Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
142
datasets available to search
ShareScore release 0.9.0
Dataset results
142 results for “moorea”
FIGURE 7 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 7. Fennera holthuisi sp. nov., female (FLMNH UF 26315): a, pereiopod I; b, same, chela; c, fingers of pereiopod I, ventral view; d, pereiopod III; e, same, distal propodus and dactylus.
FIGURE 8 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 8. Appendages: a–c, Fennera holthuisi sp. nov., holotype, female, Moorea, French Polynesia (FLMNH UF 26315); d–f, Fennera chacei Holthuis, 1951, ovigerous female, Uva Island, Pacific coast of Panama (UM 32.9592). a, d, minor pereiopod II; b, e, major pereiopod II; c, f, pereiopod III.
FIGURE 6 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 6. Fennera holthuisi sp. nov., female (FLMNH UF 26315): a, carapace, lateral view; b, dorsal part of the carapace, dorsal view; c, minor pereiopod II; d, same, distal propodus and dactylus, dorsal view; e, same, ventral view; f, major pereiopod II; g–i, same, chela; j, pereiopod III; k, same, distal propodus and dactylus.
FIGURE 5 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 5. Fennera holthuisi sp. nov., holotype, non-ovigerous female (FLMNH UF 26315), Moorea, French Polynesia.
FIGURE 4 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 4. Different rostral formulae and armature of the lower orbital margin in females of Fennera chacei Holthuis, 1951, Uva Island, Pacific coast of Panama (UM 32.9592).
FIGURE 3. Fennera chacei Holthuis, 1951 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 3. Fennera chacei Holthuis, 1951, ovigerous female, Uva Island, Pacific coast of Panama (UM 32.9592): a, major pereiopod II; b–d, same, chela; e–f, fingers of major pereiopod II; g, minor pereiopod II; h–j, same, distal propodus and fingers, different views.
FIGURE 2. Fennera chacei Holthuis, 1951 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 2. Fennera chacei Holthuis, 1951, ovigerous female (a, c, d–j), male (b) (UM 32.9592): a, carapace, dorsal view; b– c, same, lateral view; d, sixth abdominal somite, telson and uropods; e, telson, lateral view; f, antennula; g, antenna; h, mandibular; i, maxilla; j, distodorsal angle of uropodal exopod.
FIGURE 1. Fennera chacei Holthuis, 1951 in Fennera holthuisi sp. nov., a new coral-associated pontoniine shrimp (Decapoda: Palaemonidae: Pontoniinae) from Moorea, French Polynesia
FIGURE 1. Fennera chacei Holthuis, 1951, ovigerous female (above) and mature male (below), Uva Island, Pacific coast of Panama (UM 32.9592).
FIGURE 4 in New records of marine tardigrades from Moorea, French Polynesia, with the description of Styraconyx turbinarium sp. nov. (Arthrotardigrada, Halechiniscidae)
FIGURE 4. Drawings of Styraconyx turbinarium sp. nov. A. Foot. B. Sense organ leg I. C. Sense organ leg II. D. Sense organ leg III. E. Sense organ leg IV. F. Internal cephalic cirrus. G. External cephalic cirrus. H. Median cirrus. I. Lateral cirrus A and primary clava. J. Cirrus E. Scale bar = 5 µm.
FIGURE 3 in New records of marine tardigrades from Moorea, French Polynesia, with the description of Styraconyx turbinarium sp. nov. (Arthrotardigrada, Halechiniscidae)
FIGURE 3. Styraconyx turbinarium sp. nov. Holotype. A. Habitus. Scale bar = 50 µm. B. Cuticular punctations. Scale bar = 25 µm. C. Detail of the primary clava (arrow 1) and lateral cirrus A (arrow 2). The segmented internal cephalic cirrus is also visible (arrow 3). Scale bar = 10 µm. D. Leg IV showing claws and peduncles (arrow). Scale bar = 10 µm.
FIGURE 2. Florarctus kwoni from Moorea, French Polynesia. A in New records of marine tardigrades from Moorea, French Polynesia, with the description of Styraconyx turbinarium sp. nov. (Arthrotardigrada, Halechiniscidae)
FIGURE 2. Florarctus kwoni from Moorea, French Polynesia. A. Habitus showing enlarged posterior margin of right lateral ala making up the right fin of the rocket-shaped alae. Scale bar = 100 µm. B. Second specimen with arrows indicating procuticular supports (caestus); leg with foot is leg III, leg to left of photo is leg IV. Scale bar = 10 µm.
FIGURE 1. Dipodarctus anaholiensis. A. Holotype from Hawaii, USA with arrow showing the smaller digit 4 in New records of marine tardigrades from Moorea, French Polynesia, with the description of Styraconyx turbinarium sp. nov. (Arthrotardigrada, Halechiniscidae)
FIGURE 1. Dipodarctus anaholiensis. A. Holotype from Hawaii, USA with arrow showing the smaller digit 4 on leg I. Scale bar = 50 µm. B. Specimen from Moorea, French Polynesia. Leg IV with arrow showing the cuticular folds on external digits. Scale bar = 10 µm. C. Specimen from Moorea, French Polynesia. Habitus. Scale bar = 100 µm.
CalPhotos: Moorea Biocode
CalPhotos is a collection of photos of plants, animals, fossils, people, and landscapes from around the world. A variety of organizations and individuals have contributed photographs to CalPhotos.<p></p>The Moorea Biocode Project aims to create the first comprehensive inventory of all non-microbial life in a complex tropical ecosystem. Supported by a grant from the Gordon and Betty Moore Foundation. <p></p>https://mooreabiocode.org/
Figs. 7–11 in Replacement Name for the Genus Moorea Ahn (Coleoptera: Staphylinidae)
Figs. 7–11. Pseudocotalpa sonorica, third-instar larva. 7) Ventral view abdomen seg. X; 8) metathoracic leg; 9) lateral view abdomen; 10) protarsungulus-tibiotarsus; 11) head, frontal view.
Figs. 1–6. Pseudocotalpa sonorica, third instar larva. 1 in Replacement Name for the Genus Moorea Ahn (Coleoptera: Staphylinidae)
Figs. 1–6. Pseudocotalpa sonorica, third instar larva. 1) Epipharynx; 2) labium; 3) mandibles left, right dorsal view, mandibles ventral view left, right; 4) last antennal segment, dorsalview; 5) maxillary stridulatory area; 6) left maxilla, central view.
Moorea BioCode
Open the record for dataset details and reuse information.
Figure 3 in Diversity in the diet of the predator Octopus cyanea in the coral reef system of Moorea, French Polynesia
Figure 3. Correlates of diversity in the diet of Octopus cyanea at each of five sampling sites. Dietary diversity (as midden species richness) was positively correlated with diversity of substrate types across the site (top) and with increasing octopus density (bottom). Each point represents all octopuses at a single site. N indicates the number of prey individuals represented by remains at each site.
Figure 1 in Diversity in the diet of the predator Octopus cyanea in the coral reef system of Moorea, French Polynesia
Figure 1. Locations of four nearshore fringing reef sites surveyed for octopuses on the island of Moore'a, adjacent to Tahiti, French Polynesia. The Gump site was located at the Richard B. Gump South Pacific Research Station. Insets indicate the spatial arrangements of dens at two sites: circles indicate dens by marker ID; connecting lines indicate the distance to adjacent dens (in metres, not to scale). Blank line maps of Tahiti and Moorea, and globe used with permission from WorldAtlas.com and FreeUSandWorldmaps.com; den inset by TL.
Figures 13–18 in A new family of the Hoplonemertea: Cinclidonemertes mooreae fam., gen. et sp. nov. (Nemertea: Hoplonemertea)
Figures 13–18. Cinclidonemertes mooreae fam., gen. et sp. nov. (13) Foregut region; anterior caecal pouches; posterior cerebral organs; (14) foregut region; anterior caecal pouches; posterior cerebral organs; (15) foregut region; pylorus; posterior diverticula of stomach and oesophagus; (16) muscle fibre details in rhynchocoel wall; (17) muscle fibre details in rhynchocoel wall; (18) cerebral organ canal detail.
Figures 7–12 in A new family of the Hoplonemertea: Cinclidonemertes mooreae fam., gen. et sp. nov. (Nemertea: Hoplonemertea)
Figures 7–12. Cinclidonemertes mooreae fam., gen. et sp. nov. (7) Pre-cerebral region; cephalic grooves; septum; cerebral organ canals; (8) pre-cerebral region; cephalic grooves; septum; cerebral organ canals; (9) posterior pre-cerebral region; cephalic grooves; cerebral organ canals; (10) cerebral region; commissures; cerebral organs; (11) cerebral region; commissures; cerebral organs; (12) posterior cerebral region; foregut; anterior caecal pouches.
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.