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FIGURE 6 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau

FIGURE 6. Distribution of Psammophylax ocellatus (green) and Psammophis ansorgii (blue). Right (A): Africa with location of Angola in blue. Middle (B): Topographic map of Angola, showing relief and central localities, and red square outlining the location of the Humpata Plateau, adjacent to the Chela Escarpment. Localities: 1–2 Catchiungo—Chinguar (blue star) type locality of Psammophis ansorgii; 3, Cunhangamua; 4, Tundavala; 5, Estação Zootécnica; 6, Chibemba (green star) type locality of Psammophylax ocellatus; 7, Humbe; 8, Calueque, near Ruacaná. Left (C): zoomed in region of Humpata Plateau.

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FIGURE 3 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 3. Adult specimens of Dipturus chilensis: (A, C) Dorsal view of head and oro-nasal area, respectively, of male neotype (MNHNCL ICT 7549; CHL-88). (B, D) Dorsal view of head and oro-nasal area, respectively, of female voucher (MNHNCL ICT 7550; CHL-89).

opennotspecifiedApr 2019View details →
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FIGURE 11 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 11. Adult specimen of female paratype (MNHNCL ICT 7532; FA-47) of Dipturus lamillai sp. nov.: Dorsal view of posterior angle of pectoral fins, and anterior and posterior lobes of pelvic fins. Thorns indicated with arrows. clt—caudal-lateral thorns, cct—caudal-central thorns, and ppt—posterior pectoral thorns.

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FIGURE 10 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 10. Adult specimens of Dipturus lamillai sp. nov.: (A) Dorsal and caudal fins of male holotype (MNHNCL ICT 7531; FA-46). (B) Dorsal and caudal fins of female paratype (MNHNCL ICT 7532; FA-47). (C, D) Left malar and alar thorns of male holotype (MNHNCL ICT 7531; FA-46), respectively.

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FIGURE 2 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 2. Adult specimens of Dipturus chilensis: (A, C) Dorsal and ventral views of male (CHL-98), respectively. (B, D) Dorsal and ventral view of female voucher (MNHNCL ICT 7550; CHL-89), respectively. Scale-ruler: 15 cm.

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FIGURE 7 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 7. Adult specimens of Dipturus lamillai sp. nov.: (A, C) Dorsal and ventral views of male holotype (MNHNCL ICT 7531; FA-46), respectively. (B, D) Dorsal and ventral views of female paratype (MNHNCL ICT 7532; FA-47), respectively.

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FIGURE 6 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 6. Dorsal view of a fresh egg capsule of Dipturus chilensis extracted from oviduct of adult female captured in Valparaíso, Chile, close to type locality.

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FIGURE 13 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 13. Neighbor-Joining tree generated with Jukes-Cantor genetic distance model of sequence data for 1,043 base pairs of the NADH2 gene. Sequences obtained from GenBank are shown in bold.

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FIGURE 12 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 12. Line drawings depicting areas covered by dermal denticles in dorsal view of adults of (A, B) male and female of Dipturus chilensis, respectively, and (C, D) male and female of Dipturus lamillai sp. nov., respectively.

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FIGURE 4 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 4. Adult specimens of Dipturus chilensis: (A) Dorsal view of tail of male neotype (MNHNCL ICT 7549; CHL-88). (B) Dorsal view of tail of female voucher (MNHNCL ICT 7550; CHL-89). (C) Ventral view of of male neotype (MNHNCL ICT 7549; CHL-88). (D) Internal components of right clasper, lateral view. cf—cleft, dl—distal lobe, hp—hypopyle, rh—rhipidion, sh—shield, sl—slit, sk—spike, and sp—spur.

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FIGURE 5 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 5. Adult specimens of Dipturus chilensis: (A) Dorsal and caudal fins adult male (CHL-98). (B) Dorsal and caudal fins of female voucher (MNHNCL ICT 7550; CHL-89). (C) Left malar thorns of male neotype (MNHNCL ICT 7549; CHL- 88). (D) Left alar thorns of adult male voucher (MNHNCL ICT 7569; CHL-138).

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FIGURE 9 in Redescription and taxonomic status of Dipturus chilensis (Guichenot, 1848), and description of Dipturus lamillai sp. nov. (Rajiformes: Rajidae), a new species of long-snout skate from the Falkland Islands

FIGURE 9. Adult specimens of Dipturus lamillai sp. nov.: (A) Dorsal view of tail of male holotype (MNHNCL ICT 7531; FA-46). (B) Dorsal view of tail of female paratype (MNHNCL ICT 7532; FA-47), (C) Ventral view of claspers of male holotype (MNHNCL ICT 7531; FA-46). (D) Internal components of right clasper of male holotype (MNHNCL ICT 7531; FA- 46), lateral view. cf—cleft, dl—distal lobe, hp—hypopyle, rh—rhipidion, sh—shield, sl—slit, sk—spike, and sp—spur.

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FIGURE 1 in Morphological and molecular characterization of Xyo pseudohystrix Travassos & Kloss, 1958 (Nematoda: Oxyuridomorpha: Hystrignathidae) from Odontotaenius disjunctus (Illiger, 1800) (Coleoptera: Passalidae) from USA and discussion on its taxonomic status

FIGURE 1. Xyo pseudohystrix Travassos & Kloss, 1958 incertae sedis (Nematoda: Oxyuridomorpha: Hystrignathidae). Female. A. Oesophageal region, lateral view. B. Tail, lateral view. C. Cephalic end, optical section. D. Cephalic end, external view (reconstructed from SEM images). E. Cephalic end, en face view (reconstructed from SEM images). F. Spines at the midpoint of the spiny region (reconstructed from SEM images). G. Spines at the end of the spiny region (reconstructed from SEM images). H. Genital tract, lateral view. I. Habitus, lateral view.

opennotspecifiedJun 2019View details →
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FIGURE 1. A in On the taxonomic status of Teyuwasu barberenai Kischlat, 1999 (Archosauria Dinosauriformes), a challenging taxon from the Upper Triassic of southern Brazil

FIGURE 1. A—Stratigraphic column [after Langer et al. (2018)] of the type-locality of both 'Teyuwasu' and Staurikosaurus. Main column depicting the main outcrop of the Alemoa complex with auxiliary column depicting the approximate level that yielded the abovementioned specimens. B—skeletal reconstructions of 'Teyuwasu' and Staurikosaurus depicting known bones in white and unknown in gray. C—Proximal portion of the right femur of 'Teyuwasu' (BSPG AS XXV 53), in cranial view. D—Proximal portion of the left (reversed) femur of Staurikosaurus (MCZ 1669), in cranial view. E—Proximal portion of the left (reversed) femur of Saturnalia (MCP 3944-PV), in cranial view. F—Proximal portion of the right femur of Buriolestes (ULBRA-PVT280), in cranial view. G—Distal end of the right tibia of 'Teyuwasu barberenai' (BSPG AS XXV 54), in distal view. H—Distal end of the left (reversed) tibia of Staurikosaurus (MCZ 1669), in distal view. I—Distal end of the left tibia of Panphagia (PVSJ 874), in distal view. J—Distal end of the right tibia of Macrocollum (CAPPA/UFSM 0001c), in distal view. Abbreviations: at, anterior trochanter; dlt, dorsolateral trochanter; fh, femoral head; plf, posterolateral flange; ts, trochanteric shelf.

opennotspecifiedJul 2019View details →
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FIGURE 14 in The oribatid mite genus Topalia in Australia (Oribatida: Nosybeidae) and the taxonomic status of related families and genera

FIGURE 14. Anogenital morphology of taxa included in the character analysis. Outgroups not illustrated. (a) Topalia caliginosa sp. nov.; (b) Nosybea genavensis Mahunka, 1993; (c) Lamellocepheus personatus (Berlese, 1910), based on Weigmann & Murvanidze (2003) and Mahunka & Mahunka-Papp (2009); (d) Microtegeus borhidii Balogh & Mahunka, 1974; (e) Charassobates cavernosus Grandjean, 1929; based on Grandjean (1958); (f) Neoeutegaeus sp. (Colloff, unpublished); (g) Licneremaeus licnophorus (Michael, 1882), based on Ito (1982); (h) Podopterotegaeus altimontanus Piffl, 1972.

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FIGURE 13 in The oribatid mite genus Topalia in Australia (Oribatida: Nosybeidae) and the taxonomic status of related families and genera

FIGURE 13. Coxisternal morphology of taxa included in the character analysis Outgroups not illustrated. (a) Topalia royi sp. nov.; (b) Nosybea genavensis Mahunka, 1993; (c) Lamellocepheus personatus (Berlese, 1910), based on Weigmann & Murvanidze (2003) and Mahunka & Mahunka-Papp (2009); (d) Microtegeus borhidii Balogh & Mahunka, 1974; (e) Charassobates tuberosus Balogh & Mahunka, 1981; (f) Neoeutegaeus sp. (Colloff, unpublished); (g) Licneremaeus braziliensis Bonfim, Silva & Oliveira, 2017; (h) Podopterotegaeus altimontanus Piffl, 1972.

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FIGURE 12 in The oribatid mite genus Topalia in Australia (Oribatida: Nosybeidae) and the taxonomic status of related families and genera

FIGURE 12. Notogastral morphology of taxa included in the character analysis. Outgroups not illustrated. (a) Topalia caliginosa sp. nov.; (b) Nosybea genavensis Mahunka, 1993; (c) Lamellocepheus personatus (Berlese, 1910), based on Weigmann & Murvanidze (2003) and Mahunka & Mahunka-Papp (2009); (d) Microtegeus borhidii Balogh & Mahunka, 1974; (e) Charassobates cavernosus Grandjean, 1929; based on Grandjean (1958); (f) Neoeutegaeus sp. (Colloff, unpublished); (g) Licneremaeus licnophorus (Michael, 1882), based on Ito (1982); (h) Podopterotegaeus tectus Aoki, 1969.

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FIGURE 10 in The oribatid mite genus Topalia in Australia (Oribatida: Nosybeidae) and the taxonomic status of related families and genera

FIGURE 10. Dorsal aspect of immatures. (a) Charassobates cavernosus, tritonymph (Grandjean, 1958; Fig. 4); (b) Tegeocranellus alas, tritonymph (Behan-Pelletier, 1997, Fig. 11); (c) Neoeutegaeus sp., larval and nymphal scalps (Colloff, unpublished); (d) Neoeutegaeus sp., tritonymph (Colloff, unpublished); (e) Podopterotegaeus sp., tritonymph (Piffl, 1972; Plate 11, Fig. PT1); (f) Podopterotegaeus sp., deutonymphal scalp (Piffl, 1972; Plate 10, Fig. PT4).

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FIGURE 11 in The oribatid mite genus Topalia in Australia (Oribatida: Nosybeidae) and the taxonomic status of related families and genera

FIGURE 11. Prodorsal morphology of taxa included in the character analysis. Outgroups not illustrated. (a) Topalia caliginosa sp. nov.; (b) Nosybea genavensis Mahunka, 1993; (c) Lamellocepheus personatus (Berlese, 1910), based on Weigmann & Murvanidze (2003) and Mahunka & Mahunka-Papp (2009); (d) Microtegeus borhidii Balogh & Mahunka, 1974; (e) Charassobates cavernosus Grandjean, 1929; based on Grandjean (1958); (f) Neoeutegaeus sp. (Colloff, unpublished); (g) Licneremaeus braziliensis Bonfim, Silva & Oliveira, 2017; (h) Podopterotegaeus altimontanus Piffl, 1972.

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FIGURE 9 in The oribatid mite genus Topalia in Australia (Oribatida: Nosybeidae) and the taxonomic status of related families and genera

FIGURE 9. Scanning electron micrographs of dorsal aspects of (a) Topalia sp. 1 and (b) Topalia royi sp. nov. (Topalia sp. 2) (from Hunt et al. 1998).

opennotspecifiedJul 2019View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record