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495 results for “biting midge”
Fig. 17 in Description of five new species of frog-biting midges (Diptera, Corethrellidae) from Brazil and examination of new morphological characters with utility for taxonomic and phylogenetic studies
Fig. 17. Corethrella munteantaroku Amaral, Mariano & Pinho, 2019, male adult. A. Cranial setae, anterior and posterior views, and clypeus in anterior view. B. Thoracic setae, lateral view.
Fig. 7 in Description of five new species of frog-biting midges (Diptera, Corethrellidae) from Brazil and examination of new morphological characters with utility for taxonomic and phylogenetic studies
Fig. 7. Corethrella bifida sp. nov., larva and pupa. A. Larval exuvia, ventral view. B. Exuvia of larval head, ventral view, except mandible in dorsal view. C. Siphon of larva, dorsal view. D. Pupal exuvia, dorsal view. E. Pupal respiratory organ, dorsal view. F. Pupal metathorax and abdomen, dorsal and ventral views. Scale bars: 0.2 mm.
Fig. 8 in Description of five new species of frog-biting midges (Diptera, Corethrellidae) from Brazil and examination of new morphological characters with utility for taxonomic and phylogenetic studies
Fig. 8. Corethrella patasho sp. nov., female adult, holotype.A. Head, anterior view.B. Cranial setae, anterior and posterior views, and clypeus in anterior view. C. Left palpus, lateral view. D. Antenna, lateral view. E. Flagellomeres and pedicel, lateral view. F. Thorax and legs, lateral view. G. Detail of thorax, lateral view. H. Thoracic setae, lateral view. I. Wing veins. J. Wing. K. Hind leg claw and empodium, lateral view. L. Abdomen, lateral view. Scale bars: 0.1 mm.
Data from: On the specificity of avian blood parasites: revealing specific and generalist relationships between haemosporidians and biting midges
The study of host-parasite relationships involving vector-borne parasites requires understanding interactions between parasites and vectors. The capacity of haemosporidians to infect insects has clear evolutionary consequences for the transmission of diseases. Here we investigated (1) the associations between blood parasites, biting midges and birds and (2) the potential specificity between biting midge and haemosporidian haplotypes. A total of 629 parous biting midges Culicoides and 224 wild birds (belonging to seven species) from a locality of central Spain were examined individually to detect the presence of Haemoproteus and Plasmodium parasites by sequencing a fragment of the cytochrome B gene. Biting midges were identified morphologically and characterised on the basis of a fragment of the cytocrome c oxidase (COI) gene. Overall 12 Haemoproteus and 3 Plasmodium haplotypes were isolated and sequenced. Among them, 10 haplotypes were exclusively isolated from biting midges, three haplotypes only from birds and two haplotypes from both biting midges and birds. Biting midge haplotypes showed both specific and generalist relationships with Haemoproteus haplotypes but only generalist relationships with Plasmodium haplotypes. Several C. festivipennis and C. kibunesis haplotypes established significant coevolutionary links with Haemoproteus haplotypes. These results help to understand the specificity of vector-blood parasite interactions.
Spatial Repellency Effects of Taiwanese Plant Oils on the Biting Midge Forcipomyia taiwana
<p>Raw data for journal. S1=GCMS top 20. S2=Y-tube olfactometer raw data. RawData.zip = Raw GCMS data, all of it.</p>
Fig. 1 in Latitudinal gradient of biting midges in the genus Culicoides (Diptera: Ceratopogonidae) in Argentina and Bolivia
Fig. 1. Distribution map of Culicoides species in northwestern Argentina and southwestern Bolivia.
Figures 19–21 in A revision of the biting midges in the Culicoides (Monoculicoides) nubeculosus-stigma complex in North America with the description of a new species (Diptera: Ceratopogonidae)
Figures 19–21. Culicoides riethi, female, from Vosges, France. 19) Head. 20) Wing. 21) Spermatheca.
Figures 34–36 in A revision of the biting midges in the Culicoides (Monoculicoides) nubeculosus-stigma complex in North America with the description of a new species (Diptera: Ceratopogonidae)
Figures 34–36. Culicoides stigma, female, from Oise, France. 34) Head. 35) Wing. 36) Spermatheca.
Figures 31–33 in A revision of the biting midges in the Culicoides (Monoculicoides) nubeculosus-stigma complex in North America with the description of a new species (Diptera: Ceratopogonidae)
Figures 31–33. Culicoides stigma, male, from Marne, France. 31) Head. 32) Wing. 33) Genitalia.
Figure 1 in NEW RECORDS OF NON-BITING MIDGES (DIPTERA: CHIRONOMIDAE, ORTHOCLADIINAE) FROM MALLORCA, SPAIN Abstract
Figure 1. Collection sites at Mallorca.
Fig. 3 in Description of five new species of frog-biting midges (Diptera, Corethrellidae) from Brazil and examination of new morphological characters with utility for taxonomic and phylogenetic studies
Fig. 3. Collecting immatures in Palmeiras, Bahia, 26 Feb. 2020.
Data from: On the specificity of avian blood parasites: revealing specific and generalist relationships between haemosporidians and biting midges
Open the record for dataset details and reuse information.
FIGURE 1 in Four new species and some new records of Brazilian frog-biting midges (Diptera Corethrellidae)
FIGURE 1. Corethrella munteantaroku sp. n., adult male. A, head in anterior view. B, thorax and legs in lateral view. C, wing. D, abdomen in dorsal view.
FIGURE 8 in Four new species and some new records of Brazilian frog-biting midges (Diptera Corethrellidae)
FIGURE 8. Corethrella cambirela sp. n., adult female. A, head in anterior view. B, thorax and legs in lateral view. C, wing. D, abdomen in lateral view.
FIGURE 6 in Four new species and some new records of Brazilian frog-biting midges (Diptera Corethrellidae)
FIGURE 6. Corethrella cambirela sp. n., adult male. A, head in anterior view. B, thorax in lateral view. C, tergites 6–9 and genitalia.
FIGURE 3 in Four new species and some new records of Brazilian frog-biting midges (Diptera Corethrellidae)
FIGURE 3. Corethrella xokleng sp. n., adult male. A, head in anterior view. B, thorax in lateral view. C, tergites 7–9 and genitalia.
FIGURE 2 in Four new species and some new records of Brazilian frog-biting midges (Diptera Corethrellidae)
FIGURE 2. Corethrella munteantaroku sp. n., adult male. A, palpus. B, clypeus. C, antennal flagellum. D, tarsal claw and empodium. E, gonocoxite and gonostylus, dorsal view. F, aedeagus.
Figure 6 in Two New Species Of Biting Midges From France And Algeria (Diptera: Ceratopogonidae)
Figure 6. Monohelea mediterranea sp. nov., male genitalia; a – ventral aspect of holotype, b – aedeagus of holotype, c – parameres of paratype.
Figure 4 in Two New Species Of Biting Midges From France And Algeria (Diptera: Ceratopogonidae)
Figure 4. Monohelea mediterranea sp. nov., male; a – head of paratype, dorsal aspect, b – palpi of paratype, c – total habitus of paratype, without head and genitalia, d – genitalia of holotype, ventral view.
Figure 1 in Two New Species Of Biting Midges From France And Algeria (Diptera: Ceratopogonidae)
Figure 1. Forcipomyia (F.) pyrenaica sp. nov., male; a – flagellum, b – palpus, c – frons with spine-like seta.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.