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FIGURE 12 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 12: Multiple roots in the fifth upper postcanines (a, MCN 2624 Otaria byronia, vestibular view; b, MCN 2699 Arctocephalus australis, vestibular view; scale, 5 cm).
FIGURE 9 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 9: Presence of the lingual cingulum in the third upper incisor of Arctocephalus australis (MCN 2509; scale, 5 cm).
FIGURE 6 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 6: Condylar process above the level of the postcanine alveolar series in Otaria byronia (MCN 2629; scale, 5 cm).
FIGURE 2 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 2: Orientation of the postcanine alveolar series showing medial concavity in Otaria byronia (MACN 4-3-12; scale, 2 cm).
FIGURE 1 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 1: Nasal process of the premaxillary (arrow) not prominent in O. byronia (MCN 2629; scale, 2 cm).
FIGURE 11 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 11: Multiple roots in the fourth upper postcanine of Arctocephalus australis (MCN 2456: a, vestibular view; b, apical view; scale, 5 cm).
FIGURE 8 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 8: Internal auditory meatus showing incipient separation for the canals for the facial and vestibulocochlear nerves in Arctocephalus australis (MCN 2501; scale, 5 cm).
FIGURE 10 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 10: Apical constriction and vertical sulcus on the root of the second upper postcanine of Arctocephalus australis (MCN 2456: a, lingual view; b, apical view; scale, 5 cm).
FIGURE 5 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 5: Presence of a prolonged posterior-ventral projection in the wall of the tympanic bulla in Arctocephalus australis (MCN 1021; scale, 5 cm).
Fig. 7 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 7. Prevalence (%) of main groups of helminths in Mustelidae (combined sample) and the American mink.
Fig. 8 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 8. Infection prevalence and mean intensity of species composing the core of helminth fauna in Mustelidae (combined sample of 8 species); Pe.mu — Pearsonema mucronata, Is.me — Isthmiophora melis, Sp.er — Spirometra erinaceieuropei, Ao.pu — Aonchotheca putorii, Ap.do — Apophallus donicus, Ps.tr — Pseudoamphistomum truncatum, Mo.pa — Molineus patens.
Fig. 4 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 4. Infection prevalence and mean intensity of species composing the core of helminth fauna in the wolf; Un.st — Uncinaria stenocephala, Ta.hy — Taenia hydatigena, Al.al — Alaria alata, Me.li — Mesosestoides lineatus, Tr.vu — Trichuris vulpis, To.le — Toxascaris leonina, To.ca — Toxocara canis.
Fig. 5 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 5. Infection prevalence and mean intensity of species composing the core of helminth fauna in the raccoon dog; Un.st — Uncinaria stenocephala, Al.al — Alaria alata, Sp.er — Spirometra erinaceieuropei, Is.me — Isthmiophora melis, St.er — Strongyloides erschowi, Ap.do — Apophallus donicus, Me.sk — Mesostephanus skworzowi, Me.li — Mesosestoides lineatus, Ec.pe — Echinochasmus perfoliatus, Ta.cr — Taenia crassiceps.
Fig. 3 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 3. Infection prevalence and mean intensity of species composing the core of helminth fauna in the red fox; Me.li — Mesosestoides lineatus, Al.al — Alaria alata, To.le — Toxascaris leonina, Te.po — Taenia polyacantha, Un.st — Uncinaria stenocephala, To.ca — Toxocara canis, Ta.cr — Taenia crassiceps, Pe.pl — Pearsonema plica, Eu.ae — Eucoleus aerophilus.
Fig. 9 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 9. Infection prevalence and mean intensity of species composing the core of helminth fauna in the American mink; Sp.er — Spirometra erinaceieuropei, Is.me — Isthmiophora melis, Ap.do — Apophallus donicus, Pe.mu — Pearsonema mucronata, Ps.tr — Pseudoamphistomum truncatum, Ao.pu — Aonchotheca putorii, Ec.pe — Echinochasmus perfoliatus.
Fig. 6 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 6. Number of helminth species found in eight species of Mustelidae (combined sample) and the American mink.
FIG. 18 in Early Eocene hippomorph perissodactyls (Mammalia) from the Paris Basin
FIG. 18. — Occlusal outlines of upper milk teeth of P. quesnoyensis Bronnert, Gheerbrant, Godinot & Métais, 2018 (combined MNHN-QNY2-2840, 2883, 2903), O. maldani (Lemoine, 1878) (combined MNHN-SLP-29-PE1436 [reversed], SLP-29-PE100, SLP-29-PE1201) and P. gaudryi (MNHN-MTH53-L), showing the evolutionary trends in the early Eocene hippomorphs in Europe. Scale bars: 5 mm.
FIG. 8 in Early Eocene hippomorph perissodactyls (Mammalia) from the Paris Basin
FIG. 8. — Lower teeth and mandibles of Propalaeotherium gaudryi (Lemoine, 1878) from the Paris Basin: A, B, p1 (MNHN.F.GR7546) in lateral (A) and occlusal (B) views; C, left dp3 (MNHN.F.GR10784 [reversed]) in occlusal view; D, right mandible with dp4-m1 (MNHN.F.MA3-L) in occlusal view; E, right p4 (MNHN.F.GR7572) in occlusal view; F, right mandible with dp3-m2 (MNHN-CHO14801) in occlusal view; G, left mandible with p1-p4 (MNHN.F.AL5212 [reversed]) in occlusal view; H, O, left mandible with m1-m3 (holotype MNHN.F.AL5210 [H, reversed]) in occlusal (H) and lateral (O) views; I, K, right mandible with p3-m3 (MNHN.F.MA14902) in occlusal (I) and lateral (K) views; J, L, right mandible with m1-m3 (MNHN.F.GR10788) in occlusal (J) and lateral (L) views; M, N, symphysis (MNHN-CHO14787) in anterior (M) and occlusal (N) views. A-F, H, coated with magnesium. Scale bars: 5 mm.
FIG. 11 in Early Eocene hippomorph perissodactyls (Mammalia) from the Paris Basin
FIG. 11. — Upper teeth of Orolophus maldani (Lemoine, 1878) from the Paris Basin in occlusal (A-L, N-D'), lingual (M) and lateral (E') views: A, left DP3 (MNHN- SLP-29-PE100); B, right DP3 (MNHN-SLP-29-PR1973 [reversed]); C, right DP3 (MNHN-GR7825 [reversed]); D, M, left P2 (MNHN-SLP-29-PE10); E, left P3 (MNHN-SLP-29-PE731); F, right P3 (MNHN-SLP-29-PE252 [reversed]); G, right P3 (MNHN-SLP-29-PE12 [reversed]); H, left P3 (MNHN-SLP-29-PE254); I, left DP2 (MNHN-SLP-29-PE950); J, left DP2 (MNHN-SLP-29-PE717); K, left dP4 (MNHN-MTH7); L: right DP4 (MNHN-SLP-29-PR1913 [reversed]); N, left P3 (MNHN-SLP- 29-PE590); O, right P3 (MNHN-SLP-29-PR1896 [reversed]); P, right P3 (MNHN-SLP-29-PR1914 [reversed]); Q, left P4 (MNHN-SLP-29-PE741); R, right maxillary with P1-P2 (MNHN-SLP-29-PE1296 [reversed]); S, left maxillary with P3-M3 (holotype of "Propachynolophus levei", MNHN.CB16165 [cast]); T, right maxillary with P2-P4 (MNHN-SLP-29-PE2388 [reversed]); U, left M1/2 (MNHN-SLP-29-PE147); V, left M3 (MNHN-SLP-29-PE224); W, left M1/2 (MNHN-CB1531); X, left M1/2 (MNHN-SLP-29-PE148); Y, left M3 (MNHN-SLP-29-PR1968); Z, right M1/2 (MNHN-SLP-29-PE149 [reversed]); A', right M1/2 (MNHN-SLP-29-PE987 [reversed]); B', right M1 (MNHN-CB4689 [reversed]); C', right M2 (MNHN-SLP-29-PE508 [reversed]); D', left maxillary with P3 (MNHN-SLP-29-PE1953); E', right upper canine (MNHN-SLP-29-PE1378); A-R, T-D', coated with magnesium. Scale bar: 5 mm.
FIG. 7 in Early Eocene hippomorph perissodactyls (Mammalia) from the Paris Basin
FIG. 7. — Teeth of Hyracotherium leporinum Owen, 1841 from Mutigny and Avenay in occlusal view: A, left DP3 (MNHN-AV14684); B, right P4 (MNHN-MU5919 [reversed]); C, left M1/2 (MNHN-MU17167); D, right M1/2 (MNHN-MU220-L [reversed]); E, left M1/2 (MNHN-MU222-L); F, right dp3 (MNHN-MU200-L); G, right P4 (AV-42-Ph [reversed]); H, left M1/2 (MNHN-AV1012-L); I, left M1/2 (MNHN-MU192-L); J, right p3 (MNHN-AV4634); K, right p3 (MNHN-MU5640); L, right dp4 (MNHN-AV15815); M, left p4 (MNHN-MU6574 [reversed]); N, right dp4 (MNHN-MU12300); O, left m3 (MNHN-MU1210 [reversed]); P, right m3 (MNHN-SLP-29- PR1906). Coated with magnesium. Scale bar: 5 mm.
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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.