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FIGURES 115–121. 115 in Overview of the Sciomyzidae (Diptera: Sciomyzoidea) of the Americas south of the United States
FIGURES 115–121. 115. Habitus of Euthycerina. Euthycerina sp. 116. Pedicel (upper arrow) about as long as first flagellomere (lower arrow). Euthycera flavescens (Loew) (Nearctic). From Knutson & Vala (2011). 117. Katepisternum with two strong setae (arrows). Tetanoceroides bisetosus (Thomson). 118. Arista basally pubescent, distal one-half nearly bare. Tetanoceroides bisetosus (Thomson). 119. Wing of Tetanoceroides patagonicus (Thomson). From Zuska & Berg (1974). 120. Habitus of Tetanoceroides. Tetanoceroides bisetosus (Thomson), female. 121. Typical sciomyzid cephalopharyngeal skeleton. Third-instar larva of Renocera pallida (Fallén) (Palearctic). From Horsáková (2003). Indentation index (IIx), the relative depth of the cornual sinus, is equal to ab/cd x 100.
Occurrence data download from GBIF for 115 tree species in Burundi
<p>Cleaned occurrence data from GBIF for 115 tree species in Burundi </p>
FIGURES 115–120 in Revision of the huntsman spider genus Micrommata Latreille, 1804 (Sparassidae Sparassinae)
FIGURES 115–120. Micrommata virescens, female copulatory organ (115, 117 epigyne, ventral; 116, 118–119 vulva, dorsal; 120 schematic course of IDS, dorsal) (115–116 from Russia; 117–120 from Japan).
Climate related actions, choices, and ideas in everyday life from 115 American Meteorological Society members
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Figure 1 from: Wang Y, Wang M, Shih C, Rasnitsyn AP, Yao J, Ren D, Gao T (2019) A new sawfly of Megalodontesidae (Insecta, Hymenoptera, Pamphilioidea) with pectinate antennae from the Early Cretaceous of China. ZooKeys 893: 115-123. https://doi.org/10.3897/zookeys.893.38512
Figure 1 A–DJibaissodes peichenae sp. nov., holotype, part: A photograph of complete specimen B line drawing of complete specimen C line drawing of forewing D line drawing of hind wing E, FJibaissodes giganteus, holotype: E line drawing of forewing F line drawing of hind wing. Scale bars: 2 mm (A, B), 1 mm (C–F).
Figure 3 from: Wang Y, Wang M, Shih C, Rasnitsyn AP, Yao J, Ren D, Gao T (2019) A new sawfly of Megalodontesidae (Insecta, Hymenoptera, Pamphilioidea) with pectinate antennae from the Early Cretaceous of China. ZooKeys 893: 115-123. https://doi.org/10.3897/zookeys.893.38512
Figure 3 Jibaissodes peichenae sp. nov., holotype, counterpart A complete specimen B right hind leg C left hind leg. Arrows indicate spurs. Scale bars: 2 mm (A); 1 mm (B, C).
Figure 2 from: Wang Y, Wang M, Shih C, Rasnitsyn AP, Yao J, Ren D, Gao T (2019) A new sawfly of Megalodontesidae (Insecta, Hymenoptera, Pamphilioidea) with pectinate antennae from the Early Cretaceous of China. ZooKeys 893: 115-123. https://doi.org/10.3897/zookeys.893.38512
Figure 2 A–EJibaissodes peichenae sp. nov., holotype, part: A head B basis of left antenna C basis of right antenna D right antenna E basal to middle section of right antenna F, GJibaissodes bellus, holotype: F right antenna G apical portion of right antenna. Abbreviations: md = mandible, sc = scape, ped = pedicel, oc = ocelli, 1st fla = 1st flagellomere, N1 = pronotum, psc2 = mesoscutum. Scale bars: 1 mm (A, D, F, G); 0.5 mm (B, C, E).
Figure 9 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 9 DFA performed for three combined samples, Squalius tenellus, S. microlepis phenotype 1 and phenotype 2 A based on 32 standardised direct measurements and 12 counts (specimens A–K excluded) B based on 52 proportional measurements (as in Table 2) and counts (specimens A–K excluded) C same analysis as (B) but specimens A–K in Table 5 included.
Figure 7 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 7 DFA performed for two combined samples of Squalius microlepis phenotype 1 and phenotype 2 A based on 32 standardised direct measurements and 12 counts B based on 52 proportional measurements (as in Table 2) and counts. Specimens A–K in Table 5 not included.
Figure 8 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 8 A CA performed for two combined samples of Squalius microlepis phenotype 1 and phenotype 2, based on 52 proportional measurements (as in Table 2) and counts. Specimens A–K in Table 5 not included.
Figure 6 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 6 Squalius microlepis phenotype 1, karst systems near Vrgorac A phenotype 1, NMW 49423, 276.1 mm SL, 'Vergoraz [See Jessero]' (specimen E) B phenotype 2, NMW 49425, 178 mm SL, 'See bei Gradač & Vrgorač' (specimen C); C, NMW 49428, 165.8 mm SL, 'Lago di Dusino', intermediate between phenotypes 1 and 2 (specimen A: external appearance as in phenotype 2 but 15 gill rakers as in phenotype 1).
Figure 4 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 4 Squalius microlepis phenotype 2 A SMNH 443, 255.7 mm SL, Bosnia and Herzegovina: Tihaljina River at Tihaljina B MNCN_ICTIO 294.472-294.473, 140.1 mm SL, Bosnia and Herzegovina: Trebižat River at Grabovnik-Vašarovići C alive specimen, ZISP 54994, 147.2 mm SL, Bosnia and Herzegovina: Matica (Vrljika) River at Drinovci.
Figure 5 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 5 Lateral view to show characters superficially distinguishing phenotypes of Squalius microlepis s. l. ASqualius microlepis phenotype 2: MNCN_ICTIO 294.784-294.800, 128.0 mm SL (Tihaljina) BSqualius microlepis phenotype 1: NMW 12729-32, 119.5 mm SL ('Imotski'). Key: Arrow a – posterior end of lower jaw, line b – upper head profile, arrow c – body profile just behind head; vertical d – shorter head in S. microlepis phenotype 2, vertical e – shorter prepelvic distance in S microlepis phenotype 2; line f – dorso-hypural distance if reported forward.
Figure 3 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 3 Squalius microlepisA NMW 49415, lectotype, 150.8 mm SL, "Imosky" B phenotype 1: alive specimen, MNCN_ICTIO 296.096-296.097, 147.6 mm SL, Bosnia and Herzegovina: Krenica Lake at Drinovci.
Figure 1 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 1 Map showing localities of examined specimens: S. tenellus, S. microlepis phenotype 1, and S. microlepis phenotype 2, shadowed areas showing ranges of S. tenellus (blue) and S. microlepis (yellow); 1 – Ričice Reservoir, 2 – Ričina River, Posušje, 3 – Lower Matica River, 4 – Krenica Lake, 5 – Vrgoračka Matica River system (Vrgoračko Polje, Polje Jezero), 6 – Baćina lakes.
Figure 11 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 11 Specimen MZUF 13512 (identified as S. microlepis by Kolombatović), Cetina River. Photo credit: Saulo Bambi, Sistema Museale dell'Università degli Studi di Firenze, Sez. di Zoologia "La Specola", Italy.
Figure 10 from: Bogutskaya NG, Diripasko OA, Zupančič P, Jelić D, Naseka A (2019) Phenotypic diversity in an endangered freshwater fish Squalius microlepis (Actinopterygii, Leuciscidae). ZooKeys 897: 115-147. https://doi.org/10.3897/zookeys.897.38768
Figure 10 A locality where two phenotypes of Squalius microlepis co-occur: Tihaljina River at Tihaljina, Bosnia and Herzegovina (7 July 2011).
Figures 115-118 from: Léger T, Kehlmaier C, Vairappan CS, Nuss M (2020) Twenty-six new species of Hoploscopa (Lepidoptera, Crambidae) from South-East Asia revealed by morphology and DNA barcoding. ZooKeys 907: 1-99. https://doi.org/10.3897/zookeys.907.36563
Figures 115-118 Female genitalia features of Hoploscopa. 115Hoploscopa sumatrensis sp. nov., paratype, TL530 ♀ 116Hoploscopa mallyi sp. nov., paratype, TL513 ♀ 117Hoploscopa gracilis sp. nov., paratype, TL527 ♀ 118Hoploscopa agtuuganonensis sp. nov., holotype, TL616 ♀.
Figures 100–115. Pentilia spp. 100-104 in South American Coccinellidae (Coleoptera), Part XXI: systematic revision of South American Pentilia Mulsant (Cryptognathini)
Figures 100–115. Pentilia spp. 100-104) Pentilia estelle. 100) Habitus. 101) Frons. 102) Penis guide ventral. 103) Penis guide lateral. 104) Penis. 105-109) Pentilia dianna. 105) Habitus. 106) Frons. 107) Penis guide ventral. 108) Penis guide lateral. 109) Median portion of penis. 110-115) Pentilia paulette. 110) Habitus. 111) Frons. 112) Penis guide ventral. 113) Penis guide lateral. 114) Penis. 115) Spermathecal capsule.
Figure 115 from: Wood JR.I, Muñoz-Rodríguez P, Williams BR.M, Scotland RW (2020) A foundation monograph of Ipomoea (Convolvulaceae) in the New World. PhytoKeys 143: 1-823. https://doi.org/10.3897/phytokeys.143.32821
Figure 115 Ipomoea lacunosa. A habit B simple leaf C outer sepal D inner sepal E capsule with calyx F seed. Drawn by Rosemary Wise A from McCarthy s.n.; B from Mackenzie s.n.; C–F from Harper 520.
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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.