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340 results for “Late Oligocene”
Figure 3 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 3. Archaeohyrax suniensis sp. nov., schematic representation of the dentition of SAL 4. A, upper jaw with right I3-M2, left dI1-2, I3, P1-M3. B, lower jaw with right p1-m2 (m3 is covered with matrix), left p2-m3. Mesial at the top. Scale bar = 1 cm.
Figure 6 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 6. Interpretative and simplified partial reconstruction of the skull of Archaeohyrax suniensis sp. nov., right lateral view, from SAL 4, MNHN-BOL-V 006730 and SAL 183. Scale bar = 1 cm.
Figure 2 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 2. Archaeohyrax suniensis, cranium of the holotype, SAL 4. A, ventral view. B, dorsal view. C, right lateral view. Scale bar = 1 cm.
Figure 17 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 17. Archaeohyrax suniensis sp. nov., deciduous lower teeth. A, left dp3-4, m1-2, YPM-PU 21895. B, right dp3-4, SAL 646. Labial to left for A, to right for B, mesial at the top for both. Scale bar = 1 cm.
Figure 7 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 7. Interpretative and simplified reconstruction of the skull of Archaeohyrax suniensis sp. nov., ventral view, from SAL 4, SAL 1010, SAL 183, MNHN-BOL-V 006730 and YPM-PU 23701 (the pterygoid region is highly simplified because it is unknown in many details). Scale bar = 1 cm.
Figure 11 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 11. Archaeohyrax suniensis sp. nov., upper dentition. A, left P3-M3, SAL 189. B, right P3-M3 (reversed), YPM-PU 22056. C, rostrum with right and left P2-M3, YPM-PU 23701. Mesial to the left. Scale bar = 1 cm.
Figure 2 in A giant rhinocerotoid (Mammalia, Perissodactyla) from the Late Oligocene of north-central Anatolia (Turkey)
Figure 2. Protaceratherium sp. cf. Protaceratherium albigense (Roman, 1912). Left fragmentary magnum (GK-2-1). Gözükizilli-2 localtity (Çankiri-Çorum Basin, Central Anatolia, Turkey). Late Oligocene. A, anterior view; B, medial view; C, distal view. Scale bar = 2 cm. Paraceratherium sp. Right radius, proximal end (GK-2-2). Gözükizilli-2 locality (Çankiri- Çorum Basin, Central Anatolia, Turkey). Late Oligocene. D, anterior view; E, posterior view; F, antero-proximal view. Scale bar = 10 cm.
Figure 4 in A giant rhinocerotoid (Mammalia, Perissodactyla) from the Late Oligocene of north-central Anatolia (Turkey)
Figure 4. Palaeogeographical map of Middle East and south-west Asia illustrating the geographical distribution of Oligocene indricotheres around the Paratethys, in Kazakhstan and in Pakistan. After Petronijevic & Thenius (1957), Gromova (1959), Gabunia & Iliescu (1960), Gabunia (1964), Nikolov & Heissig (1985), Lucas & Sobus (1989), Spassov (1989), Lucas & Bayshashov (1996), Lucas & Emry (1996), Lucas et al. (1998), Codrea (2000), Welcomme et al. (2001) and Antoine et al. (2004). Source for map construction: http://www.odsn.de/odsn/services/palaeomap/adv_map.html
Figure 18. Trachytherus spegazzinianus from Lacayani. A, left M1, LAC 14. B in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 18. Trachytherus spegazzinianus from Lacayani. A, left M1, LAC 14. B, right (reversed) M2–3, MNHN-BOL-V 010725. C, right dentary with p3–4, m1 (or p4, m1–2), LAC 19. D, left maxillary with dP3–4, LAC 4. Scale bar = 1 cm.
Figure A3. M3 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure A3. M3 mesio-distal (m-d) length and labiolingual (l-l) width during three different wear stages (lingual aperture, enclosed fossette, featureless), in mm.
Figure 19. Phylogenetic relationship between basal mesotheriids. A in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 19. Phylogenetic relationship between basal mesotheriids. A, strict consensus (26 steps, CI = 0.731, RI = 0.731; Bremer indices: Mesotheriidae = 2, Mesotheriinae = 1). B, majority-rule consensus, with percentages of nodes with less than 100% indicated (21 steps, CI = 0.905, RI = 0.923). C, Adams consensus (23 steps, CI = 0.826, RI = 0.846).
Figure 14 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 14. Lower dentition of Trachytherus alloxus. A, left dentary with broken i1–2 and broken p3, p4–m3, SAL 8. B, juvenile mandible with right di1–3, dc, p1, dp2–m1, and left di1–3, p1, dp2, MNHN-BOL-V 006138. Scale bar = 1 cm.
Figure 15 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 15. Lower cheek teeth of Trachytherus alloxus. A, left dentary with dp3–4, m1, SAL 900. B, right (reversed) dentary with dp4, m1, SAL 899. C, left dentary with m1–3, SAL 752. Scale bar = 1 cm.
Figure 8. Trachytherus alloxus, SAL 281. A in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 8. Trachytherus alloxus, SAL 281. A, ventral (occlusal) view. B, left lateral view. Scale bar = 1 cm.
Figure 5. A in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 5. A, Trachytherus alloxus, SAL 279, ventral view of the entire specimen. Scale bar = 1 cm. B, Trachytherus alloxus, SAL 279, stereographic photos showing details of the right ear region, ventral view. Scale bar = 1 cm. C, schematic representation of the right auditory region of SAL 279, ventral view. Grey areas correspond to damaged areas on the specimen.
Figure 11 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 11. Isolated upper cheek teeth of Trachytherus alloxus. A and B, mesial and occlusal view, respectively, of an undetermined left upper premolar (P3 or P4) SAL 788. C and D, occlusal and mesial view, respectively, of a left M2, SAL 786. Scale bar = 1 cm.
Figure 4 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 4. Reconstruction of the skull of Trachytherus alloxus, ventral view, from MNHN-BOL-V 006355, SAL 279, SAL 237 and SAL 7. Glenoid articular facets are delimited by dotted lines. Scale bar = 1 cm.
Figure A4. m1 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure A4. m1 mesio-distal (m-d) length and labiolingual (l-l) width during three different wear stages (lingual aperture, enclosed fossette, featureless), in mm.
Figure 1. Tooth measurements. A in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 1. Tooth measurements. A, upper cheekteeth, SAL 280. B, lower cheekteeth, SAL 8. Scale bar = 1 cm.
Figure 2 in Late Oligocene mesotheriids (Mammalia, Notoungulata) from Salla and Lacayani (Bolivia): implications for basal mesotheriid phylogeny and distribution
Figure 2. Trachytherus alloxus holotype, MNHN-BOL-V 00635. A, ventral view. B, dorsal view. C, left lateral view. Scale bar = 1 cm.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.