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FIGURES 1–7. Monoportula uralensis. Figures 1 in Notes on the rare Cretaceous species Syndetocystis uralensis Strelnikova leading to the description of a new monotypic genus Monoportula P.A.Sims et D.M.Williams nov. gen.
FIGURES 1–7. Monoportula uralensis. Figures 1, reproduction of holotype image of Syndetocystis uralensis from Strelnikova (1974, p. 79, tab. XXVII, fig. 4), "Eastern slopes of Pre-Polar Urals, Severnaya Sos'va River, Ust'-Man'ya Core 82, 145–149.5cm […] diatomite; Campanian, plate XXVII, fig. 4" (Strelnikova 1974, p. 79), Upper Cretaceous (Campanian), rimoportula arowed; Figures 2, 3, LM specimen of Monoportula uralensis from BM 82242, Kuril Islands, Russia, "U.S.S.R. #1" (selected specimen, single mount, rimoportula arrowed); Figures 4–7, SEM, Figure 4, external view of whole valve, rimoportula arrowed, Figures 5, 6, external girdle view of frustule with mantle areolae covered as network of anastomosing costae, Figure 7, detail of Figure 5 showing the long extended tube of the rimoportula, bending towards mantle. Scale bars = 20μm (Figs 4, 5, 6), = 5μm (Fig. 7); Figs 4, 5, 7 from "R122", Russia (BM Stub P1190), Figure 6 from "R116" (BM Stub P1100) both ex Strelnikova, possibly specimens from type material.
FIGURES 8, 9. Monoportula uralensis. Figures 8, 9 in Notes on the rare Cretaceous species Syndetocystis uralensis Strelnikova leading to the description of a new monotypic genus Monoportula P.A.Sims et D.M.Williams nov. gen.
FIGURES 8, 9. Monoportula uralensis. Figures 8, 9, SEM, internal view of valve with rimoportula arrowed, Scale bars = 10μm (Figs 4, 5, 6), specimens from "Pre-polar Urals #8, Campanian, USSR" ex Strelnikova. FIGURE 10. Figure 10a, drawing of Syndetocystis uralensis from Van Heurck (1896, p. 432, fig. 155, after Chase & Walker 1887, pl. 4, fig. 13); Figure 10b is the same drawing modified to remove most of the periplekton leaving just a "thick, hyaline, tubular process"; Figure 10c, the same image as in Figure 5 but reversed, reduced in size and rotated 1800 to aid comparison with Figures 10a and 10b.
FIGURE 5 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 5. Myoplatypus quadricornis Kirkendall, male holotype. (A) dorsal view. (B) Lateral view; medium-sized spines on ventrite 3 can be readily seen, but those on ventrite 4 cannot. (C) Frontal view. (D) Posterior view, showing declivity; the large, backward-pointing spines originating on ventrite 3 are visible. (E) Venter, showing form and position of the large spines on ventrite 3 and the much smaller spines on ventrite 4. Photos by T.H. Atkinson.
FIGURE 10 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 10. Myoplatypus connexus (Wood), male holotype. (A) dorsal view. (B) Lateral view; a very large, slightly backwardpointing spine from ventrite 3 can be seen between the two third pair of legs (to the right of the left femur). (C) Frontal view. (D) Posterior view, showing declivity. Photos: Smithsonian Institution (USNMENT00912096), CC0 license, by S.M. Smith.
FIGURE 1 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 1. Dorsal, lateral, and angled posterior views of the declivities of five tropical species of Myoplatypus. (A–C) M. petrovi. (D–F) M. sicarius. (G–I) M. nicaraguensis. (J–L) M. brevicornis. (M–O) M. quadricornis. For sources of photos, see plates for the respective species; for sizes of species, see Table 1.
FIGURE 4 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 4. Myoplatypus nicaraguensis Kirkendall, male holotype. (A) dorsal view. (B) Lateral view; one of the medium-sized spines on ventrite 3 can be seen. (C) Frontal view. (D) Posterior view. Photos by T.H. Atkinson.
FIGURE 2 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 2. Dorsal, lateral, and angled posterior views of the declivities of four species of Myoplatypus. (A–C) M. biprorus. (D–F) M. prenexus. (G–I) M. connexus. (J–L) M. senexus. For sources of photos, see plates for the respective species; for sizes of species, see Table 1.
FIGURE 12 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 12. Myoplatypus flavicornis (Wood), male (A–D), female (E, F). (A) dorsal view (male). (B) Lateral view (male); spines on both ventrite 3 and ventrite 4 can be seen. (C) Frontal view (male). (D) Posterior view (male), showing declivity. (E) Frontal view (female). (F) Posterior view (female), showing declivity. Photos Smithsonian Institution (male: USNMENT01449073, female: USNMENT01449072), CC0 license, by T.H. Atkinson.
FIGURE 9 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 9. Myoplatypus prenexus (Wood), male holotype. (A) dorsal view. (B) Lateral view; one of the large, blunt backwardpointing spines is visible. (C) Frontal view. (D) Posterior view, showing declivity; the large, backward-pointing spines originating on ventrite 3 are visible. Photos: Smithsonian Institution (USNMENT00912049), CC0 license, by S.M. Smith.
FIGURE 7 in The rare genus Myoplatypus (Coleoptera: Curculionidae: Platypodinae): three new species, new reports, and first records for South America
FIGURE 7. Myoplatypus biprorus (Blandford), represented by the male holotype of M. querceus (Wood). (A) dorsal view. (B) Lateral view; the large, slightly backward-pointing spines are clearly visible. (C) Frontal view. (D) Posterior view, showing declivity; the large, slightly backward-pointing spines originating on ventrite 3 are visible. (We chose to use M. querceus here because the photographs are better than those that we have for the male syntype of M. biprorus (available at http://www. barkbeetles.info/regional_chklist_target_species.php?lookUp=155). Photos: Smithsonian Institution (USNMENT00912032), CC0 license, by S.M. Smith.
Figure 8 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 8 Map of distribution of Vanhornia in Eurasia. Green spot – V. yurii sp. nov., blue spots – V. leileri, yellow spots – V. quizhouensis, red spot – specimen from South Korea determined as V. eucnemidarum (Choi & Lee, 2012).
Figure 7 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 7 Vanhornia leileri Hedqvist, 1976 (A, B female C–F male, specimens from Russian Far East) A, C metasoma, ventral view B, D metasomal tergite 6, posterior view E metasoma, dorsal view F metasoma, lateral view.
Figure 2 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 2 Vanhornia yurii sp. nov. (female, holotype) A wings B metasomal tergite 6, posterior view C metasoma, dorsal view D metasoma, ventral view E metasoma, lateral view.
Figure 6 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 6 Vanhornia leileri Hedqvist, 1976 (female, specimen from Russian Far East) A wings B metasoma, dorsal view C metasoma, lateral view.
Figure 4 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 4 Vanhornia eucnemidarum Crawford, 1909 (female, specimens from USA) A habitus, dorsal view B body, dorsal view C body, lateral view D antennae, head and mesosoma, ventral view E right mandible, lateral view F head and mesoscutum, dorso-lateral view G head, front view H mesosoma, lateral view I metasoma, dorsal view J metasoma, ventral view K wings.
Figure 1 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 1 Vanhornia yurii sp. nov. (female, holotype) A habitus, dorsal view B mandible, antero-lateral view C head, lateral view D head, front view E head, dorsal view F antenna G mesosoma, dorsal view H mesosoma, lateral view I hind leg.
Figure 3 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 3 Vanhornia quizhouensis (He & Chu, 1990) (female, holotype) A habitus, dorsal view B mandible, ventro-lateral view C head, front view D head, dorsal view E mesosoma, dorsal view F mesosoma, lateral view G metasoma, dorsal view H metasoma, lateral view I wings.
Figure 5 from: Timokhov AV, Belokobylskij SA (2020) Review of the rare genus Vanhornia Crawford, 1909 (Hymenoptera, Proctotrupoidea, Vanhorniidae) with description of a new species from the Russian Far East. Journal of Hymenoptera Research 79: 57-76. https://doi.org/10.3897/jhr.79.56481
Figure 5 Vanhornia leileri Hedqvist, 1976 (A–F, H–K female G male, specimens from Russian Far East) A habitus, lateral view B right mandible, lateral view C head, dorsal view D head, front view E head, lateral view F antenna G basal part of antenna H head, antero-lateral view I mesosoma, dorsal view J mesosoma, lateral view K metasoma and hind leg, lateral view.
Figures 1-8 from: Reemer M (2020) A third species of the rarely collected Oriental hoverfly genus Furcantenna Cheng, 2008 (Diptera, Syrphidae, Microdontinae). ZooKeys 989: 73-78. https://doi.org/10.3897/zookeys.989.57087
Figures 1-8 Furcantenna malayana sp. nov.,female, holotype 1 habitus dorsal 2 habitus lateral 3 head frontal 4 head lateral 5 thorax dorsal 6 scutellum dorsal 7 wing 8 abdomen dorsal.
FIGURE 26 in Caves as a key habitat for rare and endemic species of the west coast of North America: a taxonomic revision of the spider genus Oaphantes (Araneae Linyphiidae)
FIGURE 26. Male Oaphantes prometheus in Paradise Cave. Photograph by J. Krejca.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.