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Figure 19 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 19. Adult male of Bosmina (Eubosmina) cf. crassicornis: from Bratsk Water Reservoir, Irkutsk Area, Asian Russia (A–E). Adult male of Bosmina (Eubosmina) cf. kessleri: from Lake Glubokoe, Ruza District, Moscow Area, European Russia (F–L). A, general view; B, head in anterior view; C, mucro; D, postabdomen; E, distal portion of limb I; F, general view; G, head in anterior view; H, setae at anteroventral portion of valve; I, mucro; J, K, postabdomen; L, distal portion of limb I. Scale bars: 100 Mm.

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Figure 6 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 6. Bosmina (Sinobosmina) fatalis: adult male from Hongzehu Lake, Jiantsu Province, China. A, lateral view; B, head, lateral view; C, D, postabdomen, lateral view; E, distal portion of postabdomen, dorsal view; F, limb I, inner view; G, H, distal portion of limb I, external view; I, tip of copulatory hook on limb I. See text for a list of morphological abbreviations. Scale bars: 100 Mm.

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Figure 8 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 8. Bosmina (Sinobosmina) cf. fatalis cyanopotamia: adult male from Lake Bolon, Khabarovsk Territory, Asian Russia. A, B, lateral view; C, head, lateral view; D, mucro, inner view; E, postabdomen; F, distal portion of postabdomen; G, distal portion of limb I. Scale bars: 100 Mm.

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Figure 9 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 9. Bosmina (Liederobosmina) meridionalis: adult male from a waterhole 22 km from Pedrika on road to Dalhousie, South Australia (A–F, H– J), and from Rainbow Lake, Kosciusko National Park, New South Wales, Australia (G, K). A, lateral view; B, C, head, lateral and anterior views; D, anteroventral portion of valve, inner view; E, mucro, inner view; F, postabdomen; G, postabdominal claw; H, antenna II, anterior view; I, limb I; J, K, tip of copulatory hook on limb I. Scale bars: 100 Mm.

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Figure 5 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 5. Bosmina (Bosmina) liederi: artificially induced adult male, cultured initially from Bass Lake near Lake Erie, Ontario, Canada. A, B, lateral and anterior view; C, head, lateral view; D, mucro, inner view; E–G, postabdomen; H, antenna II, external view; I, distal portion of limb I. See text for a list of morphological abbreviations. Scale bars: 100 Mm.

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Figure 26 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 26. Maximum likelihood (ML) phylogram based on 16S rDNA mitochondrial sequences for bosminids. The numbers above the branches indicate clade support estimated by the nonparametric bootstrapping using neighbourjoining and ML methods. The colours indicate subgenera and the population abbreviations are given in Table 1 (lowercase letters indicate different specimens from the same site). The boxes indicate the subgenera (from top to bottom; see Fig. 25 for subgeneric colour scheme of boxes in the online version of this article) Bosmina, Sinobosmina, Bosmina, Liederobosmina, Lunobosmina, and Eubosmina.

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Figure 27 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 27. Maximum likelihood (ML) phylogram based on partial 18S rDNA, internal transcribed spacer (ITS)-1, ITS-2, and partial 28S rDNA nuclear sequences for bosminids. The numbers above the branches indicate clade support estimated by the nonparametric bootstrapping using neighbour-joining and ML methods. The population abbreviations are given in Table 1 (lowercase letters indicate different specimens from the same site). The boxes indicate the subgenera (from top to bottom; see Fig. 25 for subgeneric colour scheme of boxes in the online version of this article) Bosmina, Sinobosmina, Liederobosmina, Lunobosmina, and Eubosmina.

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Figure 23 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 23. Bosmina (Eubosmina) tanakai sp. nov.: adult male from Ichiyanagi Numa Pond, Aomori Prefecture, Japan. A, general view; B, head, lateral view; C, D, head, anterior view; E, frontal head pore; F, region of lateral head pore; G, mucro, inner view; H, I, postabdomen, lateral view; J, distal end of postabdomen, ventral view; K, aesthetasc region of antenna I. Scale bars: 100 Mm.

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Figure 4 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 4. Bosmina (Bosmina) longirostris: from a duck pond near Ghent University, Belgium. A, postabdomen of juvenile female; B, juvenile male I, lateral view; C, D, postabdomen of juvenile male I; E, rostrum and antennae I of juvenile male I; F, limb I of juvenile male I, inner view; G, H, distal portion of limb I of juvenile male I; I, juvenile male II, lateral view; J–L, postabdomen of juvenile male II; M, rostrum and antennae I of juvenile male II; N, antenna II of juvenile male II; O, limb I of juvenile male II, inner view; P, distal portion of juvenile male II. See text for a list of morphological abbreviations. Scale bars: 100 Mm.

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Figure 3 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 3. Bosmina (Bosmina) longirostris: adult male from a duck pond near Ghent University, Belgium (A–D), and juvenile male II from Lake Glubokoe, Moscow Area, Russia (E–H). A, B, postabdomen; C, tip of postabdomen in distal view; D, distal portion of limb I; E, F, rostrum; G, lateral head pore and coxal portion of antenna II; H, postabdomen and copulatory hook on limb I. Scale bar: 10 Mm.

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Figure 2 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 2. Bosmina (Bosmina) longirostris: adult male from a duck pond near Ghent University, Belgium. A, lateral view; B, anterior view; C, head; D, lateral head pore; E, F, rostrum; G, antenna II; H, mucro. Scale bars: 100 Mm for (A, B); 10 Mm for (C–H).

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Figure 1 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies

Figure 1. Bosmina (Bosmina) longirostris: adult male from a duck pond near Ghent University, Belgium. A, B, general view; C, lateral head pore; E, F, postandomen; G, antennae I, anterior view; H, antenna II, posterior view; I, distal portion of antenna II, anterior view; J, limb I, inner view; K–M, distal portion of limb I; N, subdistal lobe. See text for a list of morphological abbreviations. Scale bars: 100 Mm.

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Figure 7. Two morphologically different B in The Simulium vernum group (Diptera: Simuliidae) in Europe: multiple character sets for assessing species status

Figure 7. Two morphologically different B chromosomes of Simulium juxtacrenobium Bass & Brockhouse, 1990 (female larva from Sweden, site 15).

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Figures 5–14 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 5–14. Head, lateral view (Figs 5–7); head, anterior view (Figs 8–10); antenna (Figs 10–14). Paragus (Pandasyopthalmus) jozanus (Figs 5, 8); Paragus (Pandasyopthalmus) brachycerus (Fig. 13); Paragus (Pandasyopthalmus) atratus (Fig. 14); Paragus (Pandasyopthalmus) haemorrhous (Figs 7, 10); Paragus (Paragus) quadrifasciatus (Fig. 9); Paragus (Paragus) strigatus (Fig. 12); Paragus (Serratoparagus) auritus (Fig. 11); Paragus (Serratoparagus) capricorni (Fig. 6). Names of subgenera according classification proposed in this paper.

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Figures 72–83 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 72–83. Aedeagal apodeme, lateral view (Figs 72,74,76,78,80,82); aedeagal apodeme, dorsal view (Figs 73,75,77,79,81,83). Paragus (Afroparagus) borbonicus (Figs 74, 75); Paragus (Pandasyopthalmus) brachycerus (Figs 78, 79); Paragus (Pandasyopthalmus) jozanus (Figs 80, 81); Paragus (Pandasyopthalmus) haemorrhous (Figs 82, 83); Paragus (Paragus) variabilis (Figs 76, 77); Paragus (Serratoparagus) auritus (Figs 72, 73).

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Figures 55–60 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 55–60. Hypandrium, lateral view (Figs 55–57); hypandrium, ventral view (Figs 58–60). Paragus (Pandasyopthalmus) jozanus (Figs 57, 60); Paragus (Pandasyopthalmus) brachycerus (Figs 55, 58); Paragus (Pandasyopthalmus) manensis (Figs 56, 59).

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Figures 49–54 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 49–54. Hypandrium, lateral view (Figs 49–52); epandrium, ventral view (Fig. 43); epandrium, dorsal view (Fig. 54). Paragus (Paragus) absidatus (Figs 53, 54); Paragus (Paragus) pecchiolli (Fig. 51); Paragus (Paragus) punctulatus (Fig. 49); Paragus (Paragus) quadrifasciatus (Fig. 50); Paragus (Paragus) strigatus (Fig. 52).

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Figures 35–42 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 35–42. Epandrium, ventral view (Figs 35,37,39,41); epandrium, ventral view (Figs 36,38,40,42). Paragus (Pandasyopthalmus) brachycerus (Figs 41, 42); Paragus (Pandasyopthalmus) jozanus (Figs 37, 38); Paragus (Pandasyopthalmus) manensis (Figs 39, 40); Paragus (Serratoparagus) auritus (Figs 35, 36).

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Figures 66–71 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 66–71. Aedeagus complex, lateral view. Paragus (Afroparagus) borbonicus (Fig. 70); Paragus (Pandasyopthalmus) brachycerus (Fig. 67); Paragus (Pandasyopthalmus) jozanus (Fig. 66); Paragus (Pandasyopthalmus) tibialis (Fig. 68); Paragus (Paragus) pecchiollii (Fig. 71); Paragus (Serratoparagus) auritus (Fig. 69).

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Figures 100–112 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters

Figures 100–112. Ejaculatory apodeme and spermal sac (Figs 100–106); postgonites (Figs 107–112). Paragus (Afroparagus) borbonicus (Figs 104, 108); Paragus (Pandasyopthalmus) brachycerus (Figs 102, 110); Paragus (Pandasyopthalmus) jozanus (Figs 103, 111); Paragus (Pandasyopthalmus) manensis (Fig. 101); Paragus (Pandasyopthalmus) haemorrhous (Fig. 112); Paragus (Pandasyopthalmus) longiventris (Fig. 100); Paragus (Paragus) quadrifasciatus (Fig. 106); Paragus (Paragus) variabilis (Fig. 109); Paragus (Serratoparagus) capricorni (Fig. 105); Paragus (Serratoparagus) auritus (Fig. 107).

opencc-by-4.0Mar 2008View details →

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Allen Brain Atlas

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

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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.

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.

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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