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989 results for “Cuba”
National Checklists 2017: Cuba Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details<p></p>A list of species from Cuba collected using effechecka and geonames polygons
National Checklists 2019: Cuba Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details.<p></p>A list of species from Cuba collected using effechecka and geonames polygons
Figuras 8–13 in Melipona beecheii Bennett (Hymenoptera: Apidae): origen, estudios y meliponicultura en Cuba
Figuras 8–13. Colmenas manejadas de Melipona beecheii. 8–9) Troncos huecos, Catalina de Güines y Sierra La Güira, Pinar del Río, respectivamente. 10) Cajas rusticas, Las Terrazas, Pinar del Río. 11) Caja racional UTOB, Ciénaga de Zapata. 12–13) Caja racional modelo modificado Fernando Oliveira, San Nicolás de Bari, Mayabeque. Fotos: 8, 10, 12, 13, W. Lóriga; 9, J. Lazcano; 11, K. Mizota.
FIGURES 1 5 in Echiniscus barbarae, a new species of tardigrade from Cuba Island (Tardigrada: Heterotardigrada, Echiniscidae, ‘ arctomys group’)
FIGURES 1 5. Echiniscus barbarae sp. nov. 1, Scanning electron micrograph, dorsal view (a paratype); 2, Phase contrast micrograph, dorsal view (a paratype); 3 5, Holotype: 3, Dorsolateral view; 4, External claw of IV pair of legs; 5, Internal claw of IV pair of legs (3 5 drawn from phase contrast microscope).
FIGURES 12 – 17 in Solenoptera Audinet-Serville, 1832 (Coleoptera, Cerambycidae, Prioninae, Solenopterini) in Cuba, with description of a new species
FIGURES 12 – 17. Solenoptera fraudulenta Galileo & Martins: HOLOTYPE male: 12) dorsal; 13) ventral; 14) specimen labels; PARATYPE female, 15) dorsal; 16) ventral; 17) specimen labels. Photos: IRSNB (J. Pirkl).
FIGURES 24 – 29 in Solenoptera Audinet-Serville, 1832 (Coleoptera, Cerambycidae, Prioninae, Solenopterini) in Cuba, with description of a new species
FIGURES 24 – 29. Solenoptera zayasi Devesa, Fonseca & Barro, HOLOTYPE male: 24) dorsal habitus; 25) ventral habitus; 26) lateral habitus; 27) head, pronotum and scutellum; 28) proepisternum, prosternum and prosternal process; 29) poriferous sensory areas, antennomeres VII – XI.
FIGURES 30 – 35 in Solenoptera Audinet-Serville, 1832 (Coleoptera, Cerambycidae, Prioninae, Solenopterini) in Cuba, with description of a new species
FIGURES 30 – 35. Solenoptera zayasi Devesa, Fonseca & Barro, ALLOTYPE female: 30), dorsal habitus; 31) ventral habitus; 32) lateral habitus; 33) head, pronotum and scutellum; 34) proepisternum, prosternum and prosternal proccess; 35) poriferous sensory areas, antennomeres VII – XI.
FIGURES 18 – 22 in Solenoptera Audinet-Serville, 1832 (Coleoptera, Cerambycidae, Prioninae, Solenopterini) in Cuba, with description of a new species
FIGURES 18 – 22. Solenoptera parandroides Lameere, male: 18), dorsal; 19) ventral; 20) lateral; 21) head, pronotum and scutellum; 22) proepisternum, prosternum and prosternal process.
Figures 11–14 in A new species of the genus Nidilaelaps Shaw (Acari: Mesostigmata: Laelapidae) from Cuba
Figures 11–14. Nidilaelaps cubaensis sp. nov. (female) – 11. leg I (trochanter-tibia); 12. leg II (trochanter-tarsus); 13. leg III (trochanter-tarsus); 14. leg IV (trochanter-tarsus).
Figures 6–10 in A new species of the genus Nidilaelaps Shaw (Acari: Mesostigmata: Laelapidae) from Cuba
Figures 6–10. DIC micrographs of Nidilaelaps cubaensis sp. nov. (female) – 6. Idiosoma in dorsal view; 7. Idiosoma in ventral view; 8. Genito-ventral shield; 9. Chelicera, lateral view; 10. Distal portion of palp, ventrolateral view, with a focus on apotele.
Figures 1–5 in A new species of the genus Nidilaelaps Shaw (Acari: Mesostigmata: Laelapidae) from Cuba
Figures 1–5. Nidilaelaps cubaensis sp. nov. (female) – 1. Dorsal idiosoma; 2. Ventral idiosoma; 3. Subcapitulum; 4. Epistome; 5. Chelicera, lateral view.
Figure 27 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 27. Stratigraphical ranges of the lepidocyclinids species at the Cuban sections and their correlation with the American Larger Foraminifera Zones (ABZ) proposed by Mitchel et al. (2022). ABZ zonation scheme calibrated against planktic foraminifera and calcareous nannofossils zonations along with Shallow Benthic Zonation (Mitchell et al., 2022).
Figure 25 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 25. Lepidocyclina ocalana Cushman. Nepionts of megalospheric individuals. A, CA-216-E3(7a); B, CA-216-E3(7b); C, CA-216-E3(12); D, CA-216-F3(3a); E, CA-216-F3(3b); F, CA-216-F3(3c); G, P-559 (513); H, P-559 (509); I, P-562 (491). Blanco Formation (CA-216); Jicotea Formation (P-559; P-562).
Figure 24. A–D, Lepidocyclina ocalana Cushman. A, B in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 24. A–D, Lepidocyclina ocalana Cushman. A, B, equatorial sections of megalospheric individuals; C, D, axial sections of megalospheric individuals. A, P-562(491); B, P-562(481); C, P-562(499); D, P-562(498). Jicotea Formation (P-562).
Figure 23. A–G in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 23. A–G, Lepidocyclina ocalana Cushman. Nepionts of megalospheric individuals. A, CA-216-E3(7a); B, CA-216-E3(7b); C, CA-216-F3(3b); D, P-559 (513); E, CA-216-F3(3a); F,CA-216-E3(12); G, CA-216-F3(3c). Blanco Formation (CA-216); Jicotea Formation (P-559).
Figure 22. Nepionts. A–G in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 22. Nepionts. A–G, Lepidocyclina macdonaldi Cushman. Equatorial sections of megalospheric individuals. A, 98LC-1(640); B, 98LC-1(642); C, 98LC-1(616); D, 98LC-1(617); E, CA-215 (66); F, CA-215 (74); G, LM-23 (429). H, I, Lepidocyclina ariana Cole & Ponton. Equatorial sections of megalospheric individuals; H, LM-23(431); I, LM-23 (433). Loma Candela Formation (98LC-1), Arroyo Blanco Formation (CA-215) and Hatillo Formation (LM-23).
Figure 20 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 20. Geometric reconstruction of chamberlets based on the means of character states for the species (Tables 5–8).
Figure 19 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 19. Box plots of nepiont character states for the Lepidocyclina groups (species). Significant differences checked by the Kruskal-Wallis test. L. group 1 = L. macdonaldi, L. group 2 = L.?macdonaldi (small specimens), L. group 3 = L. ariana, L. group 4 = L. pustulosa, L. group 5 = L. ocalana.
Figure 26 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 26. Lepidocyclina pustulosa (H. Douvilĺe). A–C, equatorial sections of megalospheric individuals; D–F, axial sections of megalospheric individuals; G–I, nepiont enlargement. A, G, LM-52(734); B, I, LM-52(738); C, H, LM-52(735); D, LM-52(742); E, LM-52(744); F, LM-52(751). Jabaco Formation (LM-52).
Figure 21. A–G in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 21. A–G, Lepidocyclina macdonaldi Cushman. Equatorial sections of megalospheric individuals. A, 98LC-1(640); B, 98LC-1(642); C, 98LC-1(616); D, 98LC-1(617); E, CA-215 (66); F, CA-215 (74); G, LM-23 (429); H, I, Lepidocyclina ariana Cole & Ponton. Equatorial sections of megalospheric individuals; H, LM-23(431); I, LM-23 (433). Loma Candela Formation (98LC-1), Arroyo Blanco Formation (CA-215) and Hatillo Formation (LM-23).
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.