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FIG. 17 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 17. — Lower molars; A, Kennetheredium leesi n. gen., n. sp., holotype BMNH J.746, × 25; B,?Kennetheredium sp., BMNH J.428, × 26; C,?Kennetheredium leesi n. gen., n. sp., BMNH J.430, × 26; a, labial view; b, lingual view; c, posterior view; d, anterior view; e, occlusal view.
FIG. 15 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 15. — Upper molars; A, Palaeoxonodon sp. (group II), BMNH J.99, × 25; B,?Kennetheredium sp., BMNH J.517, × 35; C, Palaeoxonodon sp. (group II), BMNH J.742, × 22; D, Palaeoxonodon sp. (group II), BMNH J.743, × 23; a, lingual view; b, labial view; c, posterior view; d, anterior view; e, occlusal view.
FIG. 16 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 16. — Upper molars of Palaeoxonodon sp.; A, group II, BMNH J.817, × 30; B,?group II, BMNH J.508, × 25; C, Trechnotheria indet., BMNH J.698, × 20; D, Trechnotheria indet., BMNH J.786, × 25; a, lingual view; b, labial view; c, posterior view; d, anterior view; e, occlusal view.
FIG. 14 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 14. — Upper molars of Palaeoxonodon sp. (group I); A, BMNH J.636, × 24; B, BMNH J.749, × 30; C, BMNH J.792, × 30; D, BMNH J.231, × 19; a, lingual view; b, labial view; c, posterior view; d, anterior view; e, occlusal view.
FIG. 12 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 12. — Diagram of the width (W) versus length (L) of the upper molars of?Palaeoxonodon sp. (group I and group II). Measurements units in 1/100 of mm.
FIG. 13 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 13. — Diagram of the length of the parastyle (P) versus total length (L) of the upper molars of?Palaeoxonodon sp. (group I and group II). Measurements units in 1/100 of mm.
FIG. 9 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 9. — SEM photographs; A, B, Palaeoxonodon freemani n. sp., BMNH M 44303 lower molar, lingual and occlusal views; C, D,?Palaeoxonodon sp., BMNH M 34994 upper molar, posterior and occlusal views. Scale bar: 1 mm.
FIG. 10 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 10. — Lower molars; A, Palaeoxonodon sp., BMNH J.702, × 22; B,?Kennetheredium sp., BMNH J.515, × 20; C, Palaeoxonodon sp., BMNH J.802, × 25; a, labial view; b, lingual view; c, posterior view; d, anterior view; e, occlusal view.
FIG. 8 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 8. — Lower molars of Palaeoxonodon freemani n. sp.; A, holotype BMNH J.745, × 34; B, BMNH J.350, × 40; C, BMNH J.657, × 17; a, labial view; b, lingual view; c, posterior view; d, anterior view; e, occlusal view.
Fig. 4 in Gomphos elkema (Glires, Mammalia) from the Erlian Basin: Evidence for the Early Tertiary Bumbanian Land Mammal Age in Nei-Mongol, China
Fig. 4. Upper teeth of Gomphos elkema (IVPP V). A–C. Occlusal, labial, and lingual views of right P4–M2 (IVPP V13509.4).
Fig. 3 in Gomphos elkema (Glires, Mammalia) from the Erlian Basin: Evidence for the Early Tertiary Bumbanian Land Mammal Age in Nei-Mongol, China
Fig. 3. Upper teeth of Gomphos elkema. A. Occlusal view of left P3–M1 (IVPP V13509.5). B. Occlusal view of right P4–M1 (V13509.6).
Fig. 9. A–F in Gomphos elkema (Glires, Mammalia) from the Erlian Basin: Evidence for the Early Tertiary Bumbanian Land Mammal Age in Nei-Mongol, China
Fig. 9. A–F, Distal, proximal, dorsal, ventral, medial, and lateral views of the right cuboid of Gomphos elkema (IVPP V13510.3). Abbreviations: CaCu, calcaneocuboid facet; CuEc, facet for ectocuneiform; CuM45, facet for metatarsals IV and V; CuN, cuboidonavicular facet; and pp, plantar process.
Fig. 8. A–E in Gomphos elkema (Glires, Mammalia) from the Erlian Basin: Evidence for the Early Tertiary Bumbanian Land Mammal Age in Nei-Mongol, China
Fig. 8. A–E, Dorsal, ventral, lateral, distal, and medial views of the right calcaneus of Gomphos elkema (IVPP V13510.1). Abbreviations: at, anterior plantar tubercle; CaA, calcaneoastragalar facet; CaCu, calcaneocuboid facet; gtff, groove for the tendon of M. flexor fibularis; pp, peroneal process; ptca, calcaneal protuberance; su, sustentacular facet; sus, sustentaculum talus; and tub, tuber of the calcaneus.
FIG. 5 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 5. — Diagram of the length of the talonid (T1) versus total antero-posterior length (L) of the lower molars of Palaeoxonodon Freeman, 1976b. Measurements units in 1/100 of mm.
FIG. 7 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 7. — Occlusal relationships of upper with lower molars in amphitheriids (A, A') and peramurids (B). Arrow points anteriorly.
FIG. 6 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 6. — Diagram of the length of the talonid (T2) versus trigonid width (W) of the lower molars of Palaeoxonodon Freeman, 1976b. The use of tooth width instead of length is aimed at reducing the effect of variation in the number of molars present in the jaw (suggestion P. M. Butler). Measurements units in 1/100 of mm.
FIG. 4 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 4. — Diagram of the width (W) versus length (L) of the lower molars of Palaeoxonodon Freeman, 1976b. Measurements units in 1/100 of mm.
FIG. 3 in Holotherian mammals from the Forest Marble (Middle Jurassic of England)
FIG. 3. — Lower molars of Palaeoxonodon ooliticus Freeman, 1976b; A, holotype BMNH M 36508; a, labial view; b, lingual view, × 24; c, occlusal view, × 33; B, BMNH M 36507, lingual view, × 24; C, BMNH J.242, × 25; a, labial view; b, lingual view; c, posterior view; d, anterior view; e, occlusal view; D, BMNH J.236, × 27; a, labial view; b, lingual view; c, posterior view; d, anterior view; e, occlusal view.
FIG. 1 in The position of Akkașdağı mammal locality in the neo-tectonic framework of Çankırı basin, Turkey
FIG. 1. — Location of Akkasdağı area in the neo-tectonic framework of Central Anatolia. Abbreviations: IZ, Istanbul Zone; SC, Sakarya Continent; KB, Kırsehir Block (Okay & Tüysüz 1999).
Fig. 58 in Morphology And Relationships Of Apternodus And Other Extinct, Zalambdodont, Placental Mammals
Fig. 58. Strict consensus trees from the same analyses shown in figure 57, but excluding taxa with greater than 40% missing data. (A) ordered (22 MPTs, 341 steps) and (B) unordered (10 MPTs, 338 steps). Notation as in figure 57.
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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)
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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.
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.