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FIGURE 5 in The phylogenetic relationships of a new Stream Toad of the genus Ansonia Stoliczka, 1870 (Anura: Bufonidae) from a montane region in Peninsular Malaysia
FIGURE 5. (A) Microhabitat and (B) habitat of Ansonia smeagol sp. nov. in the Genting Highlands, Pahang.
FIGURE 2 in The phylogenetic relationships of a new Stream Toad of the genus Ansonia Stoliczka, 1870 (Anura: Bufonidae) from a montane region in Peninsular Malaysia
FIGURE 2. Phylogram of the relationships of the species of Ansonia. The tree is a maximum likelihood topology (-ln L 19479.118) with Bayesian posterior probabilities (PP) and bootstrap values (UBS), respectively, at the nodes.
FIGURE 3 in The phylogenetic relationships of a new Stream Toad of the genus Ansonia Stoliczka, 1870 (Anura: Bufonidae) from a montane region in Peninsular Malaysia
FIGURE 3. (A) adult female of Ansonia smeagol sp. nov. (paratype LSUHC 12124), (B) adult female A. jeetsukumarani (LSUDPC 2550) from Fraser's Hill, Pahang, (C) adult female A. malayana (LSUDPC 4392) from Bukit Larut, Perak, (D) adult female A. penangensis (LSUDPC 5738) from Penang Island, Penang, and (E) adult female A. lumut (LSUDPC 6599) from Gunung Tebu, Terengganu.
FIGURE 1 in The phylogenetic relationships of a new Stream Toad of the genus Ansonia Stoliczka, 1870 (Anura: Bufonidae) from a montane region in Peninsular Malaysia
FIGURE 1. Distribution map of the upland clade of Ansonia. Ansonia smeagol sp. nov. shown with a blue circle, all others from the clade are shown with a white circle.
FIGURE 5 in Phylogenetic relationships of geckos of the Hemiphyllodactylus harterti group, a new species from Penang Island, Peninsular Malaysia, and a likely case of true cryptic speciation
FIGURE 5. Upper: adult male Hemiphyllodactylus titiwangsaensis (LSUDPC 6708) from the type locality of Cameron Highlands, Pahang. Middle: adult male H. cf. titiwangsaensis (LSUDPC 2868) from Fraser's Hill, Pahang. Lower: adult male H. cf. titiwangsaensis (LSUDPC 6444) from Genting Highlands, Pahang.
FIGURE 3 in Phylogenetic relationships of geckos of the Hemiphyllodactylus harterti group, a new species from Penang Island, Peninsular Malaysia, and a likely case of true cryptic speciation
FIGURE 3. Male Holotype (LSUCH 11762) of Hemiphyllodactylus cicak sp. nov. from Penang Hill, Penang Island, Penang, Peninsular Malaysia.
FIGURE 1 in Phylogenetic relationships of geckos of the Hemiphyllodactylus harterti group, a new species from Penang Island, Peninsular Malaysia, and a likely case of true cryptic speciation
FIGURE 1. Distribution of the species of the Hemiphyllodactylus harterti group in Peninsular Malaysia.
FIGURE 2 in Phylogenetic relationships of geckos of the Hemiphyllodactylus harterti group, a new species from Penang Island, Peninsular Malaysia, and a likely case of true cryptic speciation
FIGURE 2. Maximum-likelihood phylogram of the Hemiphyllodactylus harterti group with Bayesian posterior probabilities followed by maximum likelihood bootstrap values.
FIGURE 36 in Phylogenetic relationships of the genera of Ptiloneuridae (Psocodea, ' Psocoptera', Epipsocetae) and a test on the monophyly of Brasineura Silva-Neto & García Aldrete and Loneuroides García Aldrete
FIGURE 36. Phallosome of Brasineura diamantina. Abbreviations: mpep = membrane with pores of the external parameres; ep = external parameres; ls = lateral sclerite; ms = mesal sclerite; lephb = lateral extensions of the phallobase; st = side struts and phb = phallobase.
FIGURES 31–35. 31 in Phylogenetic relationships of the genera of Ptiloneuridae (Psocodea, ' Psocoptera', Epipsocetae) and a test on the monophyly of Brasineura Silva-Neto & García Aldrete and Loneuroides García Aldrete
FIGURES 31–35. 31. Setal tufts of the central sclerite of the hypandrium of L. jinotegaensis. 32. Hypandrium of B. diamantina. 33. Hypandrium of T. magnifica. 34. Phallosome of E. cerata. 35. Phallosome of L. jinotegaensis. Abbreviations: st = side struts, ep = external parameres and mst = mesal transverse sclerite.
FIGURES 8–16. 8 in Phylogenetic relationships of the genera of Ptiloneuridae (Psocodea, ' Psocoptera', Epipsocetae) and a test on the monophyly of Brasineura Silva-Neto & García Aldrete and Loneuroides García Aldrete
FIGURES 8–16. 8. FwM of B. cervantesi. 9. FwM of E. cerata. 10. FwM of L. venezolanus. 11. FwM of O. circumvittata. 12. FwM of L. rionegroensis. 13. FwM of P. bidorsalis. 14. BpFw of L. venezolanus. 15. BpFw. of P. longiareola. 16. BpFw of T. greeni. Abbreviations: FwM = vein M of forewing and BpFw = basal part of forewing.
FIGURES 1–7. 1 in Phylogenetic relationships of the genera of Ptiloneuridae (Psocodea, ' Psocoptera', Epipsocetae) and a test on the monophyly of Brasineura Silva-Neto & García Aldrete and Loneuroides García Aldrete
FIGURES 1–7. 1. Lacinial of T. magnifica. 2. Lacinial of B. troglophilica. 3. Hw of O. circumvittata. 4. Hw of B. diamantina. 5. Hw of L. venezolanus. 6. Hw of B. troglophilica. 7. L. rionegroensis. Abbreviations: Hw = hindwing.
FIGURE 37 in Phylogenetic relationships of the genera of Ptiloneuridae (Psocodea, ' Psocoptera', Epipsocetae) and a test on the monophyly of Brasineura Silva-Neto & García Aldrete and Loneuroides García Aldrete
FIGURE 37. Phylogeny of the genera of Ptiloneuridae (L = 49, CI = 65, RI = 76) with ACCTRAN Optimization (in blue) and DELTRAN Optimization (in green) to ambiguous characters.
FIGURE 26 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 26. Cladogram depicting relationships among genera of Potamotrygonidae, showing sister group relationship between Heliotrygon and Paratrygon, based on discussion in the text (see Phylogenetic relationships of Heliotrygon for characters at indicated nodes and for Heliotrygon). For a discussion of myliobatiform phylogeny, see Carvalho et al. (2004) and references cited therein.
FIGURE 15 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 15. Illustration of Heliotrygon rosai, n. sp., in dorsal (A) and ventral (B) views (MZUSP 63604, juvenile male, Rio Purus, Amazonas state, Brazil, 680 mm TL, 247 mm DL, 231 mm DW). Note that dorsal color pattern has faded significantly in this specimen.
FIGURE 25 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 25. Cranial, mandibular, and hyoid muscles of Heliotrygon rosai, n. sp. (from MZUSP 108295). Specimen is facing right. Notice that pre- and postorbital processes, nasal capsules, and part of rostral region were cut. Specimen is in dorsolateral view. Abbreviations: HYO, hyomandibula; LH, levator hyomandibularis; LLS, levator labii superioris; LP, levator palatoquadrati; MC, Meckel's cartilage; PQ, palatoquadrate; SM, spiracularis medialis; SL, spiracularis lateralis. Asterisk indicates position of eye.
FIGURE 22 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 22. Aspects of the splanchnocranium, scapulocoracoid, and pectoral fin skeleton (A), and puboischiadic bar (B) of Heliotrygon gomesi, n. sp., in dorsoventral view (based on CU 78456). Abbreviations: AOC, antorbital cartilage; EPI 5, fifth epibranchial element; FPF, frontoparietal fontanelle; HYO, hyomandibula; IP, iliac process; ISP, ischial process; Mc, Meckel's cartilage; MPP, median prepelvic process; NC, nasal capsule; PCF, precerebral fontanelle; POP, postorbital process; PSC, prespiracular cartilage; PRP, preorbital process; SCP, scapular process; SP, supraorbital process. Arrow in (B) depicts very reduced and blunt lateral prepelvic process.
FIGURE 11 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 11. Holotype of Heliotrygon rosai, n. sp., in dorsal (A) and ventral (B) views (MZUSP 104996, adult male, Baía de Marajó, Pará state, Brazil; 984 mm TL, 604 mm DL, 577 mm DW).
FIGURE 19 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 19. Ventral lateral-line canals of a specimen of Heliotrygon gomesi, n. sp. (paratype MZUSP 108203). Color scheme is as follows: anterior subpleural tubules, hyomandibular subpleural component (at level of first pair of gill slits) and hyomandibular canal (purple); hyomandibular jugular component (yellow); nasal canal (light blue); prenasal component of nasal canal (green); suborbital component of infraorbital canal (light red); supraorbital canal (dark blue).
FIGURE 8 in Morphology and phylogenetic relationships of a remarkable new genus and two new species of Neotropical freshwater stingrays from the Amazon basin (Chondrichthyes: Potamotrygonidae)
FIGURE 8. Morphological details of holotype of Heliotrygon gomesi, n. sp. A) Eyes and spiracles. B) Nasoral region. C) Dorsal tail region. D) Ventral view of pelvic fins and base of tail.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.