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Figure 6 in New records and geographic range extension of Epilobocera capolongoi Pretzmann, 2000 (Decapoda: Brachyura: Epiloboceridae) in Cuba, with notes on its natural history and conservation
Figure 6. Right first gonopod of an adult male of Epilobocera capolongoi (CZACC 5.0047) (A–G) and E. cubensis (CZACC 5.0050) (H–N) from Lomas de Banao Ecological Reserve. A, H, whole structure, cephalic view; B, I, whole structure, caudo-mesial view; C, J, distal portion, cephalic view; D, K, distal portion, caudal view; E, L, distal portion, apical view; F, M, distal portion, mesial view; G, N, distal portion, lateral view. Abbreviations: Mesial lobe (ml), intermediate plate (ip), spines of mesial process (s), terminal process (tp), caudal process (cp), lateral process (lp), cephalic margin (cm), mesial angle of cephalic margin (ma). Scale bars = 1 mm.
Figure 4 in New records and geographic range extension of Epilobocera capolongoi Pretzmann, 2000 (Decapoda: Brachyura: Epiloboceridae) in Cuba, with notes on its natural history and conservation
Figure 4. Adult male Epilobocera capolongoi (CZACC 5.0047) (A–G) and adult male E. cubensis (CZACC 5.0050) (H–N) from Lomas de Banao Ecological Reserve. A, H, Habitus, dorsal view; B, I, habitus, ventral view; C, J, carapace, dorsal view; D, K, carapace, frontal view; E, L, third maxilliped; F, M, sternal surface; G, N, pleon. All the images were taken soon after death (keeping the coloration in life), except E and L (after preservation). The white outline in A and B represent the missing second and third left walking legs. Scale bars = 10 mm.
Figure 5 in New records and geographic range extension of Epilobocera capolongoi Pretzmann, 2000 (Decapoda: Brachyura: Epiloboceridae) in Cuba, with notes on its natural history and conservation
Figure 5. Adult female Epilobocera capolongoi (CZACC 5.0045) (A–D) and subadult female E. cubensis (CZACC 5.0059) (E–H) from Lomas de Banao Ecological Reserve. A, E, Habitus, dorsal view; B, F, habitus, ventral view; C, D, G, H, sternal surface, with detail of the vulvae (D, H). All the images were taken soon after death (keeping the coloration in life), except H (after preservation). Scale bars = 10 mm.
Figure 1 in New records and geographic range extension of Epilobocera capolongoi Pretzmann, 2000 (Decapoda: Brachyura: Epiloboceridae) in Cuba, with notes on its natural history and conservation
Figure 1. Distribution of Epilobocera capolongoi (circles) and E. cubensis (triangles) in central Cuba, depicting the previous records (orange circles) and new records (red circles) of E. capolongoi: 1) Tributary source of Higuanojo river, 2) La Sabina ranger station, 3) tributary source of Banao river, and 4) Banao river, near María Antonia ranger station; the westernmost new record (above) corresponds with Pico San Juan Ecological Reserve. Green shadings and contours depict protected areas. The two-headed orange arrow depicts the narrow strip of heights connecting the Trinidad Heights in the west and the Sancti Spíritus Heights in the east, assumed here as a putative communication pathway between the two presumably allopatric subpopulations of E. capolongoi.
Figure 2 in New records and geographic range extension of Epilobocera capolongoi Pretzmann, 2000 (Decapoda: Brachyura: Epiloboceridae) in Cuba, with notes on its natural history and conservation
Figure 2. Localities where Epilobocera capolongoi was collected in Lomas de Banao Ecological Reserve. Upper left, tributary source of Banao river; upper right, tributary source of Higuanojo river. Lower left, Banao river, near María Antonia ranger station. Lower right, view from La Sabina ranger station, after a heavy rain.
Figure 16 in Morphometric analysis of Eocene nummulitids in western and central Cuba: taxonomy, biostratigraphy and evolutionary trends
Figure 16. Operculinoides floridensis (Heilprin). A–C, Loma Candelaria; A, 98LC-1-651; B, 98LC-1-667; C, 98LC-1-815. D, E, Loma Viǵıa; D, CA-216-F3-16; E, CA-216-D1a. F, Loma El Santo, CA-215-852. G, Loma Jabaco, LM-52-759. H, Angelita Quarry, 98MT-1. A–D, F and G are A forms in equatorial section; E and F are A forms in axial section.
Figura 3-4. 3 in Diversidad de insectos benéficos asociada a la flora existente en fincas suburbanas en Santiago de Cuba, Cuba
Figura 3-4. 3. Valores de similitud entre las fincas a partir de la entomofauna benéfica identificada en el perÍodo poco lluvioso. 4. Valores de similitud entre las fincas a partir de la entomofauna benéfica identificada en el perÍodo lluvioso. / 3. Values of similarity between the farms from the beneficial entomofauna identified in the dry season. 4. Values of similarity between the farms from the beneficial entomofauna identified in the rainy season.
Figuras 1-2. 1 in Diversidad de insectos benéficos asociada a la flora existente en fincas suburbanas en Santiago de Cuba, Cuba
Figuras 1-2. 1. Composición general de grupos de organismos benéficos en el perÍodo poco lluvioso. 2. Composición general de grupos de organismos benéficos en el perÍodo lluvioso. / 1. General composition of groups of beneficial organisms in the dry season. 2. General composition of groups of beneficial organisms in the rainy season.
National Checklists: Cuba Species List
Data from: GBIF.org (23 January 2025) GBIF Occurrence Download <a href="https://doi.org/10.15468/dl.vd2ajk" target="_blank" rel="noopener">https://doi.org/10.15468/dl.vd2ajk</a>
Figures 1–2 in First record of Didymocentrus sanfelipensis (Scorpiones: Diplocentridae) from Turiguanó Island, Ciego de Ávila, Cuba
Figures 1–2: Figure 1. Geographic distribution of the Cuban Didymocentrus species (L. T, tYpe localities). Figure 2. D. sanfelipensis, a live female from Turiguanó Island.
Figures 3–6 in First record of Didymocentrus sanfelipensis (Scorpiones: Diplocentridae) from Turiguanó Island, Ciego de Ávila, Cuba
Figures 3–6: Figures 3–4. D. sanfelipensis, a live female from Turiguanó Island, prosoma in dorsal aspect (3) and metasoma in dorsolateral aspect (4). Figures 5–6. Female tergites of D. sanfelipensis from Turiguanó Island (5) and D. jaumei Armas, 1976, holotYpe (6).
Fig. 4 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 4. Caribesialis bifasciata (Hagen, 1861) comb. nov., male genitalia.A. Ventral view.B. Morphological interpretation of genital sclerites in A. C. Dorsal view. D. Morphological interpretation of genital sclerites in C.
Fig. 15 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 15. Paratype of Ilyobius nigrocephalus sp. nov., female genitalia. A. Lateral view. B. Morphological interpretation of genital sclerites in A. C. Ventral view. D. Morphological interpretation of genital sclerites in C.
Fig. 16 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 16. Phylogenetic relationships of the extant Sialidae (Megaloptera), after Liu et al. (2015a). A. Strict consensus of 11 most parsimonious trees (number of steps = 183, consistency index = 63, retention index = 90) recovered with New Technology Search and Tree Bisection Reconnection analysis. B. Bremer values of branch support, presented below nodes. Character changes are marked on branches, with red characters, number above, and black state, number below each circle. Unequivocal changes (black circles) and reversed or multiple changes (white circles) are shown. Taxa in green are newly inserted into the phylogenetic analysis.
Fig. 12 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 12. Holotype male of Ilyobius nigrocephalus sp. nov. A. Head, dorsal view. B. Head, dorso-frontal view. C. Fore- (above) and hindwing (below).
Fig. 13 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 13. Holotype of Ilyobius nigrocephalus sp. nov., male genitalia. A. Lateral view. B. Morphological interpretation of genital sclerites in A. C. Laterocaudal view. D. Morphological interpretation of genital sclerites in C.
Fig. 14 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 14. Holotype of Ilyobius nigrocephalus sp. nov., male genitalia. A. Dorsal view. B. Morphological interpretation of genital sclerites in A. C. Caudal view. D. Morphological interpretation of genital sclerites in C.
Fig. 9 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 9. Holotype female of Ilyobius bimaculatus (Banks, 1920). A. Head, dorsal view. B. Head, dorsofrontal view. C. Fore- (above) and hindwing (below).
Fig. 10 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 10. Holotype of Ilyobius bimaculatus (Banks, 1920), female genitalia. A. Lateroventral view. B. Lateral view. C. Morphological interpretation of genital sclerites in B. D. Ventral view.
Fig. 7 in A reappraisal of the taxonomy of Neotropical Sialidae (Insecta: Megaloptera): with the description of a new genus from Cuba
Fig. 7. Distribution of species of Sialidae (Megaloptera) studied herein. A. Distribution of Caribesialis bifasciata (Hagen, 1861) comb. nov., Ilyobius bimaculatus (Banks, 1920), and I. nigrocephalus sp. nov. B. Distribution of C. bifasciata comb. nov. in Cuba. C. Distribution of I. bimaculatus in Bolivia. D. Distribution of I. nigrocephalus sp. nov. in Ecuador.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.