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2,006 results for “andes”
Figs 45–50 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 45–50. Dyscolus spp., habitus (45–47) and aedeagus, median lobe in lateral view (48–50). 45. D. denigratus (Bates, 1891), male specimen from Guamaní. 46. D. denigratus, male specimen from Guagua Pichincha (type locality). 47. D. palatus Moret, 1998, male paratype from Atacazo. 48– 50. D. denigratus. 48. From Guamaní. 49. From Cotacachi. 50. From Guagua Pichincha.
Figs 36–41 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 36–41. Dyscolus spp., habitus (36–38) and aedeagus, median lobe in lateral view (39–40) and apex of the median lobe (41). 36. Dyscolus arauzae Moret sp. nov., male holotype (QCAZ). 37. D. piscator Moret sp. nov., male holotype (QACZ). 38. D. placitus Moret sp. nov., male holotype (MNHN). 39. D. arauzae Moret sp. nov. 40. D. piscator Moret sp. nov. 41. D. placitus Moret sp. nov. (above) and D. piscator Moret sp. nov. (below).
Figs 52–53 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 52–53. Dyscolus silvestris Moret sp. nov., male holotype (QCAZ). 52. Habitus. 53. Male aedeagus, median lobe in lateral view.
Figs 13–14 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 13–14. Dyscolus globoculus Moret sp. nov. 13. Habitus of the male holotype (MNHN, COI voucher CR064). 14. Aedeagus, median lobe in lateral view.
Figs 7–12. 7–8 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 7–12. 7–8. Dyscolus aquator Moret sp. nov. 7. Habitus of the male holotype (QCAZ). 8. Aedeagus, median lobe in lateral view. 9–10. D. incommunis Moret sp. nov. 9. Aedeagus, median lobe in lateral view. 10. Habitus of the male holotype (QCAZ). 11–12. D. rivinus Moret sp. nov. 11. Apex of the elytra. 12. Aedeagus, median lobe in lateral view.
Figs 3–6. 3–4 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 3–6. 3–4. Dyscolus eleonorae Moret sp. nov. 3. Habitus of the male holotype (QCAZ). 4. Aedeagus, median lobe in lateral view. 5–6. D. giselae Moret sp. nov. 5. Habitus of the male holotype (QCAZ). 6. Aedeagus, median lobe in lateral view.
Figs 15–18. 15–16 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 15–18. 15–16. Dyscolus donosoi Moret sp. nov. 15. Habitus of the female holotype (QCAZ, COI voucher PM402-02). 16. Aedeagus, median lobe in lateral and ventral view. 17–18. D. danglesi Moret sp. nov. 17. Habitus of the male holotype (MNHN, COI voucher PM170-01). 18. Aedeagus, median lobe in lateral view.
Figs 42–44. 42 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 42–44. 42. Dyscolus gobbii Moret sp. nov., habitus of the female holotype (QACZ, COI voucher PM210-16). 43–44. D. barragani Moret sp. nov. 43. Habitus of the male paratype (CPM, COI voucher PM417-02). 44. Aedeagus, median lobe in lateral view.
Figs 25–28. 25–26 in Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Figs 25–28. 25–26. Dyscolus arborarius Moret sp. nov. 25. Habitus of the male holotype (MNHN, COI voucher PM170-02). 26. Aedeagus, median lobe in lateral view. 27–28. D. famelicus Moret sp. nov. 27. Habitus of a female paratype (CPM). 28. Aedeagus, median lobe in lateral view.
Figure 1 in Description of the biology and immature stages of Pagyris ulla (Hewitson) (Lepidoptera: Nymphalidae: Ithomiini) in the Colombian Andes
Figure 1. Stages of Pagyris ulla. (A) Egg, (B) first instar, (C) second instar, (D) third instar, (E) fourth instar, (F) fifth instar, (G, H) pupa, (I) male: 1 – dorsal and 2 – ventral, (J) female: 1 – dorsal and 2 – ventral.
SKiYMET Meteor Radar Horizontal Wind at Andes Lidar Observatory 2009-2014
<p>This is horizontal wind measured by a SKiYMET Meteor Radar near Andes Lidar Observatory in Cerro Pachón, Chile (30.05 S, 70.82 W) from Sep 2009 to Aug 2014. The radar was previously installed at Maui, Hawaii and is described in the paper</p> <p>Franke, S. J., X. Chu, A. Z. Liu, W. K. Hocking (2005), Comparison of meteor radar and Na Doppler lidar measurements of winds in the mesopause region above Maui, Hawaii, <em>J. Geophys. Res.</em>, <em>110</em>, D09S02, doi:10.1029/2003JD004486.</p> <p>The data is in NetCDF format, at 1 hr and 2 km resolution from 80 to 100 km altitude. Time is in UT. Both time and altitude refer to the center of the 1 hr bin. Wind rms errors and numbers of meteor detections used for wind retrieval are also inicluded.</p> <p> </p>
FIG. 3 in A model for llama (Lama glama Linnaeus, 1758) domestication in the southern Andes
FIG. 3. — Representation of regional archaofaunas (% NISP), and time-trends for Camelidae, and Chinchillidae. Camelids increase over time, meanwhile the other animal resources diminishes.
Fig. 2 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 2. Maximum likelihood tree of DNA barcode haplotypes of Helioandesia tarregai gen. et sp. nov. and other genera of Heliodinidae. Sequences of Bedellia somnulentella (Zeller, 1847) (Bedelliidae Meyrick, 1880) and Scythropia crataegella (Linnaeus, 1767) (Scythropiidae Friese, 1966) were included as outgroups. Numbers indicate bootstrap percentages (1000 replicates).
Fig. 6 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 6. Female genitalia of Helioandesia tarregai gen. et sp. nov., ♀, paratype (IDEA-LEPI-2020-024) A. Female genitalia, ventral view. B. Papillae analis. C. Ornamentation of the proximal part of the signum. D. Ornamentation of the distal part of the signum. Scale bar: 0.1 mm.
Fig. 8 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 8. Geographic distribution of three Neotropical Heliodinidae. Red rectangle on left indicates the location in South America of the area enlarged on right. Circle = type locality of Helioandesia tarregai gen. et sp. nov. in northern Chile. Triangles = distribution of Aetole demarcha (Meyrick, 1917), the geographically nearest heliodinid species to H. tarregai gen. et sp. nov. on the western slopes of the Andes, in Peru. Square = type locality of Lithariapteryx loriculata (Meyrick, 1932) on the eastern slopes of the Andes of Bolivia, the morphologically nearest species to H. tarregai gen. et sp. nov.
Fig. 7 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 7. Habitat and host plant of Helioandesia tarregai gen. et sp. nov. A. The type locality near Zapahuira Village at about 3400 m elevation on the western slopes of the Andes of the Parinacota Province, northern Chile. B. The host plant Mirabilis acuta (Reiche) Heimerl (Nyctaginaceae). C. Detail of the damage pattern on a leaf of the host. D. Flower of M. acuta.
Fig. 1 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 1. Strict consensus (85 steps, consistency index 52, retention index 75) of the four most parsimonious trees, showing the phylogenetic relationships of Helioandesia tarregai gen. et sp. nov. (rectangle) based on the data matrix provided by Hsu & Powell (2004). Only unambiguous changes are shown. Outgroups not shown.
Fig. 4 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 4. Helioandesia tarregai gen. et sp. nov., ♀, paratype (IDEA-LEPI-2020-024), wing venation showing frenulum with two bristles of unequal length. Scale bar: 1 mm.
Fig. 5 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 5. Male genitalia and eighth segment of Helioandesia tarregai gen. et sp. nov., ♂, paratype (IDEA- LEPI-2020-021). A. Male genitalia, ventral view, phallus removed. B. Phallus, lateral view. C. Tergum and pleural lobes of eighth segment. D. Socius, closed arrow in A. E. Small spine-like cornuti on the vesica, open arrow in A. F. Medial part of the cornutus. G. Coremata between pleural lobes of segment VIII and genitalia. Scale bars: 0.1 mm.
Fig. 3 in Systematics of Helioandesia tarregai gen. et sp. nov. (Lepidoptera: Yponomeutoidea: Heliodinidae) from the Andes of Northern Chile
Fig. 3. Helioandesia tarregai gen. et sp. nov., ♂, holotype (IDEA-LEPI-2020-015). A. Dorsal view. B. Head, lateral. C. Basal flagellomeres of right antenna. D. Three bulging metallic spots on the basal half of forewing. E. Hair pencil from base of subcosta, ventral. Scale bar: 1 mm.
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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.