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Figure 15. Anoplotherium latipes. Ham 3 skeleton, manus. A–C in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 15. Anoplotherium latipes. Ham 3 skeleton, manus. A–C, left scaphoid (SMNS.41992). D–F, left unciform (BMNH.M42661) and proximal metacarpal IV (SMNS.42066a) articulated. G, J, P, left metacarpal II. H, I, right metacarpals III and IV, reversed (IWCMS. 1999.128), to show articulation (G) and juxtaposition (J) with left M/C II. K–M, manual right first phalanx IV, reversed (IWCMS. 1999.128). N, O, manual left or right second phalanx III or IV (SMNS.42098). Q, R, right M/C III, reversed. S, right M/C IV reversed. Views are anterior (A, D, G, H), lateral (B, F, P, R), proximal (C, I, J), medial (E, K, Q, S), dorsal (L, O), ventral (M) and medial or lateral (N). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 16. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 16. Anoplotherium latipes. Ham 3 skeleton, left os innominatum (IWCMS. 1999.128) in lateral view. A, ilium fragments with acetabulum. B, ischium fragment. Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 5. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 5. Anoplotherium latipes. Ham 3 skeleton, thoracic vertebrae (IWCMS. 1999.128). A–C, T1 embedded in pyrite slab. D, T3?. E–H, T4?. I–J, T11?. K–N, T12?. Views are anterior (A, D, E, K), left lateral (B, J, N), right lateral reversed (H), posterior (C, F, I, L) and dorsal (G, M). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 9. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 9. Anoplotherium latipes. Ham 3 skeleton, left scapula (SMNS.42098), in distal (A), ventral (B) and dorsal (C) views. Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 4 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 4. Reconstructed series of cervical vertebrae of Anoplotherium, based on Ham 3 A. latipes (D, G) and Montmartre A. commune (A–C, E, F), in left lateral view. A, Atlas (MNHN.GY213). B, Axis (MNHN.GY215). C, C3 (MNHN.GY221). D, C4 (IWCMS. 1999.128). E, C5 (MNHN.GY194). F, C6? (MNHN.GY217). G, C7 (IWCMS. 1999.128). H, full series of cervical vertebrae articulated in normal pose according to the individual reconstructions in A–G, where restored areas are shown hatched. Transverse processes in C–F have not been reconstructed, for lack of information. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 12. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 12. Anoplotherium latipes. Ham 3 skeleton, left proximal ulna (SMNS.42098) and left proximal radius (SMNS.41960a). Views are anterior (A, B), posterior (C, H), lateral (D, E) and medial (F, G). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 3. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 3. Anoplotherium latipes. Ham 3 skeleton, cervical vertebrae (IWCMS. 1999.128). A and B, right half fragment of atlas. C–G, C3. H–L, C7. Views are dorsal (A, C, I), ventral (B, F, L), anterior (D, J), posterior (E, K) and right lateral reversed (G, H). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 13. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 13. Anoplotherium latipes. Ham 3 skeleton, right ulna lacking epiphyses (reversed) (A, D, G, H) and right proximal radius (B, C, E, F) (IWCMS. 1999.128). Views are anterior (A, C), posterior (B, H), lateral (D, E) and medial (F, G). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 7. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 7. Anoplotherium latipes. Ham 3 skeleton, ribs (IWCMS. 1999.128). A–C, left 4th? head. D–F, left 5th? head. G–I, left 8th or 9th? head. J, K, right 8th or 9th head. L, M, right shaft that may belong to right 8th or 9th? head. N, shaft of more posterior rib. Views are dorsal (A, D, G), anterior (B, E, H, J, L), posterior (C, F, I, K, M) and lateral (N). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 2. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 2. Anoplotherium latipes. Ham 3 skeleton, teeth and jaws (IWCMS. 1999.128). A, right M1. B, anterior part of palate with alveoli for canines, crowns of left P3−4 and right P1−3. C, right I1. D–F, right dentary fragment in two parts with P2–4, M1 and trigonid of M3. Views are crown (A, B, E), lingual (C, F) and buccal (D). Coated with ammonium chloride. Scale bar = 50 mm.

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Figure 10. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 10. Anoplotherium latipes. Ham 3 skeleton, humeri and radii. A–E, left humerus lacking proximal end (SMNS.42098). F, right humerus, proximal epiphysis (IWCMS. 1999.128). G, right proximal radius (IWCMS. 1999.128). H, left proximal radius (SMNS.41960a). Views are anterior (A), lateral (B, F), medial (C), posterior (D), distal (E) and proximal (G, H). Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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Figure 6. Anoplotherium latipes. Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 6. Anoplotherium latipes. Ham 3 skeleton, lumbar and caudal vertebrae (IWCMS. 1999.128). A–D, L2?. E–H, L4?. I, posterior caudal. J, L, posterior lumbar. K, M–P, anterior caudal. Views are anterior (A, E, M), posterior (B, F, J, N), dorsal (C, G, I, O), left lateral (D, H, P) and right lateral reversed (L.). Coated with ammonium chloride. Scale bar = 50 mm.

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Figure 1. Anoplotherium latipes. A–D, Ham 3 in Bipedal browsing adaptations of the unusual Late Eocene-earliest Oligocene tylopod Anoplotherium (Artiodactyla, Mammalia)

Figure 1. Anoplotherium latipes. A–D, Ham 3 skeleton, log bed, lower Hamstead Member, Bouldnor Formation, Bouldnor, Isle of Wight, UK (IWCMS. 1999.128). Bones showing tooth puncture marks, indicated by arrows. A, manual right first phalanx IV, distal end in dorsal view. B, anterior thoracic vertebra (3?) in left lateral view. C and D, mediodistal portion of left ischium in dorsal (C) and ventral (D) views. E–G, lectotype left metatarsal II, Late Eocene lignites, La Débruge, Vaucluse, France (BMNH.30600b) in anterior (E), posterior (F) and lateral (G) views. Coated with ammonium chloride. Scale bar = 50 mm.

opencc-by-4.0Nov 2007View details →
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FIG. 2 in A new species of Triaenops (Mammalia, Chiroptera, Hipposideridae) from Aldabra Atoll, Picard Island (Seychelles)

FIG. 2. — Drawings of the heads and facial discs: A, adult Triaenops furculus Trouessart, 1906 (FMNH 173243); B, T. pauliani n. sp. (BMNH 78.185). The shape of the lance-like noseleafs and the disc horseshoe are notably different between these two species.

opencc-zeroDec 2008View details →
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FIG. 5 in Les micro-mammifères (Mammalia, Rodentia, Afrosoricida et Soricomorpha) du massif du Tsaratanana et biogéographie des forêts de montagne de Madagascar

FIG. 5. — Courbes cumulatives des espèces des tenrecs et rongeurs capturées sur sept montagnes dans les trous-pièges (A) et les pièges « Sherman » et « National » (B). Abréviations: O, versant ouest; S, versant sud; TS, Tsaratanana.

opencc-zeroDec 2008View details →
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FIG. 2 in Les micro-mammifères (Mammalia, Rodentia, Afrosoricida et Soricomorpha) du massif du Tsaratanana et biogéographie des forêts de montagne de Madagascar

FIG. 2. — Les différents types de végétation sur le massif de Tsaratanana en fonction de l'altitude: A, forêt de basse altitude à 730 m d'altitude à proximité de la rivière Ramena; B, forêt de moyenne altitude à 1600 m d'altitude le long de la rivière Befosa; C, forêt de montagne à 2050 m d'altitude bordant le lac temporaire Matsabory Maiky; D, forêt de montagne à lichens à 2100 m d'altitude, Matsabory Maiky; E, fourré et forêt de haute montagne à 2500 m d'altitude à Ambodinitsaratanana. Photos: C. J. Raxworthy.

opencc-zeroDec 2008View details →
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FIG. 3 in Les micro-mammifères (Mammalia, Rodentia, Afrosoricida et Soricomorpha) du massif du Tsaratanana et biogéographie des forêts de montagne de Madagascar

FIG. 3. — Analyse de régression comparant l'altitude ayant la plus grande richesse spécifique de micro-mammifères (tenrecs et rongeurs regroupés) et la hauteur du sommet pour sept hautes montagnes à Madagascar.

opencc-zeroDec 2008View details →
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FIG. 27 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication

FIG. 27. — Femora of extant fossorial rodents and GT 50'06: Cryptomys hottentotus (Lesson, 1826) AZ 834, right femur; A, anterior view; F, posterior view, K, medial view; Bathyergus janetta Thomas & Schwann, 1904 TM 39332, left femur; B, anterior view; G, posterior view; L, medial view; Heliophobius argentocinereus Peters, 1846 TM 45931, left femur; C, anterior view; H, posterior view; M, medial view; Tachyoryctes splendens (Rüppell, 1835) 820 38 M 1, right femur; D, anterior view; I, posterior view; N, medial view; Bathyergoides neotertiarius Stromer, 1923 GT 50'06, left femur E, anterior view; J, posterior view; O, medial view. Scale bars: 1 cm.

opencc-zeroMar 2022View details →
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FIG. 18 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication

FIG. 18. — Left calcaneum of GT 50'06: A, dorsal view; B, lateral view; C, plantar view; D, medial view; E, distal view; F, Proximal view. Scale bar: 1 cm.

opencc-zeroMar 2022View details →
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FIG. 24 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication

FIG. 24. — Mandible of extant fossorial rodents and GT 50'06; A-C, ventral view; A, Heliophobius argentocinereus Peters, 1846 TM 45931; B, Cryptomys hottentotus (Lesson, 1826) AZ 834; C; Bathyergus janetta Thomas & Schwann, 1904 TM 39332; D-F, left lateral view; D, Heliophobius argentocinereus Peters, 1846 TM 45931; E, Cryptomys hottentotus (Lesson, 1826) AZ 834; F, Bathyergus janetta Thomas & Schwann, 1904 TM 39332; G-I, Bathyergoides neotertiarius Stromer, 1923 GT 50'06; G, left lateral view; H, right lateral view; I, ventral view. Scale bars: 1 cm.

opencc-zeroMar 2022View details →

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Allen Brain Atlas

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neuroscienceopenDocumentation, web resources, and API references are available online.
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Annotated Behaviour and Observability Dataset (ABODe)

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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.

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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.

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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