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218 results for “aquaculture”
Fig. 4 in The First Experience In New Technologies Of Breeding And Semi-Natural Eggs Incubation Of Northern Emys Orbicularis In Glass-House Aquaculture In Latvia
Fig. 4. Plot of fitted model for temperature of sun-basking place (Tsunbask) and temperature of water in the basin (Twater) of the glass-house herpetoculture of E.orbicularis.
Fig. 7 in Action Plan For The Fire-Bellied Toad Bombina Bombina In Latvia: Assessment Of The Implementation For Ten Years, Releasing From Aquaculture And Restoration Of Habitats In 2006-2016
Fig. 7. Box-and-Whicker plots for Species Conservation and Habitats Conservation Sub-actions' implementation in points before and after BAP.
Figure 7 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 7. – Evolution of the number of employees per sector in the past two decades in Saint-Pierre and Miquelon: primary sector, including fisheries, aquaculture and agriculture (in black), secondary sector, including industry and construction (in dark grey), and tertiary sector including commerce, transport, personal services, accommodation, food service activities, public administration, education, health and social work (light grey). Data are from Iedom (2021).
Figure 4 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 4. – Official captures for the Saint-Pierre and Miquelon's fleet from 1950-2020 (data come from the FAO database).
Figure 1 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 1. – Map of the 12,400 km2 Exclusive Economic Zone of Saint-Pierre and Miquelon (dark blue), most of which is comprised in NAFO Subarea 3Ps (light blue). The land in the upper left is the South of the Newfoundland island; that on the left the West of Nova Scotia. The insert shows the maps' location in North America.
Figure 9 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 9. – Evolution of the population of Saint-Pierre and Miquelon. People under 20 years (in black), between 21 and 59 years old (dark grey), and above> 60 years old (light grey). Data are from IEDOM reports (https://www.iedom.fr/saint-pierre-et-miquelon/).
Figure 3 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 3. – Evolution of the number of dories (in black) and artisanal fishers (in grey) between the 1960s to the 1990s (data are from Briand, 1990).
Figure 10 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 10. – Comparison of the evolution of the populations of SPM and close small towns from the Burin Peninsula between 1991 and 2016 (data are from IEDOM, 2021 and https://www12.statcan.gc.ca/censusrecensement/2016/index-eng.cfm)
Figure 2 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 2. – Dories belonging to the association called "Les Zigotos" (http://www.spm-tourisme.fr/nos-iles-dexception/bienvenue-cheznous/les-zigotos/) in the foreground of the picture and the large blue fish plants Interpêche and Interfreeze, with a fishing vessel, in the background.
Figure 8 in The historic background and potential of sustainable small-scale fisheries and aquaculture in small islands: the case of Saint-Pierre and Miquelon
Figure 8. – Evolution of the exports (in black) and imports (in grey) for Saint-Pierre and Miquelon since 2002. Data are from IEDOM reports (https://www.iedom.fr/saint-pierre-et-miquelon/).
Figure 5 in Fish domestication in aquaculture: reassessment and emerging questions
Figure 5. – Evolution of aquaculture production since 1950 of Japanese amberjack Seriola quinqueradiata (A), common carp Cyprinus carpio (B), Nile tilapia Oreochromis niloticus (C), and Atlantic salmon Salmo salar (D) (based on the FAO database).
Figure 2 in Fish domestication in aquaculture: reassessment and emerging questions
Figure 2. – Evolution of marine capture fisheries since 1950 of Atlantic cod Gadus morhua (A), blue whiting Micromesistius poutassou (B), orange roughy Hoplostethus atlanticus (C), and skipjack tuna Katsuwonus pelamis (D) (based on the FAO database).
FIGURE 5 in Genetic diversity and aquaculture conservation for a threatened Neotropical catfish
FIGURE 5 | Candidates breeding pairs in the three hatcheries, Bebedouro (BEB), Paulo Afonso (PA) and Itiúba (IT), assessed by Coancestry (Lynch & Li estimator).
FIGURE 3 in Genetic diversity and aquaculture conservation for a threatened Neotropical catfish
FIGURE 3 | Scatterplot of the Discriminant Analysis of Principal Components (DAPC) of Lophiosilurus alexandri genotypes from captive broodstocks (Bebedouro, Paulo Afonso, and Itiúba (clusters 1, 3, and 5) and wild samples taken from two stretches of the São Francisco River (upper (cluster 2) and submiddle (cluster 4). Clusters are shown by different colors and inertia ellipses, while dots represent individuals. Eigenvalues of the analysis are displayed in inset.
FIGURE 4 in Genetic diversity and aquaculture conservation for a threatened Neotropical catfish
FIGURE 4 | Relatedness estimators Wang (RW) and Lynch & Li (RLL) calculated for A. the three full-sib families (■ FS1, ■ FS2 and ■ FS3) and B. for the wild samples (■ upper and ■ submiddle São Francisco River stretches) of Lophiosilurus alexandri.
FIGURE 2 in Genetic diversity and aquaculture conservation for a threatened Neotropical catfish
FIGURE 2 | Attributions of Lophiosilurus alexandri genotypes from A. captive broodstocks (Bebedouro, Paulo Afonso, and Itiúba) and wild samples taken from two stretches of the São Francisco River (upper and submiddle) and B. only for the wild samples. Each vertical bar represents a different individual and the length is proportional to the inferred group, cluster 1 (red) and cluster 2 (green). Respective estimated K value through log-likelihood. Y axis for delta (K) values and X axis for different K values tested.
FIGURE 1 in Genetic diversity and aquaculture conservation for a threatened Neotropical catfish
FIGURE 1 | Map showing the São Francisco River Basin with locations of the three restocking hatcheries () of Lophiosilurus alexandri and an experimental laboratory (LAQUA). The wild samples taken in the upper and submiddle stretches are denoted by.
Fig. 6 in Negative effects of Kudoa islandica n. sp. (Myxosporea: Kudoidae) on aquaculture and wild fisheries in Iceland
Fig. 6. SSU rDNA maximum likelihood phylogenetic tree of 16 Kudoa spp. Kudoa islandica is robustly and consistently placed with other Kudoa taxa in all analyses, but is not well supported in the clade it is placed in. Numbers at the nodes represent bootstrap support from 1000 samplings, nodes with a support of <50 are considered not supported (ns).
Fig. 4 in Negative effects of Kudoa islandica n. sp. (Myxosporea: Kudoidae) on aquaculture and wild fisheries in Iceland
Fig. 4. Line drawings of Kudoa islandica n. sp. in apical view (A) and lateral view (B). Scanning electron microscope images of K. islandica n. sp. (C–E). Mature spore in lateral view showing extruded polar filaments (arrow) (C). Single spore in apical view (D) showing the sutures of the four valves (broad arrows), the four apical projections (thin arrow) and cytoplasmic projections (arrowhead). Single spore in posterior view (E) showing the suture of the four valves (broad arrows), Scale bars: (A) and (B) = 2 µm; (C), (D) and (E) = 1 µm.
Fig. 3 in Negative effects of Kudoa islandica n. sp. (Myxosporea: Kudoidae) on aquaculture and wild fisheries in Iceland
Fig. 3. Fresh mature spores of Kudoa islandica n. sp. as seen in fresh squash preparations from muscular tissue of Atlantic wolffish, Anarhichas lupus. Note the protruding polar filament of one of the spores (arrow). Nomarski differential interference contrast. Scale bar = 10 µm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.