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1,036 results for “Late Miocene”
Fig. 9 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 9. The bovid artiodactyl Skoufotragus cf. Sk. schlosseri (Andree, 1926) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Frontlet (MYŞE PV-1571) in anterior view. B. Female frontlet (MYŞE PV-1576) in anterior (B1) and lateral (B2) views.
Fig. 6 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 6. The bovid artiodactyl Sporadotragus parvidens (Gaudry, 1861) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Frontlet (MYŞE PV2502) in anterior view. B. Right P2–M3 (MYŞE PV-1522) in occlusal view. C. Right mandibular ramus with p3–m3 (MYŞE PV-1311) in lingual view. D. Left mandibular ramus with p2–m3 (MYŞE PV-1406) in labial view.
Fig. 1 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 1. The fossil mammal site of Şerefköy-2 (Turkey). A. Geographical location. B. Local lithostratigraphy (modified from Kaya et al. 2012). C. Typical fossil accumulation at Şerefköy-2. D. View of the fossiliferous site.
Fig. 5 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 5. Scatter plot comparing the upper and lower premolar (P, p) / molar M, m) ratio against the complete tooth row length of Palaeoryx from several localities.
Fig. 2 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 2. The bovid artiodactyl Gazella cf. G. capricornis (Wagner, 1848) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Left horn core (MYŞE PV-1578) in lateral view. B. Left horn core (MYŞE PV-560) in lateral view. C. Frontlet (MYŞE PV-2501) in frontal (C 1) and lateral (C 2) views. D. Left mandibular body (MYŞE PV-2557) in occlusal (D 1) and lingual (D 2) views. E. Right mandibular body (MYŞE PV-2564) in occlusal view. F. Right P2-M3 of the palate (MYŞE PV-2572) in occlusal view.
Fig. 3 in Late Miocene Turtles Of Grytsiv (Western Ukraine) With Rodent Gnaw Marks On The Carapace Surface
Fig. 3. The nuchal plate of Testudo chernovi NMNHU-P AR 407 from Grytsiv with gnaw marks (A); B–C — Machichnus inrosus isp. n., enlarged affected area (B) and a set of individual striae (C); D — combined SEM image of the mandible of Anomalomys grytsivensis Nesin & Kovalchuk, 2021 (NMNHU-P 22/2703) showing the labial surface of the lower incisor with longitudinal ridges.
Fig. 1 in Late Miocene Turtles Of Grytsiv (Western Ukraine) With Rodent Gnaw Marks On The Carapace Surface
Fig. 1. Location of Grytsiv on the map of Ukraine (A), and geological proFIle of the locality (B), after Vasilyan et al. (2013) and Nesin & Kovalchuk (2021).
Fig. 2 in Late Miocene Turtles Of Grytsiv (Western Ukraine) With Rodent Gnaw Marks On The Carapace Surface
Fig. 2. Turtle remains from the late Miocene of Grytsiv: A–B — Emys sp., xiphiplastron NMNHU-P AR402/4 (A), marginal scute NMNHU-P AR 402/1 (B); C–E — Melanochelys cf. M. moldavica Chkhikvadze, 1983, costal plate NMNHU-P AR 403 (C), right xiphiplastron NMNHU-P AR 405 (D–E); F, I — Trionychidae indet., shell fragments NMNHU-P AR 401/1 (F), AR 401/2 (I); G–H — Testudo chernovi Khosatzky, 1948, nuchal NMNHU-P AR 406 (G), type specimen after Khosatzky (1948 a: FIg. 1), modiFIed (not to scale). Scale bars equal 5 mm in A–C, F–G and I, 10 mm in D and E.
Figure 5A–I in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 5A–I. Caecum roederi Raines, Powell and LaFollette n. sp.: A–B, Holotype, LACMIP 43085.1, LACMIP Type 14894; A, profile view; B, ventral view; C, Paratype, UF 330224, ventral view; D, Paratype, LACMIP 43085.2, LACMIP Type 14895, profile view; E, Paratype, LACMIP 43085.3 Scale bar=500μm.
Figure 4 in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 4. Composite section of "Imperial" Formation in and around Super Creek, east of Whitewater Canyon, Riverside County, CA (LACMIP loc. 43085). Stratigraphy in this section is approximate as different sections show slightly different sequences of rocks. The red stars mark where in the section the specimens were collected by Patrick LaFollette and Mark Roeder between 2010 and 2015.
Figure 3 in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 3. Exposures of the "Imperial" Formation along and adjacent to Super Creek, Riverside County, California as mapped by Matti et al. (1985). SC2–SC6 represents measured sections used to compile the composite stratigraphic section used here. The Caecidae described here are all from a narrow stratigraphic interval marked by a star.
Figure 1 in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 1. Locality map showing outcrops of the Imperial Formation s.l. in southern California. Outcrops of the late Miocene to Pliocene Imperial Formation s.s. include: 1) Edom Hill/ Indio Hills/Willis Palms/Thousand Palms Canyon (Powell 1985, Powell 1986, Powell et al. 2011), 2) the southern Santa Rosa Mountains (King et al. 2002), 3) Travertine Point (Powell 2008), 4) Ocotillo Wells State Vehicle Recreation area (Powell 1993), 5) Superstition Mountain (Morton 1977), 6) Fish Creek Mountains (Dibblee 1954, Morton 1977), 7) Coyote Mountains (Hanna 1926), and 8) Yuha Buttes (Hanna 1926). Outcrops of the late Miocene "Imperial" Formation s.l. occur at 9) Lions Canyon (Bramkamp 1935, Powell 1986), 10) Super Creek (Bramkamp 1935, Powell 1985, Powell 1986, Powell and LaFollette 2012), and 11) Garnet Hill (Powell 1985, Powell 1986, Rymer et al. 1995, Powell 1995).
Figure 7A–C in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 7A–C. Meioceras nitidum: A–B, LACMIP 43085.13, LACMIP 43085.14, profile views; C, LACMIP 43085.13, ventral view. Scale bar=500μm.
Figure 2 in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 2. Correlation chart of the stratigraphic sections including the "Imperial" Formation s.l. from west to east, at Lion Canyon, Super Creek, Garnet Hill, and the Imperial Formation s.s. in the Indio Hills, Riverside County, and in Imperial and San Diego counties from Split Mountain Gorge/Vallecito area, and the Coyote Mountains. Note the age difference between the "Imperial" Formation in Riverside County (exception for the Indio Hills) and the Imperial Formation in Imperial and San Diego counties. The Imperial Formation in the Indio Hills correlates with the type exposures in Imperial and San Diego counties. The ages of all boundaries are approximate. Numbers represent numerical age determinations: 1) Matti et al., 1985 (6.04±0.18 Ma and 5.94±0.18 Ma); 2) Peterson, 1975 (about 10 Ma); 3) Rymer et al., 1994, 1995 (between 8 and 7.6 Ma); 4) McNabb et al. 2017 (3.0-2.6 Ma); 5) Ruisaard 1979 (24.8 to about 15 Ma). Abbreviations: cong. = conglomerate; fm=formation; lac beds = unnamed lacustrine beds; ss = sandstone. In part after McDougall (2008).
Figure 6A–C in Caecidae (Mollusca: Gastropoda) from late Miocene exposures of the "Imperial" Formation in Riverside County, California
Figure 6A–C. Caecum brasilicum: A–B, LACMIP 43085.7, LACMIP 43085.8, profile views; C, LACMIP 43085.9, ventral view. Scale bar=500μm
Figures 4-13 in Nucella demouthae, A New Species of Late Miocene Muricid Gastropod From Northern California, U.S.A.
Figures 4-13. Nucella demouthae Powell, Roth, and Garcia n. sp., paratypes. Mature specimens: 4, 5. CASG 78594, height 43.6 mm, width 24.5 mm (incomplete specimen). 4. Adapertural view, 5. Apertural view. 6, 7. CASG 78595, height 36.0 mm, width 25.2 mm. Immature specimens: 6. Adapertural view, 7. Apertural view. 8. 9. CASG 78596, height 32.1 mm, width 18.9 mm. 8. Adapertural view, 9. Apertural view. 10, 11. CASG 78597, height 29.8 mm, 17.5 mm. CASG 78598, 19.2 mm, width 11.8 mm. 10. Adapertural view, 11, Apertural view. 12, 13. CASG 78599, height 13.1 mm, width 8.8 mm. 12. Adapertural view, 13. Apertural view. Note that immature specimens do not have a flared lip.
FIGURE 23 in Miocene and Pliocene amphibians from Hambach (Germany): New evidence for a late Neogene refuge in northwestern Europe
FIGURE 23. Reptiles from Hambach: right squamosal (IPB-HaH 2340) of Chamaeleo aff. andrusovi in lateral (A) and medial (B) views; left frontal (IPB-HaR 2171) of Pseudopus cf. pannonicus in dorsal (C) and ventral (D) views. Scale bars equal 1 mm.
FIGURE 22 in Miocene and Pliocene amphibians from Hambach (Germany): New evidence for a late Neogene refuge in northwestern Europe
FIGURE 22. Ranids from Hambach: right ilium (IPB-HaH 2307) of Pelophylax sp. in lateral (A) and medial (B) views; left ilium (IPB-HaH 2387) of Pelophylax sp. in lateral (C) and medial (D) views; left ilium (IPB-HaH 2321) of Rana sp. in lateral (E) and medial (F) views; sacral vertebra (IPB-HaR 2018) of Ranidae indet. in dorsal (G) and ventral (H) views; sacral vertebra (IPB-HaR 2019) of Ranidae indet. in dorsal (I) and ventral (J) views; left scapula (IPB-HaH 2323) of Ranidae indet. in ventral (K) and dorsal (L) views; left ilium (IPB-HaR 2087) of Ranidae indet. in lateral (M) and medial (N) views. Scale bars equal 1 mm. Abbreviations: dc, dorsal crest; dt, dorsal tubercle.
FIGURE 20 in Miocene and Pliocene amphibians from Hambach (Germany): New evidence for a late Neogene refuge in northwestern Europe
FIGURE 20. Hyla sp. from Hambach: sacral vertebra (IPB-HaH 2195) in dorsal (A), ventral (B), anterior (C) and posterior (D) views; left ilium (IPB-HaR 2088) in lateral view (E). Scale bars equal 1 mm. Abbreviations: dt, dorsal tubercle; pz, preacetabular zone.
FIGURE 19 in Miocene and Pliocene amphibians from Hambach (Germany): New evidence for a late Neogene refuge in northwestern Europe
FIGURE 19. Pelobatids from Hambach: sacral vertebra (IPB-HaR 2179) of cf. Eopelobates sp. in dorsal (A), anterior (B), posterior (C) and ventral (D) views; left humerus (IPB-HaR 2154) of cf. Eopelobates sp. in ventral (E) and dorsal (F) views; left ilium (IPB-HaR 2084) of cf. Eopelobates sp. in lateral (G) and medial (H) views; right ilium (IPB-HaR 2103) of cf. Eopelobates sp. in lateral (I) and medial (J) views; right humerus (IPB-HaR 2414) of?Eopelobates sp. in ventral (K) and dorsal (L) views; left humerus (IPB-HaR 2415) of?Eopelobates sp. in ventral view (M); right ilium (IPB-HaR 2421) of?Eopelobates sp. in lateral (N) and medial (O) views; trunk vertebra (IPB-HaH 2220) of Pelobatidae indet. in right lateral (P), anterior (Q), dorsal (R) and posterior (S) views; left humerus (IPB-HaH 2399) of Pelobatidae indet. in ventral (T) and dorsal (U) views. Scale bars equal 1 mm. Abbreviations: dae, dorsal acetabular expansion; fcv, fossa cubitalis ventralis.
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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.