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41 results for “blackflies”
PLATE 6. FIGURES 67–90 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 6. FIGURES 67–90. Color pattern for female front, mid and hind legs, respectively: 67–69: S. botulibranchium; 70–72: S. petropoliense; 73–75: S. souzalopesi paratypes; 76–78: S. clavibranchium; 79–81: S. diversibranchium; 82–84: S. inaequale (as S. clarki); 85–87: S. lurybayae holotype; 88–90: S. maranguapense (after Pessoa et al., 2005).
PLATE 5. FIGURES 59–66 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 5. FIGURES 59–66. Color patterns for female thorax. For each species first figure is with anterior illumination and second figure with posterior illumination; 59, 60: S. rappae variation, Goiás State, Salto de Itiquira; 61, 62: S. rappae Saia Velha, Brazil; 63, 64: S. subnigrum; 65, 66: S. travassosi paratype.
PLATE 4. FIGURES 47–58 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 4. FIGURES 47–58. Color patterns for female thorax. For each species first figure is with anterior illumination and second figure with posterior illumination: 47, 48: S. margaritatum, Goiás State, Brazil; 49, 50: S. mariavulcanoae holotype; 51, 52: S. mariavulcanoae; 53, 54: S. rappae holotype; 55, 56: S. rappae; 57, 58: S. rappae variation, Goiás State, Salto de Itiquira.
PLATE 2. FIGURES 15–30 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 2. FIGURES 15–30. Female cibarium of: 15: S. botulibranchium; 16: S. petropoliense; 17: S. souzalopesi paratype; 18: S. clavibranchium; 19: S. diversibranchium; 20: S. inaequale; 21: S. lurybayae holotype; 22: S. maranguapense (after Pessoa et al., 2005); 23: S. margaritatum specimens from Goiás State, Brazil; 24: S. margaritatum (after Pepinelli et al., 2006); 25: S. margaritatum variation (after Pepinelli et al., 2006); 26: S. mariavulcanoae holotype; 27: S. parimaense (after Ramírez-Pérez et al., 1986); 28: S. rappae; 29: S. subnigrum; 30: S. travassosi.
PLATE 16. FIGURES 200–204 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 16. FIGURES 200–204. Male paramere and median sclerite of: 200: S. margaritatum (modified after Pepinelli et al., 2006); 201: S. mariavulcanoae; 202: S. rappae; 203: S. subnigrum; 204: S. travassosi holotype.
PLATE 3. FIGURES 31–46 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 3. FIGURES 31–46. Color patterns for female thorax. For each species first figure is with anterior illumination and second figure with posterior illumination: 31, 32: S. botulibranchium; 33, 34: S. petropoliense (in spirit); 35, 36: S. souzalopesi holotype; 37, 38: S. clavibranchium; 39, 40: S. diversibranchium; 41, 42, S. inaequale southern Brazil; 43, 44: S. lurybayae holotype; 45, 46: S. margaritatum (after Pepinelli et al., 2006).
PLATE 1. FIGURES 1–14 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 1. FIGURES 1–14. Female nudiocular area of: 1: S. botulibranchium; 2: S. petropoliense; 3: S. souzalopesi, paratype; 4: S. clavibranchium; 5: S. diversibranchium; 6: S. inaequale; 7: S. lurybayae holotype; 8: S. maranguapense (after Pessoa et al., 2005); 9: S. margaritatum; 10: S. mariavulcanoae holotype; 11: S. parimaense (after Ramírez-Pérez et al. 1986); 12: S. rappae; 13: S. subnigrum; 14: S. travassosi.
PLATE 20. FIGURES 229–234 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 20. FIGURES 229–234. Pupal gill filaments of: S. rappae (gill variations):- 229–234: Brazil, Goiás State, Rio Saia Velha. Fig. 234 shows the configuration of the pupal gill filaments and anterior region of cocoon in spirit. Arrows indicate different branching, enlargement and end of the gill filaments.
PLATE 9. FIGURES 114–119 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 9. FIGURES 114–119. Female gonapophyses of: 114: S. maranguapense (after Pessoa et al., 2005); 115: S. margaritatum; 116: S. mariavulcanoae holotype; 117: S. rappae; 118: S. subnigrum; 119: S. travassosi.
Fig. 3 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 3. Correlation of different groups of blackflies in hydrobiocoenoses on the south-western macroslope of the Ukrainian Carpathians.
Fig. 2 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 2. Correlation Simuliidae species developing in rivers on the south-western macroslope of the Ukrainian Carpathians.
Fig. 6 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 6. Species diversity of blackflies (according to Simpson's index) on the south-western macroslope of the Ukrainian Carpathians. (The numeration of altitudinal vegetative groups corresponds to that one given in fig. 4.)
Fig. 5 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 5. Cluster analysis of similarity of blackflies species composition in altitudinal vegetation groupings on the south-western macroslope of the Ukrainian Carpathians. (The numeration of altitudinal vegetative groups corresponds to that one given in fig. 4).
Fig. 4 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 4. Geobotanical subdivision of the Ukrainian Carpathians (Holubets, 2003). І — subdivision of oak-beech and oak submontane Transcarpathian forests (1): 1a — district of beech-oak and oak-beech submontane forests of the Volcanic Range, 1b — district of oak-beech and beech-oak forests of Marmaros basin; ІІ — subdivision of beech Carpathian forests: 2 — district of fur-beech Verkhouzhotski forests, 3 — district of hornbeam-beech and beech Dubrynychi-Svaliava forests, 4 — districts of the beech forests of southern megaslope of the Polonynian Beskyd, 5 — Mizhhirskiy (Intermountain) and 6 — Rakhiv subdistricts in the district of spruce-fir-beech, spruce-beech-fir and spruce-beech Transcarpathian forests; III — subdivision of spruce Carpathian mountain forests: 7 — subdistrict of the Upper Tysa beech-fir-spruce forests of the district of Chornohora-Marmaros forests. • — places of sample collection.
FIGURE 2 in Blackflies (Diptera: Simuliidae) in Croatia: species richness, distribution and relationship to surrounding countries
FIGURE 2. Species richness of Croatian blackflies and genera and subgenera.
FIGURE 1 in Blackflies (Diptera: Simuliidae) in Croatia: species richness, distribution and relationship to surrounding countries
FIGURE 1. Sampling sites of blackflies recorded from Croatia (See Table 1 for codes).
Fig. 1 in Physiological characteristics of citrus plants infested with citrus blackfly
Fig. 1. Photosynthetic CO2 assimilation (A), stomatal conductance (B), instant transpiration (C), and ratio between internal CO2 concentration in the leaf mesophyll and external CO2 concentration of the air (Ci/Ca) (D) of noninfested (NIP) and citrus blackfly infested (IP) citrus plants (Tahiti lime, Tanjaroa tangerine, Nissey tangerine, and Ponkan tangerine), which were grown in field conditions during the rainy season in São Luís MA, Brazil, 2015.
Figs 9–10 in A new species of Xenomyia Malloch, 1921 (Diptera: Muscidae) from South Africa, a probable natural antagonist of blackflies (Diptera: Simuliidae)
Figs 9–10. Xenomyia osculata sp. n. ♂ (paratype). 9. Hypopygium, dorsal view. 10. Hypopygium, lateral view.
Figs 1–2 in A new species of Xenomyia Malloch, 1921 (Diptera: Muscidae) from South Africa, a probable natural antagonist of blackflies (Diptera: Simuliidae)
Figs 1–2. Xenomyia osculata sp. n. (paratype). 1. ♂ frons, dorsal view. 2. ♀ frons, dorsal view.
PLATE 19. FIGURES 221–228 in Review of the Neotropical blackfly subgenus Chirostilbia Enderlein (Diptera: Simuliidae) based on adults and pupal morphology
PLATE 19. FIGURES 221–228. Pupal gill filaments of: S. rappae (gill variations)-: 221, 222: Brazil, Goiás State; 223: Brazil, Goiás, Rio Itiquira, 224: Brazil, Rio de Janeiro State, Parque Nacional Itatiaia, Rio Campo Belo; 225, 226: Brazil, Goiás state, Pirenópolis, Córrego Caiçara; 227: Brazil, Minas Gerais State, Fazenda Sobradinho; 228, Brazil, Goiás State, Rio Saia Velha. Arrows indicate different branching, enlargement and end of the gill filaments.
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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.