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1,036 results for “Late Miocene”
FIGURE 3 in Zullobalanus santamariaensis sp. nov., a new late Miocene barnacle species of the family Archaeobalanidae (Cirripedia: Thoracica), from the Azores
FIGURE 3. Zullobalanus santamariaensis sp. nov. All specimens from lower-Miocene / early-Pliocene of Malbusca outcrop (Santa Maria Island, Azores, Portugal), from samples DBUA-F (see Table 1); drawings based on SEM pictures. A: moveable scutum exterior (enlarged area showing detail from the lower part of the exterior of the scutum, accentuating fine apico-basal striae), B: moveable scutum interior, C: moveable tergum exterior, D: moveable tergum interior.
FIGURE 1 in Zullobalanus santamariaensis sp. nov., a new late Miocene barnacle species of the family Archaeobalanidae (Cirripedia: Thoracica), from the Azores
FIGURE 1. Fossiliferous outcrops of Santa Maria sampled by MPB team (© Secção de Geografia, Universidade dos Açores).
FIGURE 3 in A new species of Peltephilidae (Mammalia: Xenarthra: Cingulata) from the late Miocene (Chasicoan SALMA) of Argentina
FIGURE 3. Osteoderms of Peltephilidae: A, Epipeltephilus kanti (MLP 92-XI-19-7, part of the holotype); B, Epipeltephilus recurvus? (MLP 91-IX-7-14); C, Peltephilus pumilus (MACN A-866-870); D, Peltephilus nanus (MACN A 7958-7959, part of the type); E, Peltephilus giganteus (MACN A-4891-4900, part of the type); F-G, Peltephilus strepens (MACN A-771); H, Peltephilus protervus (MACN A-12020, part of the type); I, Peltephilus depressus (MACN A-12016, part of the type); J, Peltephilus granosus (MACN A-12019, part of the type); K, Peltecoelus praelucens (MACN A-12022, part of the type). Scale Bar: 5 cm.
FIGURE 2 in A new species of Peltephilidae (Mammalia: Xenarthra: Cingulata) from the late Miocene (Chasicoan SALMA) of Argentina
FIGURE 2. Osteoderms of Epipeltephilus kanti: A–C, Holotype (MLP 92-XI-19-7); D–G, Referred material, D–G (MLP 28- X-11-66), H (MMP 339-M). Scale Bar: 5 cm.
FIGURE 1 in A new species of Peltephilidae (Mammalia: Xenarthra: Cingulata) from the late Miocene (Chasicoan SALMA) of Argentina
FIGURE 1. Geographic location of the type locality Arroyo Chasicó, Buenos Aires Province, Argentina.
FIGURE 6 in Probittacomorpha brisaci n. sp. (Ptychopteridae, Bittacomorphinae) from the Late Miocene of Montagne d'Andance, Saint Bauzile, Ardèche (France)
FIGURE 6. Phylochronogram of the subfamily Bittacomorphinae. Mapped apomorphies: 1. Long antennae, 18–19-segmented; 2. Shortened Rs stem; 3. Cross-vein r-m leaving R4+5; 4. Cross-vein r-m before fork of Rs; 5. Veins M1 and M2 fused into a single vein M1+2; 6. M3 and cross vein m-m absent by atrophy; 7. Wing with macrotrichia in distal and median cells; 8. Pterostigma large and distinctly sclerotized; 9. First tarsomere of all legs conspicuously dilated.
FIGURE 2. Probittacomorpha brisaci n in Probittacomorpha brisaci n. sp. (Ptychopteridae, Bittacomorphinae) from the Late Miocene of Montagne d'Andance, Saint Bauzile, Ardèche (France)
FIGURE 2. Probittacomorpha brisaci n. sp., holotype No. MNHN.F.A46700; A, wing venation; B, marginal part of wing with well visible setae; C, wing venation, reconstruction.
FIGURE 3. Probittacomorphaha brisaci n in Probittacomorpha brisaci n. sp. (Ptychopteridae, Bittacomorphinae) from the Late Miocene of Montagne d'Andance, Saint Bauzile, Ardèche (France)
FIGURE 3. Probittacomorphaha brisaci n. sp., holotype No. MNHN.F.A46700; A–C, morphology of leg; D–F, structure of leg, reconstructions.
FIGURE 4 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 4. Drawing of the holotype skull of Eostyloceros hezhengensis sp. nov. from Gaojiashan in Hezheng, Gansu, China, IVPP V 19059 in antero-latero-dorsal view, showing the contour outline of each section of its antlers.
FIGURE 7 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 7. Bivarite plots of PC1-PC2 within various species of Eostyloceros. A, all missing angles of Eostyloceros pidoplitschkoi are fixed to 70°; B, only the specimens of E. pidoplitschkoi in which the angle is known are retained; C, all the specimen of E. pidoplitschkoi are retained but the angle variable was excluded from the data set.
FIGURE 3 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 3. Holotype skull with its cranial appendages of Eostyloceros hezhengensis sp. nov. from Gaojiashan in Hezheng, Gansu, China, IVPP V 19059. A, E, lateral view; B, F, ventral view; C, G, dorsal view; D, occipital view. H, right upper cheek teeth, occlusal view. A–C with the same scale bar; D–G, antlers have been removed, with the same scale bar.
FIGURE 6 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 6. Cluster tree of all specimens (data in Table 1 and Appendices 1, 2) calculated by minimal distance clustering algorithm when using 70° to recover the missing angle in Eostyloceros pidoplitschkoi.
FIGURE 5 in A new species of Eostyloceros (Cervidae, Artiodactyla) from the Late Miocene of the Linxia Basin in Gansu, China
FIGURE 5. Phylogenetic relationships among species of Eostyloceros and relevant taxa, CI = 0.700; RI = 0.743. A, strict consensus tree; B, 50% majority rule tree. Numbers represent node support.
FIGURE 5 in Description of a new species of Sparassocynus (Marsupialia: Didelphoidea: Sparassocynidae) from the late Miocene of Jujuy (Argentina) and taxonomic review of Sparassocynus heterotopicus from the Pliocene of Bolivia
FIGURE 5. Sparassocynus maimarai sp. nov. (holotype JUY-P-48). A–C, mandible in lingual (A–B) and occlusal (C) views (arrow indicates the posterior extent of the mandibular symphysis); D, detail of m3–4 in lingual view (anterior towards right); E, p2–m4 series in labial view (anterior towards left); F–G, schematic drawings of the m4 in occlusal (F) and lingual (G) views. Abbreviations: Ac, anterobasal cingulum; Ed, entoconid; Hy, hypoconid; Hyd, hypoconulid; Lc, lingual cingulum; m1–m4, lower molars; mas, mandibular symphysis; Me, metaconid; p1–p2, lower premolars; Pa, paraconid; Pr, protoconid.
FIGURE 4 in Description of a new species of Sparassocynus (Marsupialia: Didelphoidea: Sparassocynidae) from the late Miocene of Jujuy (Argentina) and taxonomic review of Sparassocynus heterotopicus from the Pliocene of Bolivia
FIGURE 4. Lower dentition of 'Sparassocynus' heterotopicus (cast, MNHN-BOL-011896). A, left M1–3 in oclussal view (anterior towards left); B–C, left m2–4 in oclussal and lingual views respectively (anterior towards left).
FIGURE 3 in Description of a new species of Sparassocynus (Marsupialia: Didelphoidea: Sparassocynidae) from the late Miocene of Jujuy (Argentina) and taxonomic review of Sparassocynus heterotopicus from the Pliocene of Bolivia
FIGURE 3. Lower dentition of Sparassocynus and Hesperocynus in occlusal view (anterior towards top). A, Sparassocynus derivatus, MMP 412 M, right m1–m4; B, Sparassocynus bahiai, MLP 11-119, right m1–m4; C–D, Hesperocynus dolgopolae, C, FMNH 14469 (holotype), right p2–m3; D, MLP 86-VII-10-1, right p2–m1, talonid of m2, and complete m3–4.
FIGURE 1 in Description of a new species of Sparassocynus (Marsupialia: Didelphoidea: Sparassocynidae) from the late Miocene of Jujuy (Argentina) and taxonomic review of Sparassocynus heterotopicus from the Pliocene of Bolivia
FIGURE 1. Map showing geographical positions of localities mentioned in the text. A, boxed area in map of South America showing central and southern Bolivia, and central and northern Argentina. B, fossiliferous localities: (1) Umala, (2) Arroyo Lobería, (3) Monte Hermoso, (4) El Guanaco, (5) Quehué, (6) Caleufú, (7) Puesto Arroyo Seco de la Frazada, and (8) Chiquimil. C, area of Jujuy Province with the location of the type locality of Sparassocynus maimarai n. sp.
Seismic evidence on crustal architecture of east-southern Tibet and implications for active landform construction since Late Miocene
<p>This is the receiver function data set for "Seismic evidence on crustal architecture of east-southern Tibet and implications for active landform construction since Late Miocene"</p>
Original dataset of :"First pre-Miocene paleomagnetic data from the Calabrian block document a 160° post-late Jurassic CCW rotation as a consequence of left-lateral shear along Alpine Tethys"
<p>In this table the original paleomagnetic dataset related to the research article :"First pre-Miocene paleomagnetic data from the Calabrian block document a 160° post-late Jurassic CCW rotation as a consequence of left-lateral shear along Alpine Tethys" is published</p>
FIGURE 8. Camachoaster maquedensis n in Late Oligocene - Miocene non-lunulate sand dollars of South America: Revision of abertellid taxa and descriptions of two new families, two new genera, and a new species
FIGURE 8. Camachoaster maquedensis n. sp., details of test features. A: Holotype MACN-Pi 5809, pencil marks indicating partial aboral plate architecture in region within and around petal in ambulacrum II, gonopores indicated by white arrows, pores of trailing tube feet by black arrows. B: Paratype MACN-Pi 5859, complete aboral ambulacrum IV showing shape of petal. C: Holotype MACN-Pi 5809, details of tuberculation, food groove (black arrow), and peristome (peristomial projection indicated by white arrow). All scale bars 10 mm in length.
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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.