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1,036 results for “Late Miocene”
FIG. 8 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 1: genera Conilithes Swainson, 1840 and Conus (Kalloconus) da Motta, 1991
FIG. 8. — Elements constituting the colour pattern of Conilithes sp. (MNHN.F.A72593, Makrilia, Crete, Greece). Scale bar: 0.2 cm.
Fig. 2 in Rare Late Miocene Seal Taxa (Carnivora, Phocidae) From The North Sea Basin
Fig. 2. Pontophoca jutlandica sp. n., holotype, incomplete right femur; Gram, Jutland, Denmark. Clay pit of Gram Teglvaerk, Gram Formation (late Miocene, early-middle Tortonian, 8.0–11.5 ma); MSM 1788: 2A — cranial; 2B — caudal view.
Fig. 2 in Beavers Of The Genus Trogontherium (Castoridae, Rodentia)From The Late Miocene Of Ukraine
Fig. 2. Right mandible of Trogontherium (Euroxenomys) minutum rhenanum. Cherevichnoe 3 locality: 1 — labial view; 2 — view on the point of chewing surface. Scale bar 5 mm.
Fig. 34 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 2
Fig. 34. Conus (Plagioconus) aquensis d'Orbigny, 1852 from the Tortonian of Filippi, Crete (Greece) (AMPG(IV) 3915), specimen in close-up. A1. Notice the beaded spire whorls, the three spiral cords on shoulder and the spiral grooves on the rest of the shell. A2. Notice the spiral grooves on last whorl. A3. Notice the delicate spiral cords on sutural ramp, as well as shallow subsutural flexure. Scale bars: A1, A3 = 2 mm; A2 = 1 mm.
Fig. 5 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 2
Fig. 5. Elements constituting the colour pattern of Conus (Lautoconus) ictini sp. nov, holotype AMPG(IV) 3719 from Tefeli Crete (Greece). Notice the axially arranged lines that connect the spiral lines. Scale bar = 1 cm.
Fig. 3 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 2
Fig. 3. Elements constituting the colour pattern of Conus (Lautoconus) eschewegi Pereira da Costa, 1866 (MNHN.F.A82974) from the Tortonian of Crete (Greece). Scale bar = 1 cm.
FIG. 2 in The Late Miocene colobine monkeys from Aragai (Lukeino Formation, Tugen Hills, Kenya)
FIG. 2. — View of the site of Aragai,in the foreground, the small area (with orange-red sediment and around the big Balanites tree) which yielded the colobine material.
FIG. 10. — Sawecolobus lukeinoensis n. gen., n in The Late Miocene colobine monkeys from Aragai (Lukeino Formation, Tugen Hills, Kenya)
FIG. 10. — Sawecolobus lukeinoensis n. gen., n. sp., post-canine teeth: A, left P/3 OCO 305'11: A1, buccal view; A2, lingual view; A3, mesial view; A4, occlusal view; B, right p/3 OCO 101'11: B1, mesial view; B2, distal view; B3, lingual view; B4, buccal view; C, left M2/ BAR 470'00: C1, lingual view; C2, distal view; C3, buccal view; C4, mesial view; C5, occlusal view; D, left: M2/ BAR 1597'01: D1, occlusal view; D2, buccal view of interior of tooth; E, left m/2 BAR 1190'03: E1, buccal view; E2, mesial view; E3, lingual view; E4, distal view; E5, occlusal view; F, half right m/3 BAR 250'03: F1, lingual view; F2, distal view; F3, mesiobuccal view; F4, mesial view; F5, occlusal view; G, right m/2 BAR 349'04: G1, lingual view; G2, distal view; G3, buccal view; G4, mesial view; G5, occlusal view; H, right m/2 OCO 335'10: H1, buccal view; H2, mesial view; H3, lingual view; H4, distal view; H5, occlusal view. Scale bars: 5 mm except for H, 1 cm.
Figure 6 in A new gigantic carnivore (Carnivora, Amphicyonidae) from the late middle Miocene of France
Figure 6 Body mass and diet distribution of the amphicyonids during the Miocene biozones. The horizontal dashed lines refer to the biotic events discussed in the text. The biostratigraphic framework follows Hilgen, Lourens & van Dam (2012). Full-size DOI: 10.7717/peerj.13457/fig-6
Fig. 1 - A in Decapod assemblage from the late Miocene (early-middle Messinian) of the Romagna Apennines nearby Brisighella, Emilia-Romagna (N Italy)
Fig. 1 - A) Callianassa cf. C. subterranea (Montagu, 1808), MSF 2302 (x 6.5). B) Calliax sp., MSF 1157 (x 7.7).
Fig. 1 - Palaemon monsdamarum n in Palaemon monsdamarum n. sp. (Crustacea, Decapoda, Palaemonidae) from the late Miocene of Mondaino (Rimini, Emilia-Romagna, Italy)
Fig. 1 - Palaemon monsdamarum n. sp., Holotype, MSNM i29208. A) General view (x 5.7). B) Line drawing.
FIGURE 9 in Paleoecology of the Rhinocerotidae (Mammalia, Perissodactyla) from Béon 1, Montréal-du-Gers (late early Miocene, SW France): Insights from dental microwear texture analysis, mesowear, and enamel hypoplasia
FIGURE 9. Prevalence of hypoplasia (all types) by species and tooth locus. A- Number of hypoplastic teeth (dark colors) compared to the number of healthy teeth (light colors). B- Frequency of hypoplastic teeth (dark colors) and healthy teeth (light colors). White stands for non-documented loci.
FIGURE 4 in Paleoecology of the Rhinocerotidae (Mammalia, Perissodactyla) from Béon 1, Montréal-du-Gers (late early Miocene, SW France): Insights from dental microwear texture analysis, mesowear, and enamel hypoplasia
FIGURE 4. The three different types of hypoplasia considered in this study and the associated measurements. A- Lingual view of right M2 of the specimen MHNT.PAL.2004.0.58 (H. beonense) displaying three types of hypoplasia. B- Interpretative drawing of the photo in A illustrating the hypoplastic defects: a- pitted hypoplasia, b- linear enamel hypoplasia, and c- aplasia. C- Interpretative drawing of the photo in A illustrating the measurements: 1- distance between the base of the defect and the enamel-dentin junction, 2- width of the defect (when applicable).
FIGURE 3 in Paleoecology of the Rhinocerotidae (Mammalia, Perissodactyla) from Béon 1, Montréal-du-Gers (late early Miocene, SW France): Insights from dental microwear texture analysis, mesowear, and enamel hypoplasia
FIGURE 3. Principle of mesowear scoring with the main variables illustrated (occlusal relief and cusp shape) and examples on rhinocerotid teeth. A- Typically two parameters are studied in mesowear: cusp shape and occlusal relief. Cusp shape can be sharp, round or blunt, while occlusal relief is whether high or low. Illustration on the upper right M1 of the specimen MHNT.PAL.2004.0.58 (H. beonense). Examples of mesowear scores using the three methods tested in this study (ScoreA, ScoreB, Ruler) are provided on the paracone of the following specimens: B- Right D4 of MHNT.PAL.2015.0.1204 (G2 685; Pl. mirallesi), C- Left M1 and M2 MHNT.PAL.2015.0.277 (Pr. douvillei), D- Left D4 of MHNT.PAL.2015.0.1204 (Béon F2 193; Pl. mirallesi), E- Left D3 and D4 of MHNT.PAL.2015.0.2796 (Pr. douvillei). ScoreA: mesowear score based on Winkler and Kaiser (2011); B- ScoreB: mesowear score adapted from Fortelius and Solounias (2000); C- Ruler: mesowear score based on Mihlbachler et al. (2011).
FIGURE 6 in Paleoecology of the Rhinocerotidae (Mammalia, Perissodactyla) from Béon 1, Montréal-du-Gers (late early Miocene, SW France): Insights from dental microwear texture analysis, mesowear, and enamel hypoplasia
FIGURE 6. Comparison of hand- and sand-prepared DMTA surfaces (200x200 µm) by species. Topography and black and white photosimulation of the following specimens: B. brachypus – hand-prepared MHNT.PAL.2015.0.1262 right m3 (protoconid, shearing facet) and sand-prepared MHNT.PAL.2015.0.2830 left m2 (hypoconid, shearing facet); Pr. douvillei – hand prepared MHNT.PAL.2015.0.1228 left m3 (protoconid, grinding facet) and sand-prepared MHNT.PAL.2015.0.2758 left m2 ptc (protoconid, grinding facet); Pl. mirallesi – hand-prepared MHNT.PAL.2015.0.1196 left m2 ptc (protoconid, shearing facet) and sand-prepared MHNT.PAL.2015.0.2794 (2002 E2 30) left m1 (hypoconid, shearing facet); H. beonense – hand-prepared MHNT.PAL.2015.0.1140 left m1 (hypoconid, grinding facet) and sand-prepared MHNT.PAL.2015.0. 1136.1 right M3 (protocone, grinding facet).
FIGURE 2 in Paleoecology of the Rhinocerotidae (Mammalia, Perissodactyla) from Béon 1, Montréal-du-Gers (late early Miocene, SW France): Insights from dental microwear texture analysis, mesowear, and enamel hypoplasia
FIGURE 2. Localization of the microwear facets on rhinocerotid molars. Position of the two microwear facets (grinding and shearing) on the second upper molar (left) and second lower molar (right). Both facets are sampled on the same enamel band with (grinding) or without (shearing) Hunter-Schreger bands (HSB). Modified after Hullot et al. (2019).
FIGURE 6 in Late Miocene molluscs of the Morskaya 2 site (Azov Sea region, Russia)
FIGURE 6. Assemblage of the Maeotian terrestrial molluscs (layer 3). 1, cf. Helicella sp. 2, Helicodiscus (Helicodiscus) roemeri (Andreae, 1902). 3, Vallonia cf. pulchella (Müller, 1774). 4-5,? Deroceras sp.
Fig. 2 in Feeding habits and habitat of herbivorous mammals from the Early-Late Hemphillian (Miocene) of Costa Rica
Fig. 2. Stratigraphic column of the fossil-bearing locality, San Gerardo de Limoncito, modified from Laurito and Valerio (2010). Abbreviations: C, clay; c, coarse sandstone; Co, conglomerate; f, fine; g, gravel; m, middle; u., unconformity.
FIG. 26. A in Exceptional Skull Of Huayqueriana (Mammalia, Litopterna, Macraucheniidae) From The Late Miocene Of Argentina: Anatomy, Systematics, And Paleobiological Implications
FIG. 26. A, Strict consensus of 27 most parsimonious trees (length, 70; CI, 0.643; RI, 0.786); B, strict consensus of 3 most parsimonious trees (length, 61; CI, 0.738; RI, 0.863), restricted to taxa with 50% or more of total characters scorable; C, strict consensus of 3 most parsimonious trees (length, 55; CI, 0.818; RI, 0.915), restricted to taxa with 75% or more characters scorable. Bootstrap GC values are given at nodes.
FIG. 2. — A in Mammal bearing late Miocene tuffs of the Akkaşdağı region; distribution, age, petrographical and geochemical characteristics
FIG. 2. — A, detailed geological map of the area with mammal locaties; B, section across the Akkaşdağı mammal locality and facies distribution in the Akkaşdağı Formation.
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Allen Brain Atlas
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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.
DANDI Archive for NWB datasets
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OpenNeuro
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