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Figure 8 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 8. Aedeagus. Bolbapium quadrispinosum (Luederwaldt, 1931) (a). dorsal view; (b). ventral view; (c). lateral view. Bolbapium limeirai Carvalho and Vaz-de-Mello, sp. nov. (d). dorsal view; (e). ventral view; (f). lateral view. Bolbapium furtadoi Carvalho and Vaz-de-Mello, sp. nov. (g). dorsal view; (h). ventral view; (i). lateral view. Bolbapium sulcifrons Ide and Martínez, 1993 (j). dorsal view; (k). ventral view; (l). lateral view.

opennotspecifiedAug 2022View details →
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Figure 9 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 9. Aedeagus. Bolbapium quinquestriatum (Boucomont, 1932) (a). dorsal view; (b). ventral view; (c). lateral view. Bolbapium boillyi Carvalho and Vaz-de-Mello, sp. nov. (d). dorsal view; (e). ventral view; (f). lateral view. Bolbapium paralucidulum Ide and Martínez, 1993 (g). dorsal view; (h). ventral view; (i). lateral view. Bolbapium lucidulum (Klug, 1843) (j). dorsal view; (k). ventral view; (l). lateral view.

opennotspecifiedAug 2022View details →
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Figure 1 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 1. Diagnostic characters of Bolbapium. (a). Dorsal view, five striae between the suture and the humeral callus; (b). subtrapezoidal clypeus; (c). trituberculated clypeo-frontal suture.

opennotspecifiedAug 2022View details →
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Figure 13 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 13. Geographical distribution. (a). Bolbapium borgmeieri Martínez, 1976 (black squares) and Bolbapium sulcifrons Ide and Martínez, 1993 (white circles); (b). Bolbapium caesum (Klug, 1843) (white circles) and Bolbapium luederwaldti Carvalho and Vaz-de-Mello, sp. nov. (black squares).

opennotspecifiedAug 2022View details →
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Figure 4 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 4. (a). Pronotum with robust bituberculated structure, connected at base and separated at the apex, Bolbapium quadrispinosum (Luederwaldt, 1931); (b). head with tranverse carina without tubercles, Bolbapium limeirai Carvalho and Vaz-de-Mello, sp. nov.; (c). head with tranverse carina with tubercles, Bolbapium furtadoi Carvalho and Vaz-de-Mello, sp. nov.; (d). head with tubercle adjacent to each eye, with base wider than apex, Bolbapium boillyi Carvalho and Vaz-de-Mello, sp. nov.; (e). clypeal carina extending to the mid-frontal region and meeting in the central region, Bolbapium paralucidulum Ide and Martínez, 1993; (f). clypeal carina short, not reaching the midline region of the frons, Bolbapium lucidulum (Klug, 1843).

opennotspecifiedAug 2022View details →
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Figure 2 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 2. Bolbapium (a). Hind wings. Apex of the third branch of the radial vein directed towards the outer edge of the wing (black setae 1); between the cubital and the first anal vein articulated with the base of the wing there are two free veins (black circle); jugular wing area is not reduced (black setae 2). (b). Antenna with the last three antennomeres elongated. (c). Antenna with the last three antennomeres globose.

opennotspecifiedAug 2022View details →
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Figure 14 in A taxonomic revision of Bolbapium Boucomont, 1910 (Coleoptera: Scarabaeoidea: Geotrupidae)

Figure 14. Geographical distribution. (a). Bolbapium dutraorum Carvalho and Vaz-de-Mello, sp. nov. (black squares) and Bolbapium quinquestriatum (Boubomont, 1932) (white circles); (b). Bolbapium furtadoi Carvalho and Vaz-de-Mello, sp. nov. (black circles) and Bolbapium matheusi Carvalho and Vazde-Mello, sp. nov. (white squares).

opennotspecifiedAug 2022View details →
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Figure 1. Metriorhynchus brevirostris holotype MHNG V-2232. A in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 1. Metriorhynchus brevirostris holotype MHNG V-2232. A, dorsal view; B, palatal view. See text for anatomical abbreviations.

opennotspecifiedNov 2020View details →
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Figure 5 in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 5. Phylogram of the Bayesian analysis, focusing on Metriorhynchoidea. Nodes with strong support (PP ≥ 0.95) are in red, nodes with low support (PP between ≥ 0.90 and <0.95) are in blue and nodes with poor support (PP <0.90) are unlabelled. Node numbers represent: (1) Metriorhynchidae, (2) Metriorhynchinae, (3) Rhacheosaurini, (4) Geosaurinae and (5) Geosaurini.

opennotspecifiedNov 2020View details →
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Figure 8 in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 8. Comparative plate of metriorhynchid premaxilla–maxilla contact in palatal view. A, Metriorhynchus brevirostris, holotype MHNG V-2232; B, Thalattosuchus superciliosus, referred specimen PETMG R17; C, 'Metriorhynchus' brachyrhynchus, referred specimen NHMUK PV R 3804 (holotype of 'Metriorhynchus' cultridens); D, Tyrannoneustes lythrodectikos, referred specimen PETMG R176; E, 'Swiss rostrum', NMO 26589; F, 'English rostrum', CAMSM J18212; G, 'Swiss rhacheosaurin', NMBE 5018135; H, Cricosaurus bambergensis, holotype NKMB-P-Watt14/274. See text for anatomical abbreviations. Scale bar = 2 cm.

opennotspecifiedNov 2020View details →
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Figure 4 in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 4. Strict consensus topologies of Metriorhynchinae found in the parsimony analyses. A, unweighted topology; B, strongly down-weighted topology (k = 1, k = 3 and k = 7); C, moderately down-weighted topology (k = 10); D, moderate-weak down-weighting topology (k = 15 and k = 50); E, unique topology (k = 20 phenotype dataset). Rhacheosaurini is represented by a large circle.

opennotspecifiedNov 2020View details →
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Figure 3. Metriorhynchus brevirostris holotype MHNG V-2232. A in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 3. Metriorhynchus brevirostris holotype MHNG V-2232. A, anterior view; B, posterior view. See text for anatomical abbreviations.

opennotspecifiedNov 2020View details →
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Figure 7 in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 7. Comparative plate of metriorhynchid anterior cranial rostra. A, B, Metriorhynchus brevirostris, holotype MHNG V-2232 in dorsal and palatal views, respectively; C, D, Thalattosuchus superciliosus, referred specimen PETMG R17 in dorsal and palatal views, respectively; E, F, 'Metriorhynchus' brachyrhynchus, referred specimen NHMUK PV R 3804 (holotype of 'Metriorhynchus' cultridens) in dorsal and palatal views, respectively; G, H, 'Metriorhynchus' palpebrosus, holotype OUMNH J.29823 in dorsal and palatal views, respectively; I, J, Tyrannoneustes lythrodectikos, referred specimen PETMG R176 in dorsal and palatal views, respectively; K, L, Plesiosuchus manselii, holotype NHMUK PV OR 40103 in dorsal and palatal views, respectively. See text for anatomical abbreviations. Scale bar = 5 cm.

opennotspecifiedNov 2020View details →
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Figure 2. Metriorhynchus brevirostris holotype MHNG V-2232. A in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 2. Metriorhynchus brevirostris holotype MHNG V-2232. A, left lateral view; B, right lateral view. See text for anatomical abbreviations.

opennotspecifiedNov 2020View details →
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Figure 6. Thalattosuchus superciliosus lectotype MNHN.F RJN 256. A in Cutting the Gordian knot: a historical and taxonomic revision of the Jurassic crocodylomorph Metriorhynchus

Figure 6. Thalattosuchus superciliosus lectotype MNHN.F RJN 256. A, dorsal view; B, palatal view; C, left lateral view. Scale bar = 10 cm.

opennotspecifiedNov 2020View details →
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Figure 15 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae

Figure 15. SEM micrographs of radula in Coryphella nobilis and Coryphella sanamyanae (former Borealea). A, Coryphella nobilis, ZMMU WS14379, posterior radular portion. B, Coryphella nobilis, MIMB40023, middle radular portion. C, Coryphella nobilis, ZMMU WS14384, middle radular portion. D, Coryphella nobilis, ZMMU WS14933, middle radular portion. E, Coryphella sanamyanae, ZMMU WS14417, middle radular portion. F, Coryphella sanamyanae, ZMMU WS14955, middle radular portion. G, Coryphella sanamyanae, ZMMU WS14416, middle radular portion. Scale bars: A–D, F = 30 µm; E, G = 10 µm.

opennotspecifiedAug 2022View details →
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Figure 16 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae

Figure 16. SEM micrographs of jaws in Coryphella nobilis and Coryphella sanamyanae (former Borealea). A, Coryphella nobilis, ZMMU WS14379, masticatory process of jaws. B, Coryphella nobilis, ZMMU WS14379, details of denticulation on masticatory process of jaws. C, Coryphella sanamyanae, ZMMU WS14416, masticatory process of jaws. D, Coryphella sanamyanae, ZMMU WS14416, details of denticulation on masticatory process of jaws. Scale bars: A, D = 30 µm; B = 10 µm; C = 100 µm.

opennotspecifiedAug 2022View details →
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Figure 14 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae

Figure 14. Living specimens of the species Coryphella sanamyanae (former Borealea sanamyanae). A, ZMMU WS14987, 46 mm in length alive. B, ZMMU WS14956, 16 mm in length alive. C, voucher not specified, 27 mm in length alive. D, ZMMU WS14973, 15 mm in length alive. E, ZMMU WS14433, 22 mm in length alive. F, ZMMU WS14416, 19 mm in length preserved. G, voucher not specified, 27 mm in length alive. H, ZMMU WS14417, 24 mm in length alive. I, ZMMU WS14955, 26 mm in length alive.

opennotspecifiedAug 2022View details →
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Figure 11 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae

Figure 11. SEM micrographs of radula in Coryphella gracilis and Coryphella amabilis (former Microchlamylla). A, Coryphella gracilis, ZMMU WS14915, middle radular portion. B, Coryphella gracilis, ZMMU WS14914, middle radular portion. C, Coryphella gracilis, ZMMU WS14922, middle radular portion. D, Coryphella amabilis, ZMMU WS14966, middle radular portion. E, Coryphella amabilis, ZMMU WS14960, middle radular portion. F, Coryphella amabilis, ZMMU WS14418, middle radular portion. G, Coryphella amabilis, ZMMU WS14395, middle radular portion. Scale bars: A–E, G = 30 µm; F = 10 µm.

opennotspecifiedAug 2022View details →
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Figure 12 in High-level taxonomic splitting in allopatric taxa causes confusion downstream: a revision of the nudibranch family Сoryphellidae

Figure 12. SEM micrographs of jaws in Coryphella gracilis and Coryphella amabilis (former Microchlamylla). A, Coryphella gracilis, right jaw plate, ZMMU WS14915. B, Coryphella gracilis, details of denticulation on masticatory process, ZMMU WS14915. C, Coryphella amabilis, ZMMU WS14960, left jaw plate. D, Coryphella amabilis, ZMMU WS14960, details of denticulation on masticatory process. E, Coryphella amabilis, ZMMU WS14966, right jaw plate. F, Coryphella amabilis, ZMMU WS14966, details of denticulation on masticatory process. Scale bars: A, C, E = 100 µm, B, F = 30 µm, D = 10 µm.

opennotspecifiedAug 2022View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record