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1,036 results for “Late Miocene”

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dryad32/100

Data from: Nasal compartmentalization in Kogiidae (Cetacea, Physeteroidea): Insights from a new late Miocene dwarf sperm whale from the Pisco Formation

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publicDec 2020View details →
dryad32/100

Data from: Carnivoran resource and habitat use in the context of a Late Miocene faunal turnover episode

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publicMar 2018View details →
dryad32/100

To mate, or not to mate: the evolution of reproductive diapause facilitates insect radiation into African savannahs in the Late Miocene

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publicDec 2019View details →
dryad32/100

Data from: No deep diving: evidence of predation on epipelagic fish for a stem beaked whale from the late Miocene of Peru

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publicAug 2015View details →
dryad32/100

Data from: A systematic review of cetothere baleen whales (Cetacea, Cetotheriidae) from the Late Miocene of Crimea and Caucasus, with a new genus

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publicSep 2017View details →
zenodo28/100

FIG. 2. — A in An appraisal of the Middle-Late Miocene fossil decapod crustaceans of the 'Faluns' (Anjou-Touraine, France)

FIG. 2. — A, Panoramic view of the Museum quarry 'la carrière-musée' (Channay-sur-Lathan); B, lithostratigraphic columns from the differents shelly sands quarries. Log 1, 'la carrière-musée' (Channay-sur-Lathan, Indre-et-Loire); Log 2, 'La Sonneterie' (Meigné-le-Vicomte, Maine-et-Loire); Log 3, 'Les Bournais' (St-Laurentde-Lin, Indre-et-Loire). Cells: 1, Eocene green marl; 2, Oligocene limestone; 3, clinostratified calcarenite (Upper Burdigalian to Lower Langhian); 4, Bryozoans clayey shelly sands, 'Savignean facies' (Langhian to Serravallian); 5, Bioclastic calcarenite with Anadara turonica (Tortonian); 6, modern soils (Quaternary-Actual); 7, Miocene erosive surface; 8, Fossil occurrences. Photograph by A. Ossó; drawing by C. Gagnaison.

opencc-zeroApr 2019View details →
zenodo28/100

FIG. 6 in An appraisal of the Middle-Late Miocene fossil decapod crustaceans of the 'Faluns' (Anjou-Touraine, France)

FIG. 6. — Digital reproduction of the figures from Couffon (1908) with the original nomenclature: A-D, Titanocarcinus pulchellus Al. Milne-Edwards, 1865 (sic); E, F, Cancer Sismondae Meyer, 1843? (sic); G, Cancer Deshayesii A. Milne-Edwards, 1865 (sic). Without scale.

opencc-zeroApr 2019View details →
zenodo28/100

FIG. 5. — A, B in An appraisal of the Middle-Late Miocene fossil decapod crustaceans of the 'Faluns' (Anjou-Touraine, France)

FIG. 5. — A, B, Liocarcinus sp., MS2012 0 172b: A, dorsal view; B, frontal view; C, D, Necronectes michelini (A. Milne-Edwards, 1861): C, ULB-SO-9, right dactylus; D, ULB-SO-10, left dactylus; E, Paguristes gagnaisoni Gagnaison, 2012, MS2006 FS 134b, right chela; F-I, Xantho cf. moldavicus (Yanakevich, 1977): F, ULB-SO-11, left chela, inner lateral view; G, outer lateral view; H, ULB-SO-12, left chela, outer lateral view; I, frontolateral view; J-M, undetermined chelae: J, ULB-SO-13, lateral view of right chela; K, frontal view; L, ULB-SO-14, lateral view of left chela; M, close-up showing an encrusted colony of bryozoans. Scale bars: A, B, 5 mm; C-M, 10 mm. Photographs by À. Ossó.

opencc-zeroApr 2019View details →
zenodo28/100

FIG. 4. — A-F in An appraisal of the Middle-Late Miocene fossil decapod crustaceans of the 'Faluns' (Anjou-Touraine, France)

FIG. 4. — A-F, Maja orbignyana Millet de la Turtaudière, 1865: A, ULB-SO-2, frontal view of left orbit; B, MS2012 0 172a, dorsal view of anterior part of carapace; C, ULB-SO-3, frontal view of left orbit; D, ULB-SO-3, frontal view of left orbit; E, ULB-SO-4, merus of ambulatory leg; F, ULB-SO-5, dactylus of ambulatory leg; G-L, Pilumnus mediterraneus (Lőrenthey, 1897): G, ULB-SO-6, dorsal view; H, frontal view; I, MS2012 0 170, frontal view; J, dorsal view; K, ULB-SO-7, left chela; L, ULB-SO-8, left chela. Scale bars: 10 mm. Photographs by À. Ossó.

opencc-zeroApr 2019View details →
zenodo28/100

FIG. 3. — A-C in An appraisal of the Middle-Late Miocene fossil decapod crustaceans of the 'Faluns' (Anjou-Touraine, France)

FIG. 3. — A-C, Calappa praelata Lőrenthey in Lőrenthey & Beurlen, 1929, MS2006 FS 134a: A, dorsal view; B, frontal view; C, close-up of posterolateral margin; D, E, Calappa sp., MS2018-2-1: D, left chela, MS2018-2-2; E, right chela; F-J, Hebertides jurassica Guinot, De Angeli & Garassino, 2007; F-H, MS2018-1-1: F, right lateral view; G, frontal view; H, dorsal view; I, J, ULB-SO-1: I, fragment of right dorsal carapace; J, the same fragment showing bryozoans incrusted. Scale bars: A-H, 10 mm; I, J, 5 mm. Photographs by À. Ossó.

opencc-zeroApr 2019View details →
zenodo28/100

FIG. 1 in A skull of Machairodus Kaup, 1833 (Felidae, Mammalia) from the late Miocene of Hadjidimovo (Bulgaria), and its place in the evolution of the genus

FIG. 1. — Machairodus giganteus (Wagner, 1848), HD-9196: A, lateral view; B, dorsal view; C, ventral view; D, caudal view; E, stereo view of upper teeth; F, section of the broken right canine. Scale bar: A-C, 10 cm; D, E, 5 cm.

opencc-zeroApr 2020View details →
zenodo28/100

APPENDIX 1 in A skull of Machairodus Kaup, 1833 (Felidae, Mammalia) from the late Miocene of Hadjidimovo (Bulgaria), and its place in the evolution of the genus

APPENDIX 1. — Supplementary data: 3D reconstruction of the Machairodus giganteus cranium from Hadjidimovo, HD-9196. The reconstruction in available in PLY version (http://sciencepress.mnhn.fr/sites/default/files/documents/en/geodiversitas2020v42a9_s1_machairodus_source.ply_.zip; c. 15 MB) and PDF (http:// sciencepress.mnhn.fr/sites/default/files/documents/en/geodiversitas2020v42a9_s1_machairodus_textured.pdf; c. 25 MB).

opencc-zeroApr 2020View details →
zenodo28/100

FIG. 4 in A skull of Machairodus Kaup, 1833 (Felidae, Mammalia) from the late Miocene of Hadjidimovo (Bulgaria), and its place in the evolution of the genus

FIG. 4. — Scatterplot of upper canine length vs width in Machairodus Kaup, 1833 and Homotherium Fabrini, 1890 (blue and purple dots), in mm. In all scatterplots, the line joins the minimum, mean, and maximum values of Batallones-1 (Antón et al. 2004). Additional data from: Ballésio 1963; Beaumont 1975, 1988; Bonis 1976, 1994; Chang 1957; Collings 1972; Ficcarelli 1979; Geraads et al. 2004; Ginsburg et al. 1981; Hendey 1974; Kurtén 1978; Madurell-Malapeira et al. 2014; Melentis 1967; Monescillo et al. 2014; Morlo & Semenov 2004; Pei 1934; Qiu et al. 2004, 2008; Roussiakis & Theodorou 2003; Sardella & Iurino 2012; Scharapov 1996; Schmidt-Kittler 1976; Senyürek 1957; Sotnikova 1992; Spassov et al. 2018; Teilhard 1939; Vekua 1972; Zdansky 1924, and personal measurements.

opencc-zeroApr 2020View details →
zenodo28/100

FIG. 11 in A skull of Machairodus Kaup, 1833 (Felidae, Mammalia) from the late Miocene of Hadjidimovo (Bulgaria), and its place in the evolution of the genus

FIG. 11. — Scatterplot of p4 length vs m1 length. Data as for Figures 4 to 9, plus: Werdelin & Lewis 2013; Monguillon-Douillet 2000.

opencc-zeroApr 2020View details →
zenodo28/100

FIG. 2 in A skull of Machairodus Kaup, 1833 (Felidae, Mammalia) from the late Miocene of Hadjidimovo (Bulgaria), and its place in the evolution of the genus

FIG. 2. — Orientation of the orbits in HD-9196 and LCTF. The values (in degrees) are those of the dihedral angle between the planes of the left and right orbits, defined by plotting the lowermost, uppermost, and anteriormost points of each orbit in space (this slightly differs from twice the convergence angle of Casares- Hidalgo et al. 2019, who used the most posterior point of orbit instead of the lowermost one). Although the accuracy is only moderate because these points are not very precisely defined, the general picture clearly shows less frontally oriented orbits in Machairodus Kaup, 1833 than in most LCTF. Dinofelis Zdansky, 1924 is an estimate for a cast of D. cristata (Falconer & Cautley, 1836), NHMUK M32148.

opencc-zeroApr 2020View details →
zenodo28/100

FIG. 1 in A new hypercarnivorous mustelid (Mammalia, Carnivora, Mustelidae) from Batallones, late Miocene (MN10), Torrejón de Velasco, Madrid, Spain

FIG. 1. — Simplified geographic map of the Iberian Peninsula with the Tertiary basins shaded and Madrid Province outlined, including a detailed map of the Cerro de los Batallones fossil complex with the sites with presence of Circamustela peignei n. sp., Batallones-3 and 5 designated in red. Modified from Calvo et al. (2013).

opencc-zeroApr 2020View details →
zenodo28/100

FIG. 5 in A new hypercarnivorous mustelid (Mammalia, Carnivora, Mustelidae) from Batallones, late Miocene (MN10), Torrejón de Velasco, Madrid, Spain

FIG. 5. — Mandibles and lower dentition of Circamustela peignei n. sp. from Batallones-3: A-C, right hemimandible BAT-3'13.1086; A, buccal view; B, lingual view; C, occlusal view; D-F, left hemimandible BAT-3' 13.1048 (paratype); D, buccal view; E, lingual view; F, occlusal view; G-Q, Micro CT-scan reconstruction; G-I, right hemimandible BAT-3'10.1570B; G, buccal view; H, lingual view; I, occlusal view; J-L, left hemimandible BAT-3'10.1570A; J, buccal view; K, lingual view; L, occlusal view. Scale bar: 20 mm.

opencc-zeroApr 2020View details →
dryad28/100

Supplementary material for Roca-Neyra Equids: Late Miocene to Early Pleistocene Hipparion - Equus database for multivariate and statistical analysis for European fossil Equids

<p>We undertake a redescription of the equid sample from the early Pleistocene of Roca – Neyra, France. This locality has been recently calibrated at the Pliocene/Pleistocene boundary (2.6 ± 0.2 Ma) and therefore it is of interest for the first appearance of the genus <i>Equus </i>and last appearance of hipparionine horses. The Roca – Neyra equid sample, re – analyzed herein using morphological, morphometrical and statistical analyses, has revealed the co – occurrence of <i>Plesiohipparion</i> cf. ?<i>P.</i> <i>rocinantis</i> and <i>Equus</i> cf.<i> E. livenzovensis</i>. The analysis undertaken on several European, African and Asian <i>"Hipparion"</i> sensu lato species from late Miocene to early Pleistocene has revealed different remnant <i>Hipparion</i> lineages in the Plio – Pleistocene of Europe: <i>Plesiohipparion</i>, <i>Proboscidippaion</i> and likely <i>Cremohipparion</i>. The discovery of the first European monodactyl horse, <i>Equus</i> cf. <i>E.</i> <i>livenzovensis</i> in itself correlates Roca – Neyra with other 2.6 Ma European localities in Italy, Spain and in the Khapry area (Azov Sea region). The morphological description of the <i>Equus</i> cf. <i>E. livenzovensis</i> lower cheek teeth has highlighted intermediate features between the North American Pliocene species <i>Equus simplicidens</i> and early Pleistocene European <i>Equus stenonis.</i> Our study supports the hypothesis that <i>E. livenzovensis</i> is a plausible evolutionary predecessor for the <i>Equus stenonis</i> group. These observations underscore the importance of Roca – Neyra, as an important locality for the last European hipparions and the first <i>Equus</i> in the early Pleistocene of Europe.</p>

opencc-zeroOct 2020View details →
zenodo28/100

Figure 3 from: Huang C, Ahyong ST, Shih H-T (2020) The second known stygomorphic freshwater crab from China, Phasmon typhlops gen. nov. et sp. nov. (Crustacea, Decapoda, Potamidae), diverged at the beginning of the Late Miocene. ZooKeys 1008: 1-15. https://doi.org/10.3897/zookeys.1008.58854

Figure 3 Phasmon typhlops gen. nov. et sp. nov., male holotype (14.4 × 9.0 mm), SYSBM 001982. Left maxilliped 3 (A) left G2, pleonal view (B) left G1, pleonal view (C) major cheliped (D) minor cheliped (E) colour in life (F). Scale bars: 1.0 mm.

opencc-by-4.0Jan 2021View details →
zenodo28/100

Figure 2 from: Huang C, Ahyong ST, Shih H-T (2020) The second known stygomorphic freshwater crab from China, Phasmon typhlops gen. nov. et sp. nov. (Crustacea, Decapoda, Potamidae), diverged at the beginning of the Late Miocene. ZooKeys 1008: 1-15. https://doi.org/10.3897/zookeys.1008.58854

Figure 2 Phasmon typhlops gen. nov. et sp. nov., male holotype (14.4 × 9.0 mm), SYSBM 001982 (A–D) female paratype (22.1 × 13.7 mm), AM P.105524 (E, F). Cephalothorax, anterior view (A) anterior thoracic sternum (B) anterior thoracic sternum and pleon, ventral view (C) sterno-pleonal cavity with G1 in situ, ventral view (D) pleon, ventral view (E) vulvae, ventral view (F).

opencc-by-4.0Jan 2021View 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