads) above crenulate margins of pereomeres; (C) left side of barbula; (D) right oostegite 1, internal view; (E) right maxilliped, external view; (F) fifth set of lateral plates; (G) scales on lateral plates. Scale bars: 5 mm for A; 1 mm for B, D, E; 500 µm for C, F; 25 µm for G.
Figure 2. Parathelges enoshimensis Shiino, 1950 in Three abdominal parasitic isopods (Isopoda: Epicaridea: Bopyridae: Athelginae) on hermit crabs from China and Hong Kong
Figure 2. Parathelges enoshimensis Shiino, 1950. (A–H) Female (CIEA614201): (A) dorsal view; (B) ventral view; (C) right antennule and antennae; (D) right maxilliped, external view; (E) right side of barbula; (F) right oostegite 1, external view; (G) right oostegite 1, internal view; (H) right pereopod 5. (I–L) Male (CIEA614202): (I) dorsal view; (J) ventral view; (K) right antennule and antennae; (L) left pereopod 1. Scale bars: 1 mm for A, B; 0.12 mm for C, E; 0.27 mm for D, H; 0.43 mm for F, G; 0.17 mm for I, J; 0.10 mm for K, L.
Figure 1. Athelges takanoshimensis Ishii, 1914 in Three abdominal parasitic isopods (Isopoda: Epicaridea: Bopyridae: Athelginae) on hermit crabs from China and Hong Kong
Figure 1. Athelges takanoshimensis Ishii, 1914. (A–H) Female (CIEA109801): (A) dorsal view; (B) ventral view; (C) left antennule and antennae; (D) left side of barbula; (E) left maxilliped, external view; (F) left oostegite 1, external view; (G) left oostegite 1, internal view; (H) right pereopod 5. (I–M) Male (CIEA109802): (I) Dorsal view; (J) ventral view; (K) left antennule and antennae; (L) left pereopod 3; (M) left pereopod 7. Scale bars: 1 mm for A, B; 0.08 mm for C, K, M, L; 0.38 mm for D; 0.33 mm for E; 0.50 mm for F, G; 0.14 mm for H; 0.28 mm for I, J.
Figure 9 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 9. Frequency distributions of distances from (A) the nearest sea grass beds and (B) the nearest oyster beds where juvenile Tachypleus tridentatus individuals were obtained in the study area.
Figure 7 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 7. Temporal variations in the distribution of juvenile Tachypleus tridentatus individuals downshore from the shoreline at Stations E, F and H with means and standard deviations also shown.
Figure 8 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 8. Frequency distributions of (A) sediment temperature, (B) salinity and (C) dissolved oxygen concentration of interstitial waters where juvenile Tachypleus tridentatus individuals were obtained in the study area.
Figure 5 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 5. The spatial distribution of juvenile Tachypleus tridentatus individuals of different prosomal width ranges at Stations E, F and H.
Figure 6 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 6. Temporal variations in the total abundance of juvenile Tachypleus tridentatus individuals at Stations E (Ɨ), F (-) and H (Δ).
Figure 2. A in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 2. A pictorial illustration of the sampling strategy adopted for the survey of juvenile horseshoe crabs at the eight stations. Sampling areas are indicated by grey rectangles.
Figure 1 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 1. (A) A map of Hong Kong showing the location of the study site in Deep Bay in the northwestern quadrant of the New Territories of Hong Kong. Also shown is the location of the cross-border bridge connecting Hong Kongat Pak Nai with mainland China at Shekou. (B) A more detailed map of the northwestern quadrant of Hong Kong showing the location of the eight sampling stations (A-H) in Deep Bay. Black areas denote mangrove stands, white ones oyster beds. Dotted lines represent streams in the study area.
Figure 4 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 4. The size frequency distribution, in terms of prosomal width, of juvenile Tachypleus tridentatus individuals obtained from Stations E, F and H, with means and standard deviations.
Figure 3 in Spatial and temporal distributions of juvenile horseshoe crabs (Arthropoda: Chelicerata) approaching extirpation along the northwestern shoreline of the New Territories of Hong Kong SAR, China
Figure 3. The spatial distribution in terms of mean abundance of juvenile Tachypleus tridentatus at Stations E, F and H with mean abundances ± standard deviations at the three stations also shown.
Figure 1 in The marine soft-sediment benthic communities of Hong Kong: a comparison of submarine cave and open habitats
Figure 1. Particle-size histograms by proportionate weight of the sediments from eight of the sampling sites, grouped into 1Φ divisions (silt-clay fractions amalgamated).
Figure 2. A in The marine soft-sediment benthic communities of Hong Kong: a comparison of submarine cave and open habitats
Figure 2. A, dendrogram of Bray-Curtis similarity (%) based on square-root-transformed data for the benthic community from each sampling site; B, MDS ordination of the data shown in Figure 2A, with definition of clusters at 20, 30 and 40% from that figure.
Figure 5. A in Shell-bearing Mollusca (Bivalvia and Gastropoda) from submarine caves in Hong Kong
Figure 5. A, Epitonium bullatum, height×width52.7×1.9 mm. B, living specimen of the same shell. Note the sea anemones on the shell.
Figure 4. A and B in Shell-bearing Mollusca (Bivalvia and Gastropoda) from submarine caves in Hong Kong
Figure 4. A and B, Diodora quadriradiata, height×length565.5×14.22 mm; C and D, Cypraea arabica arabica juvenile, height×width510.32×4.88 mm; E and F, Ergalatax contracta, height×width514.58×6.7 mm; G and H, Thais luteostoma, height×width5 24.83×16.22 mm; I and J, Engina armillata height×width58.35×4.67 mm.
Figure 2. A in Shell-bearing Mollusca (Bivalvia and Gastropoda) from submarine caves in Hong Kong
Figure 2. A, Acar plicata, height×length57.2×12.9 mm; B, Arca avellana, heigh- t×length512.2×26.1 mm; C, Lithophaga malaccana, height×length517.7×7.87 mm; D, Modiolus comptus, height×length57.05×4.82 mm; E, Septifer bilocularis, heigh- t×length537.8×19.8 mm; F, Dendostrea crenulifera, height×length53.4×2.4 mm; G and H, Hyotissa sinensis (NHM 20030494), height×length5129×117 mm; I, Spondylus cf. anacanthus, height×length58.31×15.07 mm; J, Anomia chinensis, heigh- t×length52.4×2.4 mm; K, Pinctada martensii, height×length514.48×15.35 mm; L, Isognomon legumen, height×length528×14.77 mm; M, Vulsella vulsella, heigh- t×length564.19×32.96 mm; N, Ephippodonta oedipus, height×length50.51×3.25 mm; O, Mysella compacta, height×length51.84×4.5 mm; P, Claudiconcha japonica, heigh- t×length54.75×5.08 mm; Q, Hiatella orientalis, height×length511.9×13.1 mm.
Figure 11 in New species of anthurid and arcturid isopod (Crustacea: Peracarida: Isopoda) from Hong Kong
Figure 11. Arcturina psittacus sp. nov.: A, antennule of 2.8 mm subadult male; B, distal articles of antenna; C, left mandible, with detail of lacinia mobilis; D, lower lip; E, outer ramus of first maxilla; F, second pleopod of mature male. Scale line50.1 mm for A, C to F; 0.15 mm for B.
Figure 10 in New species of anthurid and arcturid isopod (Crustacea: Peracarida: Isopoda) from Hong Kong
Figure 10. Arcturina psittacus sp. nov.: A, anterior of cephalon; B, juvenile, dorsal; C, subadult male, dorsal; D, adult male, dorsal; E, adult female, holotype, dorsal; F, adult male, lateral; G, adult female, holotype, lateral. Scale line51 mm for B to G, 0.25 mm for A.
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.