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36 results for “Fisheries research”
FIGURE 3 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 3. Holotype of Centrophorus ferrugineus SCSFRI O 0094 (adult male 1044 mm TL): A. anterior lateral view; B. ventral head view; C. first dorsal fin; D. second dorsal fin.
FIGURE 5 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 5. Holotype of Centroscymnus macrops SCSFRI O 0150 (female 792 mm TL): A. lateral view; B. ventral view of head; C. dentition.
FIGURE 4 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 4. Lateral trunk denticles of the holotype of Centrophorus ferrugineus SCSFRI O 0094 (adult male 1044 mm TL).
Size fractionation of total Chl a larger and smaller than 8 μm data generated by Mike Mullin of the Marine Life Research Group, aboard CalCOFI (California Cooperative Oceanic Fisheries Investigations) cruises of the coast of California, January 1994 - October 1996.
Based on twelve quarterly cruises over three years, the relative importance and absolute biomass of phytoplankton retained on an 8 mu m-pore membrane filter increased as the depth of the nitricline decreased, even though biomass of macrozooplankton (potential grazers) also increased as the nitricline shoaled. The relative importance of greater than or equal to 8 mu m cells was inversely related to a proxy for their biomass-specific mortality (biomass of macrozooplankton/biomass of greater than or equal to 8 mu m cells), as was their "residual" biomass not predicted from the nitricline depth
FIGURE 17. Range map for Hippocampus fisheri. See Figure 2 in A global revision of the Seahorses Hippocampus Rafinesque 1810 (Actinopterygii: Syngnathiformes): Taxonomy and biogeography with recommendations for further research
FIGURE 17. Range map for Hippocampus fisheri. See Figure 2 caption for further details.
Figure 12 in French research on fisheries in the Northwest Atlantic, from its origins to the present
Figure 12. – Ifremer survey in 2021 on board a professional vessel to assess the sea cucumbers abundance in SaintPierre and Miquelon's EEZ using a dredge equipped with an underwater camera (Photo Ifremer).
Figure 5. – The aviso Ville d in French research on fisheries in the Northwest Atlantic, from its origins to the present
Figure 5. – The aviso Ville d'Ys, a stationary warship responsible for assisting French fishing vessels, was also observing hydrological conditions on the fishing Banks between the two-world war period.
Figure 3 in French research on fisheries in the Northwest Atlantic, from its origins to the present
Figure 3. – Maps of the French-Shore from 1713 to 1783 (A) and from 1783 to 1904 (B) (Source: Newfoundland and Labrador Heritage Web Site: https://www.heritage.nf.ca/).
FIGURE 17 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 17. Dorsal view of the holotype of Springeria stenosoma SCSFRI O 0065 (female 520 mm TL).
FIGURE 2 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 2. Lateral view of Squalus mitsukurii (CSIRO H 7403–02, female 632 mm TL) from Taiwan.
Dataset for: Key research priorities for the future of fish and fisheries in Australia
<p>In Australia, the health of our marine, estuarine and freshwater fishes are of critical importance. Each species has a role in our country’s ecological, economic, cultural and social wealth. Climate change, resource overexploitation, invasive animals and diseases, and habitat degradation are just a few of the burgeoning threats that researchers and managers must address. In addition, differences in legislative frameworks among jurisdictions hinder our ability to coherently manage fish resources scales that are relevant biologically, ecologically and socially. Here we investigate the key research priorities for fish and fisheries research in Australia, across seven thematic fields of study. The priorities identified will enable researchers and policy makers to identify critical knowledge gaps, develop collaborative research programs, investigate novel approaches, and to improve transparency around decision-making processes.In Australia, the health of our marine, estuarine and freshwater fishes are of critical importance. Each species has a role in our country’s ecological, economic, cultural and social wealth. Climate change, resource overexploitation, invasive animals and diseases, and habitat degradation are just a few of the burgeoning threats that researchers and managers must address. In addition, differences in legislative frameworks among jurisdictions hinder our ability to coherently manage fish resources scales that are relevant biologically, ecologically and socially. Here we investigate the key research priorities for fish and fisheries research in Australia, across seven thematic fields of study. The priorities identified will enable researchers and policy makers to identify critical knowledge gaps, develop collaborative research programs, investigate novel approaches, and to improve transparency around decision-making processes.</p>
Figure 2 in French research on fisheries in the Northwest Atlantic, from its origins to the present
Figure 2. – Map of the fishing grounds around Newfoundland and Nova Scotia.
Figure 1 in French research on fisheries in the Northwest Atlantic, from its origins to the present
Figure 1. – Map showing the ICNAF/NAFO divisions.
National Fisheries Research and Development Institute (NFRDI)
Measurements made by the National Fisheries Research and Development Institute (NFRDI), Ministry of Oceans and Fisheries for Korea, in the East China Sea in 2000.
FIGURE 14 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 14. Dorsal view of the holotype of Urolophus marmoratus SCSFRI N 0428 (female 742 mm TL).
FIGURE 9 in Notes on shark and ray types at the South China Sea Fisheries Research Institute (SCSFRI) in Guangzhou, China
FIGURE 9. Ventral head view the holotype of Scymnodon niger SCSFRI S 07561 (female 482 mm TL).
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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.