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Figure 6 in A new choristodere (Reptilia: Diapsida) from the Lower Cretaceous of western Liaoning Province, China, and phylogenetic relationships of Monjurosuchidae
Figure 6. Comparison of the two equally parsimonious trees (TL = 123 steps; CI = 0.85; RI = 0.87) derived from analysis of data presented in Appendices 1 and 2.
Figure 5 in A new choristodere (Reptilia: Diapsida) from the Lower Cretaceous of western Liaoning Province, China, and phylogenetic relationships of Monjurosuchidae
Figure 5. Philydrosaurus proseilus gen. et sp. nov., pelvic girdle, hind limbs and anterior caudal vertebrae of the holotype (PKUP V2001). Double arrows pointing to the ischium spike.
Figure 4 in A new choristodere (Reptilia: Diapsida) from the Lower Cretaceous of western Liaoning Province, China, and phylogenetic relationships of Monjurosuchidae
Figure 4. Philydrosaurus proseilus gen. et sp. nov., pectoral girdle and fore limb of the holotype (PKUP V2001). Note arrows pointing to ect- and entepicondylar foramina.
Figure 3 in A new choristodere (Reptilia: Diapsida) from the Lower Cretaceous of western Liaoning Province, China, and phylogenetic relationships of Monjurosuchidae
Figure 3. Philydrosaurus proseilus gen. et sp. nov., photograph and line drawing of the holotype skull and mandibles (PKUP V2001).
Figure 1 in A new choristodere (Reptilia: Diapsida) from the Lower Cretaceous of western Liaoning Province, China, and phylogenetic relationships of Monjurosuchidae
Figure 1. Map showing geographical location of monjurosuchid fossil sites in China: Shangheshou near Chaoyang, Jingangshan (Zaocishan) near Yixian, Doutai near Yixian, and Niuyingzi and Dawangzhangzi near Lingyuan.
Figure 2 in A new choristodere (Reptilia: Diapsida) from the Lower Cretaceous of western Liaoning Province, China, and phylogenetic relationships of Monjurosuchidae
Figure 2. Philydrosaurus proseilus gen. et sp. nov., holotype (PKUP V2001) from Shangheshou near Chaoyang, western Liaoning Province; Early Cretaceous Chiufotang Formation.
Transport Starter Data Kit: Historical socio-transport data for Taiwan Province of China
<p>This Transport Starter Data Kit contains historical annual data (1990–2021) on passenger and freight activity, segregated by mode and fuel. Additionally, historical data on energy intensities, load factors, vehicle stock, population (total, urban, rural, growth), and GDP (total, agriculture, construction, mining, manufacturing, service, energy, growth) are included in the kit, within the 'Data' tab. The historical data can be used as a foundation for transport-energy modelling and/or to identify areas of improvement. This data was verified through consultation with relevant stakeholders before publishing. The definition used for each vehicle mode is found in the 'Definitions' tab, and the description of each data observation status is found in the 'Notes' tab. All data sources are linked where possible.</p>
Fig. 14 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 14. The bovid artiodactyl cf. Sinotragus from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Left mandibular ramus (MYŞE PV2553) in labial (A 1) and lingual (A 2) views. B. Right mandibular body MYŞE PV-2567) in occlusal view. C. Left upper P2–P3 (MYŞE PV-1409) in occlusal view.
Fig. 10 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 10. The bovid artiodactyl Skoufotragus cf. Sk. schlosseri (Andree, 1926) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Palate (MYŞE PV-1309) in occlusal view. B. Left upper tooth row P2–M3 (MYŞE PV-1312) in buccal view. C. Right upper tooth row M1–M3 (MYŞE PV-1622) in occlusal view. D. Right mandibular ramus with p2–m3 (MYŞE PV-1510) in labial view. E. Left mandibular ramus with p2–m3 (MYŞE PV-1544) in occlusal view. F. Right mandibular ramus with p2–m3 (MYŞE PV-1510) in occlusal view.
Fig. 8 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 8. The bovid artiodactyl Skoufotragus cf. Sk. schlosseri (Andree, 1926) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). Partial skull (MYŞE PV-547) in anterior (A), posterior (B), lateral (C), and ventral (D) views.
Fig. 13 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 13. The bovid artiodactyl Urmiatherium rugosifrons (Sickenberg, 1932) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Juvenile frontlet (MYŞE PV-2504) in anterior view. B. Frontlet (MYŞE PV-2503) in anterior view. C. Opisthocranium (MYŞE PV-1182) in ventral view. D. Axis + 3rd cervical vertebra (MYŞE PV-2599) in dorsal view.
Fig. 4 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 4. The bovid artiodactyl Palaeoryx pallasi (Wagner, 1848) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Left mandible (MYŞE PV1599) in occlusal view. B. Right mandible (MYŞE PV-2574) in lingual view. C. Right upper tooth row (MYŞE PV-2573) in occlusal view.
Fig. 9 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 9. The bovid artiodactyl Skoufotragus cf. Sk. schlosseri (Andree, 1926) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Frontlet (MYŞE PV-1571) in anterior view. B. Female frontlet (MYŞE PV-1576) in anterior (B1) and lateral (B2) views.
Fig. 6 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 6. The bovid artiodactyl Sporadotragus parvidens (Gaudry, 1861) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Frontlet (MYŞE PV2502) in anterior view. B. Right P2–M3 (MYŞE PV-1522) in occlusal view. C. Right mandibular ramus with p3–m3 (MYŞE PV-1311) in lingual view. D. Left mandibular ramus with p2–m3 (MYŞE PV-1406) in labial view.
Fig. 1 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 1. The fossil mammal site of Şerefköy-2 (Turkey). A. Geographical location. B. Local lithostratigraphy (modified from Kaya et al. 2012). C. Typical fossil accumulation at Şerefköy-2. D. View of the fossiliferous site.
Fig. 5 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 5. Scatter plot comparing the upper and lower premolar (P, p) / molar M, m) ratio against the complete tooth row length of Palaeoryx from several localities.
Fig. 2 in Late Miocene bovids from Şerefköy-2 (SW Turkey) and their position within the sub-Paratethyan biogeographic province
Fig. 2. The bovid artiodactyl Gazella cf. G. capricornis (Wagner, 1848) from Şerefköy-2 (Turkey), Late Turolian (Late Miocene). A. Left horn core (MYŞE PV-1578) in lateral view. B. Left horn core (MYŞE PV-560) in lateral view. C. Frontlet (MYŞE PV-2501) in frontal (C 1) and lateral (C 2) views. D. Left mandibular body (MYŞE PV-2557) in occlusal (D 1) and lingual (D 2) views. E. Right mandibular body (MYŞE PV-2564) in occlusal view. F. Right P2-M3 of the palate (MYŞE PV-2572) in occlusal view.
Major and trace elements abundance of the Belbashani Pumice and other Hasandag deposits, Central Anatolian Volcanic Province
<p>Glass microchemical data, including major and trace elements, of the Belbashani Pumice, a Plinian eruption produced by Hasandag volcano about 400ka ago within the Central Anatolian Volcanic Province (CAVP)</p>
Figure 1 in Raphignathoid mites (Acariformes: Raphignathoidea) in parts of the Azerbaijan provinces of Iran
Figure 1. The location of the sampled cities. A: Jolfa, B: Khoda Afarin, C: Urmia, D: Oshnaviyeh, E: Piranshahr, F: Mahabad, G: Sardasht.
Figs 2, 3 in Seasonal variations in ixodid tick populations on a commercial game farm in the Limpopo Province, South Africa
Figs 2, 3. Numbers of Rhipicephalus (Boophilus) decoloratus collected in wetter and drier months (2), and in warmer and cooler months (3).
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.