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Fig. 3 in The fossil record of early tetrapods: Worker effort and the end-Permian mass extinction

Fig. 3. Histogram of the total number of valid early tetrapod species from each major geographic region. Totals are: Europe (171), North America (156), Russia (77), Africa (51), Australia (30), India (14), Asia excluding India (12), South America (11), and Greenland (9).

opencc-by-4.0Jan 2010View details →
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Fig. 4 in Early evolution of Coriariaceae (Cucurbitales) in light of a new early Campanian (ca. 82 Mya) pollen record from Antarctica

Fig. 4. The evolution of chromosome numbers in Coriaria inferred under a best-fitting maximum-likelihood model (Materials and Methods).

opencc-by-4.0Feb 2020View details →
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Fig. 1 in Early evolution of Coriariaceae (Cucurbitales) in light of a new early Campanian (ca. 82 Mya) pollen record from Antarctica

Fig. 1. Distribution map of Coriaria species generated from georeferenced data available in GBIF (accessed Jan 2019).

opencc-by-4.0Feb 2020View details →
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Fig. 2 in Early evolution of Coriariaceae (Cucurbitales) in light of a new early Campanian (ca. 82 Mya) pollen record from Antarctica

Fig. 2. Selected extant and fossil species of Coriaria. A, C. myrtifolia (photo by Tanja M. Schuster); B, Holotype of C. longaeva G. de Saporta, 1866, showing the characteristic venation pattern, leaf attachment, and terminal inflorescence; C, C. sarmentosa flowers showing protogyny (photo by Pieter Pelser, PhytoImages, Nickrent & al., 2006 –); D, Fruits of C. sarmentosa with accrescent corollas (photo by Tanja M. Schuster); E, The characteristically small leaves of C. microphylla or C. ruscifolia subsp. microphylla (photo by Axel Dalberg Poulsen); F, C. ruscifolia in Chile (photo by Mark Olson).

opencc-by-4.0Feb 2020View details →
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Fig. 6 in Early evolution of Coriariaceae (Cucurbitales) in light of a new early Campanian (ca. 82 Mya) pollen record from Antarctica

Fig. 6. Fossil and extant representatives of Coriariaceae observed with scanning electron microscopy. A, Pollen of Coriaripites goodii sp. nov. from the late Cretaceous of Antarctica (blue frame); polar view showing details of sculpture, big apocolpium and short colpi (arrowheads); B, Extant pollen of Coriaria arborea (magenta frame); polar view showing details of sculpture and colpi length (arrowhead). — Scale bars = 5 μm.

opencc-by-4.0Feb 2020View details →
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Fig. 3 in The First Record of a Pterosaur from the Early Cretaceous Strata of Öösh (Övörkhangai; Mongolia)

Fig. 3. Cladogram illustrating the phylogenetic relationships of the Pterodactyloidea as presented by Kellner (1996). The possible placement of the midcervical vertebrae, IGM 100/1321, is represented by the solid white lines. These lines mark the distribution of midcervical vertebrae with tall and bladelike neural spines, lateral pneumatic foramina, and postexapophyses within the Pterodactyloidea.

opencc-by-4.0Mar 2005View details →
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Fig. 2 in The First Record of a Pterosaur from the Early Cretaceous Strata of Öösh (Övörkhangai; Mongolia)

Fig. 2. Photograph of IGM 100/1321 in A, dorsal; B, posterior; C, right lateral; D, ventral; E, anterior; and F, left posterolateral view. See text for a list of abbreviations. Scale equals 1 cm.

opencc-by-4.0Mar 2005View details →
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Fig. 1 in The First Record of a Pterosaur from the Early Cretaceous Strata of Öösh (Övörkhangai; Mongolia)

Fig. 1. Map of Mongolia showing the geographical relationship of the Öösh locality to other Gobi fossil localities (modified from Watabe and Suzuki, 2000).

opencc-by-4.0Mar 2005View details →
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Text-fig. 1. Location of Ivanovce Pliocene primate site in Slovakia within the wider area of the Carpathians-Pannonian Basin (white circle). The northern wall of the former limestone quarry at Ivanovce near Trenčín in western Slovakia. Several karst fillings provided a rich early Pliocene vertebrate assemblage. a: schematic sketch of the site showing the location of different karst fillings, b: photo of the same site during the palaeontological research in 1960s. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record

Text-fig. 1. Location of Ivanovce Pliocene primate site in Slovakia within the wider area of the Carpathians-Pannonian Basin (white circle). The northern wall of the former limestone quarry at Ivanovce near Trenčín in western Slovakia. Several karst fillings provided a rich early Pliocene vertebrate assemblage. a: schematic sketch of the site showing the location of different karst fillings, b: photo of the same site during the palaeontological research in 1960s.

opencc-by-4.0Nov 2020View details →
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Text-fig. 18. Landscape reconstruction of the Late Miocene localities of the North Caucasus studied. a – general view of the reconstructed riparian biotope; b – periaquatic fauna. Drawings by S. Kruskop. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 18. Landscape reconstruction of the Late Miocene localities of the North Caucasus studied. a – general view of the reconstructed riparian biotope; b – periaquatic fauna. Drawings by S. Kruskop.

opencc-by-4.0Dec 2017View details →
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Text-fig. 17. Scatter diagram of length and width of Promephitis species from Late Miocene faunas of southern Europe and western Asia. a – Promephitis maeotica, p4, dex, Gaverdovsky, GIN-1144-301: labial (left) and lingual (right) views. b – P. maeotica, p4, sin, reversed, Novoelizavetovka, PIN-355: labial (left) and lingual (right) views. Scale 1 mm. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 17. Scatter diagram of length and width of Promephitis species from Late Miocene faunas of southern Europe and western Asia. a – Promephitis maeotica, p4, dex, Gaverdovsky, GIN-1144-301: labial (left) and lingual (right) views. b – P. maeotica, p4, sin, reversed, Novoelizavetovka, PIN-355: labial (left) and lingual (right) views. Scale 1 mm.

opencc-by-4.0Dec 2017View details →
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Text-fig. 14. Trogontherium (Euroxenomys) minutum. Volchaya Balka. Late Miocene deposits, North Caucasus. a – P4, b – M1, c – M2, GIN-1143-131, occlusal view. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 14. Trogontherium (Euroxenomys) minutum. Volchaya Balka. Late Miocene deposits, North Caucasus. a – P4, b – M1, c – M2, GIN-1143-131, occlusal view.

opencc-by-4.0Dec 2017View details →
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Text-fig. 19. Position of the studied faunas correlated to chronostratigraphic and biochronological charts. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 19. Position of the studied faunas correlated to chronostratigraphic and biochronological charts.

opencc-by-4.0Dec 2017View details →
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Text-fig. 15. Large mammal remains from Gaverdovsky and Volchaya Balka, Late Miocene, North Caucasus. a – Hipparion cf. moldavicum, SSC-RAS G-1/1, upper right M1–2, occlusal view, Gaverdovsky; b – Hipparion aff. gromovae, SSC-RAS G-1/2, lower right m3, occlusal view, Gaverdovsky; c – Hipparion sp., SSC-RAS G-1/4, lower right m1, occlusal view, Volchaya Balka; d–e – Microstonyx aff. major, SSC-RAS G-1/3, upper left dP4, d – occlusal view, e – lingual view, Volchaya Balka. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 15. Large mammal remains from Gaverdovsky and Volchaya Balka, Late Miocene, North Caucasus. a – Hipparion cf. moldavicum, SSC-RAS G-1/1, upper right M1–2, occlusal view, Gaverdovsky; b – Hipparion aff. gromovae, SSC-RAS G-1/2, lower right m3, occlusal view, Gaverdovsky; c – Hipparion sp., SSC-RAS G-1/4, lower right m1, occlusal view, Volchaya Balka; d–e – Microstonyx aff. major, SSC-RAS G-1/3, upper left dP4, d – occlusal view, e – lingual view, Volchaya Balka.

opencc-by-4.0Dec 2017View details →
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Text-fig. 13. Hypsodonty in different Collimys species. a, b, d, f – M1, labial view; c, e, g – m1, lingual view; a – C. transversus, Steinheim, late Middle Miocene ("MN 7"); b, c – C. longidens, Nebelbergweg, Middle-Late Miocene transition, MN 8/9; d, e – C. primus, Eichkogel, Late Miocene, MN 11; f, g – C. caucasicus sp. nov., Gaverdovsky (f) and Volchaya Balka (g, holotype), Late Miocene, MN 11. a–e – modified after Kälin and Engesser (2001). in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 13. Hypsodonty in different Collimys species. a, b, d, f – M1, labial view; c, e, g – m1, lingual view; a – C. transversus, Steinheim, late Middle Miocene ("MN 7"); b, c – C. longidens, Nebelbergweg, Middle-Late Miocene transition, MN 8/9; d, e – C. primus, Eichkogel, Late Miocene, MN 11; f, g – C. caucasicus sp. nov., Gaverdovsky (f) and Volchaya Balka (g, holotype), Late Miocene, MN 11. a–e – modified after Kälin and Engesser (2001).

opencc-by-4.0Dec 2017View details →
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Text-fig. 9. Bats from Late Miocene deposits, North Caucasus. a – Myotis sp. 1, right M2, GIN-1143-411; b – Myotis sp. 1, M2, dex, GIN-1143-412; c – Myotis sp. 2, m1 or m2, dex, GIN-1144- 311; e – Myotis sp. 2, M2, dex, GIN-1144-312; d – Eptesicus sp., M1 or M2, sin, GIN-1143-413. a, b, d – Volchaya Balka; c, e – Gaverdovsky. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 9. Bats from Late Miocene deposits, North Caucasus. a – Myotis sp. 1, right M2, GIN-1143-411; b – Myotis sp. 1, M2, dex, GIN-1143-412; c – Myotis sp. 2, m1 or m2, dex, GIN-1144- 311; e – Myotis sp. 2, M2, dex, GIN-1144-312; d – Eptesicus sp., M1 or M2, sin, GIN-1143-413. a, b, d – Volchaya Balka; c, e – Gaverdovsky.

opencc-by-4.0Dec 2017View details →
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Text-fig. 12. Scatter diagrams of upper (a) and lower (b) molars of Parapodemus lugdunensis, Gaverdovsky and Volchaya Balka, Late Miocene, North Caucasus. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 12. Scatter diagrams of upper (a) and lower (b) molars of Parapodemus lugdunensis, Gaverdovsky and Volchaya Balka, Late Miocene, North Caucasus.

opencc-by-4.0Dec 2017View details →
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Text-fig. 10. Amblycoptus oligodon, Late Miocene deposits, North Caucasus. a – A1, sin, GIN-1143-182; b – P4, sin, GIN- 1143-183; c – M1, dex, GIN-1143-184; d – I sup, sin, labial view, GIN-1143-181; e – i inf, sin, labial view, GIN-1143-186; f – fragment of mandible with m1–m2, dex, occlusal view, GIN- 1144-181; g – fragment of mandible, dex, condilar view, GIN- 1143-185. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 10. Amblycoptus oligodon, Late Miocene deposits, North Caucasus. a – A1, sin, GIN-1143-182; b – P4, sin, GIN- 1143-183; c – M1, dex, GIN-1143-184; d – I sup, sin, labial view, GIN-1143-181; e – i inf, sin, labial view, GIN-1143-186; f – fragment of mandible with m1–m2, dex, occlusal view, GIN- 1144-181; g – fragment of mandible, dex, condilar view, GIN- 1143-185.

opencc-by-4.0Dec 2017View details →
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Text-fig. 8. Tarsometatarsi of fossil and Recent Sylvioidea. a – PIN, № 5528/3 from Volchaya Balka; b – PIN № 5528/4 from Volchaya Balka; c – Sylvia intermedia KESSLER, 2013; d – Sylvia borin (BODDAERT, 1783). a1–d1 – dorsal view; a2–d2 – plantar view; a3–d3 – distal view. Scale bars 1 mm. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 8. Tarsometatarsi of fossil and Recent Sylvioidea. a – PIN, № 5528/3 from Volchaya Balka; b – PIN № 5528/4 from Volchaya Balka; c – Sylvia intermedia KESSLER, 2013; d – Sylvia borin (BODDAERT, 1783). a1–d1 – dorsal view; a2–d2 – plantar view; a3–d3 – distal view. Scale bars 1 mm.

opencc-by-4.0Dec 2017View details →
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Text-fig. 7. Fossil urodelans from studied localities. a, b – Mioproteus caucasicus, trunk vertebra, dorsal (a) and lateral (b) views; c, d – Chelotriton paradoxus, trunk vertebra, dorsal (c) and lateral (d) view. Scale bar 1 mm. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology

Text-fig. 7. Fossil urodelans from studied localities. a, b – Mioproteus caucasicus, trunk vertebra, dorsal (a) and lateral (b) views; c, d – Chelotriton paradoxus, trunk vertebra, dorsal (c) and lateral (d) view. Scale bar 1 mm.

opencc-by-4.0Dec 2017View details →

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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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
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OpenNeuro

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