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”
Fig. 3 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 3. Dentary of Priusaulax wilsoni sp. nov., UNSM 26599 from Hemingfordian (early Miocene) Upper Arikaree Group, Nebraska, USA, in right lateral (A) and posterior (B) views.
Fig. 3 in Feeding habits and habitat of herbivorous mammals from the Early-Late Hemphillian (Miocene) of Costa Rica
Fig. 3. Comparative analysis of carbon and oxygen stable isotope values in dental enamel from fossil herbivorous mammals of the San Gerardo de Limoncito locality.
Fig. 1. A in Feeding habits and habitat of herbivorous mammals from the Early-Late Hemphillian (Miocene) of Costa Rica
Fig. 1. A. Geographic location of studied area. B. Geological map of the San Gerardo de Limoncito area, modified from Denyer and Alvarado (2007).
Fig. 5 in A new capybara from the late Miocene of San Juan Province, Argentina, and its phylogenetic implications
Fig. 5. Schematic occlusal view of upper teeth of Cardiatherium (A–C) and Phugatherium (D–E). A. Cardiatherium calingastaense sp. nov. (late Miocene, Puchuzum, San Juan Province, Argentina), INGEO-PV 87, right P4–M3. B. Cardiatherium patagonicum (late Miocene, Estancia Rincón Chico, Chubut Province, Argentina), MPEF-PV 740/22, reversed left P4; MPEF-PV 740/23, reversed left M1 or M2; MPEF-PV 740/18, right M3. C. Cardiatherium paranense (late Miocene, Ituzaingó Formation, Entre Ríos Province, Argentina), MLP 87-XI-1-27, right P4–M3. D. Phugatherium novum (middle Pliocene, Chapadamalal Formation, Buenos Aires Province, Argentina), MMP 492-S, right P4–M1. E. Phugatherium cataclisticum late Miocene–Early Pliocene, Monte Hermoso Formation, Buenos Aires Province, Argentina), MLP 15-231a, right M1.
Fig. 4 in A new capybara from the late Miocene of San Juan Province, Argentina, and its phylogenetic implications
Fig. 4. Occlusal dental details of the holotype (INGEO-PV 87) of the hydrochoerine rodent Cardiatherium calingastaense sp. nov., late Miocene, Puchuzum, San Juan Province, Argentina. Right P4–M3 (A1), left P4–M1 (A2), left M1–M2 (A3), posterior part of right M3 (A4), left p4–m3 (A5), right m1 (A6), left m3 (A7), left p4 (A8), right p4 (A9).
Fig. 3 in A new capybara from the late Miocene of San Juan Province, Argentina, and its phylogenetic implications
Fig. 3. Holotype (INGEO-PV 87) of the hydrochoerine rodent Cardiatherium calingastaense sp. nov., late Miocene, Puchuzum, San Juan Province, Argentina. A. Skull in dorsal (A1) and ventral (A2) views, and detail of the scars for masseter medialis muscle (A3); correspondence indicated by lines. B. Mandible in occlusal (B1) and left lateral (B2) views.
Fig. 2 in A new capybara from the late Miocene of San Juan Province, Argentina, and its phylogenetic implications
Fig. 2. Dental nomenclature (occlusal view). A–C, E. Cardiatherium calingastaense sp. nov. A. Right p4. B. Right m1. C. Right m3. E. Right M1. D. Cardiatherium patagonicum, right p4. Abbreviations: c, column; he, external fissure (or flexid); HFI, fundamental internal fissure (hypoflexus); hfe, fundamental external fissure; hi, internal fissure; HPE, primary external fissure; hpi, primary internal fissure; HSE/hse, secondary external fissure; hsi, secondary internal fissure; hsni, internal supernumerary fissure; hti, tertiary internal fissure; pr, prism; prIIa/b, anterior and posterior lobes of pr II; prsa, anterior secondary prism.
Fig. 6 in A new capybara from the late Miocene of San Juan Province, Argentina, and its phylogenetic implications
Fig. 6. Schematic occlusal view of lower teeth of Cardiatherium. A. Cardiatherium calingastaense sp. nov. (late Miocene, Puchuzum, San Juan Province, Argentina), holotype, INGEO-PV 87, right p4–m2 and reversed left m3. B. Cardiatherium patagonicum (late Miocene, Estancia Rincón Chico, Chubut Province, Argentina), MPEF-PV 740/9, reversed left p4; MPEF-PV 740/24, right m1–m2; MPEF-PV 740/7, reversed left m3. C. Cardiatherium paranense (late Miocene, Ituzaingó Formation, Entre Ríos Province, Argentina), MLP 40-XI-15-1, right p4–m3. D. Cardiatherium orientalis (late Miocene, Camacho Formation, San Gregorio, Uruguay), SPV-FHC-27-XI-64-20, right p4–m3. E. Cardiatherium chasicoense (late Miocene, Arroyo Chasicó, Buenos Aires Province, Argentina), MMP 300-M, right p4–m2; MMH-CH 88-6-71, reversed left m3.
Fig. 7 in A new capybara from the late Miocene of San Juan Province, Argentina, and its phylogenetic implications
Fig. 7. Stratigraphic adjustment of the strict consensus tree for the phylogenetic analysis of Hydrochoerinae (333 MPTs of 3364 steps). Upper case letters indicate the nodes within Hydrochoerinae, as described in the main text. Silhouettes reflect external aspect and relative size of representatives of the main clades within Hydrochoerinae.
Fig. 2 in A new species of silverside from the Late Miocene of NW Iran
Fig. 2. Schematic profile of the Lignite Beds at Baghmisheh−Marzdaran, showing thicknesses, lithofacies and occurrences of fish fossils.
Fig. 3 in A new species of silverside from the Late Miocene of NW Iran
Fig. 3. Morphological characters of atheriniform fish Atherina atropatiensis sp. nov. from the Late Miocene Lignite Beds of the Tabriz Basin, Iran. A. Holotype BSPG 2010 XXI 4, general overview (A1) and caudal skeleton (A2). B. Paratype BSPG 2010 XXI 5, pelvic fins. C. Paratype BSPG 2010 XXI 10, showing details of the anal fin.
Fig. 4 in A new species of silverside from the Late Miocene of NW Iran
Fig. 4. Skull of atheriniform fish Atherina atropatiensis sp. nov. from the Late Miocene Lignite Beds of the Tabriz Basin, Iran. A. Digital image of the paratype BSPG 2010 XXI−7. B. Drawing of specimen BSPG 2010 XXI−6.
Fig. 2 in A Late Miocene potential neobalaenine mandible from Argentina sheds light on the origins of the living pygmy right whale
Fig. 2. Left mandible of a fossil neobalaenine baleen whale, gen. et. sp. indet. (MPEF-PV2572) from Punta Ninfas, Chubut Province, Argentina; Puerto Madryn Formation (Late Miocene), showing the mandibular condyle as preserved in the field prior to excavation.
Fig. 1 in A Late Miocene potential neobalaenine mandible from Argentina sheds light on the origins of the living pygmy right whale
Fig. 1. Left mandible of a fossil neobalaenine baleen whale, gen. et sp. indet. (MPEF-PV2572) from Punta Ninfas Chubut Province, Argentina; Puerto Madryn Formation (Late Miocene). A. Lateral view. B. Medial view. C. Medial view of the posterior region of the mandible showing the morphology of the coronoid process. D. Dorsal view of the mandible showing the lateral curvature of the body. E. Anteromedial view of the mandible showing the medial torsion of the anteriormost portion of the body.
Fig. 19 in The anatomy of the Late Miocene baleen whale Cetotherium riabinini from Ukraine
Fig. 19. Hyoid, sternum, and chevron bones of the cetotheriid baleen whale Cetotherium riabinini Hofstein, 1948, Late Miocene of Nikolaev, Ukraine, NMNH-P 668/1, hyoid in ventral (A) and anterodorsal (B) views, sternum in ventral view (C), chevron bones in left lateral view (D).
Fig. 17 in The anatomy of the Late Miocene baleen whale Cetotherium riabinini from Ukraine
Fig. 17. Strict consensus of the 9 most parsimonious trees (386 steps, CI = 0.55, RI = 0.85) arising from the phylogenetic analysis. Numbers below branches indicate bootstrap support values.
Fig. 16 in The anatomy of the Late Miocene baleen whale Cetotherium riabinini from Ukraine
Fig. 16. Left forelimb of the cetotheriid baleen whale Cetotherium riabinini Hofstein, 1948, Late Miocene of Nikolaev, Ukraine, NMNH-P 668/1, in lateral view.
Fig. 9 in The anatomy of the Late Miocene baleen whale Cetotherium riabinini from Ukraine
Fig. 9. Right tympanic bulla of the cetotheriid baleen whale Cetotherium riabinini Hofstein, 1948, Late Miocene of Nikolaev, Ukraine, NMNH-P 668/1, in ventral (A), ventrolateral (B), anterolateral (C), ventromedial (D), medial (E), and posterior (F) views.
Fig. 3 in The anatomy of the Late Miocene baleen whale Cetotherium riabinini from Ukraine
Fig. 3. Comparison of the distal surface of the composite posterior process of the tympanoperiotic in posterolateral view in two cetotheriid baleen whales. A. Cetotherium riabinini Hofstein, 1948, Late Miocene of Nikolaev, Ukraine, NMNH-P 668/1. Photograph (A1), explanatory drawing (A2). B. Cetotherium rathkii Brandt, 1843, south coast of Taman Peninsula, Tortonian, Late Miocene, PIN 1840/1; inverted.
Fig. 12 in The anatomy of the Late Miocene baleen whale Cetotherium riabinini from Ukraine
Fig. 12. Selected vertebrae of the cetotheriid baleen whale Cetotherium riabinini Hofstein, 1948, Late Miocene of Nikolaev, Ukraine, NMNH-P 668/1, in anterior views: C4 (A), C5 (B), C7 (C), L7 (D). Photograph (D), explanatory drawings (A–C).
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.