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FIG. 13 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 13. — Ulnae of GT 50'06: A-D, Right ulna; A, anterior view; B, lateral view; C, posterior view; D, medial view. E-F, Olecranon process of the left ulna; E, anterior view; F, lateral view; G, posterior view; H, medial view. Scale bar: 1 cm.
FIG. 10 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 10. — Mandible of GT 50'06: A, ventral view; B, dorsal view; C, left buccal view; D, right buccal view. Scale bar: 1 cm.
FIG. 6 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 6. — Right upper cheek tooth row of GT 50'06: A, P4-M3, B, detail of the posterior part of the M3 (occlusal view) with the separation between the posteroloph and the metacone (in red). Scale bar: 1 mm.
FIG. 4 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 4 — List of measurements taken in this study and used for the index calculations.Bathyergus janetta Thomas and Schwann, 1904, specimen TM 39332: A, dorsal view of the skull; B, ventral view of the skull; C, dorsal view of the mandible; D, occlusal view of the left cheek teeth raw; E, anterior view of the left humerus; F, anterior view of the left ulna; G, medial view of the left ulna. Abbreviations: SL, length of the skull; SW, width of the skull; CRL, length of the cheek teeth raw; ML, length of the hemimandible; HL, length of the humerus; DW, length of the humeral diaphysis; DEW, width of the distal epiphysis; PEW, width of the proximal epiphysis; UL, length of the ulna; DuW, width of the ulna diaphysis; OPL, length of the olecranon process; TL, length of the tooth; TW, width of the tooth. Scale bars: 1 cm.
FIG. 1 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 1. — Map of the Sperrgebiet (Diamond Area 1, Namib Desert, Namibia) and location of the palaeontological sites (modified after Roche 2012).
FIG. 16 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 16. — Tibiae of GT 50'06: A-D, Left tibia (A, anterior view; B, lateral view; C, posterior view; D, medial view); E-H, proximal epiphysis of the right tibia (E, anterior view; F, lateral view; G, posterior view; H, medial view;) I, left fibula. Scale bar: 1 cm.
FIG. 15 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 15. — Femora of GT 50'06: A-D, Proximal epiphysis of the left femur; A, anterior view; B, lateral view; C, posterior view; D, medial view. E-H, Shaft of the right femur; E, anterior view; F, lateral view; G, posterior view; H, medial view. I-L, Shaft of the left femur; I, anterior view; J, lateral view; K, posterior view; L, medial view. Scale bar: 1 cm.
FIG. 26 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 26. — Ulnae of extant fossorial rodents and GT 50'06: Cryptomys damarensis (Ogilby, 1838) TM 45891, left ulna; A, anterior view; F, lateral view; Cryptomys hottentotus (Lesson, 1826) AZ 834, right ulna; B, anterior view; G, lateral view; Bathyergus janetta Thomas & Schwann, 1904 TM 39332, left ulna; C, anterior view; H, lateral view; Tachyoryctes splendens (Rüppell, 1835) 820 38 M 1, right ulna; D, anterior view; I, lateral view; Bathyergoides neotertiarius Stromer, 1923 GT 50'06, right ulna; E, anterior view; J, lateral view. Scale bars: 1 cm.
FIG. 28 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 28. — Tibio-fibulae of extant fossorial rodents and GT 50'06: Cryptomys hottentotus (Lesson, 1826) AZ 834, right tibio-fibula; A, anterior view; F, postero-medial view; Cryptomys damarensis (Ogilby, 1838) TM 45891, left tibio-fibula; B, anterior view; G, postero-medial view; Bathyergus janetta Thomas & Schwann, 1904 TM 39332, left tibio-fibula; C, anterior view; H, postero-medial view; Heliophobius argentocinereus Peters, 1846 TM 45931, left tibio-fibula; D, anterior view; I, postero-medial view; Tachyoryctes splendens (Rüppell, 1835) 820 38 M 1, right tibio-fibula; E, anterior view; J, postero-medial view; Bathyergoides neotertiarius Stromer, 1923 GT 50'06, left tibia; K, anterior view; L, posterior view. Scale bars: 1 cm.
FIG. 25 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 25. — Humeri of extant fossorial rodents and of GT 50'06; Cryptomys damarensis (Ogilby, 1838) TM 45891, left humerus A, anterior view; F, lateral view; K, posterior view; Cryptomys hottentotus (Lesson, 1826) AZ 834, right humerus; B, anterior view; G, lateral view; L, posterior view; Bathyergus janetta Thomas & Schwann, 1904 TM 39332, left humerus; C, anterior view; H, lateral view; M, posterior view; Heliophobius argentocinereus Peters, 1846 TM 45931, right humerus; D, anterior view; I, lateral view; N, posterior view; Tachyoryctes splendens (Rüppell, 1835) 820 38 M 1, right humerus; E, anterior view; J, lateral view; O, posterior view; Bathyergoides neotertiarius Stromer, 1923 GT 50'06, right humerus; P, anterior view; Q, lateral view; R, posterior view. Scale bars: 1 cm.
FIG. 5 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 5 — Upper Incisor and mandible of GT 50'06: A-D, left upper incisor; A, labial view; B, mesial view; C, lingual view; D, distal view. E-G, mandible; E, right lateral view; F, inferior view; G, occlusal view. Scale bars: 1 cm.
FIG. 9 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 9. — Skull of GT 50'06: A, dorsal view; B, ventral view; C, left lateral view; D, occipital view. Scale bar: 1 cm.
FIG. 23 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 23. — Skulls of extant fossorial rodents and GT 50'06; Cryptomys hottentotus AZ 834: A, upper view; E, palatal view; I, left lateral view; Bathyergus suillus (Schreber, 1782) TM 39392: B, upper view; F, palatal view; J, left lateral view; Georychus capensis (Pallas, 1778) TM 38360: C, upper view; G, palatal view; K, left lateral view; Heliophobius argentocinereus Peters, 1846 TM 45931: D, upper view; H, palatal view; L, left lateral view; Bathyergoides neotertiarius Stromer, 1923 GT 50'06: M, upper view; N, palatal view; O, left lateral view. Scale bars: 1 cm.
FIG. 11 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 11. — Lingual view of A, LT 200b'98; B, LT 50'19, specimens of Bathyergoides neotertiarius. Scale bar: 1 cm.
FIG. 12 in Skeleton of Early Miocene Bathyergoides neotertiarius Stromer, 1923 (Rodentia, Mammalia) from Namibia: behavioural implication
FIG. 12. — Humeri of GT 50'06: A-D, Right humerus; A, anterior view; B, lateral view; C, posterior view; D, medial view. E-H, Left humerus; E, anterior view; F, lateral view; G, posterior view; H, medial view. I-J, Proximal (I) and distal (J) view of the right humerus. K, proximal view of the left humerus. Scale bar: 1 cm.
Fig. 2 in Phenomenon In The Evolution Of Voles (Mammalia, Rodentia, Arvicolidae)
Fig. 2. Stages of complication of the m1 morphology (forming of the arvicolid tooth type) within the Cricetidae and Arvicolidae. Explanation — in the text.
Fig. 1 in Phenomenon In The Evolution Of Voles (Mammalia, Rodentia, Arvicolidae)
Fig. 1. Possible ways of the morphological differentiation of molar teeth within the Cricetidae and Arvicolidae. Images of single teeth were taken from special publications (Shevyreva, 1976; Nesin, 1996; Fejfar et al., 1998, 2011). Original material from the localities of Ukraine was also taken into consideration.
Fig. 3 in Road Mortality Of Carnivores (Mammalia, Carnivora) In Belarus
Fig. 3. Seasonal dynamics of mortality rates of carnivorous mammals on national highways in Belarus, 2007– 2018.
Fig. 5 in Patterns of tooth crown wear in Dryomys nitedula (Mammalia, Rodentia): age-related variation in the light of annual cycle specifics based on museum collections
Fig. 5. Changes in the external appearance of the forest dormouse during the first year of life. The animal was caught in early June 2009 near Luhansk: a — 19 of June, 1–2 weeks old, feeding exclusively with insects, mainly locusts; b — 16 of July, 1+ month of age, active motions, feeding with insects, including locusts, butterflies, and mealworms; c — 18 of August, 2+ months of age, low mobility, willingly feeding with mealworms, also began to consume nuts, honey, and cookies; d — 16 of September, 3+ months of age, low mobility, feeding almost exclusively with nuts, honey and other energy-rich products instead of insects, which became less preferred.
Fig. 2 in Helminths Of Wild Predatory Mammals (Mammalia, Carnivora) Of Ukraine. Trematodes
Fig. 2. Structure of the trematode fauna of the racoon dog in Ukraine (original data): ALT — A. alata; MSK — M. skworzowi; EPE — E. perfoliatus; IME — I. melis; ADO — A. donicum.
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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.