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.
310
datasets available to search
ShareScore release 0.9.0
Dataset results
310 results for “Caribbean Islands”
Figure 2 in Spiders (Arachnida: Araneae) of Saba Island, Lesser Antilles: Unusually high species richness indicates the Caribbean Biodiversity Hotspot is woefully undersampled
Figure 2. Spider species richness by island area showing dramatic undersampling of most islands and lack of expected positive species-area relationship. Islands are ordered by size from smaller to larger as follows: Saba, Nevis, St. Kitts, Antigua, Grenada, Turks and Caicos, Barbados. See text for data sources.
Figure 1 in Spiders (Arachnida: Araneae) of Saba Island, Lesser Antilles: Unusually high species richness indicates the Caribbean Biodiversity Hotspot is woefully undersampled
Figure 1. Saba Island (17o38'N, 63o14'W), Lesser Antilles. Thirty-three collection sites mapped using Google Earth. Numbers correspond to sites listed in Table 1.
Figure 16-17 in new species of Phyllophaga Harris from the island of Navassa in the Caribbean (Coleoptera: Scarabaeidae: Melolonthinae)
Figure 16-17. The Island of Navassa. 16) Outline map with major features (courtesy of Wikipedia). 17) Aerial view of the island from satellite imagery (courtesy of NASA).
Figure 8-15. Phyllophaga navassa, n in new species of Phyllophaga Harris from the island of Navassa in the Caribbean (Coleoptera: Scarabaeidae: Melolonthinae)
Figure 8-15. Phyllophaga navassa, n.sp., male genitalia. 8,9,11) Aedeagus extended. 10,12-15) Aedeagus in repose. 8) Left lateral. 9) Right lateral. 10) Caudal. 11) dorsal/caudal. 12) Right lateral. 13) Laterocaudal. 14) Dorsal. 15) Left lateral (note upturned aedeagal tip).
Figure 1-7. Phyllophaga navassa, n in new species of Phyllophaga Harris from the island of Navassa in the Caribbean (Coleoptera: Scarabaeidae: Melolonthinae)
Figure 1-7. Phyllophaga navassa, n.sp. 1) Right antenna. 2) Right metatibial apex. 3) Right protibial claw. 4) Habitus, adult male. 5) Left protibia, tarsus, clypeus (line = 5mm). 6) Pygidium (caudal view). 7) Right metatibia (line = 5mm).
Figures 5–7 in The Dynastinae of the island of Saba, Dutch Caribbean (Coleoptera: Scarabaeidae)
Figures 5–7. Dynastinae of Saba. 5) Cyclocephala mafaffa Burmeister. 6) Tomarus cuniculus (Fabricius). 7) Phileurus valgus antillarum Prell. Scales in millimetres. Photographs by Harry Taylor.
Figures 3–4 in The Dynastinae of the island of Saba, Dutch Caribbean (Coleoptera: Scarabaeidae)
Figures 3–4. Dynastinae habitats on Saba. 3) The middle slopes of Great Hill near The Bottom, Saba, with typical vegetation of the island's mesophilic zone. The dynastine Phileurus valgus antillarum was bred from larvae collected at this locality. 4) Spring Bay, Saba, showing the dry grassland and steep slopes that are typical of the xerophilic zone of the island at its southern and western edges. No dynastines were collected in this zone. Photographs by M. P. T. Gillett.
Figures 1–2 in The Dynastinae of the island of Saba, Dutch Caribbean (Coleoptera: Scarabaeidae)
Figures 1–2. Collecting localities of Dynastinae on Saba 1) Map showing location of Saba (indicated by arrow) in the Lesser Antilles, and inset, larger-scale map of Saba, with the dynastine collecting localities numbered as follows: 1: The Bottom; 2: Crispeen track; 3: Windwardside; 4: Upper Mountain Road; 5: Lower Mountain Road; 6: English Quarter; 7: The Level. 2) Secondary hygrophilic rainforest on Maskerhorn Hill above Windwardside, Saba. Dynastines found here include Cyclocephala mafaffa and Phileurus valgus antillarum. Photograph by M. P. T. Gillett.
FIG. 2 in Distribution of potentially toxic epiphytic dinoflagellates in Saint Martin Island (Caribbean Sea, Lesser Antilles)
FIG. 2. — Distribution of potentially toxic benthic dinoflagellates abundances (cells g–1): A, Florideophyceae; B, Phaeophyceae; C, Ulvophyceae; D, seagrasses in Saint Martin Island.
Data from: Tree functional traits across Caribbean island dry forests are remarkably similar
Open the record for dataset details and reuse information.
Figure 2. Hentzia antillana Bryant, 1940 in A Caribbean in the South Atlantic: first records of Hentzia antillana Bryant 1940, with notes on other previously reported jumping spider species (Araneae: Salticidae), from Ascension Island
Figure 2. Hentzia antillana Bryant, 1940 adult male (A–B) and female (C–D) from Ascension Island. A, Right male palp, ventral view. B, Same, retrolateral view. C, Epigyne, ventral view. D, Epigyne, dorsal view.
Figure 1. Hentzia antillana Bryant, 1940 in A Caribbean in the South Atlantic: first records of Hentzia antillana Bryant 1940, with notes on other previously reported jumping spider species (Araneae: Salticidae), from Ascension Island
Figure 1. Hentzia antillana Bryant, 1940 adult male (A–C) and female (D–F) from Ascension Island. A, Male, habitus, dorsal. B, Same, ventral. C, Male, frontal view of eyes and chelicerae. D, Female habitus, dorsal. E, Same, ventral. F, Female, frontal view of eyes and chelicerae.
Distinctive, fine-scale distribution of Eastern Caribbean sperm whale vocal clans reflects island fidelity rather than environmental variables
<p>Environmental variables are often the primary drivers of species' distributions as they define their niche. However, individuals, or groups of individuals, may sometimes adopt a limited range within this larger suitable habitat as a result of social and cultural processes. This is the case for Eastern Caribbean sperm whales. While environmental variables are reasonably successful in describing the general distribution of sperm whales in the region, individuals from different cultural groups have distinct distributions around the Lesser Antilles islands. Using data collected over two years of dedicated surveys in the Eastern Caribbean, we conducted habitat modelling and habitat suitability analyses to investigate the mechanisms responsible for such fine-scale distribution patterns. Vocal clan-specific models were dramatically more successful at predicting distribution than general species models, showing how a failure to incorporate social factors can impede accurate predictions. Habitat variation between islands did not explain vocal clan distributions, suggesting that cultural group segregation in the Eastern Caribbean sperm whale is driven by traditions of site/island fidelity (most likely maintained through conformism and homophily) rather than habitat type specialization. Our results provide evidence for the key role of cultural knowledge in shaping habitat use of sperm whales within suitable environmental conditions and highlight the importance of cultural factors in shaping sperm whale ecology. We recommend that social and cultural information be incorporated into conservation and management as culture can segregate populations on fine spatial scales in the absence of environmental variability.</p>
Distinctive, fine-scale distribution of Eastern Caribbean sperm whale vocal clans reflects island fidelity rather than environmental variables
Open the record for dataset details and reuse information.
Supplemental Material of Relationships between Economic, Legal, Social, and Global Risks with the Success in International Construction Projects at Caribbean Islands with British Influence
<p>Suplemental Material consisting on: 1. Instrument for collecting data and, 2. Survey results of the study.</p>
FIGURES 33–47. 33 in Key to Mexican and Central American genera of Acanthocinini (Coleoptera Cerambycidae, Lamiinae) with erect setae on elytral surface, excluding the Caribbean Islands
FIGURES 33–47. 33) Pentheochaetes mystica Melzer, 1932, syntype male, Brazil (Rio de Janeiro), dorsal habitus (from Monné et al. 2020). 34) Phrissolaus inspersus Bates, 1881, lectotype, dorsal habitus (by Jesus Santiago Moure). 35) Pseudocobelura prolixa (Bates, 1864), male, dorsal habitus, Brazil (Pará) (from Monné et al. 2020). 36) Tenthras obliteratus Thomson, 1864, female, dorsal habitus, Brazil (Goiás) (from Monné et al. 2020). 37) Trichalphus pilosus Bates, 1881, lectotype, dorsal habitus (by Jesus Santiago Moure). 38) Trichastylopsis albidus (LeConte, 1852), holotype, dorsal habitus (by Jesus Santiago Moure). 39) Trichocanonura linearis (Skinner, 1905), dorsal habitus (from Bezark 2020). 40–42) Trichotithonus curvatus (Bates, 1885), holotype male of Pentheochaetes nitidus Monné & Martins, 1976 (= Trichotithonus curvatus), Brazil (Santa Catarina) (from Monné et al. 2020): 40) Dorsal habitus; 41) Ventral habitus; 42) Lateral habitus. 43) Tuberastyochus tenebrosus (Bates, 1881), holotype female, dorsal habitus (by Jesus Santiago Moure). 44) Valenus inornatus Casey, 1891, holotype, dorsal habitus (from Lingafelter et al. 2020). 45–46) Catharesthes elegans Bates, 1881, holotype (by Jesus Santiago Moure): 45) Dorsal habitus; 46) Elytra, detail of posterior half. 47) Pentheochaetes apicalis Melzer, 1934, holotype, dorsal habitus (by Jesus Santiago Moure).
FIGURES 17–32. 17 in Key to Mexican and Central American genera of Acanthocinini (Coleoptera Cerambycidae, Lamiinae) with erect setae on elytral surface, excluding the Caribbean Islands
FIGURES 17–32. 17) Lepturgantes variegatus Gilmour, 1957, holotype female, dorsal habitus (by Jesus Santiago Moure). 18) Lepturgantes pacificus Gilmour, 1960, holotype, dorsal habitus (by Jesus Santiago Moure). 19) Lepturges (Chaeturges) inscriptus Bates, 1863, dorsal habitus, female, Brazil (Espírito Santo) (from Monné et al. 2020). 20) Lepturgotrichona stigmatica (Bates, 1881), lectotype, dorsal habitus (by Jesus Santiago Moure). 21) Leptrichillus minutus Gilmour, 1960 (= Lepturgotrichona stigmatica), holotype, dorsal habitus (by Jesus Santiago Moure). 22–23) Lithargyrus melzeri Martins & Monné, 1974, holotype male, Brazil (Santa Catarina) (from Monné et al. 2020): 22) Dorsal habitus; 23) Lateral habitus. 24) Neoeutrypanus decorus (Bates, 1881), holotype female, dorsal habitus (by Jesus Santiago Moure). 25) Neoeutrypanus nitidus, holotype, dorsal habitus (by Jesus Santiago Moure). 26) Neoeutrypanus maya Monné & Botero, 2017, holotype male, dorsal habitus (from Monné & Botero 2017). 27–28) Oedopeza ocellata (Fabricius, 1801), holotype: 27) Dorsal habitus (from Nearns et al. 2017); 28) Lateral habitus (by Jesus Santiago Moure). 29) Onalcidion pictulum (White, 1855), syntype, dorsal habitus (by Jesus Santiago Moure). 30) Ozineus elongatus Bates, 1863, holotype, dorsal habitus (by Jesus Santiago Moure). 31) Palame crassimana Bates, 1864, male, dorsal habitus, Guyana (from Monné et al. 2020). 32) Paroecus rigidus Bates, 1863, holotype male, dorsal habitus (by Jesus Santiago Moure).
FIGURE 2. Carineta trinidadensis n in The cicadas (Hemiptera: Cicadidae) of Trinidad and Tobago including the description of three new species and seven new records, with new records for several additional Caribbean Islands
FIGURE 2. Carineta trinidadensis n. sp.: A, holotype male and paratype female habitus; B, holotype male dorsum; C, holotype male timbal; D, holotype male operculum; E, paratype female operculum; F, holotype male lateral view of genitalia; G, holotype male posterior view of genitalia; H, paratype female lateral view of genitalia; I, paratype female ventral view of genitalia. Scale bar: A, 2 cm; B, 5 mm; C–E, 2 mm; F–G, 1 mm; H–I, 2 mm.
FIGURE 1. Calyria hyperochelabrys n in The cicadas (Hemiptera: Cicadidae) of Trinidad and Tobago including the description of three new species and seven new records, with new records for several additional Caribbean Islands
FIGURE 1. Calyria hyperochelabrys n. sp.: A, holotype male habitus; B, holotype male dorsum; C, holotype male timbal; D, holotype male operculum; E, holotype male lateral view of genitalia; F, holotype male posterior view of genitalia. Scale bar: A, 2 cm; B, 2 mm; C–F, 1 mm.
FIGURE 3. Herrera grammosticta n in The cicadas (Hemiptera: Cicadidae) of Trinidad and Tobago including the description of three new species and seven new records, with new records for several additional Caribbean Islands
FIGURE 3. Herrera grammosticta n. sp.: A, holotype male and paratype female habitus; B, holotype male dorsum; C, holotype male timbal; D, holotype male operculum; E, paratype female operculum; F, holotype male lateral view of genitalia; G, holotype male posterior view of genitalia; H, paratype female lateral view of genitalia; I, paratype female ventral view of genitalia. Scale bar: A, 2 cm; B, 5 mm; C, 1 mm; D–E, 2 mm; F–G, 1 mm; H–I, 2 mm.
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.