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572 results for “Late Eocene”
FIGURE 1 in A new species of Hemerobiidae (Neuroptera) from the late Eocene Rovno amber
FIGURE 1. Proneuronema damzeni sp. nov., holotype MAIG 6804. A, left side; B, right side. Scale bars = 1 mm.
FIGURE 3 in New species of the fossil ant genus Drymomyrmex (Hymenoptera, Formicidae, Formicinae) from the late Eocene Rovno amber (Ukraine)
FIGURE 3. Line drawings of Drymomyrmex rasnitsyni sp. nov., holotype. A, Head, dorsal view. B and C, Right dorsolateral view.
Figure 2 in New fossil wasp species from the earliest Eocene Fur Formation has its closest relatives in late Eocene ambers (Hymenoptera, Ichneumonidae, Pherhombinae)
Figure 2. Bayesian phylogenetic analysis of combined morphological and molecular dataset, including RoguePlot showing probability of placement of Pherhombus parvulus n. sp. Branch colours represent posterior probabilities of attachment of the fossil to a particular branch, and support values next to nodes indicate posterior probabilities. The three-letter code in front of the taxon names denotes subfamily affiliation as follows: ACA Acaenitinae, ANO Anomaloninae, BAN Banchinae, BRA Brachycyrtinae, CAM Campopleginae, COL Collyriinae, CRE Cremastinae, CRY Cryptinae, CTE Ctenopelmatinae, CYL Cylloceriinae, DIA Diacritinae, DIP Diplazontinae, EUC Eucerotinae, HYB Hybrizontinae, ICH Ichneumoninae, LAB Labeninae, LYC Lycorininae, MES Mesochorinae, MET Metopiinae, OPH Ophioninae, ORP Orthopelmatinae, ORT Orthocentrinae, PHY Phygadeuontinae, PHE Pherhombinae, PIM Pimplinae, POE Poemeniinae, RHY Rhyssinae, TER Tersilochinae, TOW Townesitinae, TRY Tryphoninae, XOR Xoridinae.
Figure 1 in New fossil wasp species from the earliest Eocene Fur Formation has its closest relatives in late Eocene ambers (Hymenoptera, Ichneumonidae, Pherhombinae)
Figure 1. Wings of representatives of two candidate subfamilies (a, b) and of the new fossil species (c), combined with morphometric analysis of potential placements. (a) Wing venation of Astiphromma albitarse (Brischke), including vein names as used in this study; (b) wing venation of Pherhombus antennalis Kasparyan; (c) wing venation of Pherhombus parvulus n. sp. as reconstructed; (d) scatterplotof two measurement ratios, forewing veins 1-M+1-Rs / r-rs and hindwing veins 1-Rs / rs-m. The new fossil species groups together with Pherhombinae.
Figure 3 in New fossil wasp species from the earliest Eocene Fur Formation has its closest relatives in late Eocene ambers (Hymenoptera, Ichneumonidae, Pherhombinae)
Figure 3. Pherhombus parvulus (holotype), microscope image of part 10652_A (left); interpretative drawing based on part and counterpart (right; a photograph of the counterpart is provided as Supplementary File S4). Solid lines imply a high certainty of interpretations, while dotted lines indicate interpolations or uncertain interpretations. Hindwings are shown in green to improve clarity. Differences in line width are used to visualise small structures and do not imply varying certainty. The scale bar indicates 1 mm.
FIGURE 27 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 27. Wing venation drawings of Palaeochrysa firmata Scudder, 1890, paralectotype MCZ 4127. A, left forewing; B, right forewing; C, left hind wings; D, right hind wing. Scale bar = 3 mm (all to scale).
FIGURE 28. Tribochrysa firmata Scudder, 1890 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 28. Tribochrysa firmata Scudder, 1890. Wing venation of the paralectotype MCZ 4127; fore- and hind wing drawings combined from left and right wings (dotted lines show poorly or reconstructed vein fragments; fused veins in red). A, forewing; B, hind wing. Scale bar = 3 mm (both to scale).
FIGURE 26. Tribochrysa firmata Scudder, 1890, paralectotype MCZ 4127 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 26. Tribochrysa firmata Scudder, 1890, paralectotype MCZ 4127, specimen in vental aspect. S8, S9, eigth, ninth sternites. Scale bar = 3 mm.
FIGURE 25 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 25. Wing venation drawings of Tribochrysa firmata Scudder, 1890, lectotype MCZ 242. A, right forewing; B, right hind wings; C, left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 23. Tribochrysa inaequalis Scudder, 1885, holotype MCZ 243. A in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 23. Tribochrysa inaequalis Scudder, 1885, holotype MCZ 243. A, photograph; B, proximal part of left wings; C, venation drawing of left forewing (converted to standard view, with apex to the right). Scale bars = 3 mm.
FIGURE 22 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 22. Wing venation of Palaeochrysa stricta Scudder, 1890, holotype MCZ 242. A, left forewing; B, right forewing; C, right hind wings; D, left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 12 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 12. Cimbrochrysa major sp. nov., paratype FLFO 4194 (male). A, part; B, counterpart (photographed with a polarized filter); C, anterior part of body (lateral view); D, distal part of abdomen. ect, ectoproct; S6–S9, sixth to ninth sternites. Scale bars = 3 mm (A, B), 2 mm (C, D).
FIGURE 20 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 20. Lithochrysa concinnula (Cockerell, 1909), holotype UCM 4220. A, specimen in current condition, obscured by Canada balsam; B, forewing venation; C, hind wing venation (redrawn from Cockerell 1909b: Fig. 5). Scale bar = 3 mm (B, C not to scale, no scale on original).
FIGURE 19 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 19. Wing venation of Lithochrysa ferruginea (Cockerell, 1909), specimen FLFO 9745. A, left forewings; B, right forewing; C, right hind wings; D, left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 9 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 9. Wing venation drawings of Cimbrochrysa americana sp. nov., holotype UCM 33497. A, right forewing; B, left forewing; C, right hind wing; left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 11 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 11. Wing venation drawings of Cimbrochrysa major sp. nov., holotype FLFO 9819 (female). A, left forewing; B, right forewing; C, right hind wings; D, left hind wing. Scale bar = 3 mm (all to scale).
FIGURE 7 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 7. Dyspetochrysa vetuscula (Scudder, 1890), holotype MCZ 245. A, photograph; B, drawing of left forewing; C. right forewing. MCZ 245 image courtesy of the MCZ, Harvard University, © President and Fellows of Harvard College. Scale bars = 3 mm (B, C to scale).
FIGURE 4 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 4. Archaeochrysa cockerelli sp. nov., holotype NHM I.8417. A, photograph; B, drawing of forewing venation. NHMUK PI I.8417 image © The Trustees of the Natural History Museum. Scale bar = 3 mm (both to scale).
FIGURE 21. Palaeochrysa stricta Scudder, 1890, holotype MCZ 242. A in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 21. Palaeochrysa stricta Scudder, 1890, holotype MCZ 242. A, part; B, counterpart. Scale bars = 3 mm.
FIGURE 17 in A revision of Chrysopidae (Neuroptera) from the late Eocene Florissant Formation Colorado, with description of new species
FIGURE 17. Lithochrysa ferruginea (Cockerell, 1909), holotype UCM 18625. A, specimen as preserved; B, drawing of left forewing; C, drawing of left hind wing. Scale bars = 3 mm (B, C to scale).
ScienceDex guides
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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.