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Figure 4 in Are mangroves important for reef fish on Mayotte Island (Indian Ocean)?
Figure 4. – Relative abundance of the five trophic categories among the three mangrove habitats for fyke-net and visual census.
Figure 6 in Are mangroves important for reef fish on Mayotte Island (Indian Ocean)?
Figure 6. – Canonical redundancy analyses (RDA) of fish abundance, environmental variables and sampling months for catches (A) and UVC (B). Species are coded by the two first letters of name of genus and the three first letters of species, these codes are given in table I.
Figure 5 in Are mangroves important for reef fish on Mayotte Island (Indian Ocean)?
Figure 5. – Hierarchical clustering analysis showing the spatial repartition of 13 sampling months based on fish abundance data for both methods. Sites are coded according to their abbreviation followed by month number, beginning in April (1) and finishing in April again (13). Clusters are separated using Ward algorithm.
Figure 1 in Are mangroves important for reef fish on Mayotte Island (Indian Ocean)?
Figure 1. – Location of the three sampling sites in the lagoon along the eastern coast and south-western coast of Mayotte Island. The numbers refer to the text where further information is found to describe each location.
Figure 1 in First record of the southwestern Indian Ocean endemic Apolemichthys kingi (Teleostei: Pomacanthidae) from Sainte Marie Island, Madagascar
Figure 1. – Map of Madagascar (A) with the locations where the specimen of Apolemichthys kingi was photographed in 2018 (Sainte Marie Island, site B) and identified in 2013 (north of Tôlanaro, site C). Image of the specimen photographed in site B (B), caught and identified in site C (C), and in South Africa (D). Photography credits: J. Wickel (B), S. Fennessy (C), A. D. Connell (D).
Figure 4A-B. Migration pathways from the Laniakea, O in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 4A-B. Migration pathways from the Laniakea, O'ahu foraging site to French Frigate Shoals for two females and one male. The male tracking documented a round-trip migration with the return to Laniakea followed by a move to Kāne'ohe Bay, O'ahu. Year of tracking is indicated on the map.
Figure 9 A-E in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 9 A-E. Home ranges for four females and one male green turtle that migrated from French Frigate Shoals to five other neritic foraging areas. 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 5 in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 5. Foraging areas destinations/origins for 19 of the 20 green turtles tracked from 1992- 2014. Transmissions from one turtle stopped midway between French Frigate Shoals and the Main Hawaiian Islands.
Figure 8 A-B in Ocean pathways and residential foraging locations for satellite tracked green turtles breeding at French Frigate Shoals in the Hawaiian Islands
Figure 8 A-B. Home range for two female green turtles that migrated to 'Ewa Beach, 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. Both 'Ewa turtles occupied two Minimum Home Range areas.
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)
FIGURE 1 in Fossil Mysticeti from the Pleistocene of Santa Maria Island, Azores (Northeast Atlantic Ocean), and the prevalence of fossil cetaceans on oceanic islands
FIGURE 1. Top: location maps. Insert: location of the Azores archipelago in the Northeast Atlantic and location of Santa Maria Island, within the Azores Archipelago. Bottom: map of Santa Maria with the location of the most important Mio-Pliocene and Pleistocene (MIS 5e) outcrops— 1, Ponta dos Frades; 2, Cré; 3, Lagoinhas; 4, Ponta do Norte; 5, Ponta Negra; 6, Ponta do Cedro; 7, Ponta do Castelo; 8, Pedra-que-pica; 9, Vinha Velha; 10, Pedrinha da Cré; 11, Baía de Nossa Senhora; 12, Malbusca; 13, West fault of Malbusca; 14, Ichnofossil's cave; 15, Praia do Calhau; 16, Macela; 17, Prainha; 18, Figueiral; 19, Pedreira do Campo; 20, Airport.
FIGURE 2 in Fossil Mysticeti from the Pleistocene of Santa Maria Island, Azores (Northeast Atlantic Ocean), and the prevalence of fossil cetaceans on oceanic islands
FIGURE 2. Right mandibular corpus (DBUA-F 1079) belonging to a medium-large size Mysticeti. 1, dorsal view; 2, lateral view; and 3, inset magnification of unknown bone modification to the lateral surface (denoted by arrows). Abbreviation "mc" indicates the mandibular canal. Thick broken arrows show passages of the mandibular canal through the fragment.
FIGURE 3 in Fossil Mysticeti from the Pleistocene of Santa Maria Island, Azores (Northeast Atlantic Ocean), and the prevalence of fossil cetaceans on oceanic islands
FIGURE 3. Detailed composite stratigraphic column at Praia do Calhau. The numbers depicted in filled circles correspond to facies 1–7, which are described in Ávila et al. (2015).
Figure 2 in New and rare records of teleost fishes from the Cape Verde Islands (eastern-central Atlantic Ocean)
Figure 2. ‑ First records of teleost fishes from the Cape Verde Islands. A: Gnathophis mystax, SL 365 mm, MMF39446; B: Nezumia africana, PAL 65.2 mm, MMF43121; C: Nezumia duodecim, PAL 72.8 mm, MMF39286; D: Ectreposebastes imus, SL 91 mm, MMF48816; E: Paraliparis sp., SL 251 mm, TFMC‑VP/01377; F: Lappanella fasciata, SL 140 mm, MMF42284. Scale bars = 20 mm.
Figure 1 in New and rare records of teleost fishes from the Cape Verde Islands (eastern-central Atlantic Ocean)
Figure 1. ‑ Collection locations for the first records of teleost fishes from the Cape Verde Islands: (Ì) 1: Gnathophis mystax; 2: Nezumia africana; 3: Nezumia duodecim; 4: Ectreposebastes imus; 5: Paraliparis sp.; 6: Lappanella fasciata.
ScienceDex guides
Understand access before you commit
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.