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677 results for “coastal waters”
Figure 3 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 3. The length at first capture (LC50%), critical value (½L∞) and length at maturity (Lm) for L. chinensis from Banyuasin Coastal Waters of South Sumatra. The blue dot indicates the cumulative observation and the red line indicates the cumulative prediction.
Figure 5 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 5. Variation in relative condition factor (Kn) of L. chinensis in Banyuasin Coastal Waters of South Sumatra. The Kn value for each specimen is greater than the critical point value (Kn = 0.56) indicating good conditions of wellbeing.
Figure 4 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 4. Length-weight relationship (LWR) for L. chinensis in Banyuasin Coastal Waters of South Sumatra. The LWR graphs can be expressed in terms of the power (A) and logarithmic (B) equations. Both of these equations produce the same values of R2 (model performance parameter) and b (growth pattern parameter).
Figure 2. Pareto diagram for L in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 2. Pareto diagram for L. chinensis from Banyuasin Coastal Waters of South Sumatra. This diagram indicated a graphical overview of frequency distribution in ranking order from the most frequent to the least frequent. The first length group at X-axis (101-110 mm) showed the most frequently that the specimen was found.
Figure 5 in Revision of Eocene warm-water cassid gastropods from coastal southwestern North America: implications for paleobiogeographic distribution and faunal-turnover
Figure 5. Eocene global paleogeographic distribution and temporal occurrences of Galeodea (plotted in order of first-appear- ance datum). Ages of climatic events from Gradstein et al. (2012: fig. 28.11). Maps modified from Smith et al. (1994) show land masses. Solid circles=Galeodea occurrences; thick vertical lines indicate Galeodea temporal ranges. Numbers at top of columns refer to geographic regions and primary sources of data derived from Table 1. PETM=Paleocene-Eocene Thermal Maximum.
Linked collectors and determiners for: Revision of the genus Parvimysis (Mysida, Mysidae) with descriptions of five new species from coastal waters of the Caribbean.
Natural history specimen data linked to collectors and determiners held within, "Revision of the genus Parvimysis (Mysida, Mysidae) with descriptions of five new species from coastal waters of the Caribbean". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/72176970-7295-41ae-a47f-15810a8d6cf2">https://bionomia.net/dataset/72176970-7295-41ae-a47f-15810a8d6cf2</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/72176970-7295-41ae-a47f-15810a8d6cf2">https://gbif.org/dataset/72176970-7295-41ae-a47f-15810a8d6cf2</a>. Formatted as a Frictionless Data package.
Fig. 7 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 7. Activity Index showing proportion of each behavioural activity (foraging; socialising; traveling; resting) per sector.
Fig. 8 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 8. Monthly (N=25) and yearly (N=8) sighting rate (please see Material and Methods) for 19 identified Irrawaddy dolphins from Bago-Pulupandan (includes entire period of the sightings of these identified dolphins).
Fig. 3 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 3. Discovery curve of marked individual dolphins in the study area over 25 survey months from 2010 to 2016.
Fig. 1 in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 1. Coastal waters of Bago City and the Municipality of Pulupandan in Guimaras Strait; Left inset: location of Western Visayas Region in the Philippines; Right inset: Guimaras Strait located between Negros Island and Guimaras Island.
Fig. 4. A in Habitat use and site fidelity of Irrawaddy dolphins (Orcaella brevirostris) in the coastal waters of Bago-Pulupandan, Negros Occidental, Philippines
Fig. 4. A, sightings of Irrawaddy dolphins (in yellow dots) relative to sectors; B, minimum convex polygon (MCP) of all sightings in Bago-Pulupandan coastal waters.
Fig. 17 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 17. Lepidotrigla tanydactyla new species. Lateral and dorsal views of head, A, B, MZB 24603 (formerly QMB I.25969), 122 mm SL, holotype, Indonesia, Sumbawa, Saleh Bay, 08.27°S, 117.47°E, 150–280 m, arrow pointing to tip of first free pectoral fin ray. Rostral spine variation in dorsal view, C, QMB I.25969, 86.3 mm SL, paratype, Indonesia, Sumbawa, Saleh Bay, 08.27°S, 117.47°E, 150–280 m; D, QMB I.25968, 130 mm SL, paratype, Indonesia, Sumbawa, Saleh Bay, 08.27°S, 117.47°E, 180–300 m.
Fig. 16. Lepidotrigla tanydactyla new species, NTM 10761-009, 123 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 16. Lepidotrigla tanydactyla new species, NTM 10761-009, 123 mm SL, paratype, Indonesia, Sumbawa, Saleh Bay, 08.5°S, 117.917°E, 160–280 m. Photo by T. Gloerfelt-Tarp.
Fig. 18 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 18. Collection localities for holotype (red circle) and paratypes (black circle) of Lepidotrigla tanydactylus new species from coastal waters of southern Indonesia.
Fig. 13. Lepidotrigla spiloptera. A, NTM S.10752-015, 96.5 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 13. Lepidotrigla spiloptera. A, NTM S.10752-015, 96.5 mm SL, Indonesia, SE of Lombok, 09.017°S, 116.3°E, 150 m, TGT 3188- 3243, September 1981, photo by T. Gloerfelt-Tarp. Inner surface of right pectoral fin, B, BMNH 1879.5.14.269, holotype, 105 mm SL, Indonesia, Banda Sea, Kai Islands, 236 m, Challenger stn 192, greyscale photo by W. Richards; C, CSIRO H 751-9, 143 mm SL, Australia, Western Australia, north of Dampier Archipelago, 19°08.9'S, 116°52.6'E – 19°08.4'S, 116°54.1'E, 196–198 m (photo compliments CSIRO).
Fig. 7. A in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 7. A, Lepidotrigla macracaina new species, NTM S.10995-006, 124 mm SL, paratype, Indonesia, Bali Strait, Serpent Bank, 8.55°S, 114.517°E (photo by T. Gloerfelt-Tarp, image reversed); B, Lepidotrigla guentheri, KPM-NI 35882, Japan, Shizuoka Prefecture, Suruga Bay, west of Izu Peninsula, 55 m, 22 December 2013 (photo by H. Senou).
Fig. 4. Lepidotrigla longipinnis lateral view, HUMZ 190741, 104 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 4. Lepidotrigla longipinnis lateral view, HUMZ 190741, 104 mm SL, Indonesia, Mentawi Islands, off the northern end of Siberut Island, 1°07'37'S, 98°27'54'E – 1°08'18'S, 98°28'24'E, 170–100 m. Photo compliments of HUMZ.
Fig. 3 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 3. Collection localities for specimens of Lepidotrigla cf. japonica (black circles) examined from coastal waters of southern Indonesia.
Fig. 10 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 10. Collection localities for holotype (black circle) and paratypes (red circles) of Lepidotrigla macracaina new species from coastal waters of southern Indonesia.
Fig. 14 in A review of Indonesia's Indian Ocean species of Lepidotrigla gurnards (Teleostei: Scorpaeniformes: Triglidae) with descriptions of three new species from southern coastal waters
Fig. 14. Lepidotrigla spiloptera. Lateral and dorsal views of head, A, B, QM I.25962, 128 mm SL, Indonesia, SE of Lombok, 08°58'S, 116°34'E, 150–280 m, arrow pointing to tip of first free pectoral fin ray. Rostral spine variation in dorsal view, C, NTM S.10752-015, 96.5 mm SL, Indonesia, SE of Lombok, 09.017°S, 116.3°E, 150 m; D, QM I.25962, see above.
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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.