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Figure 7 A-E in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 7 A-E. Home ranges for four females and one male green turtle that migrated to Kahului, Maui from French Frigate Shoals. Large colored circles indicate 1 km radius around each position. Black circles indicate positions with LC 1, 2 or 3 data. Black lines outline the Minimum Convex Polygons for Minimum Home Range and Full Home Range areas.
Figure 3A-F. Migration pathways from French Frigate Shoals breeding site for 15 females and 2 in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 3A-F. Migration pathways from French Frigate Shoals breeding site for 15 females and 2 males. The release location is shown with an open star and final tracking position is indicated by a colored circle. Year of tracking is indicated on the map.
Figure 10 A-C in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 10 A-C. Home ranges for two females and one male green turtle at the Laniakea, O'ahu foraging area prior to their migration to French Frigate Shoals. Large colored circles indicate 1 km radius around each position. Black circles indicate positions with LC 1, 2 or 3 data. Black lines outline the Minimum Convex Polygons for Minimum Home Range areas. Male 23474 moved to Kāne'ohe Bay after initially returning to Laniakea.
Figure 6A-D in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 6A-D. Home ranges for four female green turtles that migrated to Kāne'ohe, O'ahu from French Frigate Shoals. Large colored circles indicate 1 km radius around each position. Black circles indicate positions with LC 1, 2 or 3 data. Black lines outline the Minimum Convex Polygons for Minimum Home Range and Full Home Range areas. Two Minimum Home Ranges are indicated for female 4801_92 in Figure 6B.
Figure 2 in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 2. Composite view of the ocean pathways by the 20 green turtles tracked during their breeding migrations linked to the colonial nesting site of French Frigate Shoals. Turtles were randomly selected for satellite tagging between 1992-2014.
Figure 1 in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 1. Hawaiian Archipelago located in an isolated region of the Central North Pacific. Colonial breeding by green turtles in abundance occurs at the mid-point location of French Frigate Shoals (Balazs et al 2015)
Fig. 3 in Location and elimination of Anisakis simplex third stage larvae in Atlantic herring Clupea harengus L
Fig. 3. The association of nematode larvae with musculature and body cavity organs in herring (unprocessed).
Fig. 2. A in Location and elimination of Anisakis simplex third stage larvae in Atlantic herring Clupea harengus L
Fig. 2. A. The correlation between total body length of herring (unprocessed) and the number of nematode larvae in each fish. B. The correlation between the total body weight of herring (unprocessed) and the number of nematode larvae in each fish.
Fig. 1 in Location and elimination of Anisakis simplex third stage larvae in Atlantic herring Clupea harengus L
Fig. 1. Left side of a herring showing division of the musculature into epaxial, hypaxial and caudal segments. The lower part of the hypaxial part (processed hypaxial) is removed during industrial processing. The right side is segmented similarly. Following processing the right and left musculature segments are still kept connected by dorsal connective tissue.
Рис. 1. Карта-схема заповеΑника «КомсомоΛьский». Точками обозначены места отбора проб Fig. 1. Map of the Komsomolsky Nature Reserve. Dots indicate sampling locations in Zoobenthos of the Komsomolsky Nature Reserve watercourses: Quantitative distribution
Рис. 1. Карта-схема заповеΑника «КомсомоΛьский». Точками обозначены места отбора проб Fig. 1. Map of the Komsomolsky Nature Reserve. Dots indicate sampling locations
FIGURE 4 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast
FIGURE 4 | A. Percentage of larval stages of ichthyoplankton in each of zones of Tubarão River estuary (Z1: Lower, Z2: Middle, Z3: Upper) in their periods of dry (TD) and rainy (TR); B. Percentage of ichthyoplankton larval stages in each of Casqueira River estuary zones (Z1: Lower, Z2: Middle, Z3: Upper) during their dry (CD) and rainy (CR) periods.
FIGURE 6 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast
FIGURE 6 | Percentage contribution of species in Casqueira River estuary (Z1: Lower, Z2: Middle, Z3: Upper) zones in their periods of dry (CD) and rainy (CR). Yol = Vitelline larval; Pre = Preflexion; Fle = Flexion; Pos = Postflexion.
FIGURE 5 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast
FIGURE 5 | Percentage contribution of species in Tubarão River estuary (Z1: Lower, Z2: Middle, Z3: Upper) in their periods of dry (TD) and rainy (TR). Yol = Vitelline larval; Pre = Pre-flexion; Fle = Flexion; Pos = Post-flexion.
FIGURE 3 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast
FIGURE 3 | Distance-based redundancy analysis (dbRDA) showing distribution of eggs and larvae by influence of environmental parameters on A. Tubarão (T) and B. Casqueira river estuaries (C) during seasons (D = dry and R = rainy) and zones (Z1, Z2, Z3).
FIGURE 1 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast
FIGURE 1 | Map of the two study areas, Tubarão (1) and Casqueira (2) river estuaries. The insert map indicates the sampling sites (zones) in both estuaries: Z1 = Lower zone, Z2 = Middle zone and Z3 = Upper zone.
FIGURE 2 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast
FIGURE 2 | Box Plots of larvae (Ind * 100-3) and egg (Ind * 100- 3) densities in three zones of each of estuaries (Tubarão and Casqueira rivers) during their dry and rainy periods. Different letters indicate significant differences (P <0.05).
FIGURE 2 in VERENA TUNNICLIFFE & CORINNA BREUSING (2022) Redescription of Bathymodiolus septemdierum Hashimoto and Okutani, 1994 (Bivalvia, Mytilida, Mytilidae), a mussel broadly distributed across hydrothermal vent locations in the western Pacific and Indian Oceans. Zootaxa, 5214 (3): 337-364.
FIGURE 2 Haplotype networks for mitochondrial COI and ND4, with haplotypes coloured by broader geographic region or type / paratype locality. Dot sizes are proportional to haplotype frequency. Dashes on connecting branches indicate number of mutations between haplotypes. Despite shared genetic variation among geographic regions, haplotypes can be broadly grouped into an Indian and western Pacific cluster.
Fig. 1. A. Site location. B in First post-Mesozoic record of Crocodyliformes from Chile
Fig. 1. A. Site location. B. Generalised stratigraphic log of the Bahía Inglesa Formation. 1, Morro Member. Medium/coarse sands with Skolithos and crossbedding. Sands intercalated with coquinas, grading into pale fish−bearing siltstones to the north−east. Conglomerates present at some levels; 2, Bahía Inglesa Formation Bonebed Member. Phosphorites intercalated with fine/medium sands. The Bahía Inglesa Formation Bonebed marks the base; 3, Lechero Member. As Bahía Inglesa Formation Bonebed Member, but without phosphorites; 4, Early Pleistocene marine terrace downcuts toward bay. ssgc, sedimentary clast size division: silt, sand, gravel, and cobbles.
Figure 1. - Study stream locations where lamprey were collected. 1 in A genetic method to differentiate Petromyzon marinus ammocoetes from those of the paired species Lampetra fluviatilis and L. planeri
Figure 1. - Study stream locations where lamprey were collected. 1: Gironde basin; 1a: Livenne River; 1b: Dronne River; 1c: Dordogne River; 1d: Cere River; 2: Loire basin; 3: Meuse basin.
Figure 3. - Collection locations for the new records from the Canaries. 1 in New records of non-indigenous fishes (Perciformes and Tetraodontiformes) from the Canary Islands (north-eastern Atlantic)
Figure 3. - Collection locations for the new records from the Canaries. 1: Holocentrus adscensionis, 2: Cephalopholis taeniops, 3: Paranthias furcifer, 4: Prognathodes marcellae, 5: Abudefduf saxatilis, 6: Abudefduf hoefleri, 7: Acanthurus bahianus, 8: Acanthurus coeruleus, 9: Acanthurus chirurgus, 10: Acanthurus monroviae, 11: Cantherhines pullus.
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.