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262 results for “Ecuadorian”
FIGURE 2 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 2. Close up of mouth and buccal disk for: a) Panaqolus orcesi, MEPN 19492, 180.6 mm SL, holotype; and b) P. pantostiktos, MEPN 19495, 163.4 mm SL, holotype. Photos by F.P-R.
FIGURE 5 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 5. Comparisons of diagnostic differences versus SL in: a) mid-lateral dot sizes (based on averages for 10 of the largest dots below dorsal fin), and b) pectoral-fin dot counts (based on average of counts for both pectoral fins of each specimen). Probability that allometric relationships for the two species are the same is indicated in each panel based on analysis of covariance.
FIGURE 4 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 4. Comparisons of diagnostic relationships between the two new Panaqolus spp. for selected morphometric variables. Probability that allometric relationships for the two species are the same is indicated in each panel based on analysis of covariance.
FIGURE 3 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 3. Dorsal view of color patterns in specimens soon after capture for: a) Panaqolus orcesi, with cream-colored dots, and b) Panaqolus pantostiktos, with yellow- or gold-colored dots. Photos by R.B-S.
FIGURE 7 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 7. Map of Ecuador and adjacent areas showing capture localities for Panaqolus orcesi red circles and red star (type locality), and for Panaqolus pantostiktos red rhombus (type locality).
FIGURES 25–32 in An integrative description of a new tardigrade species Mesobiotus romani sp. nov. (Macrobiotidae: harmsworthi group) from the Ecuadorian Pacific coast
FIGURES 25–32. Mesobiotus romani sp. nov.: 25–28—egg processes morphology seen in PCM; filled arrowheads indicate large bubble-mesh on the top of the processes; 29–32—egg processes morphology seen in SEM. Scale bars in micrometres [µm].
FIGURES 4–9 in An integrative description of a new tardigrade species Mesobiotus romani sp. nov. (Macrobiotidae: harmsworthi group) from the Ecuadorian Pacific coast
FIGURES 4–9. Mesobiotus romani sp. nov.: 4—granulation on leg III seen in PCM (holotype, arrow); 5—granulation on leg II seen in SEM (paratype); 6—a closer look at leg III granulation shows aggregations of microgranules (SEM, paratype); 7— granulation on leg IV seen in PCM (holotype, arrow); 8—granulation on leg IV seen in SEM (paratype); 9—a closer look at leg IV granulation shows aggregations of microgranules (SEM, paratype). Scale bars in micrometres [µm].
FIGURES 19–24 in An integrative description of a new tardigrade species Mesobiotus romani sp. nov. (Macrobiotidae: harmsworthi group) from the Ecuadorian Pacific coast
FIGURES 19–24. Mesobiotus romani sp. nov.: eggs: 19–20—chorion (PCM and SEM, respectively); 21–22—the surface between egg processes visible in PCM; arrows indicate concavities between ribs at the base of the processes; 23–24—the surface between egg processes visible in SEM; filled arrowheads indicate pores at the base of processes, arrows indicate concavities between ribs at the base of the processes. Scale bars in micrometres [µm].
FIGURES 15–18 in An integrative description of a new tardigrade species Mesobiotus romani sp. nov. (Macrobiotidae: harmsworthi group) from the Ecuadorian Pacific coast
FIGURES 15–18. Mesobiotus romani sp. nov.: 15—claws III with smooth lunules (PCM, holotype); arrow indicates cuticular bar under claws; 16—claws I seen in SEM (paratype); 17—claws IV with indented lunules (PCM, holotype); 18—claws IV with indented lunules seen in SEM (paratype). Scale bars in micrometres [µm].
FIGURES 1–3 in An integrative description of a new tardigrade species Mesobiotus romani sp. nov. (Macrobiotidae: harmsworthi group) from the Ecuadorian Pacific coast
FIGURES 1–3. Mesobiotus romani sp. nov.: habitus: 1—dorso-ventral projection of the entire animal (holotype, PCM); 2—a juvenile hatching from the egg (paratype, PCM); 3—entire animal seen in SEM (paratype). Scale bars in micrometres [µm].
FIGURES 10–14 in An integrative description of a new tardigrade species Mesobiotus romani sp. nov. (Macrobiotidae: harmsworthi group) from the Ecuadorian Pacific coast
FIGURES 10–14. Mesobiotus romani sp. nov.: bucco-pharyngeal apparatus (dorso–ventral projection): 10—general view (PCM, holotype); 11–13—oral cavity armature (PCM); the filled arrowhead indicates teeth of the first band, arrow indicates teeth of the second band, the indented filled arrowhead indicates dorsal teeth of the third band and empty arrowhead indicates ventral teeth of the third band; 14—ventral placoids; the filled arrowhead indicates a subterminal constriction (PCM, paratype). Scale bars in micrometres [µm].
FIGURES 5 A–C in Two new Oxytrechus species from Ecuadorian páramo (Coleoptera, Carabidae, Trechinae)
FIGURES 5 A–C. Aedeagus of the holotype of Oxytrechus cayambeensis n. sp.—Left lateral view (A);—Ventral view (B);— Dorsal view (C); Scale bar: 300 µm.
FIGURE 1 in Two new Oxytrechus species from Ecuadorian páramo (Coleoptera, Carabidae, Trechinae)
FIGURE 1. Superpáramo environment located on the north-eastern slope of the Chimborazo volcano, around 4300 m (Ecuador, Chimborazo Province). Oxytrechus chioriae n. sp. was extracted by Winkler extractor from soil litter in a patchy distributed Polylepis sp. woodland (Photo E. Quéinnec).
FIGURE 2 in Two new Oxytrechus species from Ecuadorian páramo (Coleoptera, Carabidae, Trechinae)
FIGURE 2. Habitus of Oxytrechus chioriae n. sp., from the east side of the Chimborazo volcano, Ecuadorian páramo (Holotype).
FIGURES 3 A–C in Two new Oxytrechus species from Ecuadorian páramo (Coleoptera, Carabidae, Trechinae)
FIGURES 3 A–C. Aedeagus of the holotype of Oxytrechus chioriae n. sp.—Left lateral view (A); —Ventral view (B); —Dorsal view (C); Scale bar: 300 µm.
FIGURE 4 in Two new Oxytrechus species from Ecuadorian páramo (Coleoptera, Carabidae, Trechinae)
FIGURE 4. Habitus of Oxytrechus cayambeensis n. sp. from the western slopes of the Cayambe volcano, Ecuadorian páramo (Holotype).
FIGURE 2. Senecio eliseae. A. Capitulum. B. Involucre. C in Senecio eliseae (Compositae, Senecioneae), a new species from the southern Ecuadorian Andes
FIGURE 2. Senecio eliseae. A. Capitulum. B. Involucre. C. Abaxial face of the leaf. D. Adaxial face of the leaf. E. Detail of the truncate style branches. F. Detail of the rhizomes. Plant from the type locality.
FIGURE 1. A–B. Senecio eliseae. A. Habit. B. Synflorescence. Plant from the type locality. C in Senecio eliseae (Compositae, Senecioneae), a new species from the southern Ecuadorian Andes
FIGURE 1. A–B. Senecio eliseae. A. Habit. B. Synflorescence. Plant from the type locality. C. Senecio hastatifolius. Detail of the involucral bracts. Isotype (LP-000511). D–E. Senecio tephrosioides. D. Habit. E. Synflorescence. Plant photographed at laguna El Voladero (El Ángel, Carchi) (not collected).
FIGURE 3. Magnolia vargasiana. Flowering timing. A in Magnolia vargasiana (Magnoliaceae), a new Andean species and a key to Ecuadorian species of subsection Talauma, with notes on its pollination biology
FIGURE 3. Magnolia vargasiana. Flowering timing. A. Day zero (0D, female phase), 16:49 hrs. B. 0D 17:16 hrs. C. 0D 17:28 hrs. D. 0D, 18:00–19:58 hrs. E. Flea beetle, orange brownish (Tribe Alticini, Chrysomelidae). F. 0D 21:04 hrs. G. Day one (1D, male phase) 4:23 hrs. H. 1D, ca. 9:13 hrs. I. 1D, 14.05 hrs J. 1D, 14:25 hrs. K. Flea beetle, bright green. L: 1D, 14:55 hrs. M. 1D, 18:27 hrs. N. 1D, 18:27 hrs. (side view). O. 2D, 2:43–6.19 hrs. (Photographs: A–D, F–G, & M–O by Antonio Vázquez, from Vázquez-García et al. 10131; E & I–K by Lou Jost, basaed on Merino s.n., ECUAMZ, IBUG; and H by Efrén Merino, based on Merino-Santi s.n., ECUAMZ, IBUG).
FIGURE 2. Magnolia vargasiana A in Magnolia vargasiana (Magnoliaceae), a new Andean species and a key to Ecuadorian species of subsection Talauma, with notes on its pollination biology
FIGURE 2. Magnolia vargasiana A. Yajaira Malucín, student at Universidad Estatal Amazónica, holding a flower bud, with sepals all the way down in day one (male phase) at 9:16 hrs, where flea beetles had just overnighted and are about to leave the flower in the afternoon. With dense "bosque siempreverde montano" in the background. B. Foliage. C. Detaching stipule. D. Branch with flower bud including second hypsophyll. E. First hypsophyll. F. Flower bud in day 0 (0D, female phase), without hypsophylls. G. Flea beetles (Tribe Alticini, Chrysomelidae) covered with pollen. (Photographs: B, C & E by Fausto Recalde, from the holotype; A, D, F & G by Lou Jost, from Merino-Santi et al. s.n., ECUAMZ, IBUG).
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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.