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FIGURE 13 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 13: Specimen of Potamotrygon falkneri (ANSP 142483, male, 265 mm DW) in dorsal (A) and ventral (B) views (Río Manu below Boca Pinquén, Río Madre de Díos, Río Madeira basin, Peru).
FIGURE 12 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 12: Map showing geographic distribution of Potamotrygon tatianae sp. nov. Star indicates collection locality of specimens and all of type-species.
FIGURE 9 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 9: Ventral lateral line canal system of Potamotrygon tatianae sp. nov. (MZUSP 107669, male, 293 mm DW). Prenasal canal is not depicted in figure. A) Overall canal arrangement. B) Anterior disc region amplified highlighting separate components of canals. Abbreviations: ast, anterior subpleural tubules; hjc, hyomandibular jugular component; hsc, hyomandibular subpleural component; hyoc, hyomandibular canal; ioc, infraorbital canal; iol, infraorbital loop; jug, jugular canal; man, mandibular canal; nas, nasal canal; ocs, orbitonasal component of supraorbital canal; pnl, prenasal loop; pst, posterior subpleural tubule; sci, suborbital component of infraorbital canal; soc, supraorbital canal; sol, suborbital loop; spl, subpleural loop.
FIGURE 8 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 8: Dermal denticles of Potamotrygon tatianae sp. nov., in dorsal view, from mid region of back. A) Denticle arrangement. B) Individual dermal denticle amplified. Abbreviations: cd, crown dichotomy; cp, crown plate; cr, crown ridge.
FIGURE 5 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 5: Specimen of Potamotrygon tatianae sp. nov. (MZUSP 107671, male, 351 mm DW) photographed upon capture in the field (Río Madre de Díos, Peru). Courtesy of F. Reyda.
FIGURE 6 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 6: Morphological details of Potamotrygon tatianae sp. nov. A) Eyes and spiracles of holotype (MZUSP 107673, male, 348 mm DW). B) Nasoral region of paratype (MZUSP 107667, male, 362 mm DW).
FIGURE 10 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 10: Dorsal (A), ventral (B), lateral (C) and posterior (D) views of neurocranium of Potamotrygon tatianae sp. nov. (MZUSP 107671, male, 351 mm DW). Abbreviations: acv, anterior cerebral vein foramen; ac, anterior foramen for preorbital canal; anc, antorbital cartilage condyle; as, articular surface; elf, endolymphatic foramen; es, eye-stalk; saf, efferent spiracular artery foramen; fpf, frontoparietal fontanelle; fm, foramen magnum; hmf, hyomandibular facet; ic, internal carotid artery foramen; lc, lateral commisure; nc, nasal capsule; obf, orbital fissure; oc, occipital condyle; pcf, precerebral fontanelle; pc, posterior foramen for preorbital canal; plf, perilymphatic foramen; pop, postorbital process; pq, palatoquadrate; prp, preorbital process; soc, supraorbital crest; sp, supraorbital process; sup, superficial ophthalmic nerve foramina; II, optic nerve foramen; III, oculomotor nerve foramen; VII, hyomandibular branch of facial nerve foramen; IX, glossopharyngeal nerve foramen; X, vagus nerve foramen.
FIGURE 2 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 2: Paratype of Potamotrygon tatianae sp. nov. (MZUSP 107667, male, 362 mm DW) in dorsal (A) and ventral (B) views (Río Madre de Díos, Peru).
FIGURE 4 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 4: Specimen of Potamotrygon tatianae sp. nov. (MZUSP 107672, male, 291 mm DW) in dorsal (A) and ventral (B) views (Río Madre de Díos, Peru).
FIGURE 3 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 3: Paratype of Potamotrygon tatianae sp. nov. (MZUSP 107668, female, 265 mm DW) in dorsal (A) and ventral (B) views (Río Madre de Díos, Peru).
FIGURE 1 in A New Species Of Neotropical Freshwater Stingray Of The Genus Potamotrygon Garman, 1877 From The Río Madre De Díos, Peru (Chondrichthyes: Potamotrygonidae)
FIGURE 1: Holotype of Potamotrygon tatianae sp. nov. (MZUSP 107673, male, 348 mm DW) in dorsal (A) and ventral (B) views (Río Madre de Díos, Peru).
FIGURE 2 in Macrobrachium agwi-a new species of freshwater prawn (Decapoda: Palaemonidae) from East Bengal, India
FIGURE 2. Macrobrachium agwi, new species, holotype male (cl 17.4 mm; R RMNH D 51995). A. cephalothorax and cephalic appendages; B. postantennular carapace margin; C. epistome; D. 4th thoratic sternum; E. 8th thoratic sternum, F. first 3 abdominal sternites; G. first cheliped; H. third pereiopod; I. dactylus of third pereiopod; J. telson; K. uropodial diaresis. Scale bars: A, G, H = 10 mm; B–F, I–K = 2 mm.
FIGURE 3 in Macrobrachium agwi-a new species of freshwater prawn (Decapoda: Palaemonidae) from East Bengal, India
FIGURE 3. Macrobrachium agwi, new species, holotype male (cl 17.4 mm; RMNH D 51995). A. major second pereiopod; B. chela of major second pereiopod; C. teeth on proximal part of fingers; D. minor second pereiopod. Scale bars: 10 mm.
FIGURE 4 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia
FIGURE 4. Whole and sectioned vertebrae of Pristis microdon, depicting main translucent zones, which are believed to be laid down annually (see text).
FIGURE 6 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia
FIGURE 6. Relationship between total length (TL) and rostrum length (RL) in female (n=37) and male (n=22) Pristis microdon.
FIGURE 7 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia
FIGURE 7. Percentage occurrence of the number of left rostral teeth in female and male Pristis microdon.
FIGURE 1 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia
FIGURE 1. Sites at which Pristis microdon was captured during this study and other studies, in the western Kimberley region.
FIGURE 5 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia
FIGURE 5. Length-frequency histograms for female and male Pristis microdon collected during the study.
FIGURE 9 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia
FIGURE 9. Comparison of the rostral tooth shape of Pristis microdon and Pristis clavata from the Fitzroy River, illustrating the strong groove present along the posterior edge of the rostral teeth of P. microdon. This groove is present in (a) small juvenile (832 mm TL) and (c and e) larger juvenile (2271 mm TL) P. microdon, and runs the entire length of the tooth back into the rostrum itself. In comparison, the posterior edge of the rostral teeth of (b) small juvenile (865 mm TL) P. clavata is convex (lacking a groove), and although a groove may be present in (d and f) larger juveniles (2130 mm TL) it is rarely present along the entire length of the tooth.
FIGURE 1 in Terrestrial and Freshwater Invertebrate Fauna of the High Arctic Archipelago of Svalbard
FIGURE 1. Map of the principle islands of the Svalbard archipelago showing the locations of the main research sites, 1) Ny-Ålesund, 2) Longyearbyen, and 3) Hornsund.
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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.