Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,036
datasets available to search
ShareScore release 0.9.0
Dataset results
1,036 results for “Late Miocene”
Figure 1 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 1 Phasmon typhlops gen. nov. et sp. nov., male holotype (14.4 × 9.0 mm), SYSBM 001982 (A) female paratype (22.1 × 13.7 mm), AM P.105524 (B). Dorsal habitus.
Figure 5 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 5 Bayesian inference (BI) tree of 16S rDNA for the "China-East Asian Islands" Group of the subfamily Potamiscinae. Support values at nodes represent posterior probabilities and bootstrap proportions > 50% for BI and maximum likelihood (ML), respectively.
Figure 4 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 4 Phasmon typhlops gen. nov. et sp. nov., gonopods: left G1, abdominal view (A) left G1, sternal view (B) left G2, mesial view (C) left G2, pleonal view (D). Scale bar: 0.5 mm.
Figure 2 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 2. Reconstruction of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov., dorsal view: A, skull; B, mandible. Dotted lines correspond to reconstructed areas. Scale bar = 100 mm.
Figure 19 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 19. Boxplot of the ratio AL/TL between the length from the posterior end of the alveolar groove to the posterior end of the mandible (AL) and the total length of the mandible (TL). The circled data correspond to the two long-snouted fossil ziphiids Messapicetus gregarius and Ninoziphius platyrostris, the most similar in size to Dagonodum mojnum gen. nov., sp. nov.
Figure 17 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 17. The most parsimonious tree obtained with maximum of parsimony to decipher the relationships of MSM1001x, Dagonodum mojnum gen. nov., sp. nov., among Ziphiidae. Tree length = 215; consistency index = 0.474; retention index = 0.698. Numbers above the branches = bootstrap values; numbers below the branches = absolute Bremer support values. Values of Bootstrap under 50% are not presented. †Fossil species.
Figure 1 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 1. Current extension of the Gram Formation in Denmark (shaded area). The type locality is situated in the Gram claypit, 1.5 km north of Gram. Modified from Rasmussen (1966).
FIGURE 5 in Probittacomorpha brisaci n. sp. (Ptychopteridae, Bittacomorphinae) from the Late Miocene of Montagne d'Andance, Saint Bauzile, Ardèche (France)
FIGURE 5. Phylogenetic relations tree of the subfamily Bittacomorphinae (WinClada, Ci=100, Ri=100).
FIGURE 1. Probittacomorpha brisaci n in Probittacomorpha brisaci n. sp. (Ptychopteridae, Bittacomorphinae) from the Late Miocene of Montagne d'Andance, Saint Bauzile, Ardèche (France)
FIGURE 1. Probittacomorpha brisaci n. sp., holotype No. MNHN.F.A46700, dorsal view.
FIGURE 4 in Probittacomorpha brisaci n. sp. (Ptychopteridae, Bittacomorphinae) from the Late Miocene of Montagne d'Andance, Saint Bauzile, Ardèche (France)
FIGURE 4. Phylogenetic position of Probittacomorpha (after Ansorge & Schröder 1999).
FIGURE 1 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 1. Location of Gaojiashan of the Linxia Basin in Hezheng County, Gansu Province, China.
FIGURE 2 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 2. Terminology of cervid cheek teeth (after Dong 2004). A, premolar; B. molar.
Fig. 22 in Phyletic Diversification Of The Cormohipparion Occidentale Complex (Mammalia; Perissodactyla, Equidae), Late Miocene, North America, And The Origin Of The Old World Hippotherium Datum
Fig. 22. Log-ratio diagram of cranial dimensions of Cormohipparion fricki compared with C. occidentale, XMas-Kat quarries, Merritt Dam Member, Ash Hollow Formation, Cherry County, Nebraska.
Fig. 9 in Phyletic Diversification Of The Cormohipparion Occidentale Complex (Mammalia; Perissodactyla, Equidae), Late Miocene, North America, And The Origin Of The Old World Hippotherium Datum
Fig. 9. Upper cheek tooth dentition of Cormohipparion. A, C. goorisi, type, F:AM 73940, LdP1, P2– M3, Trinity River Pit 1, early Barstovian, Texas. B, C. quinni, type, F:AM 71888, LdP1, P2–M3, Devil's Gulch Horse Quarry, late Barstovian, Nebraska. C, C. occidentale, F:AM 71800, RP2, P3,?M1, M2, reversed, LP3, XMas-Kat quarries, medial Clarendonian, Nebraska. D, C. occidentale, type, ANSP 11287, Little White River, early Clarendonian, South Dakota. After Skinner and MacFadden (1977: fig. 4).
Fig. 17. Cormohipparion johnsoni, F in Phyletic Diversification Of The Cormohipparion Occidentale Complex (Mammalia; Perissodactyla, Equidae), Late Miocene, North America, And The Origin Of The Old World Hippotherium Datum
Fig. 17. Cormohipparion johnsoni, F:AM 71894, Burge Quarry, Burge Member, Valentine Formation, Cherry County, Nebraska, late Barstovian. A, lateral view of juvenile cranium, drawn by S. Gray. B, occlusal view of left dP1–P4, drawn by E. L. F.
Fig. 26. Cormohipparion quinni, AMNH 108535 in Phyletic Diversification Of The Cormohipparion Occidentale Complex (Mammalia; Perissodactyla, Equidae), Late Miocene, North America, And The Origin Of The Old World Hippotherium Datum
Fig. 26. Cormohipparion quinni, AMNH 108535, MacAdams Quarry, Clarendon beds, Texas, medial Clarendonian. A, left lateral view of cranium. B, occlusal view of left P2–M3.
Fig. 7 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 7. Scatter plot comparing the basal proportions of the horn cores of Sporadotragus parvidens from Şerefköy-2 (Turkey), Samos and Pikermi (Late Miocene, Greece) with Sporadotragus vasili from Kalimantsi and Strumyani (Late Miocene, Bulgaria), and Sporadotragus from Kemiklitepe D (Late Miocene, Turkey). APDbase, anteroposterior diameter at the base; TDbase, transverse diameter at the base.
FIG. 19 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 1: genera Conilithes Swainson, 1840 and Conus (Kalloconus) da Motta, 1991
FIG. 19. — Syntype of Conus (Kalloconus) gulemani Erünal-ErentÖz, 1958, MNHN.FA26722 (Serravallian, Zengen KÖy S, Derebogazi, Karaman Basin, Turkey). Photos taken under natural light by J. Mouchart. Scale bar: 1 cm.
FIG. 15 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 1: genera Conilithes Swainson, 1840 and Conus (Kalloconus) da Motta, 1991
FIG. 15. — Pattern constituted of blotches in Conus (Kalloconus) neumayri Hoernes & Auinger, 1879 from the Tortonian of Crete (Greece). The elements of the colour pattern come from the specimen MNHN.F.A72602 (Fig. 13B2, Makrilia). Scale bar: 1 cm.
FIG. 1 in Late Miocene Conidae (Mollusca: Gastropoda) of Crete (Greece). Part 1: genera Conilithes Swainson, 1840 and Conus (Kalloconus) da Motta, 1991
FIG. 1. — General sketch map of central and eastern Crete, showing the localities from where the material was collected. Grey coloured areas show the Upper Nappes and Lower Nappes combined as the pre-Neogene basement, while the Neogene and Quaternary are shown in white colour. Abbreviations: P, Psiloritis Mountains; A, Asterousia Mountains; D, Dikti Mountains. Localities shown in numbers: 1, Tylissos; 2, Keramoutsi; 3, Panassos; 4, Apomarma; 5, Psalidha; 6, Adhraktia; 7, Tefeli; 8, Partira; 9, Filippi; 10, Makrilia; 11, Achladhia.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
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
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.