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Fig. 20 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 20. Ventral view of abdominal plates pattern of: a. Dasyloricaria paucisquama, MPUJ 6019; b. Loricaria cataphracta, MCP 41395; c. Rineloricaria strigilata, MCP 42644. Scale bar = 5 mm.
Fig. 16 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 16. Lateral view of caudal peduncle of: a. Hypostomus pyrineusi, MCP 35814; b. Dasyloricaria paucisquama, MPUJ 6019. SC-PLT: supracaudal plates; LLLP: last lateral line pore. Scale bar = 5 mm.
Fig. 18 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 18. Ventral view of pelvic girdle of: a. Dasyloricaria paucisquama, CP-UCO 143; b. Loricaria cataphracta, MCP 41395; c. Harttia loricariformis, MCP 11707. MPB: medial process of basipterygium; LPB: lateral process of basipterigium; AV: arrector ventralis; LAP: lateropterygium; BCA: basipterygia cartilage; BSU: basipterygia suture; BPP: basipterygia posterior process; UPR: unbranched pectoral ray; B: basipterygia. Scale bar = 5 mm.
Fig. 19 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 19. Ventral view of snout in Dasyloricaria filamentosa, CP-UCO 350, 192.9 mm SL showing thick fleshy filaments on upper lip.
Fig. 14 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 14. Ventral view of ceratobranchial 5 of: a. Rineloricaria strigilata, MCP 42644; b. Dasyloricaria paucisquama, CP- UCO 143; c. Loricaria cataphracta, MCP 41395; d. Ixinandria steinbachi, MCP 41303; e. Sturisoma rostratum, MCP 36445; f: Loricariichthys anus, MCP 17235; g. Pseudohemiodon sp., MCP 36577; h. Harttia loricariformis, MCP 11707. Anterior towards bottom. Scale bar = 1 mm.
Fig. 13 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 13. Ventral view of epibranchials 1-4 of: a. Rineloricaria strigilata, MCP 42644; b. Dasyloricaria paucisquama, CP- UCO 143; c. Loricariichthys anus, MCP 17235; d. Ixinandria steinbachi, MCP 41303; e. Sturisoma rostratum, MCP 36445; f. Harttia loricariformis, MCP 11707; g. Pseudohemiodon sp., MCP 36577; h. Loricaria cataphracta, MCP 41395. Anterior towards bottom. Scale bar = 2 mm.
Fig. 6 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 6. Lectotype of Loricaria filamentosa latiura. FMNH 124472, 220.0 mm SL, Colombia, Boca de Certegui, río Atrato basin, Atlantic versant of Colombia (photo reproduced from FMNH website with permission of Kevin Swagel).
Fig. 3 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 3. Dasyloricaria filamentosa. CP-UCO 350, 192.9 mm SL, Colombia, Caldas Department, Norcasia, río La Miel at La Cachaza, middle Magdalena basin, 5°39'N 74°46'W.
Fig. 9 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 9. Dorsal view of neurocranium of Dasyloricaria paucisquama, CP-UCO 143. N: nasal bone; N-CH: nasal channel; LET: lateral ethmoid; F: frontal; F-CH: frontal channel; EP: epiphyseal pore; INF-ORB: infraorbitals (includingchannel); SP-PR: sphenoticprocess; SP: sphenotic; CMP-PTE: compound pterotic; SO: supraoccipital. Scale bar = 5 mm
Fig. 15 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 15. Lateral view of caudal skeleton of: a. Dasyloricaria latiura, USNM 293296; b. Harttia loricariformis, MCP 11707. AP2: second central preural apophysis; NESP: neural spine; UCR: upper caudal ray; HYPLT: hypural plate; HYP-PR: hypural plate process; HA: hypurapophysis; PC2: second preural center; VPR: ventral process. Scale bar = 5 mm.
Fig. 1 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 1. Abdominal plate pattern of Dasyloricaria species. Anterior abdominal plates in gray; central abdominal plates in black; lateral abdominal plates dotted; posterior abdominal plates unpigmented.
Fig. 8 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 8. Ventral view of neurocranium of Dasyloricaria paucisquama, CP-UCO 143. MESD: mesethmoid disc; VOM: vomer; MESCR: mesethmoid crest; MES: mesethmoid; LAT-ET: lateral ethmoid; PSPH: parasphenoid; OSPH: orbitosphenoid; PROT: prootic; CMP-PTE: compound pterotic; EXO: exoccipital; BAS: basioccipital; BA-LIG: Baudelot's ligament; TPWEB: transverse process of Weberian apparatus; AOR-CHA: aortic cannel; 6V: sixth vertebra. Scale bar = 5 mm.
Fig. 7 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 7. Holotype of Dasyloricaria paucisquama, MPUJ 6019, 203.2 mm SL, Colombia, Caldas Department, La Dorada, La Española farm at Zona El Gigante, río Purrio, río Magdalena basin, 5°21'N 74°48'W, 243 masl.
Fig. 5. Dasyloricaria latiura. IAvH-P 6777, 222.0 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 5. Dasyloricaria latiura. IAvH-P 6777, 222.0 mm SL, Colombia, Chocó Department, río Yuto, río Atrato basin, Atlantic versant of Colombia. Arrow indicates plate next to the pectoral-fin origin.
Fig. 12 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 12. Dorsal view of maxillary bone of: a. Dasyloricaria paucisquama, CP-UCO 143; b. D. latiura, USNM 293296; and lateral view: c. Dasyloricaria paucisquama, CP-UCO 143. MAX-COND: maxillary condyles. Scale bar = 5 mm.
Fig. 17 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 17. Ventral view of pectoral girdle of: a. Dasyloricaria paucisquama, CP-UCO 143; b. Ixinandria steinbachi, MCP 41303; c. Spatuloricaria tuira, MZUSP 94853. CL: cleitrhum; FA: fossa abductor; COR: coracoids; COR-PR: coracoids process. Scale bar = 5 mm.
Fig. 4 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 4. Lectotype of Loricaria filamentosa. NMW 44874, 233.2 mm SL, Colombia, río Magdalena basin (exact locality unknown; photo provided by W. Helmut).
Fig. 11 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 11. Lateral view of autopalatine of: a. Dasyloricaria paucisquama, CP-UCO 143; b. Loricaria cataphracta, MCP 41395; c. Harttia loricariformis, MCP 11707. Scale bar = 5 mm.
Fig. 10 in Taxonomic revision and phylogenetic relationships of Dasyloricaria Isbrücker & Nijssen, 1979 (Siluriformes: Loricariidae), with description of a new species
Fig. 10. Lateral view of suspensorium of: a. Dasyloricaria paucisquama, CP-UCO 143; b. Spatuloricaria sp., MCP 15806; c. Pseudohemiodon sp., MCP 36577. HYO: hyomandibula; LAP-MCRT: levator arcus palatini muscle crest; PRE-OP: preopercle; Q: quadrate; MET: metapterygoid; SYM-CAR: symplectic cartilage. Scale bar = 5 mm.
Phylogenetic and Spatial Distribution of Evolutionary Isolation and Threat in Turtles and Crocodilians (Non-Avian Archosauromorphs)
The origin of turtles and crocodiles and their easily recognized body forms dates to the Triassic. Despite their long-term success, extant species diversity is low, and endangerment is extremely high compared to other terrestrial vertebrate groups, with ~ 65% of ~25 crocodilian and ~360 turtle species now threatened by exploitation and habitat loss. Here, we combine available molecular and morphological evidence with machine learning algorithms to present a phylogenetically-informed, comprehensive assessment of diversification, threat status, and evolutionary distinctiveness of all extant species. In contrast to other terrestrial vertebrates and their own diversity in the fossil record, extant turtles and crocodilians have not experienced any mass extinctions or shifts in diversification rate, or any significant jumps in rates of body-size evolution over time. We predict threat for 114 as-yet unassessed or data-deficient species and identify a concentration of threatened crocodile and turtle species in South and Southeast Asia, western Africa, and the eastern Amazon. We find that unlike other terrestrial vertebrate groups, extinction risk increases with evolutionary distinctiveness: a disproportionate amount of phylogenetic diversity is concentrated in evolutionarily isolated, at-risk taxa, particularly those with small geographic ranges. Our findings highlight the important role of geographic determinants of extinction risk, particularly those resulting from anthropogenic habitat-disturbance, which affect species across body sizes and ecologies.
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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)
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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.