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Fig. 8 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 8. Lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Fragment of the right maxilla with M1–M2 (IVPP V20262) in ventral (A1), medial (A2), and lateral (A3) views. B. Left m2 in mandible fragment (IVPP V20263.2) in buccal (B1, note the knob-like masseteric tubercle un- der the trigonid) and lingual (B2) views.

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Fig. 10 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 10. Lower cheek dentition of the lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Right p3 (IVPP V20265.13) in anterior (A1), buccal (A2), lingual (A3), posterior (A4), and occlusal (A5) views. B. Right m1 (IVPP V20265.14) in buccal (B1), anterior (B2), lingual (B3), posterior (B4), occlusal (B5), and apical (B6) views. C. Right m2 (IVPP V20265.16) in anterior (C1), buccal (C2), lingual (C3), posterior (C4), and occlusal (C5) views. D. Right m3 (IVPP V20265.17) in lingual (D1), anterior (D2), posterior (D3), buccal (D4), occlusal (D5), and apical (D6) views.

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Fig. 11 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 11. Limb bones of the lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Distal part of left humerus (IVPP V20265.19) in ventral (A2), cranial (A1), and caudal (A3) views. B. Proximal part of right ulna (IVPP V20265.21) in medial (B1) and lateral (B2) views. C. Proximal part of radius (IVPP V20265.20) in cranial view. D. Right calcaneus (IVPP V20265.22) in medial (D1), plantar (D2), lateral (D3), dorsal (D4), and caudal (D5) views.

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Fig. 5 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 5. Lagomorph Erenlagus anielae Fostowicz-Frelik and Li, 2014 from the Eocene of Wulanhuxiu, Nei Mongol, China. Left M1 (IVPP V20260) in occlusal (A) and posterior (B) views.

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Fig. 1. A in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 1. A. Location of the Wulanhuxiu mammalian fossil site in the western part of the Erlian Basin (elevations given in meters; modified from Russell and Zhai 1987). B. Map of continental China (Nei Mongol Autonomous Region in gray). C. Typical landscape at the Wulanhuxiu locality showing fossiliferous beds with the Irdinmanhan–Sharamurunian transition. D. Stratigraphic section of the studied sediment series at Wulanhuxiu (after a field sketch by Bin Bai).

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Fig. 12 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 12. Ischyromyid rodent Asiomys dawsoni Qi, 1987 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Left P4 (IVPP V20828.1). B. Left M1 (IVPP V20828.2). C. Right M1 (IVPP V20828.4). D. Right M2 (IVPP V20828.5). E. Left dp4 (IVPP V20828.6). F. Left m3 (IVPP V20828.7). All in occlusal view.

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Fig. 3 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 3. Mimotonid Gomphos progressus sp. nov. from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Left M3 (IVPP V20824) in occlusal (A1), anterior (A2), posterior (A3), and lingual (A4) views. B. Left m2, holotype (IVPP V20259) in occlusal (B1) and buccal (B2) views. C. Right m3 (IVPP V20259.1) in occlusal (C1) and anterior (C2) views.

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Fig. 2 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 2. Anagalid and mimotonid from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Anagalidae gen. et sp. indet., left m1 (IVPP V20825) in occlusal (A1), buccal (A2), anterior (A3), and lingual (A4) views. B. Mimolagus aurorae Fostowicz-Frelik, Li, Mao, Meng, and Wang, 2015, right m1 (IVPP V20826) in occlusal (B1), buccal (B2), posterior (B3), anterior (B4), and lingual (B5) views.

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Fig. 4 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 4. Morphology of tooth of Gomphos progressus sp. nov. A. Cross-section of the left upper incisor (IVPP V20259.2). B. Cross-section of the left lower incisor (IVPP V20259.3). C. Left m2, holotype (IVPP V20259) in occlusal (C1), buccal (C2), lingual (C3), anterior (C4), and posterior (C5) views. D. Right m3 (IVPP V20259.1) in occlusal (D1), buccal (D2), lingual (D3), anterior (D4), and posterior (D5) views.

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Fig. 6 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover

Fig. 6. Lagomorph Erenlagus anielae Fostowicz-Frelik and Li, 2014 from the Eocene of Wulanhuxiu, Nei Mongol, China. Right m2 (IVPP V20258) in occlusal (A), apical (B), mesial (C), lingual (D), distal (E), and buccal F) views.

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Fig. 18 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 18. Hettangian to earliest Sinemurian palaeogeographical distribution of the species described here in the western European epicontinental seas. Occurrences corresponding to the synonymies listed in the systematic part are in bold. Occurrences from sources lacking an illustration of the species concerned are in italics.

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Fig. 15. Trochotomid gastropod Trochotoma vetusta Terquem, 1855 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 15. Trochotomid gastropod Trochotoma vetusta Terquem, 1855 from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A. MNHNL BR704, dorsal (A1), apical (A2), lateral (A3), and apertural (A4) views. B. MNHNL BR754, dorsal (B1), apical (B2), subapertural (B3) views, and detail of the exhalant hole and of the shell seam (B4). C. – MNHNL BR710, apical (C1), dorsal (C2), basal (C3), and apertural (C4) views. D. MNHNL BR361, apertural (D1), basal (D2), dorsal (D3), apical (D4), and lateral (D5) views. E. MNHNL BR705, dorsal (E1) and apical (E2) views, and detail of the exhalant hole and of the shell seam (E3). The arrow indicates the position of the selenizone.

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Fig. 13 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 13. Ptychomphalid gastropod Ptychomphalus caepa (Eudes−Deslongchamps, 1849) from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A. MNHNL BR213−1, apertural (A1), lateral (A2), dorsal (A3), basal (A4), and apical (A5) views. B. MNHNL BR810−1, apertural (B1), basal (B2), apical (B3), and dorsal (B4) views. C. MNHNL BR826−1, dorsal view. D. MNHNL BR213−2, dorsal (D1), apical (D2), basal (D3), and apertural (D4) views.

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Fig. 11 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 11. Pleurotomariid gastropods from Hettangian–Early Sinemurian, Early Jurassic of Grand−Duchy of Luxembourg. A. Pleurotomaria hennocquii Terquem, 1855, MNHNL BR881, dorsal (A1), lateral (A2), apical (A3) views, and detail of the ornament (A4), Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone). B, C. Pleurotomaria cognata Chapuis and Dewalque, 1853. B – MNHNL HE197−1, apertural (B1), basal (B2), and dorsal (B3) views. C – MNHNL HE197−2, dorsal (C1) and basal (C3) views, Burmerange, exact stratigraphical level uncertain. D. Pleurotomaria sp., MNHNL GL344, dorsal (D1), apertural (D2), and basal (D3) views, Burmerange, exact stratigraphical level uncertain.

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Fig. 10 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 10. Pleurotomariid gastropods from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A–D. Pleurotomaria hettangiensis Terquem, 1855. A. MNHNL BR294, dorsal (A1), basal (A2), and apertural (A3) views. B. MNHNL BR676, lateral (B1) and dorsal (B2) views. C. MNHNL BR375−1, dorsal (C1) and apertural (C2) views. D. MNHNL BR443, detail of the ornament (D1), dorsal (D2), and basal (D3) views. E. Pleurotomaria cf. hettangiensis Terquem, 1855, MNHNL BR432−2, dorsal (E1), basal (E2), and apertural (E3) views.

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Fig. 9. Pleurotomariid gastropod Pleurotomaria wanderbachi Terquem, 1855 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 9. Pleurotomariid gastropod Pleurotomaria wanderbachi Terquem, 1855 from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A. MNHNL BR359, dorsal (A1), basal (A2), apertural (A3) views, and detail of the apical spire (A4). B. MNHNL BR306−2, lateral (B1) and sublateral (B2) views. C. MNHNL BR432−1, apertural (C1), basal (C2), and dorsal (C3) views. D. MNHNL BR308, apertural (D1), dorsal (D2), and basal (D3) views.

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Fig. 8 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 8. Neritopsoideans from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A, B. Bandelopsis? cf. exigua (Terquem, 1855). A. MNHNL BR880, dorsal (A1), and apical (A2) views. B. MNHNL BR700, dorsal (B1), apertural (B2), and apical (B3) views. C. Bandelopsis? sp., MNHNL BR367, apical (C1), apertural (C2), and dorsal (C3) views.

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Fig. 12 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 12. Pleurotomariid and ptychomphalid gastropods from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A, B. Anodomaria schroederi sp.nov. A – Holotype, MNHNL BR342, dorsal (A1) and apical (A2) views. B – Paratype, MNHNL BR871, dorsal (B1), lateral (B2), and apical (B3) views. C. Ptychomphalus rotellaeformis (Dunker, 1847), MNHNL BR364, apertural (C1), dorsal (C2), basal (C3), apical (C4), and lateral (C5) views.

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Fig. 7 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 7. Neritimorph gastropod Neridomus cannabis (Terquem, 1855) from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A. MNHNL BR365, dorsal (A1), apical (A2), apertural (A3), and subapertural (A4) views. B. MNHNL BR878, apertural (B1), lateral (B2), apical (B3), and dorsal (B4) views. C. MNHNL BR879, apertural (C1), dorsal (C2), and apical (C3) views. D. MNHNL BR883, subaxial section showing the absence of the inner shell wall by dissolution.

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Fig. 6 in Earliest Jurassic patellogastropod, vetigastropod, and neritimorph gastropods from Luxembourg with considerations on the Triassic-Jurassic faunal turnover

Fig. 6. Neritimorph gastropod Neridomus liasina (Dunker, 1844) from Brouch (Mersch, Grand−Duchy of Luxembourg), Late Hettangian (Schlotheimia angulata Zone, Schlotheimia complanata Subzone), Early Jurassic. A. MNHNL BR362, dorsal (A1), apertural (A2), subapertural (A3), and apical (A4) views. B. MNHNL BR701−1, dorsal (B1), and apical (B2) views. C. MNHNL BR701−2, dorsal (C1), apical (C2), apertural (C3), and subapertural (C4) views. D. MNHNL BR702, apertural (D1), dorsal (D2), and subapertural (D3) views. E. MNHNL BR882 showing the absence of the inner shell wall by dissolution. F. MNHNL BR877, dorsal (E1), lateral (E2), apical (E3), apertural (E4), and subapertural (E5) views.

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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.

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neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record