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2,006 results for “andes”
Fig. 4 in A new elusive species of Petracola (Squamata: Gymnophthalmidae) from the Utcubamba basin in the Andes of northern Peru
Fig. 4. Distribution map of species of Petracola. Petracola angustisoma sp. nov. (blue square), P. ventrimaculata (black triangles), P. labioocularis (red pentagon), P. waka (green circles).
Fig. 5 in A new elusive species of Petracola (Squamata: Gymnophthalmidae) from the Utcubamba basin in the Andes of northern Peru
Fig. 5. Close-up of the heads of Petracola angustisoma sp. nov. (A), P. labioocularis (SMF 80113) (B), and P. ventrimaculata (CORBIDI 03630) (C), showing the anteriormost superciliary (red arrows) and supraoculars (blue arrows). Scale bar = 1 mm. Photographs by D. Quirola, G. Köhler, and J.C. Chavez, re- spectively.
Fig. 2 in A new elusive species of Petracola (Squamata: Gymnophthalmidae) from the Utcubamba basin in the Andes of northern Peru
Fig. 2. Dorsal (A), lateral (B), and ventral (C) views of the head of Petracola angustisoma sp. nov. Holotype, CORBIDI 00467, male. Photographs by D. Quirola.
Fig. 3 in A new elusive species of Petracola (Squamata: Gymnophthalmidae) from the Utcubamba basin in the Andes of northern Peru
Fig. 3. Two species of Petracola in life. Holotype of P. angustisoma sp. nov. (A), and adult male of P. ventrimaculata (COR- BIDI 03630) from Laguna Norte, Cajamarca (B). Photographs by P.J. Venegas.
Fig. 1 in A new elusive species of Petracola (Squamata: Gymnophthalmidae) from the Utcubamba basin in the Andes of northern Peru
Fig. 1. Petracola angustisoma sp. nov., holotype CORBIDI 00467, male, 43.6 mm SVL. Dorsal (upper) and ventral (bot- tom) views. Photographs by D. Quirola.
Fig. 5. A in Two new species of frogs of the genus Phrynopus (Anura: Terrarana: Craugastoridae) from the Peruvian Andes
Fig. 5. A) Habitat of the type locality of Phrynopus valquii sp. nov.; B) Microhabitat of Phrynopus valquii sp. nov.; C) Habitat of the type locality of Phrynopus daemon sp. nov.; D) Microhabitat of Phrynopus daemon sp. nov. Photographs: A–B by Germán Chávez and C–D by Roy Santa-Cruz.
Fig. 3 in Two new species of frogs of the genus Phrynopus (Anura: Terrarana: Craugastoridae) from the Peruvian Andes
Fig. 3. Distribution of Phrynopus valquii sp. nov. (green circles) and Phrynopus daemon sp. nov. (red circles). Map by Ca- terina H. Cosmopolis.
Fig. 4 in Two new species of frogs of the genus Phrynopus (Anura: Terrarana: Craugastoridae) from the Peruvian Andes
Fig. 4. Dorsal (left) and ventral (right) views of the type series of Phrynopus daemon sp. nov.: A–B) Holotype (CORBIDI 15364, adult female, SVL = 24.3 mm); C–D) Female paratype (MUSA 4916, adult female, SVL = 21.4 mm); E–F) Male paratype (MUSM 32747, SVL = 21.7). Photographs: A–D by Roy Santa-Cruz and E–F by Daniel Rodriguez.
Fig. 2 in Two new species of frogs of the genus Phrynopus (Anura: Terrarana: Craugastoridae) from the Peruvian Andes
Fig. 2. Ventral view of: A) right hand of the holotype of Phrynopus valquii; B) right foot of the holotype of Phrynopus valquii; C) right hand of the holotype of Phrynopus daemon; D) right foot of the holotype of Phrynopus daemon. Photographs by Germán Chávez.
Fig. 1 in Two new species of frogs of the genus Phrynopus (Anura: Terrarana: Craugastoridae) from the Peruvian Andes
Fig. 1. Dorsal (left) and ventral (right) views of specimens of the type series of Phrynopus valquii sp. nov.: A–B) Holotype (COR- BIDI 14005, adult female, SVL = 31.2 mm); C–D) Paratype (CORBIDI 14007, adult female, SVL = 28.07 mm); E–F (CORBIDI 13993, adult male, SVL = 25.2 mm). Photographs by Germán Chávez.
Fig. 1 in Infestation, histology, and molecular confirmation of Sarcoptes scabiei in an Andean porcupine (Coendou quichua) from the Central Andes of Colombia
Fig. 1. Coendou quichua with macroscopic lesions corresponding to hyperkeratosis and alopecia, which extend ventrally from the chest to the inguinal region and base of the tail, hyperkeratosis is also observed in the mandible and the fore and hind limbs up to the carpal and tarsal joints (A, B). Histopathological microphotographs of mangy skin of C. quichua, with the presence of tunnels with (black arrow heads) and without (white arrow heads) mites (Sarcoptes scabiei) in the stratum corneum (C) and skin with predominance of hyperkeratosis (hyp) and acanthosis (ac) (D). Light micrographs of: S. scabiei eggs (E). Dorsal view of a female with the presence of robust dorsal setae (ds), numerous and conspicuous triangular cuticular spines (cs) on its dorsal surface (F). Ventral view of a female with the presence of the legs short, with legs I and II bear a stalked empodium (e) that terminate in a broad pad, and the two hind pairs of legs (III and IV) terminate in long setae or bristles (s) (G). Ventral view of a male with the legs I, II and III bear a stalked empodium (e) that terminate in a broad pad and the last pair (IV) of legs terminate in long setae (s) (H). ch (chelicerae), p (pedipalps).
Fig. 2 in Infestation, histology, and molecular confirmation of Sarcoptes scabiei in an Andean porcupine (Coendou quichua) from the Central Andes of Colombia
Fig. 2. Histological microphotographs of the development of the mite S. scabiei in the skin of the porcupine C. quichua. Permanent burrows dug by fertilized adult females, with the presence of a developing egg and the shell of another hatched egg (A, B). Burrows with the presence of three eggshells (sh) and feces (fe), where between two and three eggs are laid daily (C). Developing eggs within burrows in the stratum corneum of the skin, which hatch approximately 3–4 days after oviposition (D–F). Developing larvae in the superficial layer of the skin (G, H). Nymph burrowing just below the skin surface to moult into an adult in 3–4 days (I). Side-axial view of an adult female specimen of S. scabiei in a tunnel in the superficial epidermis. The mites have a short and broad gnathosoma (gn), globose idiosoma, short and conical legs I and II, with a delicate chitinous coating (le). Structures associated with the female reproductive system, spermatheca (sp), ovarian nutrient cell (ONC) located inside the ovary (ov), vitellogenic oocyte (oc) in the oviduct (ovd), as well as chorional gland (chg) close to oviporus (op) are visible (J).
Fig 4. Capsicum longifolium Barboza & S in Four new species of Capsicum (Solanaceae) from the tropical Andes and an update on the phylogeny of the genus
Fig 4. Capsicum longifolium Barboza & S. Leiva. (A) Plant. (B) Internode with lenticels. (C, D) Flower buds. (E) Flower, longitudinal section. (F) Flowers showing corolla yellow with brownish center. (G) Same flower as in F, lateral view. (H, I) Flowers with completely yellow corollas, upper and lateral view, respectively. (J, K) Flowers with yellow corollas with red-brown edges, upper and lateral view, respectively. (L, M) Immature fruits. (N) Mature fruit. Photos by S. Leiva González and G. E. Barboza.
Fig 3. Capsicum longifolium Barboza & S in Four new species of Capsicum (Solanaceae) from the tropical Andes and an update on the phylogeny of the genus
Fig 3. Capsicum longifolium Barboza & S. Leiva. (A) Flowering and fruiting branch. (B) Flower. (C) Opened corolla. (D, E, F) Anther, ventral, lateral and dorsal view, respectively. (G) Gynoecium. (H) Ovary in cross section. (I) Fruit. (J) Seed. Drawn by S. Leiva González.
Fig 1 in Four new species of Capsicum (Solanaceae) from the tropical Andes and an update on the phylogeny of the genus
Fig 1. Capsicum benoistii Hunz. ex Barboza. (A) Flowering branch. (B) Flower. (C) Calyx. (D) Section of the calyx showing venation in tube and appendages. (E) Trichome of the calyx. (F) Opened corolla. (G, H) Gynoecium, with long and short style, respectively. Drawn by N. de Flury.
Fig 7. Capsicum piuranum Barboza & S in Four new species of Capsicum (Solanaceae) from the tropical Andes and an update on the phylogeny of the genus
Fig 7. Capsicum piuranum Barboza & S. Leiva. (A) Flowering branch. (B) Calyx. (C) Flower. (D) Opened corolla. (E, F, G). Anther, ventral, dorsal and lateral view, respectively. (H) Gynoecium. (I) Fruit. (J) Seed. Drawn by S. Leiva González.
Figures 1–3 in Incasarus garciai, a new genus and species of panurgine bees from the Peruvian Andes (Hymenoptera: Andrenidae)
Figures 1–3. Male of Liphanthus (Neoliphanthus) bicellularis Ruz & Toro. 1. Dorsal habitus. 2. Lateral habitus. 3. Facial view.
Figures 4–10 in Incasarus garciai, a new genus and species of panurgine bees from the Peruvian Andes (Hymenoptera: Andrenidae)
Figures 4–10. Male holotype of Incasarus garciai, new species. 4. Dorsal habitus. 5. Lateral habitus. 6. Facial view. 7. Detail of mandible in profile. 8. Detail of vertex and mesosoma in dorsal view. 9. Detail of metasoma. 10. Metabasitibial plate.
Figures 11–20 in Incasarus garciai, a new genus and species of panurgine bees from the Peruvian Andes (Hymenoptera: Andrenidae)
Figures 11–20. Male holotype of Incasarus garciai, new species. 11. Detail of seventh metasomal tergum. 12. Fourth sternum. 13. Fifth sternum. 14. Sixth sternum. 15. Seventh sternum. 16, 17. Eighth sternum in ventral view and profile. 18‒20. Genital capsule in dorsal, ventral view, and profile.
Fig. 7 in A new species of Pholidobolus (Squamata: Gymnophthalmidae) from the Andes of southern Ecuador
Fig. 7. Distribution of Pholidobolus in Ecuador. P. affinis (white circles); P. macbrydei (blue circles); P. montium (green circles); P. prefrontalis (orange circles); P. hillisi sp. nov (red circle).
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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.