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429 results for “Inner Mongolia”
Fig. 3 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 3. The gliriform Palaeostylops iturus Matthew and Granger, 1925, from the Gashatan (Paleocene) of Subeng, China, in labial (A1–F1), occlusal (A2–F2), and lingual (A3–F3) views. A. IMM−2004−SB−021, left maxillary fragment with P3−4. B. IMM−2001−SB−024, LM1. C. IMM−2004−SB−022, LM2. D. IMM−2004−SB−023, LM3. E. IMM−2004−SB−024, left incomplete dentary with p2−4. F. IMM−2004−SB−025, left incomplete dentary with p4–m3. SEM micrographs.
Fig. 1 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 1. Multituberculates from the Gashatan (Paleocene) of Subeng, China, in occlusal view (SEM micrographs). A–E. Mesodmops tenuis sp. nov. A. IMM−2001−SB−016, LM1. B. IMM−2004−SB−014, LM2. C. IMM−2001− SB−017, RDP3. D. IMM−2004−SB−013, Rm1 (holotype). E. IMM−2004− SB−016, Lm2. F–I. Lambdopsalis bulla Chow and Qi, 1978. F. IMM− 2001−SB−019, RM1. G. IMM−2001−SB−020, RM2. H. IMM−2001−SB−021, Rm1. I. IMM−2001−SB−022, Rm2.
Fig. 4 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 4. Dental measurements of Palaeostylops iturus Matthew and Granger, 1929, from the Gashatan of Subeng (black circles) compared to those of P. iturus (light grey circles) and Palaeostylops macrodon Matthew, Granger, and Simpson, 1929 (dark grey diamonds), modified after Kondrashov and Lucas (2004a). The graph illustrates the similar sizes of both P. iturus samples, and their size difference from P. macrodon. L, anteroposterior length. W, transverse width. Error bars on the Subeng measurements are 1 standard deviation.
Fig. 11 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 11. The cimolestid Tsaganius ambiguus Russell and Dashzeveg, 1986, from the Gashatan (Paleocene) of Subeng, China, in labial (A1–G1), occlusal (A2–G2), and lingual (A3–G3) views. A. IMM−2001−SB−053, RP4. B. IMM−2001−SB−052, RM1 or M2. C. IMM−2001−SB−054, RM1 or M2. D. IMM− 2004−SB−048, Rdp4. E. IMM−2001−SB−058, Lp4. F. IMM−2004−SB−049, left dentary fragment with m3 and incomplete m2. G. IMM−2004−SB−050, Rm3. SEM micrographs.
Fig. 10 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 10. The sarcodontid Hyracolestes ermineus Matthew and Granger, 1925, from the Gashatan (Paleocene) of Subeng, China, in labial (A1, B1), occlusal (A2, B2), and lingual (A3, B3) views. A. IMM−2004−SB−032, Rm1. B. IMM− 2001−SB−051, right dentary fragment with m2. SEM micrographs.
Fig 3 in A new Paleocene nyctitheriid insectivore from Inner Mongolia (China) and the origin of Asian nyctitheriids
Fig 3. Strict consensus tree of six maximum−parsimony trees, based on the data matrix in Appendix 2. The shaded area indicates the position of the Asian nyctitheriids, grouped in the new subfamily Asionyctiinae. Characters have been mapped on the consensus tree, using the Acctran optimization for the maximum parsimony tree that corresponded completely to the consensus tree.
Fig 1 in A new Paleocene nyctitheriid insectivore from Inner Mongolia (China) and the origin of Asian nyctitheriids
Fig 1. SEM micrographs of Asionyctia guoi, Gashatan ALMA (late Paleocene) from Subeng (Inner Mongolia, China). A. IMM 2001−SB−9, left dentary fragment with p4 and alveoli of i1–p3, in occlusal (A1), labial (A2) and lingual views (A3). B. IMM 2004−SB−2, right dentary fragment with p3–4 and alveoli of c–p2, in occlusal (B1), labial (B2), and lingual (B3) views.
FIG. 3. — Jurathauma simplex n. gen., n in A new fossil eomeropid (Insecta, Mecoptera) from the Jiulongshan Formation, Inner Mongolia, China
FIG. 3. — Jurathauma simplex n. gen., n. sp.: A, holotype (CNU-MEC-NN2009001);B, paratype (CNU-MEC-NN2009002); C, left antenna of paratype; D, right fore leg of paratype; E, right middle leg of paratype. Scale bars: A, 4 mm; B, 5 mm; C, D, E, 1 mm.
FIG. 2. — Jurathauma simplex n. gen., n in A new fossil eomeropid (Insecta, Mecoptera) from the Jiulongshan Formation, Inner Mongolia, China
FIG. 2. — Jurathauma simplex n. gen., n. sp., ♀ paratype (CNU-MEC-NN2009002):A, body with wings; B, left antenna; C, right middle leg; D, Tsuchingothauma shihi Ren & Shih, 2005 (CNU-M-NN200401), right forewing. Scale bars: A, 4 mm; B, 5 mm; C, 2 mm; D, 1 mm.
FIG. 1. — Jurathauma simplex n. gen., n in A new fossil eomeropid (Insecta, Mecoptera) from the Jiulongshan Formation, Inner Mongolia, China
FIG. 1. — Jurathauma simplex n. gen., n. sp., holotype (CNU-MEC-NN2009001): A, body with wings; B, right forewing; C, left forewing; D, right hind wing. Arrows indicate venational variation. Abbreviations: see Material and methods. Scale bars: 2 mm.
Figures 7–10 in A new species of the genus Eodorcadion Breuning from Alxa desert in Inner Mongolia, China (Coleoptera: Cerambycidae)
Figures 7–10. Biological pictures of Eodorcadion (Ornatodorcadion) zhaoi sp. nov. 7. Male on the food plant. 8. Female before oviposition. 9–10. Landscape of the localities.
Figures 1–6 in A new species of the genus Eodorcadion Breuning from Alxa desert in Inner Mongolia, China (Coleoptera: Cerambycidae)
Figures 1–6. Eodorcadion (Ornatodorcadion) zhaoi sp. nov. 1. Holotype, male. 2. Labels of the holotype. 3. Paratype, male. 4–6. Paratypes, females. Scale bar = 10 mm.
Fig. 11 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 11. Log-ratio diagram comparing the mean value of lower teeth dimensions of Litolophus gobiensis (V16149, V16150) (open squares), Grangeria canina (filled squares), Eomoropus amarorum (filled circles; as standard), G. anarsius (open triangles), and E. quadridentatus (filled triangles). Data sources from Lucas and Shoch (1989, table 23.2) (L, length; AW, trigonid width; PW, talonid width).
Fig. 3 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 3. Right lateral view of the skull of Litolophus gobiensis (IVPP V16141-1, V16141-2). Abbreviation: pop: postorbital process; see legend for figure 2 for other abbreviations. Scale 5 3 cm.
Fig. 7 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 7. Incisors of Litolophus gobiensis. A–B, lingual and buccal views of a left I2 (IVPP V16144.2); C–D, lingual and buccal views of a right I3 (V16144.4); E, lingual view of a left i1 (V16147); F–G, lingual and buccal views of a right i2 (V 16167.1); H–I, lingual and buccal views of a left i3 (V 16167.4). Scale 5 5 mm.
Fig. 2 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 2. Skull of Litolophus gobiensis (IVPP V16139). (A) Ventral view, (B) left lateral view, and (C) dorsal view. Abbreviations: c, occipital condyle; fo, forman ovale; in, internal naris; o, orbit; oc, occipital crest; p, petrosal; pac, posterior opening of the alisphenoid canal; pc, parietal crest; pgp, postglenoid process; pm, premaxilla; pp, paroccipital process; ptp, posttympanic process; sc, sagittal crest; za, zygomatic arch; I2a: I2 alveolus; I3a: I3 alveolus. Scale 5 3 cm.
Fig. 4 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 4. Occipital view of the skull of Litolophus gobiensis (IVPP V16139). Abbreviation: nld, nuchal ligament depression; see legend for figure 2 for other abbreviations. Scale 5 3 cm.
Fig. 5 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 5. Ventral view of the right petrosal of Litolophus gobiensis (IVPP V16139). Abbreviations: feo, fenestra ovalis; fr, fenestra rotunda; nf, nutrient foramen; pr, promontorium; smf, stapedius muscles fossa; tafc, tympanic aperture of the facial canal. Scale 5 5 mm.
Fig. 1. Diagrammatic M3 and m3 in New Craniodental Materials of Litolophus gobiensis (Perissodactyla, ''Eomoropidae'') from Inner Mongolia, China, and Phylogenetic Analyses of Eocene Chalicotheres
Fig. 1. Diagrammatic M3 and m3 of Litolophus gobiensis, showing dental structures mentioned in the text. Abbreviations: co, cristid obliqua; ec, ectoloph; end, entoconid; hy, hypocone; hycd, hypoconulid; hyd, hypoconid; hyld, hypolophid; me, metacone; med, metaconid; mel, metaloph; meld, metalophid; mesd, ''metastylid''; pa, paracone; pac, paraconule; pad, paraconid; pald, paralophid; pas, parastyle; pr, protocone; prd, protoconid; prl, protoloph; prld, protolophid.
FIG. 2 in New material of Eocene Helaletidae (Perissodactyla, Tapiroidea) from the Irdin Manha Formation of the Erlian Basin, Inner Mongolia, China and comments on Related Localities of the Huheboerhe Area
FIG. 2. Cranium and mandible of Paracolodon fissus (IVPP V 22640). A, lateral view of cranium and mandible; B−C, dorsal and ventral views of the cranium.
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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.