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254 results for “Lower Jurassic”
Figure 9 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 9. Stormbergia dangershoeki gen. et sp. nov. BMNH R11000 (paratype), anterior caudal in right lateral (A) and anterior (B) views. SAM-PK-K1105 (holotype): mid-caudal in right lateral view (C); posterior caudals in right lateral view (D). All scale bars equal 1 cm. Abbreviations: chf, chrevron facet; poz, postzygapophysis; prz, prezygapophysis.
Figure 13 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 13. Stormbergia dangershoeki gen. et sp. nov. BMNH R11000 (paratype), left ilium in lateral (A), medial (B) and dorsal (C) views. Abbreviations: bs, brevis shelf; ilisp, ischiadic peduncle; saf, supraacetabular flange; sar2, scar for sacral rib 2; sar3–5, scars for sacral ribs 3–5; vf, ventral flange partially backing the acetabulum.
Figure 3 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 3. Ischia of Elliot Formation ornithischians. A, B. Lesothosaurus diagnosticus, BMNH RUB17 (syntype); left (A) and right (B) ischia in medial views. A tab-shaped obturator process is absent in both specimens. Bone fragments erroneously glued to the ventral margin of the left ischium (abf) create the false impression that an obturator process is present in this specimen. C. Stormbergia dangershoeki gen. et sp. nov. BMNH R11000 (paratype), right ischium, lateral view. D. SAM-PK-K1105 (holotype), left ischium, medial view. Note the tab-shaped obturator process present in both BMNH R11000 and SAM-PK-K1105. E, F. Lesothosaurus diagnosticus, SAM-PK-K401; left (E) and right (F) proximal ischia in medial (E) and lateral (F) views. SAM-PK-K401 was depicted by Santa Luca (1984) and some authors have suggested that it demonstrates an obturator process in Lesothosaurus. Note, however, that both ischia are too incomplete to support or deny the presence of an obturator process. All scale bars equal 1 cm. Abbreviations: abf, attached bone fragment; dg, dorsal groove on shaft of ischium; iscip, iliac process; obt, tab-shaped obturator process; iscpp, pubic process.
Figure 10 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 10. The single most parsimonious tree found by the analysis of the modified Galton & Upchurch (2004) data matrix. Material included as 'Sellosaurus' is currently regarded as Efraasia (Yates, 2003b); specimens included as 'Euskelosaurus' are currently referred to Plateosauravus cullingworthi (Yates, 2003c).
Figure 9 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 9. The single most parsimonious tree produced by analysis of the modified Yates (2003a) data matrix. For the sake of brevity, species of Thecodontosaurus are listed using the abbreviation of the generic name. The material included as 'Euskelosaurus' is currently referred to Plateosauravus cullingworthi (Yates, 2003c).
Figure 8. A, a in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 8. A, a strict consensus tree of the 124 most parsimonious trees found by the analysis of the modified version of Sereno's (1999) data matrix. B, a 50% majority-rule consensus tree based on the 12 reduced consensus topologies produced by re-analysis of the modified Sereno (1999) data matrix. 'Gripposaurus' represents a referred individual of 'Gyposaurus' sinensis (Young, 1948); material included as 'Sellosaurus' is currently regarded as Efraasia (Yates, 2003b).
Figure 6 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 6. Skull and atlas-axis complex of Yunnanosaurus huangi (NGMJ 004546) in occipital view. A, drawing of skull as preserved. B, interpretative line drawing of the skull showing damaged areas, reconstruction, and areas obscured by matrix. See Appendix 2 for abbreviations.
Figure 4 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 4. Skull and atlas-axis complex of Yunnanosaurus huangi (NGMJ 004546) in dorsal view. A, drawing of skull as preserved. B, interpretative line drawing of the skull showing damaged areas, reconstruction, and areas obscured by matrix. See Appendix 2 for abbreviations.
Figure 5 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 5. Skull roof of Yunnanosaurus huangi (NGMJ 004546) in dorsal view showing frontal and parietal bosses (arrowed). Scale bar equals 30 mm. The cranial end of the snout is to the right. See Appendix 2 for abbreviations.
Figure 2 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 2. Skull and atlas-axis complex of Yunnanosaurus huangi (NGMJ 004546) in right lateral view. A, drawing of skull as preserved. B, interpretative line drawing of the skull showing damaged areas, reconstruction, and areas obscured by matrix. See Appendix 2 for abbreviations.
Figure 1 in The skull of Yunnanosaurus huangi Young, 1942 (Dinosauria: Prosauropoda) from the Lower Lufeng Formation (Lower Jurassic) of Yunnan, China
Figure 1. Skull and atlas-axis complex of Yunnanosaurus huangi (NGMJ 004546). A, right lateral view. B, left lateral view. C, dorsal view. Scale bar equals 100 mm.
Fig 16 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig 16. Blattula dubia (Handlirsch, 1939), wing venation: (A) LGA 1725, forewing, Lower Toarcian of Grimmen; (B) FGWG 123/31, hindwing, holotype of?Chiloblattula dubia Handlirsch, 1939, Lower Toarcian of Dobbertin.
Fig. 13 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 13. Blattula langfeldti (Geinitz, 1880), details of venation of forewings, Lower Toarcian of Dobbertin, Grimmen (LGA 2356) and Schandelah (S 139): (A) FGWG 123/21, holotype of Blattula intercalata Handlirsch, 1939; (B) FGWG 120/2, holotype of Dipluroblattina scudderi Geinitz, 1887; (C) FGWG 123/20, holotype of Blattula riparia Handlirsch, 1939; (D) FGWG 117/20, holotype of Blattina langfeldti Geinitz, 1880; (E) FGWG 123/57, holotype of Ectinoblattula medialis Handlirsch, 1939; (F) FGWG 122/10-11, holotype of Mesoblattula geinitziana Handlirsch, 1906; (G) LGA 2356; (H) S 139; (I) FGWG 123/24, holotype of Peloblattula oligoneura Handlirsch, 1939; (J) FGWG 123/22, holotype of Blattula brunneri Handlirsch, 1939.
Fig. 10 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 10. Blattula langfeldti (Geinitz, 1880), LGA 888/1-2, Lower Toarcian of Grimmen: (A, B) photographs of part and counterpart, (C, D) details of body structures.
Fig. 8 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 8. Blattula langfeldti (Geinitz, 1880): (A–C) LGA 1820, Lower Toarcian of Grimmen: (A) total before preparation of legs, (B) after preparation of legs and antennae, (C) details of legs; (D) LDA 96, Lower Toarcian of Dobbertin.
Fig. 4 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 4. Liadoblattina blakei (Scudder, 1886), details of wing venation: (A) NHML I. 3574, holotype of Mesoblattina blakei Scudder, 1886, Upper Lias of Alderton, Gloucestershire, England; (B, C) LDA 336, forewing, Lower Toarcian of Dobbertin (C, detail of intercalary veins); (D) FGWG 121/6, holotype of Mesoblattina zirkelii Handlirsch, 1906, hindwing, Lower Toarcian of Dobbertin; (E) FGWG 123/33, holotype of?Mesoblattina polyneura Handlirsch, 1939, hindwing, Lower Toarcian of Dobbertin.
Fig. 5 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 5. Rhipidoblattina geikiei (Scudder, 1886), holotype NHML I. 10620, I. 11949, forewing, Lower Lias of Browns Wood, Moreton Bagot, Warwickshire, England: (A, B) part and counterpart, (C) clavus at higher magnification.
Fig. 7. Eublattula crassivena Handlirsch, 1939, holotype FGWG 123 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 7. Eublattula crassivena Handlirsch, 1939, holotype FGWG 123/32, Lower Toarcian of Dobbertin: (A) photograph of specimen, (B) details of venation.
Fig. 15 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 15. Blattula langfeldti (Geinitz, 1880), details of venation of hindwings, Lower Toarcian of Dobbertin and Grimmen (LGA 380): (A) FGWG 123/45, holotype of?Mesoblattula ala Handlirsch, 1939; (B) LGA 380; (C) FGWG 118/3, holotype of Blattina nana Geinitz, 1883; (D) FGWG 119/2, holotype of Blattina incerta Geinitz, 1884; (E) LDA 85; (F) FGWG 123/29, holotype of?Chiloblattula subcostalis Handlirsch, 1939.
Fig. 2 in Lower Jurassic cockroaches (Insecta: Blattaria) from Germany and England
Fig. 2. Caloblattina mathildae (Geinitz, 1883): (A, B, G) S 300, forewing, Lower Toarcian of Schandelah near Brunswick (B, covered with ammonium chloride); (C–D) LDA 702, forewing, Lower Toarcian of Dobbertin; (E) G 402-8, holotype of Palmoblattina gottingensis Bode, 1953, forewing, Lower Toarcian of Hondelage near Brunswick; (F) G 402-10, holotype of Polyphleboblatta tenuis Bode, 1953, hindwing, Lower Toarcian of Hondelage near Brunswick; (H) FGWG 118/1, holotype of Blattina mathildae Geinitz, 1883, Lower Toarcian of Dobbertin.
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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.