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.
572
datasets available to search
ShareScore release 0.9.0
Dataset results
572 results for “Late Eocene”
FIGURE 3 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 3. Archaeochrysa fracta (Cockerell, 1914), holotype MCZ 4501. A, photograph; B, drawing of forewing venation. Scale bar = 3 mm (both to scale).
FIGURE 14 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 14. Lithochrysa wickhami (Cockerell, 1914), holotype MCZ 4499 (male?). A, specimen; B, right forewing; C, left forewing; D, right hind wing; E, left hind wing; F, end of abdomen. All converted to standard view, with apex to the right. s, unknown structure, Scale bars = 3 mm (A; B–E to scales), 1 mm (F).
FIGURE 2 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 2. Wing venation drawings of Archaeochrysa paranervis Adams, 1967, holotype UCM 4419. A, forewing; B, hind wing (fused veins in red). Scale bar = 3 mm (both to scale).
FIGURE 5 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 5. Archaeochrysa sp., specimen NHM.I.26921 (counterpart). NHMUK PI I.26921 image © The Trustees of the Natural History Museum. Scale bar = 3 mm.
FIGURE 18 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 18. Lithochrysa ferruginea (Cockerell, 1909). A, specimen FLFO 9745. A, specimen as preserved; B, head. e, eye; g, genae; mp, maxillary palpus. Scale bars = 3 mm (A), 1 mm (B).
FIGURE 13 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 13. Wing venation drawings of Cimbrochrysa major sp. nov., paratype FLFO 4194 (male). A, left forewing; B, right forewing; C, right hind wings; D, left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 16 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 16. Wing venation drawings of Lithochrysa meyeri sp. nov., holotype FLFO-11717. A, left forewing; B, right forewing; C, right hind wings; D, left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 15 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 15. Lithochrysa meyeri sp. nov., holotype FLFO 11717. A, part; B, counterpart. Scale bars = 3 mm.
FIGURE 10 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 10. Cimbrochrysa major sp. nov., holotype FLFO 9819 (female) as preserved. A, part (photograph taken with a polarized filter); B, counterpart; C, anterior part of body (ventral view); D, distal part of abdomen (ventral view). e, eye; gx9, gonocoxites 9; S7, seventh sternite; sc, scapus; sp, spermatheca; spd, spermathecal duct. Scale bars = 3 mm (A–C), 2 mm (D).
FIGURE 8 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 8. Cimbrochrysa americana sp. nov., holotype UCM 33497 photographed using a polarized filter. Scale bars = 3 mm.
A new species of the genus Dolichoderus Lund, 1831 (Hymenoptera, Formicidae) from a Late Eocene European amber. Supplementary file 2
<p>Supplementary file 2: Paleontological reconstruction (3D model) of <em>Dolichoderus jonasi</em> Dubovikoff et Zharkov, 2022 (male). </p>
A new species of the genus Dolichoderus Lund, 1831 (Hymenoptera, Formicidae) from a Late Eocene European amber. Supplementary file 1
<p>Supplementary file 1: Paleontological reconstruction (3D model) of Dolichoderus jonasi Dubovikoff et Zharkov, 2022 (worker)</p>
Figs 1–6 in Efesus trufanovi Simutnik gen. et sp.n. (Hymenoptera: Chalcidoidea: Encyrtidae) from late Eocene Danish amber
Figs 1–6. Efesus trufanovi, gen. et sp.n., holotype ♀: 1–3 — habitus: 1, dorsal (n — notaulus); 2 — lateral (c — cercus); 3 — posterodorsal (hyp — hypopygium); 4 — forewing (fs — filum spinosum, p — parastigma, u — uncus); 5 — metasoma (Mt8 — last metasomal tergum); 6 — antennae (mps — multiporous plate sensilla), head, mesoscutum, mesotibial spur (s). Рис. 1–6. Efesus trufanovi, gen. et sp.n., голотип ♀: 1–3 — обЩий вид: 1 — сверху (n — нотаулЯ); 2 — сбоку (c — церка (пигостиль)); 3 — сЗади и сбоку (hyp — гипопигий); 4 — переднее крыло (fs — filum spinosum, p — парастигма, u — ункус); 5 — метасома (Mt8 — последний тергит); 6 — усики (mps — multiporous plate sensilla), голова, Щит среднеспинки, шпора средней голени (s).
Biogeographic, stratigraphic, and environmental distribution of Basilosaurus (Mammalia, Cetacea) in North America with a review of the late Eocene shoreline in the southeastern coastal plain
<p><strong>Appendix (Supplemental Data 1)</strong></p> <p>Sheet 1: County, state, geologic age, stratigraphy, depositional environment, and latitude and longitude coordinates for all <em>Basilosaurus</em> localities used in this study. Sheets 2-5: <em>Basilosaurus</em> locality data divided into time bins, as described in the text.</p>
FIGURE 2 in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 2. Rovnoxestus rasnitsyni sp. nov. A, Head and thorax, lateral view. B, Hind tarsus and apex of tibia, ventrolateral view. C, Posterior part of body showing legs, hind wing apex, and pygofer.
FIGURE 4. Rovnoxestus rasnitsyni, fifth instar nymph. A, Dorsal habitus. B in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 4. Rovnoxestus rasnitsyni, fifth instar nymph. A, Dorsal habitus. B, Dorsal part of abdomen, lateral view. C, Head and anterior part of thorax, ventral view. D, Left hind tarsomere, ventral view. E, Right hind tibia, ventrolateral view.
FIGURE 3 in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 3. Rovnoxestus rasnitsyni sp. nov. A, Head, pronotum, mesonotum and scutellum, dorsal view. B, Head and pronotum (in part), dorsolateral view. C, Face, anteroventral view (partially reconstructed. D, Hind tarsus and apex of tibia, ventrolateral view. E, Hind femur, tibia and tarsus, dorsolateral view. F, Forewing. Abbreviations: cs, claval sulcus; iac, inner apical cell.
FIGURE 1 in A new leafhopper (Hemiptera: Cicadellidae) from late Eocene Rovno amber described based on an adult and associated last-instar nymph from Perebrody (Ukraine)
FIGURE 1. Rovnoxestus rasnitsyni sp. nov. A, Dorsal habitus. B, Ventrolateral habitus. C, Details of head and thorax, dorsal view. D, Face, ventrolateral view.
Late Eocene–early Miocene evolution of the southern Australian Subtropical Front: a marine palynological approach
<p>Supplementary dataset for the publication in Journal of Micropalaeontology (JM): "Late Eocene–early Miocene evolution of the southern Australian Subtropical Front: a marine palynological approach" </p> <p>Supplementary Table 1: Age model table of paleomagnetic reversals and biostratigraphic events from planktic foraminifera, dinocysts, and calcareous nannofossils (Pfuhl and McCave, 2003; Sluijs et al., 2003; Stickley et al., 2004b; Pross et al., 2012; Houben et al., 2019). Including the updated GTS2012 timescale converted ages.</p> <p>Supplementary Table 2: Total palynomorph assemblage counts ODP Site 1168 (877–334 m b.s.f.) and the relative abundance of selected dinocyst groups (Table 1).</p> <p>Supplementary Table 3: The calculated relative abundance of dinocyst assemblage groups per time phase from the drill sites in the Tasmanian Gateway region, portrayed in Fig. 6.</p>
FIGURE 34 in Late Eocene siliceous sponge fauna of southern Australia: reconstruction based on loose spicules record
FIGURE 34. Spicules of sponges of Hexactinellida; A–D—Different types of dermal pinnular hexactines, family Rossellidae (order Lyssacinosida); E—Dermal pinnular hexactine (fragment), probably of family Rossellidae (order Lyssacinosida); F–I—Dermal pentactines of unknown hexactinellid sponges; J—Anchorate basalium of unknown hexactinellid sponge; K, L—Dermal or atrial hexactines of Hexactinosa; M—Fragment of dictyonal skeleton of Hexactinosa; N—Fragment of umbrella-shaped spicule of Rossella, family Rossellidae (order Lyssacinosida).
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.