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2,328 results for “Taxonomy of Coleoptera”
Fig. 3 in Taxonomy of the Cape Verde endemic weevil genus Dinas (Coleoptera: Curculionidae: Entiminae). Part I: Description of a new subgenus, and two new species from São Nicolau Island
Fig. 3. Dinas (Microspina) afonsoi sp. nov., holotype, male (A–B, E–F), female (G–I): A – habitus, dorsal view; B – elytra, lateral view; C – elytra of Dinas (Microspina) sitonaeformis Wollaston, 1867, lateral view; D – elytra of Dinas (Microspina) angusticeps Roudier, 1957, lateral view; E – aedeagus, dorsal and lateral view; F – spiculum gastrale; G – female sternite VIII; H – ovipositor; I – spermatheca. Scales: 1 mm, scale with '*'=2 mm, scale with '**'=0.5 mm.
Fig. 4 in Taxonomy of the Cape Verde endemic weevil genus Dinas (Coleoptera: Curculionidae: Entiminae). Part I: Description of a new subgenus, and two new species from São Nicolau Island
Fig. 4. Dinas (s. str.) strakai sp. nov., holotype, male (A–D): A – habitus, dorsal view; B – aedeagus, dorsal and lateral view; C – spiculum gastrale; D – elytra, dorsal view; E – elytra of Dinas (s. str.) rugicollis Wollaston, 1867, dorsal view. Scales: 1 mm, scale with '*'=2 mm.
Fig. 2 in Taxonomy of the Cape Verde endemic weevil genus Dinas (Coleoptera: Curculionidae: Entiminae). Part I: Description of a new subgenus, and two new species from São Nicolau Island
Fig. 2. Differential diagnosis of the subgenera of Dinas: Dinas (Microspina) afonsoi sp. nov.: A – head, dorsal view; C – pronotum; G – elytra, dorsal view; Dinas (Microspina) sitonaeformis Wollaston, 1867: E – spina on profemora; Dinas (s. str.) strakai sp. nov.: B – variability of rostrum of Dinas (s. str.) strakai sp. nov., dorsal view; D – pronotum; F – spina on profemora; H – elytra, male, dorsal view.
Figs 54 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 54í62. First instar larva of Lachnodacnum luederwaldti Orchymont, 1937. 54í55 – antenna (54 – dorsal view, 55 – ventral view); 56í57 – maxilla (56 – ventral view, 57 – dorsal view); 58í59 – labium (58 – ventral view, 59 – dorsal view); 60 – right mandible, dorsal view; 61 – prosternum; 62 – mesothoracic leg, anterior view.
Figs 29 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 29í32.Adult morphology of Lachnodacnum luederwaldti Orchymont, 1937, SEM micrographs. 29 – mesofemur; 30 – apical portion of elytra; 31 – microsculpture of the clypeus; 32 – trichobothrium on the elytron.
Figs 18 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 18í23. Biology of Lachnodacnum luederwaldti Orchymont, 1937. 18 – micropool in the rosette of Neoregelia sp., a typical habitat; 19 – egg cases attached at the inner face of a bromeliad leaf; 20 – third instar larva and pupa in the detritus accumulated in the bromeliad rosette; 21í22 – pupa in the broken pupal chamber (21 – dorsal view; 22 – ventral view); 23 – adults staying submerged among bromeliad leaves in the rearing box. Figs 18í19, 23: photo B. Clarkson in Ubatuba Municipality, São Paulo; Figs 20í22: photo by F. F. Albertoni in Florianopolis, Santa Catarina.
Figs 15 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 15 í17. Aedeagus. 15 – Lachnodacnum luederwaldti Orchymont, 1937; 16 – L. saundersi Orchymont, 1937; 17 – Phaenostoma urichi (Scott, 1912).
Figs 11 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 11í14. Morphological details of Lachnodacnum Orchymont, 1937 and Phaenostoma Orchymont, 1937. 11í12 – hind wings (11 – Lachnodacnum luederwaldti Orchymont, 1937; 12 – Phaenostoma urichi (Scott, 1912)). 13í14 – detail of spiracular atrium of the third instar larva of L. luederwaldti.
Figs 1 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 1í10. General habitus of adults and larvae of Lachnodacnum Orchymont, 1937. 1í3 – adults of L. luederwaldti Orchymont, 1937 (1 – dorsal view, 2 – lateral view, 3 – dorsal view of the head). 4í8 – larva of L. luederwaldti (4 – third instar larva in dorsal view; 5 – same in ventral view; 6 – ¿rst instar in dorsal view; 7 – detail of head and thorax of third instar, dorsal view; 8 – same, ventral view). 9í10 – adults of L. saundersi Orchymont, 1937 (9 – dorsal view, 10 – lateral view).
Figs 63 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 63í64. Head capsule of the third instar larva of Lachnodacnum luederwaldti Orchymont, 1937. 63 – ventral view, 64 – dorsal view.
Fig. 75 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Fig. 75. Distribution of Lachnodacnum luederwaldti Orchymont, 1937, L. saundersi Orchymont, 1937 and Phaenostoma urichi (Scott, 1913).
Figs 51 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 51í53. Head capsule of the ¿rst instar larva of Lachnodacnum luederwaldti Orchymont, 1937. 51 – ventral view; 52 – dorsal view; 53 – detail of anterior margin of head capsule, dorsal view.
Figs 33 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 33í36. Mesoventral elevation of Lachnodacnum Orchymont, 1937, SEM micrographs. In ventral (33í34) and lateral (35í36) views. 33, 35 – L. luederwaldti Orchymont, 1937; 34, 36 – L. saundersi Orchymont, 1937 (arrow indicates the anepisternal suture).
Figs 40 in Taxonomy and biology of the bromeliad-inhabiting genus Lachnodacnum (Coleoptera: Hydrophilidae: Sphaeridiinae)
Figs 40í45. First instar larva of Lachnodacnum luederwaldti Orchymont, 1937, SEM micrographs. 40 – whole larva in lateral view; 41 – thorax in lateral view; 42 – abdominal segments 7í10 (including abdominal tergite 8 and spiracular atrium) in dorsolateral view; 43 – head in dorsal view; 44 – labium and maxilla in ventral view; 45 – detail of the base of mandible, with basal inner cuticular spines.
Fig. 42. Microporum C. O. Waterhouse, 1876 in Preliminary re-examination of genus-level taxonomy of the pollen beetle subfamily Meligethinae (Coleoptera: Nitidulidae)
Fig. 42. Microporum C. O. Waterhouse, 1876: a–g – M. mordace Cooper, 1974; h–m – M. scotti (Grouvelle, 1913). a – male habitus; b – ventral view of body; c – male protibia; d, h – male antennae; e–f, k – male genitalia; g – ovipositor; m – dorsal view of male head and first three antennomeres. Drawings a–g modified from COOPER (1974); drawings h–m modified from ENDRÖDY-YOUNGA (1978). Refer to COOPER (1974) and ENDRÖDY-YOUNGA (1978) for scale.
Fig. 35 in Preliminary re-examination of genus-level taxonomy of the pollen beetle subfamily Meligethinae (Coleoptera: Nitidulidae)
Fig. 35. Horakia Jelínek, 2000: a–p – H. kubani Jelínek, 2000. a – male habitus; b –ventral view of head and prosternum; c – dorsal view of head; d – prosternal process; e–f – male genitalia; g – major sclerites of endophallus; h – labrum; k – male protibia; m – male mesotibia; n – male metatibia; p – male antenna. Drawings a–p modified from JELÍNEK (2000a)). Refer to JELÍNEK (2000a) for scale.
Fig. 43 in Preliminary re-examination of genus-level taxonomy of the pollen beetle subfamily Meligethinae (Coleoptera: Nitidulidae)
Fig. 43. Cladogram of hypothetical phylogenetic relationships between the 43 recognized genera of Meligethinae, as inferred from an exploratory and preliminary cladistic analysis based on 72 morphological characters. Asterisks indicate genera for which molecular data is available for some species.
Fig. 10 in Preliminary re-examination of genus-level taxonomy of the pollen beetle subfamily Meligethinae (Coleoptera: Nitidulidae)
Fig. 10. Afrogethes Audisio & Cline, gen. nov.: a – A. tristis (Sturm, 1845); b–d, h – A. reticulatus (Reitter, 1872); e – A. alani (Kirejtshuk, 1988); f–g – A. planiusculus (Heer, 1841); k – A. isoplexidis (Wollaston, 1854). a, k – male habitus (a – length 2.6 mm; k – length 2.5 mm); b – dorsal view of head; c – prosternal process; d – ventral view of head and anterior portion of prosternum; e – microsetae on middle posterior margin of pronotum; f – exposed portion of last visible abdominal ventrite; g – caudal marginal lines of metacoxal cavities; h – outer margin of mesotibia. Scale bars: Figs. b, c, d, f, g, h = 100 μm; Fig. e = 20 μm.
Fig. 21 in Preliminary re-examination of genus-level taxonomy of the pollen beetle subfamily Meligethinae (Coleoptera: Nitidulidae)
Fig. 21. Paleogethes Audisio & Cline, gen. nov.: a–k – P. wollastoni (Easton, 1950). a – male habitus (length 1.9 mm); b – dorsal view of head; c – protibia; d – ventral view of head and anterior portion of prosternum; e – middle leg with outer margin of mesotibia; f – prosternal process and mesoventrite; g – anterior portion of scutellum and microsetae on middle of posterior margin of pronotum; h – exposed portion of last visible abdominal ventrite; k – ventral view of body. Scale bars: Figs. b, d, e, f, h = 100 μm; Fig. c = 20 μm; Fig. g = 10 μm; Fig. k = 200 μm.
Fig. 9 in Preliminary re-examination of genus-level taxonomy of the pollen beetle subfamily Meligethinae (Coleoptera: Nitidulidae)
Fig. 9. Boragogethes Audisio & Cline, gen. nov.: a, d, k, m – B. symphyti (Heer, 1841); b–c, e–h – B. rosenhaueri (Reitter, 1871). a, b – male habitus (a – length 3.0 mm; b – length 2.5 mm); c, d – dorsal view of head; e – microsetae on posterior margin of pronotum; f – ventral view of head and anterior portion of prosternum; g – prosternal process and mesoventrite; h – exposed portion of last visible abdominal ventrite; k – caudal marginal lines of metacoxal cavities; m – outer margin of mesotibia. Scale bars: Figs. c, d, f, g, h, m = 100 μm; Fig. e = 20 μm; Fig. k = 200 μm.
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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.