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264 results for “Palaeozoic”
FIGURE 4 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 4. Blattinopsis sp. specimen MNHNLPR. 55236 (forewing; print): photograph of the mediocubital area (detail of the ‘ strut’ between M and CuA) (scale bars represents 1 mm).
FIGURE 14 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 14. Gerarus bruesi, holotype specimen MNHNLPR. 51164 (counterpart): photograph of the mediocubital area (detail of common stem M + CuA, distal free part of CuA, and fusion of CuA and CuPa). (scale bar represents 3 mm).
FIGURE 7 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 7. Stenoneura fayoli, holotype specimen MNHNLPR. 51207 (print): photograph (under alcohol) (scale bar represents 1 cm).
FIGURE 17 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 17. Strict consensus tree of 48 minimal equally parsimonious trees obtained after cladistic analysis. Clades in grey are considered weakly supported by the analysis, after characters state consistency indices.
FIGURE 3 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 3. Blattinopsis sp., specimen MNHNLPR. 55236 (forewing; print): reconstruction and photograph (scale bar represents 1 cm).
FIGURE 12 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 12. Osnogerarus trecwithiensis, cast of the holotype specimen MS G 1080 (counterpart), Museum am Schölerberg (Osnabrück, Germany): photograph of the wing base (light from bottom of the picture, vein relief appears reversed in the photograph orientation). (scale bar represents 2 mm).
FIGURE 10 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 10. Narkeminidae sp. indet., specimen MNHNLPR. R 55237 ab (forewing; print and counterpart): reconstruction (print and counterpart) and photograph (counterpart; under alcohol). (scale bar represents 1 cm).
Fig. 4 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 4. Forewing of anthracoptilid insect Mesoptilus carpenteri sp. nov. from Artinskian of Elmo, Oklahoma, USA, holotype MCZ 11253, photograph (A), line drawing (B).
Fig. 7 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 7. Anthracoptilid insect Westphaloptilus gallicus sp. nov. from Bashkirian of Bruay-en-Artois, Department of North, France, holotype Bruay F.5 BR27–28, photograph of imprint (A), photograph of counterimprint (B). 1A, first anal vein; CuA/P, cubitus anterior/posterior; M, indistinguishable polarity of median vein; RA/P, radius anterior/posterior; ScA/P, subcosta anterior/posterior.
Fig. 2 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 2. Forewing of anthracoptilid insect Strephocladus permianus sp. nov. from Guadalupian of Lodève Basin, France, holotype Ld LAP 310A, B, photographs of imprint and couterimprint (A, B), line drawing (C).
Fig. 3 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 3. Forewing of anthracoptilid insect Mesoptilus dolloi (Lameere, 1917) from Stephanian of Commentry Basin, France, holotype R51159, photograph A), line drawing (B).
Fig. 9 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 9. Blaberid blattoid Pilema thoracica (Walker, 1868) Recent, specimen MNHN, Paris coll., Steynsburg, South Africa, R. Ellenberger leg, habitus (A), forewing basal part (B) with marked c.f., claval furrow; CuA/P, cubitus anterior/posterior.
Fig. 1 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 1. Forewing of anthracoptilid insect Anthracoptilus perrieri (Meunier, 1909) from Stephanian of Commentry Basin, France, holotype R51112, photograph (A), line drawing (B).
Fig. 8 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 8. Position of claval furrow on forewing (marked by arrows). A. Homocladus grandis Carpenter, 1966 from Artinskian of Elmo, Kansas, USA, paratype MCZ 5875. B. Paracladus retardus Carpenter, 1966 from Artinskian of Elmo, Kansas, USA, holotype MCZ 5877. CuA/P, cubitus anterior/posterior.
Fig. 6 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 6. Forewing of anthracoptilid insect Westphaloptilus gallicus sp. nov. from Westphalian of Bruay-en-Artois, Department of North, France, holotype Bruay F.5 BR27–28.
Fig. 5 in Revision of the enigmatic insect family Anthracoptilidae enlightens the evolution of Palaeozoic stem-dictyopterans
Fig. 5. Forewing of anthracoptilid insect Pseudomesoptilus sellardsi (Lameere, 1917) comb. nov. from Stephanian of Commentry Basin, France, holotype R51350, photograph (A), line drawing (B).
Fig. 9 in Environmental distribution of post-Palaeozoic crinoids from the Iberian and south-Pyrenean basins, NE Spain
Fig. 9. Cyrtocrinids from the Upper Jurassic Yátova Formation of NE Spain. A. Eugeniacrinites sp. from Aguilón (early late Oxfordian), MPZ-2018/476 in oral (A1) and (A2) lateral views. B. Pilocrinus sp. from Moneva (early late Oxfordian), MPZ-2018/477 in oblique-oral (B1), aboral (B2), and lateral (B3) views. C. Gammarocrinites sp. A from Aguilón (early late Oxfordian), MPZ-2018/478 in oral (C1), aboral (C2), and lateral (C3) views. D. Gammarocrinites sp. B from Tosos (early late Oxfordian), MPZ-2018/479 in oral (D1) and lateral (D2) views. E. Tetracrinidae indet. from Aguilón (early late Oxfordian), MPZ-2018/480, basal circlet in oral (E1), aboral (E2), and lateral (E3) views.
Fig. 8 in Environmental distribution of post-Palaeozoic crinoids from the Iberian and south-Pyrenean basins, NE Spain
Fig. 8. Millericrinids (A–E) and comatulid (F) from the Upper Jurassic of NE Spain, Frías de Albarracín (A, B, D), Pozuel del Campo (E), and Griegos (F), latest Oxfordian, Sot de Chera Formation; Aguilón, early late Oxfordian, Yatova Formation (C). A. Apiocrinites sp., MPZ-2018/470 in oral (A1), aboral (A2), and lateral (A3) views. Note multiple epibionts on the lateral and oral sides suggesting a complex processes of disarticulation and exposure prior to final burial. B. Millericrinida indet., MPZ-2018/471, distal root. C. Millericrinida indet. A, MPZ-2018/472 in oral (C1), aboral (C2), and lateral (C3) views. D. Millericrinida indet. B, MPZ-2018/473 in oral (A1), aboral (A2), and lateral (A3) views. E. Pomatocrinus cf. mespiliformis, MPZ-2018/474 cup lacking radial plates in aboral (E1) and lateral (E2) views. F. Solanocrinites sp., MPZ-2018/475 single centrodorsal in oral (F1), aboral (F2), and lateral (F3) views.
Fig. 7 in Environmental distribution of post-Palaeozoic crinoids from the Iberian and south-Pyrenean basins, NE Spain
Fig. 7. Crinoid Encrinus sp. from Triassic of NE Spain, the Collbató unit (Ladinian). A. MGSB/45007, well-preserved specimens showing a coiled stem A1), detail of the crown and proximal stem (A2). B. MGSB/45006, isolated columnals.
Fig. 4 in Environmental distribution of post-Palaeozoic crinoids from the Iberian and south-Pyrenean basins, NE Spain
Fig. 4. Stratigraphy of Lower Cretaceous crinoid localities (on the top) from the Iberian Ranges. Stars indicate crinoid-bearing formations.
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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.