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429 results for “Inner Mongolia”
Figure 4 in Microbial diversity of ticks and a novel typhus group Rickettsia species (Rickettsiales bacterium Ac37b) in Inner Mongolia, China
Figure 4. Alpha diversity measures for Dermacentor nuttalli and Ixodes persulcatus in four areas. (a) Shannon's index. (b) Simpson's index.
Figure 7 in Microbial diversity of ticks and a novel typhus group Rickettsia species (Rickettsiales bacterium Ac37b) in Inner Mongolia, China
Figure 7. Venn diagram for cluster analysis of OTUs between Dermacentor nuttalli and Ixodes persulcatus (genus level).
Figure 3 in Microbial diversity of ticks and a novel typhus group Rickettsia species (Rickettsiales bacterium Ac37b) in Inner Mongolia, China
Figure 3. Microbe composition of different regions and species. (a) Top 10 microbial components at the genus level. (b) Top 12 microbial components at the species level.
Figure 2. Shannon–Wiener curve. X in Microbial diversity of ticks and a novel typhus group Rickettsia species (Rickettsiales bacterium Ac37b) in Inner Mongolia, China
Figure 2. Shannon–Wiener curve. X-axis: amount of sequencing data; Y-axis: corresponding Shannon diversity index.
Figs. 1-4 in Notes on Hybos Meigen (Diptera: Empididae) in Inner Mongolia with description of a new species
Figs. 1-4. Hybos daqinggouensis sp. nov. (male). 1. Genitalia, dorsal view; 2. right surstylus; 3. lef surstylus; 4. hypandrium, ventral view. Abbreviations: cer = cercus; lepn = lef epandrial lamella; lsur = lef surstylus; repn = right epandrial lamella; rsur = right surstylus. Scale bar = 0.1 mm.
Fig. 2 in Earliest true moth lacewing from the Middle Jurassic of Inner Mongolia, China
Fig. 2. Moth lacewing Guithone bethouxi gen. et sp. nov. holotype (CNU-NEU-NN2015003P/C) from Bathonian–Callovian boundary (Middle Jurassic) of Jiulongshan Formation of Daohugou, China. Line drawings of wing venation: left (A) and right (B) forewings, left (C) and right (D) hindwings.
Fig. 1 in Earliest true moth lacewing from the Middle Jurassic of Inner Mongolia, China
Fig. 1. Moth lacewing Guithone bethouxi gen. et sp. nov. holotype (CNU-NEU-NN2015003P/C) from Bathonian–Callovian boundary (Middle Jurassic) of Jiulongshan Formation of Daohugou, China. Photographs: dry-ethanol (A) and ethanol-ethanol (B) composites; detail (A ). tr, trichosors; f, frenulum.
Fig 3 in A New Fossil Lacewing Genus and Species from the Middle Jurassic of Inner Mongolia, China
Fig 3. Lacewing fly Tenuosmylus brevineurus gen. et sp. nov. Drawing of the body and wings of paratype CNU−NN99031.
Fig 1 in A New Fossil Lacewing Genus and Species from the Middle Jurassic of Inner Mongolia, China
Fig 1. Location of the type locality of lacewing fly Tenuosmylus brevineurus gen. et sp. nov. Daohugou Village, Shantou Township, Ningcheng County, Inner Mongolia, China. Abbreviations: Chc, Changchougou Formation; Chch, Chuanlinggou Formation; Chd, Dahongyu Formation; Cht, Tuanshanzi Formation; J2j, Jiulongshan Formation; J2t, Tiaojishan Formation; Ky, Yixian Formation; Q, Quaternary; Dms, Dalaiyingzi erosion surface; Mgn, Maanshan gneiss. After Ren et al.(2002).
Fig 2 in A New Fossil Lacewing Genus and Species from the Middle Jurassic of Inner Mongolia, China
Fig 2. Lacewing fly Tenuosmylus brevineurus gen. et sp. nov. Holotype. CNU−NN99030. Photograph (A) and explanatory drawings of the body (B) and details of details of left forewing and hindwing (C).
Fig. 15 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 15. The mesonychid Dissacus serratus (Chow and Qi, 1978), from the Gashatan (Paleocene) of Subeng, China. A. IMM−2004−SB−056, right dentary fragment with m1 in labial (A1), occlusal (A2), and lingual (A3) view. B. IMM−2001−SB−061, right femur in proximal (B1), distal (B2), anterior (B3), lateral (B4), posterior (B5), and medial (B6) view.
Fig. 13 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 13. Single most parsimonious tree of carpolestid relationships (CI 0.90, RI 0.92) based on the matrix of Bloch et al. (2001) and modified as noted in the appendix, with indication of unambiguous synapomorphies, i.e., invariable with respect to optimisation criteria.
Fig. 12 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 12. The carpolestid Subengius mengi Smith, Van Itterbeeck, and Missiaen, 2004, from the Gashatan (Paleocene) of Subeng, China. A. IMM−2004− SB−052, LP3 in occlusal view. B. IMM−2001−SB−059, LP3 in occlusal view C. IMM−2004−SB−053, left dentary with p4−m3, in lingual (C1), occlusal (C2), anterolabial (C3), and labial (C4) views. SEM micrographs.
Fig. 14 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 14. The dinoceratan Prodinoceras efremovi (Flerov, 1957), from the Gashatan (Paleocene) of Subeng, China. IMM−2001−SB−060, right calcaneum in proximal (A), distal (B), dorsal (C), lateral (D), ventral (E), and medial (F) views.
Fig. 9 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 9. The nyctitheriid Bumbanius ningi sp. nov., from the Gashatan (Paleocene) of Subeng, China, in labial (A1–I1), occlusal (A2–I2), and lingual (A3–I3) views. A. IMM−2004−SB−035, RM1 or M2. B. IMM−2004−SB−034 (holotype), RM1?. C. IMM−2004−SB−036, RM3. D. IMM−2004−SB−037, Rp4. E. IMM− 2004−SB−038, Rp4. F. IMM−2001−SB−042, Rp4. G. IMM−2004−SB−039, Rm1. H. IMM−2001−SB−043, Lm2. I. IMM−2001−SB−044, Rm3. SEM micrographs.
Fig. 6 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 6. The gliriform Pseudictops lophiodon Matthew, Granger, and Simpson, 1929, from the Gashatan (Paleocene) of Subeng, China. IMM−2004−SB−027, left calcaneum in proximal (A), distal (B), dorsal (C), lateral (D), ventral (E), and medial (F) views.
Fig. 8 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 8. The alagomyid Tribosphenomys minutus Meng, Wyss, Dawson, and Zhai, 1994, from the Gashatan (Paleocene) of Subeng, China, in labial (A1–I1), occlusal (A2–I2), and lingual (A3–I3) views. A. IMM−2001−SB−036, RP4. B. IMM−2001−SB−037, LDP4. C. IMM−2004−SB−033, RM1. D. IMM− 2001−SB−035, RM2. E. IMM−2001−SB−034, RM3. F. IMM−2001−SB−038, Rdp4. G. IMM−2001−SB−039, Rm1. H. IMM−2001−SB−040, Lm2. I. IMM− 2001−SB−041, Rm3. SEM micrographs.
Fig. 5 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 5. The gliriform Pseudictops lophiodon Matthew, Granger, and Simpson, 1929, from the Gashatan (Paleocene) of Subeng, China, in labial (A1, B1) and occlusal (A2, B2) views. A. IMM−2004−SB−026, RP1. B. IMM− 2001−SB−025, RI3. SEM micrographs.
Fig. 7 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 7. The eurymylid Eomylus bayanulanensis Meng, Wyss, Hu, Wang, Bowen, and Koch, 2005, from the Gashatan (Paleocene) of Subeng, China, in labial (A1–H1), occlusal (A2–H2), and lingual (A3–H3) views. A. IMM−2004−SB−031, LP3. B. IMM−2001−SB−033, RDP4. C. IMM−2004−SB−028, LM1. D. IMM−2001−SB−031, LM2. E. IMM−2004−SB−030, Rdp4. F. IMM−2001−SB−028, Rm1. G. IMM−2001−SB−032, right dentary fragment with m2. H. IMM−2001−SB−030, Lm3. SEM micrographs.
Fig. 2 in The Gashatan (late Paleocene) mammal fauna from Subeng, Inner Mongolia, China
Fig. 2. The gliriform Astigalidae gen. et sp. indet. from the Gashatan (Paleocene) of Subeng, China, in labial (A1, B1), occlusal (A2, B2), and lingual (A3, B3) views. A. IMM−2001−SB−023, Lm3. B. IMM−2004−SB−020, Rm3. SEM micrographs.
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.