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109 results for “Lagomorpha”
FIG. 27. — A-H in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 27. — A-H, Rhagapodemus cf. hautimagnensis Mein & Michaux, 1970, lower molars in occlusal view; A, right m1, Ms233; B, right m1, Ms234; C, right m1, Ms229; D, left m2, Ms237; E, right m2, Ms238; F, right m2, Ms235; G, left m3, Ms261; H, left m3, Ms262; I, J, Rhagapodemus sp., M1 in occlusal view; I, left, Ms302; J, right, Ms303. Scale bar: 1 mm.
FIG. 32 in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 32. — Propliomys cf. hungaricus Kormos, 1934, first lower molars; A, right, Ms43, occlusal view; B, left fragment, Ms47, occlusal view; C, left fragment, Ms45, occlusal view; D, left fragment, Ms46, occlusal view; E, left fragment, Ms48, occlusal view; F, right, Ms44, occlusal view; G, right, Ms43, buccal view; H, right, Ms44, buccal view; I, left, Ms46, buccal view; J, left, Ms47, buccal view; K, left, Ms45, buccal view; L, left, Ms48, buccal view. Scale bar: 1 mm.
FIG. 23 in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 23. — Trischizolagus dumitrescue Radulesco & Samson, 1967, p3 in occlusal view; A, right, Ms85; B, right, Ms81; C, left, Ms82; D, left, Ms80; E, right, Ms83; F, right, Ms84. Scale bar: 1 mm.
FIG. 19 in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 19. — Ochotonoma csarnotana (Kretzoi, 1959), teeth in occlusal view; A, right p3, Ms59; B, left p3, Ms67; C, left p3, Ms61; D, right p3, Ms62; E, right p3, Ms63; F, right p3, Ms64; G, right p3, Ms65; H, left p3, Ms66; I, right p3, Ms60; J, right P3, Ms69; K, left P3, Ms70; L, left P2, Ms75; M, right dP2, Ms79; N, left P3, Ms68; O, left P4/M1, Ms72; P, right M2, Ms74; Q, right M2, Ms73; R, left dP4, Ms78; S, right m1, Ms76; T, right P4/M1, Ms71; U, left dP4, Ms77. Scale bar: 1 mm.
FIG. 18 in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 18. — Miniopterus cf. approximatus Woloszyn, 1988; A, right upper canine, Ms203, labial view; B, the same, lingual view; C, the same, occlusal view; D, right M2, Ms205, occlusal view; E, left M1, Ms204, occlusal view; F, right M3, Ms206, occlusal view; G, fragment of right mandible with m2, m3, Ms202, occlusal view; H, the same, labial view; I, the same, lingual view. Scale bar: 1 mm.
FIG. 26 in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 26. — Rhagapodemus cf. hautimagnensis Mein & Michaux, 1970, upper molars in occlusal view; A, right M1, Ms243; B, right M1, Ms244; C, right M1, Ms246; D, left M2, Ms253; E, right M2, Ms254; F, right M2, Ms255; G, right M3, Ms259; H, right M3, Ms260; I, right M3, Ms242. Scale bar: 1 mm.
FIG. 21. — A in Pliocene small mammals (Mammalia, Lipotyphla, Chiroptera, Lagomorpha, Rodentia) from Muselievo (North Bulgaria)
FIG. 21. — A, Leporidae, left upper molariform tooth, Ms108, occlusal view; B, Pliopentalagus dietrichi (Fejfar, 1961), right p3, Ms92, occlusal view; C, Leporidae, right upper molariform tooth, Ms109, occlusal view; D, Leporidae, left lower molariform tooth, Ms113, occlusal view; E, Leporidae, left upper molariform tooth, Ms11, occlusal view; F, Leporidae, right, Ms110, occlusal view; G, Leporidae, right lower molariform tooth, Ms112, occlusal view. Scale bar: 1 mm.
FIG. 6 in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 6. — Ochotona pusilla pusilla (Pallas, 1769), dex mandible with p3-m3; A, labial view; B, occlusal surface. Scale bar: 5 mm.
FIG. 3. — Ochotona pusilla occidentalis n in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 3. — Ochotona pusilla occidentalis n. ssp., holotype (F-3414), dex mandible with p3-m3; A, labial view; B, lingual view; C, occlusal surface; D, under side. Scale bar: 5 mm.
FIG. 5. — Ochotona pusilla occidentalis n in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 5. — Ochotona pusilla occidentalis n. ssp.; A, P3-M2 dex (G-61024) from Gigny; B, p4-m3 sin (G-61017) from Gigny; C, P3 dex (F-4862) from La Fage; D, O. pusilla ssp., P3 dex from loc. Piliszanto. Scale bar: 1 mm.
FIG. 4 in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 4. — Tooth structure of Ochotona pusilla; A-H, p3 of Ochotona pusilla occidentalis n. ssp.; A, holotype, p3 dex (F-3414); B, p3 sin (F-3444); C, p3 sin (F-3444), bottom side view; D, p3 sin (F-4862); E, p3 dex (F-1244); F, p3 dex (F-1244a) from La Fage; G, p3 dex (G-61000); H, p3 sin (G-61001) from Gigny; I, p3 sin of O. pusilla ssp. from loc. Orgnac 3; J, p3 sin of O. pusilla ssp. from loc. Yar; K, p3 dex of O. pusilla ssp. from loc. Malta; L, p3 sin of O. pusilla ssp. from loc. Piliszantö; M, p3 sin of O. pusilla ssp. from loc. Emirkaya; N, p3 dex of O. pusilla pusilla; O, p3 dex of O. pusilla angustifrons; P, p3 dex of O. pusilla ssp. from loc. la Baume; Q, P2 dex of O. pusilla pusilla; R, P2 sin of O. pusilla spelaea; S, P2 dex of O. pusilla ssp. from loc. Piliszantö; T, P2-P3 dex of O. pusilla pusilla; U, p3 dex of O. pusilla spelaea; V, P2-P3 sin of O. pusilla angustifrons. Scale bar: 1 mm.
FIG. 2. — Ochotona valerotae n in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 2. — Ochotona valerotae n. sp., mandible dex (Val-8226), incomplete mandible views; A, labial view; B, lingual view; C, occlusal surface; D, under side. Scale bar: 5 mm.
FIG. 7 in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 7. — Distribution area of Ochotona pusilla Pallas, 1768; A, during Pleistocene times; B, present-day.
FIG. 1 in New ochotonids (Lagomorpha) from the Pleistocene of France
FIG. 1. — Ochotonid tooth structure (occlusal view); A-D, Ochotona valerotae n. sp.; A, p3-m3 sin. (Val-8226); B, P3 dex (Val-8014); C, P4 dex (Val-8013a); D, M1 dex (Val-8013b); E, Ochotona pusilla angustifrons Argyropulo, p3 dex; F, Ochotona sp., p3 dex (Chembakchino, western Siberia). Scale bar: 1 mm.
Molecular phenotyping uncovers differences in basic housekeeping functions among closely related species of hares (Lepus spp., Lagomorpha: Leporidae)
<p>Speciation is a fundamental evolutionary process, which results in genetic differentiation of populations and manifests as discrete morphological, physiological as well as behavioral differences. Each species has had its own evolutionary trajectory, formed by many types of selection pressures and random drift, making it extremely complicated to associate genetic differences between the species with the phenotypic differences. In the present study, we have used an in vitro model to analyze in depth the genetic and gene regulation differences between fibroblasts of two closely related mammals, arctic/subarctic mountain hare (Lepus timidus Linnaeus) and a temperate, steppe-like climate adapted brown hare (Lepus europaeus Pallas). We discovered the existence of a species-specific expression pattern of 1,623 genes, manifesting in differences in cell growth, respiration, and metabolism. Interspecific differences in the housekeeping functions of fibroblast cells suggest speciation acts on fundamental processes, even in these two interfertile species. Our results help to understand the molecular constituents of a species difference on a cellular level, which could contribute to the maintenance of the species boundary.</p>
Figure 4 in The taxonomic status and geographic distribution of the European hare (Lepus europaeus Pallas, 1778) in Turkey (Mammalia: Lagomorpha)
Figure 4. Hair scale structure of L. europaeus in Turkey.
FIGURE 3. Lower p3 in Dental enamel ultrastructure in Ochotona and Prolagus (Mammalia: Lagomorpha: Ochotonidae) from three late Miocene localities in Ukraine
FIGURE 3. Lower p3 enamel ultrastructure; Ochotona sp. from Popovo 3, cross-section.
FIGURE 1. Lower p3 in Dental enamel ultrastructure in Ochotona and Prolagus (Mammalia: Lagomorpha: Ochotonidae) from three late Miocene localities in Ukraine
FIGURE 1. Lower p3 enamel ultrastructure; Prolagus aff. crusafonti from Popovo 3, cross-section.
FIGURE 10. Lower p3 in Dental enamel ultrastructure in Ochotona and Prolagus (Mammalia: Lagomorpha: Ochotonidae) from three late Miocene localities in Ukraine
FIGURE 10. Lower p3 enamel ultrastructure; Ochotona sp. from Lobkove, cross- section.
FIGURE 5 in Dental enamel ultrastructure in Ochotona and Prolagus (Mammalia: Lagomorpha: Ochotonidae) from three late Miocene localities in Ukraine
FIGURE 5. Upper incisor enamel ultrastructure; Ochotona sp. from Popovo 3, cross-section.
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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.