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FIGURE 10. Leptolalax bourreti, MNHN 1938.0094 in Sorting out Lalos: description of new species and additional taxonomic data on megophryid frogs from northern Indochina (genus Leptolalax, Megophryidae, Anura) 3147
FIGURE 10. Leptolalax bourreti, MNHN 1938.0094, holophoront, subadult male, SVL 36.2 mm. (A) Dorsal and (B) ventral view.
FIGURE 34. Leptolalax minimus form 2, THNHM 07417 in Sorting out Lalos: description of new species and additional taxonomic data on megophryid frogs from northern Indochina (genus Leptolalax, Megophryidae, Anura) 3147
FIGURE 34. Leptolalax minimus form 2, THNHM 07417, reference specimen, adult male, SVL 25.6 mm. (A) Dorsal and (B) ventral view.
FIGURE 31. Leptolalax minimus, MNHN 2006.2553 in Sorting out Lalos: description of new species and additional taxonomic data on megophryid frogs from northern Indochina (genus Leptolalax, Megophryidae, Anura) 3147
FIGURE 31. Leptolalax minimus, MNHN 2006.2553, adult male. (A) Lateral view of head, ventral view of (B) right foot and of (C) right hand. Scale bar = 5 mm (3 + 2 mm).
FIGURE 4 in A new species of Hemiphyllodactylus (Reptilia: Gekkonidae) from northern Vietnam
FIGURE 4. Type-locality (marked '1') of Hemiphyllodactylus zugi sp. nov. in Cao Bang Province, Vietnam.
FIGURE 2 in A new species of Hemiphyllodactylus (Reptilia: Gekkonidae) from northern Vietnam
FIGURE 2. Latero-dorsal view of the male holotype of Hemiphyllodactylus zugi sp. nov. (IEBR A.2013.20) (A) and the female paratype (ZFMK 94782) from Cao Bang Province, Vietnam. Photos by T. Q. Nguyen and T. Lehmann.
FIGURE 1 in A new species of Hemiphyllodactylus (Reptilia: Gekkonidae) from northern Vietnam
FIGURE 1. One of the two most parsimonious maximum parsimony trees based on the partial ND2 gene. Numbers above and below branches are bootstrap values (>50%) and Bayesian posterior probabilities, respectively. The blue arrow and number indicate the sister relationship between two taxa and the posterior probability supported by the Bayesian analysis, respectively.
FIGURE 14 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 14. Dorsal fin origin in reference to anal fin origin for Fundulus similis (A) and Fundulus jenkinsi (B).
FIGURE 12 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 12. Dorsal fin origin in reference to anal fin origin for Adinia xenica (A) and Fundulus grandis (B).
FIGURE 13. The 3–5 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 13. The 3–5 rows of large, stellate melanophores on the mid-dorsal area of Fundulus similis (A) and the line of smaller melanophores on the mid-dorsal are of Fundulus jenkinsi (B).
FIGURE 11 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 11. Mid-lateral external pigment of Adinia xenica (A) and Fundulus grandis (B) denoted by arrows.
FIGURE 15 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 15. Melanophores forming an X or sideways hour glass between the anterior half of eyes of Fundulus jenkinsi as denoted by oval.
FIGURE 8 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 8. Various stages (TL) of Fundulus similis development. Arrows indicate mid-lateral pigment, 3–5 rows of large large, stellate melanophores extending from head to dorsal fin origin; and largest size where internal pigment around spine is visible. Size class one (0–6.99 mm TL), size class two (7–9.99 mm), size class three (10–11.99 mm), and size class four (12–15 mm).
FIGURE 9 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 9. The five branchiostegal rays of Fundulus grandis (A) and the six branchiostegal rays of Fundulus similis (B).
FIGURE 10 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 10. Internal hypaxial pigment in all other Fundulus (A) compared to internal hypaxial pigment of Fundulus pulvereus (B).
FIGURE 7 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 7. Various stages (TL) of Fundulus pulvereus development. Arrows note interior hypaxial muscle pigment. Size class one (0–6.99 mm TL), size class two (7–9.99 mm), size class three (10–11.99 mm), and size class four (12–15 mm).
FIGURE 4 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 4. Various stages (TL) of Adinia xenica development. Arrows note mid-lateral pigment and largest size where internal pigment around spine is visible. Size class one (0–6.99 mm TL), size class two (7–9.99 mm), size class three (10–11.99 mm), and size class four (12–15 mm).
FIGURE 6 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 6. Various stages (TL) of Fundulus jenkinsi development. Arrows indicate concentration of pigment along dorsal midline extending from head to caudal peduncle; pigment forming sideways X or hourglass, and largest size where internal pigment around spine is visible. Size class one (0–6.99 mm TL), size class two (7–9.99 mm), size class three (10–11.99 mm), and size class four (12–15 mm).
FIGURE 2 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 2. Plot of body depth (mm, A) and caudal peduncle width (mm, B) (χ ± 1 SE) adjusted for a low, mean, and high value of total length (TL, mm) by species. Data points within the TLlow, TLmean, or TLhigh values are significantly different (p ≤ 0.05) if letter labels are not the same, and not significantly different (p> 0.05) if the letter labels are the same.
FIGURE 3 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 3. Plot of snout length (mm, A) and eye diameter (mm, B) (χ ± 1 SE) adjusted for head length by species. Data points are significantly different (p ≤ 0.05) if letter labels are not the same, and not significantly different (p> 0.05) if the letter labels are the same.
FIGURE 5 in Comparative development of five sympatric coastal Fundulid species from the northern Gulf of Mexico
FIGURE 5. Various stages (TL) of Fundulus grandis development. Arrow indicates largest size where internal pigment around spine is visible. Size class one (0–6.99 mm TL), size class two (7–9.99 mm), size class three (10–11.99 mm), and size class four (12–15 mm).
ScienceDex guides
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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.