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FIG. 1 in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 1. — Eomys antiquus (Aymard, 1853) upper teeth, MÖhren 13: A, RDP4, BSP 1972 XI 4263; B, RP4, BSP 1972 XI 3908; C, RP4, BSP 1972 XI 3920; D, LP4, BSP 1972 XI 3931; E, LP4, BSP 1972 XI 3926; F, LP4, BSP 1972 XI 3911; G, LP4, BSP 1972 XI 3945; H, LP4, BSP 1972 XI 3947; I, LP4, BSP 1972 XI 3909; J, RM1/2, BSP 1972 XI 4020; K, RM2, BSP 1972 XI 3949; L, RM1/2, BSP 1972 XI 3950; M, RM1/2, BSP 1972 XI 4023; N, LM2, BSP 1972 XI 3999; O, LM3, BSP 1972 XI 4041; P, LM3, BSP 1972 XI 4043; Q, LM3, BSP 1972 XI 4047; R, LM3, BSP 1972 XI 4052; S, LM3, BSP 1972 XI 4038. Scale bar: 0.5 mm.
FIG. 2 in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 2. — Eomys antiquus (Aymard, 1853) lower teeth, MÖhren 13: A, Rdp4, BSP 1972 XI 4261; B, Rdp4, BSP 1972 XI 4262; C, Rp4, BSP 1972 XI 4082; D, Rp4, BSP 1972 XI 4098; E, Lp4, BSP 1972 XI 4074; F, Lp4, BSP 1972 XI 4058; G, Lp4, BSP 1972 XI 4059; H, Lp4, BSP 1972 XI 4060; I, Lp4, BSP 1972 XI 4064; J, Rm1/2, BSP 1972 XI 4122;K, Rm1, BSP 1972 XI 4135; L, Rm1/2, BSP 1972 XI 4133;M, Rm1/2, BSP 1972 XI 4148; N, Lm2, BSP 1972 XI 4171; O, Lm2, BSP 1972 XI 4196; P, Lm1/2, BSP 1972 XI 4135; Q, Lm1, BSP 1972 XI 4118; R, Rm3, BSP 1972 XI 4210; S, Rm3, BSP 1972 XI 4245; T, Rm3, BSP 1972 XI 4251; U, Lm3, BSP 1972 XI 4232. Scale bar: 0.5 mm.
Fig. 5 in Eucricetodon (Rodentia, Mammalia) from the Late Oligocene of the Junggar basin, northern Xinjiang, China
Fig. 5. Mandible of Eucricetodon aff. E. caducus, labial view, from the late Oligocene of the Junggar basin, locality XJ 99006 (V15974.14).
Fig. 1 in Eucricetodon (Rodentia, Mammalia) from the Late Oligocene of the Junggar basin, northern Xinjiang, China
Fig. 1. Terminology used in this paper to described molars, modified from Hugueney (1999) for the first molars and from Freudenthal and Daams (1988) for third molars. (A) Upper molars, M1, M2 and M3: 1. anterior crest; 2. anterocone; 3. labial anteroloph; 4. protocone spur 5. paracone; 6. paracone spur; 7. mesosinus; 8. mesostyle; 9. mesoloph; 10. metalophule; 11. metacone; 12. posterosinus; 13. posteroloph; 14. entoloph; 15. hypocone; 16. sinus; 17. lingual cingulum; 18. 2nd mesoloph; 19. protolophule; 20. protocone; 21. protocone platform; 22. protostyle spur; 23. protostyle; 24. lingual anteroloph; 25. protosinus; 26. anterosinus; 27. protolophule spur; 28. entomesoloph; 29. anterolophule; 30. neomesoloph; 31. neometalophule; (B) Lower molars, m1, m2 and m3: 1. lingual anterolophid; 2. metaconid; 3. metaconid ridge; 4. protoconid hind arm; 5. mesostylid; 6. mesolophid; 7. entoconid; 8. hypolophulid; 9. posterolophid; 10. posterosinusid; 11. hypoconid hind arm; 12. ectolophid; 13. hypoconid; 14. ectomesolophid; 15. sinusoid; 16. ectostylid; 17. mesoconid; 18. 2nd mesolophid; 19. protoconid; 20. protosinusid; 21. labial anterolophid; 22. anterolophulid; 23. metalophulid; 24. anteroconid; 25. metaconid spur; 26. mesosinusid; 27. lingual cingulum; 28. labial posterolophid; 29. labial cingulum; 30. anterosinusid; 31. metalophulid spur.
Fig. 4. Eucricetodon aff. E in Eucricetodon (Rodentia, Mammalia) from the Late Oligocene of the Junggar basin, northern Xinjiang, China
Fig. 4. Eucricetodon aff. E. caducus from the late Oligocene of the Junggar basin. A–C. lower incisor and molars from XJ 20003 (V15975.1–3). D–F. molars from XJ 200208 (V15976.1–3). G–O. molars from XJ 200209 (V15977.1–9).
Fig. 3. Eucricetodon aff. E in Eucricetodon (Rodentia, Mammalia) from the Late Oligocene of the Junggar basin, northern Xinjiang, China
Fig. 3. Eucricetodon aff. E. caducus from the late Oligocene of the Junggar basin, locality XJ 99006. A–J. upper molars (V15974.1–10). K–S. lower molars (V15974.11–19).
Fig. 2. Eucricetodon aff. E in Eucricetodon (Rodentia, Mammalia) from the Late Oligocene of the Junggar basin, northern Xinjiang, China
Fig. 2. Eucricetodon aff. E. caducus from the late Oligocene of the Junggar basin, locality XJ 98024. A–I. upper molars (V159873.1–9). J–O. lower molars (V159873.10–15). P–Q. lower incisors (V159873.16–17).
Plate 5 in Some noteworthy bat (Mammalia: Chiroptera) records from Manipur State, Northeastern India
Plate 5. Lateral, dorsal and ventral view of baculum of R. yunanensis specimen from Manipur (ZSIS423).
Plate 4 in Some noteworthy bat (Mammalia: Chiroptera) records from Manipur State, Northeastern India
Plate 4. Dorsal, ventral and lateral view of cranium and lateral view of mandible of M. muricola from Manipur (ZSIS-450).
Plate 3 in Some noteworthy bat (Mammalia: Chiroptera) records from Manipur State, Northeastern India
Plate 3. Dorsal, ventral and lateral view of cranium and lateral view of mandible of R. yunanensis (ZSIS-423).
Figure 3 in A new late Miocene bovid (Mammalia: Artiodactyla: Bovidae) from ˙orakyerler (Turkey)
Figure 3. Gangraia anatolica gen. and sp. nov., from ˙orakyerler, Turkey. Paratype cranium ˙O 3124 in (a) dorsal, (b) ventral, (c) right lateral, and (d) caudal view. Scale bar: 5 cm.
Figure 2 in A new late Miocene bovid (Mammalia: Artiodactyla: Bovidae) from ˙orakyerler (Turkey)
Figure 2. Gangraia anatolica gen. and sp. nov., from ˙orakyerler, Turkey. Paratype cranium ˙O 3476 (a) and female frontlet ˙O 1427 (b); (1) frontal views; (2) caudal views; (a3) dorsal view; (a4) close up of the base of the left horn core in lateral view showing the single sinus occupying the pedicle and the basal horn core (arrows indicate the pedicle–horn core contact); (a5) close up of the dorsal parietal surface with marked anatomical details; and (b3) lateral view. The arrow in (b1) indicates the frontal sinus occupying the pedicle. Abbreviations: bhcs: basal horn core sinus; phdpr: post horn core depression; pboss: parietal boss; tmpc: temporal crest; tps: temporo-parietal suture; nc: nuchal crest; intpr: interparietal; and sulc: sulcus. (a1)–(a3) and (b1)–(b3) scale bar: 5 cm; (a4) and (a5) not to scale.
Figure 1 in A new late Miocene bovid (Mammalia: Artiodactyla: Bovidae) from ˙orakyerler (Turkey)
Figure 1. Gangraia anatolica gen. and sp. nov. from ˙orakyerler, Turkey. Holotype cranium ˙O 3187 in (a) dorsal, (b) ventral, (c) caudal, (d) right lateral, and (e) frontal views. (f) Detail of the dorsal parietal surface; (g) close up of auditory bulla; (h) antero-medial view of the left horn core; and (i) ventral view of the frontals. (a)–(e) Scale bar: 5 cm; (f)–(i) not to scale. Abbreviations: stylf: stylohyal fossa; aub: auditory bulla; intpr: interparietal; pboss: parietal boss; tmpc: temporal crest; tps: temporo-parietal suture; cors: coronal suture; pstcf: postcornual fossa; orb: orbit; mfrs: median frontal sinus; lfrs: lateral frontal sinus; homts: homonymous torsion; trrdg: transverse ridges; and bhcsw: basal horn core swelling.
Fig. 21 in A New Brontothere (Brontotheriidae, Perissodactyla, Mammalia) from the Eocene of the Ily Basin of Kazakstan and a Phylogeny of Asian ''Horned'' Brontotheres
Fig. 21. Logratio diagrams of the main limb segments of (A) brontotheres, (B) Hyrachyus and various rhinocerotoids, and (C) and a phylogenetically disparate assemblage of species, including extant hippos (Hippopotamus and Hexaprotodon) and extinct species with hippolike limb proportions including rhinocerotids (Teleoceras and Chilotherium), an amynodontid (Metamynodon), and a notoungulate (Toxodon). Abbreviations: (H), humerus; (R), radius; (MC), third metacarpal; (F), femur; (T), tibia; (MT), third metatarsal.
Fig. 1. Collectionsitesfor 91 specimensfrom 29 locationsof Apodemusagrarius, usedin thisstudy. ThespecimennumberforeachlocationarelistedinTable 1 in Comparative Genetics Of Apodemus Agrarius (Rodentia: Mammalia) From Insular And Continental Eurasian Populations: Cytochrome B Sequence Analyses
Fig. 1. Collectionsitesfor 91 specimensfrom 29 locationsof Apodemusagrarius, usedin thisstudy. ThespecimennumberforeachlocationarelistedinTable 1, andminimum Jukes-Cantordistancesbetween 17 haplotypesfrommainlandKoreaandother 49 haplo- typesfromsevenregions (Taiwan, Jeju, northeasternChina, easternChina, centralChina, Far-easternRussia, andEurope) basedonthecytochrome b completesequencesaregiven
Fig. 5. PrincipalComponentAnalysisbasedon 15 craniodentalcharactersof M in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 5. PrincipalComponentAnalysisbasedon 15 craniodentalcharactersof M. borneoensis (blackcircles), M. federatus (blacksquares), M. montivagus (emptysquares) and M. peytoni
Fig. 4 in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 4. Occlusal view of left upper premolar rows: a = M. annectans BM(NH) 78.2355 from Thailand, b = M. annectans BM(NH) 16.3.25.30 (holotype of M. primula), c = M. borneoensis BM(NH) 83.349 (holotype), d = M. federatus BM(NH) 16.4.20.5 (holotype), e = M. montivagus BM(NH) 76.3.10.5 (holotype), f = M. peytoni BM(NH) 12.8.25.1 (holotype). Scale = 3 mm.
Fig. 3 in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 3. Detail of the rostral part of skulls: a = M. annectans BM(NH) 78.2355 from Thailand, b = M. borneoensis BM(NH) 83.349 (holotype), c = M. federatus BM(NH) 16.4.20.5 (holotype), d = M. montivagus BM(NH) 76.3.10.5 (holotype), e = M. peytoni BM(NH) 12.8.25.1 (holo-
Fig. 2 in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 2. Lateral view of skulls: a = M. annectans BM(NH) 78.2355 from Thailand, b = M. borneoensis BM(NH) 83.349 (holotype), c = M. federatus BM(NH) 16.4.20.5 (holotype), d = M. montivagus BM(NH) 76.3.10.5 (holotype), e = M. peytoni BM(NH) 12.8.25.1 (holotype). Scale = 5 mm.
FIG. 6 in Révision des Équidés (Mammalia, Perissodactyla) du site pléistocène moyen du lac Karâr (Tlemcen, Algérie)
FIG. 6. — Equus sp., lac Karâr, Algérie, prémolaires et molaires supérieures définitives en vues occlusale (a) et linguale (b). Abréviation: Sp., spécimen. Échelle: 2 cm.
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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
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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.