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Figure 3 in A new species of Stenoptilia Hübner (Lepidoptera: Pterophoridae) associated with Neobartsia peruviana (Orobanchaceae) in the Andes of northern Chile
Figure 3 Female genitalia Stenoptilia socoromaensis Vargas & Gielis sp. nov. A) Female genitalia in ventral view. B) Ornamentation of the papillae analis. C) Ornamentation of the distal part of the antrum (indicated by closed arrow in A). D) Ornamentation of the corpus bursae (indicated by open arrow in A). E) Apex of the right signum. F) Sclerotized plate of ductus bursae. G) Basal part of the right signum. Scale bar: 0.2 mm.
Figure 5 in Butterflies of the family Pieridae (Lepidoptera: Papilionoidea) of the Frio river basin, northeastern Andes of Santander, Colombia
Figure 5. Analysis of similarity between locations in the Frio river basin, based in collected species of family Pieridae. Bray-Curtis index; single linkage; coefficient of correlation: 0.95.
Figure 4 in Butterflies of the family Pieridae (Lepidoptera: Papilionoidea) of the Frio river basin, northeastern Andes of Santander, Colombia
Figure 4. Analysis of sampling effort. S Mean: curve of randomized observed richness; Chao1 Mean: curve of potential richness obtained with the nonparametric estimator Chao 1; Clench: curve adjusted to the Clench asymptote [y= (4.83•x) / (1+0.15•x)]; standard error: 0.56; coefficient of correlation: 0.99.
Figuras 21-24 in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 21-24. Genitalia del macho de Metacrisia eckstromi Grados, sp. nov. (genitalia # JGA 682, MUSM). 21-23. Vistas dorsal, ventral y lateral. 24. Aedeagus. Escala: 1 mm.
Figuras 19-20 in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 19-20. Metacrisia eckstromi Grados, sp. nov. Holotipo macho, vistas dorsal y ventral. Escala: 5 mm.
Figuras 1-4 in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 1-4. Metacrisia courregesi courregesi (Dognin). 1-2. Macho, vistas dorsal y ventral (Bosque de Cachil). 3-4. Hembra, vistas dorsal y ventral (Bosque de Cachil). Escala: 5 mm.
Figuras 9-14. Metacrisia courregesi mutabilis Grados, ssp. nov. 9-10. Holotipo macho, vistas dorsal y ventral. 11-12. Paratipo macho, vistas dorsal y ventral. 13-14. Paratipo macho, vistas dorsal y in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 9-14. Metacrisia courregesi mutabilis Grados, ssp. nov. 9-10. Holotipo macho, vistas dorsal y ventral. 11-12. Paratipo macho, vistas dorsal y ventral. 13-14. Paratipo macho, vistas dorsal y ventral. Escala: 5 mm.
Figuras 15-18. Metacrisia courregesi mutabilis Grados ssp. nov. 15-16. Paratipo hembra, vistas dorsal y ventral. 17-18. Paratipo hembra, vistas dorsal y in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 15-18. Metacrisia courregesi mutabilis Grados ssp. nov. 15-16. Paratipo hembra, vistas dorsal y ventral. 17-18. Paratipo hembra, vistas dorsal y ventral. Escala: 5 mm.
Figuras 5-8 in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 5-8. Genital del macho de Metacrisia courregesi courregesi (Dognin). (genitalia # JGA 426, MUSM). 5-7. Vistas dorsal, ventral y lateral. 8. Aedeagus. Escala: 1 mm.
Figs. 1–2 in First high-altitude record of Bucculatrix mirnae Vargas and Moreira (Lepidoptera, Bucculatricidae) on a newly documented host plant: the importance of host plant distribution for conservation on the western slopes of the Andes mountains of northern Chile
Figs. 1–2. The habitats of Bucculatrix mirnae in the arid northern Chile. (1) The lowland Azapa Valley (type locality) located in the coastal Atacama Desert close sea level. (2) The highland neighborhood of Putre village at about 3500 m elevation on the western slopes of the Andes.
Figure 3. Daily temperature variation for a in On the oviposition of Homonota aff. darwinii in the Puna region of the Central Andes of Argentina
Figure 3. Daily temperature variation for a potential Homonota aff. darwinii nesting site. Average and standard errors are indicated.
Figure 1. Species and study area. A in On the oviposition of Homonota aff. darwinii in the Puna region of the Central Andes of Argentina
Figure 1. Species and study area. A) Homonota aff. darwinii adult in the Cordillera Frontal of the province of San Juan, Argentina. B) General view of the environment in which Homonota aff darwinii exists in the Puna region of the Central Andes of Argentina.
Fig. 3 in Advertisement calls of six glassfrog species in the Colombian Andes, and comments on priorities for future research and conservation
Fig. 3. Counts of glassfrog species for those with and without the call described, and categorized by: (A) IUCN conservation status categories; (B) Endemism or distribution range (see details in Materials and Methods); and (C) Occurrence in National Protected Areas.
Fig. 2 in Advertisement calls of six glassfrog species in the Colombian Andes, and comments on priorities for future research and conservation
Fig. 2. Spectrograms (top) and oscillograms (bottom) of the described glassfrogs advertisement calls. All calls are displayed at Blackman window (length = 512) and 80% overlap, at the same frequency range, and all but S. punctulata and C. huilensis are displayed at the same temporal scale.
Fig. 1 in Advertisement calls of six glassfrog species in the Colombian Andes, and comments on priorities for future research and conservation
Fig. 1. Fieldwork localities in the Central and Eastern Cordilleras where the advertisement calls were obtained.
Fig. 3 in Call survey indicates rainbow trout farming alters glassfrog community composition in the Andes of Ecuador
Fig. 3. Map of the study area. Inset: Pichincha Province, Ecuador. Main: Blue points indicate non-trout farm sites whereas red points indicate trout farm sites. Yellow line represents the equator (latitude 0).
Fig. 2 in Call survey indicates rainbow trout farming alters glassfrog community composition in the Andes of Ecuador
Fig. 2. Glassfrog species found during surveys. (A) Centrolene heloderma, (B) Centrolene ballux, (C) Esparana prosoblepon, (D) Nymphargus lasgralarias, (E) Centrolene peristictum, (F) Nymphargus grandisonae, (G) Centrolene lynchi, (H) Egg mass from C. ballux. Nymphargus griffithsi was not encountered during the 2017 survey but has been documented at Kathy's creek in 2012 and 2013 (by Jane A. Lyons). Photographs by Dana G. Wessels (A–F) and Timothy J. Krynak (G–H).
Fig. 1 in Call survey indicates rainbow trout farming alters glassfrog community composition in the Andes of Ecuador
Fig. 1. Trout farming in the Mindo region of Ecuador utilizes a flow-through aquaculture technique. Stream water is diverted into tandem raceways/holding reservoirs and then flows through these reservoirs back into the natural stream system. This figure displays a panoramic view of Finca de Jaime's (FJ) set-up. Photograph by Katherine L. Krynak.
Fig. 4 in Call survey indicates rainbow trout farming alters glassfrog community composition in the Andes of Ecuador
Fig. 4. Two-dimensional NMDS ordination of survey sites and glassfrog species based upon presence of frogs audibly documented in 2017 survey conducted in the Mindo region of Ecuador (Stress = 3%). Red points and labels represent glassfrog species; grey points represent trout farms; and black points represent non-trout farms. RSR = Río Santa Rosa, LC = Lucy's Creek, Bcrk = Ballux Creek, KC = Kathy's Creek, M = Michelle's, C = tributary of the Chalguayacu Grande River, 5F = Five Frog Creek, LRSR = Lower Río Santa Rosa, ST = Santa Teresita, FJ = Finca de Jaime, LS = La Sierra, VC = Verdecocha, EP = El Paraíso del Pescador. Trout farms EP, LS, and VC are not included in the analysis because glassfrogs were not observed at these sites. A significant difference in glassfrog community composition between trout farm and non-trout farm sites was indicated by MRPP (delta = 0.59, A = 0.11, P = 0.03). NMDS1 correlated with elevation; NMDS2 correlated with: percent canopy openness, dissolved oxygen (mg/L), total dissolved solids (mg/L), and conductivity (µS).
Fig. 6 in A new elusive species of Petracola (Squamata: Gymnophthalmidae) from the Utcubamba basin in the Andes of northern Peru
Fig. 6. Ventral view of waist of Petracola labioocularis (paratype, SMF 80113) showing the precloacal and femoral pores. Scale bar = 1 mm. Photograph by G. Köhler.
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.