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6,170 results for “european”
FIGURE 2. a in European Rhogogaster s. str., with notes on several Asian species (Hymenoptera: Tenthredinidae)
FIGURE 2. a Modified BOLD TaxonID Tree to illustrate the percentage distance of COI-5P sequences of Rhogogaster groups. b Molecular Phylogenetic analysis by Maximum Likelihood method, based on COI-5P data. The evolutionary history was inferred by using the Maximum Likelihood method based on the Tamura-Nei model (Tamura & Nei 1993). The tree with the highest log likelihood (-3631.1492) is shown. The percentage of trees in which the associated taxa clustered together is shown next to the branches. Initial tree(s) for the heuristic search were obtained automatically by applying Neighbor-Join and BioNJ algorithms to a matrix of pairwise distances estimated using the Maximum Composite Likelihood (MCL) approach, and then selecting the topology with superior log likelihood value. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. The analysis involved 65 nucleotide sequences. Codon positions included were 1st+2nd+3rd+Noncoding. All positions containing gaps and missing data were eliminated. There were a total of 556 positions in the final dataset. Evolutionary analyses were conducted in MEGA6 (Tamura et al. 2013). (Capture as provided by MEGA6, references adopted). c–g: color variability of R. scalaris—c ♂ (France, Midi-Pyrénées: Barèges), d–e ♀ (Sweden, Malung), f ♀ (Sweden, Abisko), g ♂ (Sweden, Härjedalen, Hede)
FIGURE 4. a–x in European Rhogogaster s. str., with notes on several Asian species (Hymenoptera: Tenthredinidae)
FIGURE 4. a–x: head in dorsal view—a Rhogogaster punctulata, b R. chlorosoma, c R. chlorosoma (paratype), d R. scalaris (R. chlorosoma podkumokensis lectotype), e R. scalaris, f R. scalaris, g R. scalaris (R. carpatica lectotype), h R. scalaris, i R. viridis, j R. viridis (R. dryas paratype), k R. viridis, l R. polaris, m R. sibirica (lectotype), n R. magniserrula (holotype), o R. magniserrula (paratype from Russia), p R. magniserrula (holotype, oblique view), q R. robusta (holotype), r R. auctor (holotype), s R. naias (paratype), t R. bactriana (R. bactriana lindti paratype), u R. genistae (R. genistae viridifrons lectotype), v R. gilva (lectotype), w Tenthredo virescens (lectotype), x T. olivacea (R. viridis var. montana lectotype).
FIGURE 3. a–f in European Rhogogaster s. str., with notes on several Asian species (Hymenoptera: Tenthredinidae)
FIGURE 3. a–f: color pattern in dorsal view—a Rhogogaster punctulata ♂, b R. punctulata ♀, c–d R. chlorosoma ♂, e R. polaris ♂, f R. scalaris ♀. g–n: 1st and 2nd plantar lobe of hind tarsus—g R. punctulata ♂, h R. chlorosoma ♂, i R. chlorosoma ♀, j R. sibirica ♀ (lectotype), k R. scalaris ♀ (lectotype), l R. scalaris ♂, m R. scalaris ♀, n R. scalaris ♂ (lectotype R. chlorosoma podkumokensis). o–r: mesoscutellum and appendage in dorsolateral view—o–p R. viridis, q–r R. polaris. s–t: thorax in dorsal view—s R. chlorosoma, t R. scalaris. u–y: figures of R. gayuboi (from Llorente Vigil, 1988)—u face, v head dorsal, w penis valve, x mesoscutellum and appendage dorsal, y abdomen.
FIGURE 1. a–b in European Rhogogaster s. str., with notes on several Asian species (Hymenoptera: Tenthredinidae)
FIGURE 1. a–b: Rhogogaster scalaris ♀ alive, from France, Midi-Pyrénées: Barèges 3km ENE; 1450 m—a dorsal view b lateral view. c–d: face and shape of mandibles and clypeus in frontal view—c R. scalaris ♀, d R. punctulata ♂. e–f: head and thorax laterally, arrows in direction of anterior and ventral margin of pronotum—e R. sibirica: without submarginal furrow, f Tenthredo aericeps Konow, 1907: with submarginal furrow. g–h: apex of hind tibia, tibial spurs and basal tarsomeres—g T. virescens (lectotype), h R. scalaris (lectotype).
FIGURE 24 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURE 24. Sympycnus septentrionalis sp. nov., distribution map (capture locations indicated in green). Location codes refer to the type material listing.
FIGURE 23 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURE 23. Type locality of Sympycnus septentrionalis sp. nov. (Sweden, Södermanland, Trosa, Hunga Södergård nr 1, behind stable, N58°55.244' E17°31.274'; photo: SMTP).
FIGURES 16–19 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 16–19. Sympycnus cinerellus (Chrysotus). 16, lectotype; 17, paralectotype; 18, lectotype label; 19, paralectotype label (photos: M. Pollet).
FIGURES 20–22. Sympycnus desoutteri. 20 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 20–22. Sympycnus desoutteri. 20, lectotype; 21, paralectotype; 22, lectotype (left) and paralectotype labels (right) (photos: M. Pollet).
FIGURES 13–15 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 13–15. Sympycnus annulipes (Porphyrops). 13, lectotype; 14, paralectotype; 15, lectotype (left) and paralectotype labels (right) (photos: M. Pollet).
FIGURES 6–7. Hind tarsus. 6 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 6–7. Hind tarsus. 6, Sympycnus pulicarius; 7, Sympycnus septentrionalis sp. nov. (photos: M. Persson).
FIGURES 11–12 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 11–12. Sympycnus pulicarius (Dolichopus). 11, lectotype; 12, paralectotype (photos: Y. Brodin, NRM).
FIGURES 2–5. Sympycnus pulicarius. 2 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 2–5. Sympycnus pulicarius. 2, habitus; 3, head; Sympycnus septentrionalis sp. nov. 4, habitus; 5, head (photos: M. Persson).
FIGURE 10 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURE 10. Sympycnus pulicarius, hypopygium (central parts), pgo: postgonites, pgo bva: basoventral appendages of postgonites. Scale: 0.1 mm.
FIGURES 8–9. Hypopygium. 8 in A long-lasting taxonomic problem in European Sympycnus resolved, with the description of a new species and data on habitat preferences
FIGURES 8–9. Hypopygium. 8, Sympycnus pulicarius; 9, Sympycnus septentrionalis sp. nov.; apv lobe: apicoventral epandrial lobe, cer: cercus, hyp: hypandrium, pha: phallus, pgo: postgonites, pgo bva: basoventral appendages of postgonites. Scale: 0.1 mm.
FIGURE 2. Eunice laurillardi. Scanning electron micrographs. A in Rediscovery and redescription of Leodice laurillardi (Quatrefages, 1866) comb. nov. (Annelida: Eunicidae) — a rare European polychaete or just an overlooked species?
FIGURE 2. Eunice laurillardi. Scanning electron micrographs. A, anterior end, lateral view; B, detailed view of parapodium chaetiger 2 and 3; C, median chaetigers, lateral view; D, enlarged view of pygidium showing the anal cirri; E, detailed view of subacicular hook of parapodium chaetiger 30; F, detailed view of bidentate compound falciger of parapodium chaetiger 2; G, detailed view of pectinate chaeta of parapodium chaetiger 2; H, bundle of pectinate chaetae of parapodium chaetiger 6; I, bidentate compound falciger of parapodium chaetiger 40; J, detailed view of the aciculae of parapodium chaetiger 10.
FIGURE 1 in Rediscovery and redescription of Leodice laurillardi (Quatrefages, 1866) comb. nov. (Annelida: Eunicidae) — a rare European polychaete or just an overlooked species?
FIGURE 1. Leodice laurillardi (MNHN TYPE 419). Syntype A, B. A, detailed view of the prostomium and peristomium; B, anterior end, lateral view; C, detailed view of the maxillary apparatus. L, left side; Mb, mandibles; Mx, maxilla; R, right side.
FIGURE 3. Leodice laurillardi. A, parapodium chaetiger 2 in Rediscovery and redescription of Leodice laurillardi (Quatrefages, 1866) comb. nov. (Annelida: Eunicidae) — a rare European polychaete or just an overlooked species?
FIGURE 3. Leodice laurillardi. A, parapodium chaetiger 2; B, detailed view of branchia from chaetiger 30; C, parapodium chaetiger 60; D, parapodium chaetiger 150; E, bidentate compound falciger of parapodium chaetiger 2; F, aciculae of parapodium chaetiger 60; G, subacicular hook of parapodium chaetiger 60.
FIGURES 4–6 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 4–6. Metoisops punctatus holotype, ♂, in Baltic amber, nr. 364/2; Borissiak Paleontological Institute Russian Academy of Sciences (Arthropod laboratory), Moscow—dorsal views, antennal segments.
FIGURES 7–8 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 7–8. Metoisops punctatus specimen from Rovno (Ukraine), macropterous ♂, in Baltic amber, nr. K-7057, Schmalgausen Institute of Zoology, National Academy of Sciences of Ukraine, Kiev—dorsal views.
FIGURE 28. a in The bees of the genus Colletes Latreille 1802 of the European part of Russia, with keys to species (Hymenoptera: Apoidea: Colletidae)
FIGURE 28. a. Colletes albomaculatus (Lucas), female: head; b. metasomal terga 1 and 2; c. C. nasutus Smith, female: head; d. metasomal terga 1 and 2; e. C. wacki Kuhlmann, female: head; f. metasomal terga 1 and 2. Scale bar: 1 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.