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1,369 results for “sexual dimorphism”
FIGURES 14–18. Oribatella canadensis, interference contrast micrographs from slide preparations. 14 in The first sexually dimorphic species of Oribatella (Acari, Oribatida, Oribatellidae) and a review of sexual dimorphism in the Brachypylina
FIGURES 14–18. Oribatella canadensis, interference contrast micrographs from slide preparations. 14, adult female, rostrum, anterior at top; 15, custodium and seta 3c; 16, adult male, detail of porose region, with porose area A3 indicated by arrow; 17, adult female, interlamellar region; 18, food bolus, with arrow to hyphal fragment.
FIGURES 7–13. Oribatella canadensis, scanning electron micrographs. 7 in The first sexually dimorphic species of Oribatella (Acari, Oribatida, Oribatellidae) and a review of sexual dimorphism in the Brachypylina
FIGURES 7–13. Oribatella canadensis, scanning electron micrographs. 7, adult female, frontal aspect; 8, adult female, ventral aspect anterior to pedotectum II; 9, adult female, lateral aspect, anterior of seta la, teeth on anterior of tibia I indicated by arrow; 10, adult female, posterior aspect of notogaster; 11, adult male, posterior of notogaster, dorsal aspect, medial tubercle indicated by arrow; 12, adult male, detail of tubercle and environs, fused porose areas indicated by arrows; 13, adult male, posterior of notogaster, in dorsolateral aspect. Scale bars: 7, 100 µm; 8, 9, 12, 13, 50 µm; 10, 20 µm; 12, 10 µm.
FIGURES 5, 6 in The first sexually dimorphic species of Oribatella (Acari, Oribatida, Oribatellidae) and a review of sexual dimorphism in the Brachypylina
FIGURES 5, 6. Oribatella canadensis, adult female: 5, left leg II, abaxial aspect, trochanter removed; 6, right leg IV, abaxial aspect, trochanter removed.
FIGURES 1–4 in The first sexually dimorphic species of Oribatella (Acari, Oribatida, Oribatellidae) and a review of sexual dimorphism in the Brachypylina
FIGURES 1–4. Oribatella canadensis: 1, adult female, dorsal aspect, legs removed other than proximal segments of leg I; 2, adult female, ventral aspect (legs removed); 3, adult male, notogaster; 4, adult male, detail of posterior of notogaster in posterodorsal view.
Figure 16 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 16. Ribs of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov. in anterior view: A, left rib 1; B, right rib 1; C, right rib 2; D, left rib 2; E, rib 3. Scale bar = 80 mm.
Figure 13 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 13. Basyhyal and thyrohyal of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov.: A, dorsal view; B, posterior view; C, basihyal in lateral view; D, thyrohyal in lateral view. Scale bar = 30 mm.
Figure 20 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 20. Comparison of the basihyal and thyrohyal in MSM1001x, Dagonodum mojnum gen. nov., sp. nov., in A, dorsal and B, posterior view; Mesoplodon bidens in C, dorsal and D, posterior view; USNM 593573, Phocoena phocoena in E, dorsal and F, posterior view; SNM CN1x, Grampus griseus in G, dorsal and H, posterior view. Bas., basihyal; Thy., thyrohyal. Scale bar = 30 mm.
Figure 12 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 12. Detail of the teeth categories of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov. Apical tusk in A, medial; B, lateral; C, dorsal view; subapical tusk in D, medial; E, lateral view; subapical teeth in F, H, J, medial and G, I, K, lateral view; sample of symphyseal/postsymphyseal teeth in L, N, P, medial and M, N, Q, lateral view; proximal teeth in R, T, medial and S, U, lateral view; V, W, X, corresponding drawings of respectively A, L, Q, T. Dotted lines correspond to tooth wear and occlusion wear facets. Scale bar = 10 mm.
Figure 9 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 9. Left tympanic of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov.: A, dorsal view; B, medial view; C, ventral view; D, lateral view; E–H, corresponding drawings. Scale bar = 20 mm.
Figure 6 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 6. Detail of the prenarial basin of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov., dorsal view. Compression-related fracturing caused part of the structure to be displaced backwards, thus leading to the artificial closure of the antorbital notch. White dotted lines delimit the suture lines. Scale bar = 50 mm.
Figure 4 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 4. Skull of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov., ventral view: A, cranium; B, rostrum; C and D with the corresponding labels. White dotted lines delimit the suture lines. Scale bar = 100 mm.
Figure 3 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 3. Skull of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov., dorsal view: A, cranium; B, rostrum; C and D with the corresponding labels. The vertex collapsed anterolaterally toward the left. White dotted lines delimit the suture lines. Scale bar = 100 mm.
Figure 5 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 5. Skull of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov., left lateral view: A, cranium; B, rostrum. Notice the dorsal part of the vertex facing laterally due to the deformation. Black dotted line delimits the prenarial basin on the cranium and the white dotted line delimits the premaxilla/maxilla suture along the rostrum. Scale bar = 100 mm.
Figure 18 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 18. Illustration of the difference of development of the prominence posterior to the nasals on the vertex in dorsal view in: A and B, Mesoplodon perrini (USNM 504260); C and D, Mesoplodon layardii (USNM 550150); E and F, Mesoplodon grayi (SNM CN1); and G and H, Berardius bairdii (USNM 550886). The prominence is outlined in B, D and F. Scale bar = 10 mm.
Figure 15 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 15. Thoracic vertebrae of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov. T1–T3 (vertebra A): A, anterior view; B, posterior view; C, right lateral view. Post-T4 (vertebra B): A, anterior view; B, posterior view; C, right lateral view. Scale bar = 50 mm.
Figure 8 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 8. Left periotic of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov.: A, dorsal view; B, lateral view; C, dorsomedial view; D, ventral view; E–H, corresponding drawings. Scale bar = 20 mm.
Figure 10 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 10. Lower jaw of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov.: A, dorsal view; B, left lateral view. Scale bar = 100 mm.
Figure 7 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 7. Vertex of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov., dorsal view. A, detail of the dorsal part of the nasals; B and C, vertex without the dorsal part of the nasals. White lines delimit the suture lines. Scale bar = 30 mm.
Figure 14 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 14. Cervical vertebrae of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov. Atlas: A, anterior view; B, posterior view. Axis-cervical vertebra 3: C, posterior view; D, lateral view; E, lateral of the separation between cervical vertebra 3 and axis. Cervical vertebra 5: F, anterior view; G, posterior view; H, lateral view. Cervical vertebra 6: I, anterior view; J, posterior view; K, lateral view. Dotted zones delimit burst areas or sediment. White straight line in E delimits the axis and the C3. Scale bar = 50 mm.
Figure 11 in Description of a new long-snouted beaked whale from the Late Miocene of Denmark: evolution of suction feeding and sexual dimorphism in the Ziphiidae (Cetacea: Odontoceti)
Figure 11. Detail of the alveoli of MSM1001x (holotype), Dagonodum mojnum gen. nov., sp. nov.: A, apex of the mandible right dorsolateral view; B, alveoli on the symphysis, right lateral view; C, alveoli at mid-length of the rostrum, right lateral view. White arrows emphasize the alveoli position. Scale bar = 20 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)
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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.