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841 results for “fruit flies”
Fig. 3 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 3. Canonical analysis for pupae size parameters of males and females of laboratory and wild populations in Anastrepha obliqua. The canonical analysis is represented on the first canonical axis (can 1), where the boxplots indicate the populations (laboratory and wild) and sexes (males and females) (lef). The variables of pupae size: length (mm), width (mm), and weight (mg) are indicated by vectors (right).
Fig. 1. A in The effectiveness of field pest management and culling at harvest for risk mitigation of two fruit flies affecting citrus in China
Fig. 1. A logic chart illustrating work flow and calculating efficacies of pest management and culling at harvest (systems approach efficacy = the efficacy of the 2 measures together).
Fig. 1 in The effectiveness of fruit bagging and culling for risk mitigation of fruit flies affecting citrus in China: a preliminary report
Fig. 1. Five culling procedures for quality control and risk mitigation of fruit flies in the county where this test was conducted.
Linked collectors and determiners for: Taxonomic revision of the fruit fly genus Neoceratitis Hendel (Diptera: Tephritidae).
Natural history specimen data linked to collectors and determiners held within, "Taxonomic revision of the fruit fly genus Neoceratitis Hendel (Diptera: Tephritidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5d0783f4-d489-459b-8f24-eda1ba7dcec5">https://bionomia.net/dataset/5d0783f4-d489-459b-8f24-eda1ba7dcec5</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5d0783f4-d489-459b-8f24-eda1ba7dcec5">https://gbif.org/dataset/5d0783f4-d489-459b-8f24-eda1ba7dcec5</a>. Formatted as a Frictionless Data package.
Winter fruit contribution to the performance of the invasive fruit fly Drosophila suzukii under different thermal regimes
<div> <div> <div> <div> <p>These datasheets and code were used for analyses and to produce the graphics of the article This dataset was used for analyses of the article 'Winter fruit contribution to the performance of the invasive fruit fly Drosophila suzukii under different thermal regimes' submitted for publication in Insect Science.</p> <p>Informations about the datasheet are in 'README and metadata' file.</p> </div> </div> </div> </div>
Abb. 1 in Die Fruchtfliegen Niedersachsens und Bremens (Diptera, Drosophilidae) The Fruit Flies (Diptera, Drosophilidae) of Lower Saxony and
Abb. 1: Originalbeschreibung der ersten aus Niedersachsen nachgewiesenen Fruchtfliege (Musca erythrophthalma PANZER, 1794), die von Christian Ludwig Hellwig in Braunschweig gesammelt wurde und von Georg Wolfgang Franz Panzer anschliessend beschrieben wurde (PANZER 1794). Die Art wird aktuell als nomen nudum betrachtet, es könnte sich um Drosophila funebris (FABRICIUS, 1787) handeln.
Abb. 3 in Die Fruchtfliegen Niedersachsens und Bremens (Diptera, Drosophilidae) The Fruit Flies (Diptera, Drosophilidae) of Lower Saxony and
Abb. 3: Jahreszeitliche Verteilung der Artenzahl (Punkte) und der Gesamtzahl (Säulen) der datierten Belege von Drosophilidae in Niedersachsen in Bremen.
Fig. 2 in Records Of Dacine Fruit Flies And New Species Of Dacus (Diptera: Tephritidae) In Bhutan
Fig. 2. Dacus (Mellesis) fletcheri, new species, holotype male: a, dorsal view; b, abdomen lateral view.
Fig. 5 in Life history and description of the larva of Acrotaeniostola spiralis (Diptera: Tephritidae: Dacinae: Gastrozonini), an Oriental fruit fly inhabiting bamboo twigs
Fig. 5. Anterior spiracle and caudal segment showing the posterior spiracle, anus and the locations of the sensilla of A. spiralis (SEM photographs). A, Anterior spiracle; B, Creeping welt of first abdominal segment; C, Creeping welt of the fifth abdominal segment; D, Part of the creeping welt of the caudal segment showing two openings; E, Caudal segment; F, Anal lobe. Abbreviations: ads = anteriorly directed spinules, an = anal lobe, D1 = dorsal sensillum 1, D2 = dorsal sensillum 2, es = ecdysial scar, g = gap, I1a = intermediate sensillum 1a, I1b = intermediate sensillum 1b, I2 = intermediate sensillum 2, I3 = intermediate sensillum 3, L = lateral sensillum, pds = posteriorly directed spinules, psp = posterior spiracle, sh = spiracular hairs, ss = small spinules, V1= ventral sensillum 1, V2 = ventral sensillum 2, V3 = ventral sensillum 3.
Fig. 1 in Life history and description of the larva of Acrotaeniostola spiralis (Diptera: Tephritidae: Dacinae: Gastrozonini), an Oriental fruit fly inhabiting bamboo twigs
Fig. 1. Acrotaeniostola spiralis, habitat and biological traits. A, Bamboo stand of the host plant of A. spiralis, Pseudoxytenanthera albociliata, in northern Thailand in November. Note the emerging bamboo shoots; B, Female on the underside of a bamboo leaf near the apex of a twig of P. albociliata; C, Female imbibing water; D, Female ovipositing under the margin of a rolled apical leaf located at the apex of a bamboo twig. Inset: A twig infested by A. spiralis can be recognised by the yellow colour of the rolled up apical leaf (arrow); E, The oblong, yellow larva of A. spiralis. Inset: Larva sticking out the rolled up apical leaf, after being pulled out of the apical sheath. Note the feeding marks and the posterior spiracles (= psp) at the caudal end of the abdomen.
Fig. 4 in Life history and description of the larva of Acrotaeniostola spiralis (Diptera: Tephritidae: Dacinae: Gastrozonini), an Oriental fruit fly inhabiting bamboo twigs
Fig. 4. Pseudocephalon and first thoracic segment of the larva of A. spiralis (SEM photographs). A, Pseudocephalon and first thoracic segment, ventral view; B, Pseudocephalon, frontoventral view, showing two types of facial masks on the same individual; C, Pseudocephalon and part of the first thoracic segment, lateral view; D, Antennae and maxillary palpus; E, Area surrounding the mouth opening showing the preoral organ, facial mask and the mouth hook (tips broken off); F, Labial lobe. Abbreviations: ant = antenna, asp = anterior spiracle, dlg = dorsolateral group of sensilla, fm = facial mask, ko = keilin´s organ, lal = labial lobe, la org = labial organ (arrow pointing to left opening), max org = maxillary organ, mh = mouth hook, m or lb = median oral lobe, mp = maxillary palp, p ceph = pseudocephalon, pap-s = papilla-sensilla, pit-s = pit-sensilla, pror org = preoral organ, T1 = first thoracic segment.
Fig. 2 in Life history and description of the larva of Acrotaeniostola spiralis (Diptera: Tephritidae: Dacinae: Gastrozonini), an Oriental fruit fly inhabiting bamboo twigs
Fig. 2. Schematic illustration of a bamboo twig of Pseudoxytenanthera albociliata showing the egg-laying and larval feeding site of A. spiralis. A, Intact apex of a bamboo twig; B, Visible sheaths of a bamboo twig removed and placed beside the stem in order to show their insertion locations and their degree of overlapping (leaf blades omitted). Bold arrows symbolise the penetration of the larva through the folds of the leaf towards the growing point of the bamboo branch. The larval feeding area is highlighted in grey; C, Cross-section of a rolled up apical leaf showing the location of an A. spiralis egg; D, Apical part of a bamboo twig hanging down from a bamboo stem showing the location of the feeding area of A. spiralis.
Fig. 3 in Life history and description of the larva of Acrotaeniostola spiralis (Diptera: Tephritidae: Dacinae: Gastrozonini), an Oriental fruit fly inhabiting bamboo twigs
Fig. 3. Cephalopharyngeal skeleton, posterior spiracle, larval habitus (light microscopy) and sensillae on thoracic and first abdominal segments (SEM microscopy) of A. spiralis. A, Cephalopharyngeal skeleton in lateral view; B, Schematic illustration of the location of sensillae distributed on thoracic and abdominal segments; C, Larval habitus, length about 8–10 mm; D, Posterior spiracle. Abbreviations: A1–A7 = abdominal segments, asp = anterior spiracle, as = anterior sclerite, at = apical tooth, b = bulge, CS = caudal segment, c = cleft, cw = creeping welt, da = dorsal apodeme, db = dorsal bridge, dc = dorsal cornu, ec = ecdysial scar, hb = hypopharyngeal bridge, hs = hypopharyngeal sclerite, ko = keilin's organ, ls = labial sclerite, mh = mouth hook, n = neck, pb = parastomal bar, pap-s = papilla-sensillum, p ceph = pseudocephalon, peg-s = peg-sensillum, perit = peritreme, pit-s = pit-sensillum, ps = pharyngeal sclerite, pt = praeapical tooth, ri = rima, sc = spiracular chamber, sh = spiracular hairs, sp = (rudimentary) spiracle, tp = tentoreal phragma, T1–T3 = thoracic segments, va = ventral apodeme, vb = ventral bridge, vc = ventral cornu.
Figure 27 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 27. Zeugodacus (Parasinodacus) cilifer (Hendel), male. A-B) Head. C) Head and scutum. D) Abdomen. E) Wing. F) Lateral view. G) Distribution in Bangladesh.
Figure 20 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 20. Bactrocera (Bactrocera) zonata (Saunders), male. A) Head. B) Head and scutum. C) Abdomen. D) Wing. E) Lateral view. F) Distribution in Bangladesh.
Figure 15 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 15. Bactrocera (Parazeugodacus) pendleburyi (Perkins), male (after Leblanc et al. 2018). A) Head. B) Head and scutum. C) Abdomen. D) Wing. E) Lateral view. F) Distribution in Bangladesh.
Figure 17 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 17. Bactrocera (Bactrocera) rubigina (Wang and Zhao). A) Head. B) Head and scutum. C) Abdomen. D) Wing (after Leblanc et al. 2014). E) Lateral view. F) Distribution in Bangladesh.
Figure 26 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 26. Zeugodacus (Zeugodacus) caudatus (Fabricius). A) Head. B) Head and scutum. C) Abdomen, female. D) Abdomen, male. E) Wing (after Leblanc et al. 2014). F) Wing apex, variant. G) Lateral view, male. H) Distribution in Bangladesh.
Figure 31 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 31. Zeugodacus (Sinodacus) hochii (Zia). A) Head. B) Head and scutum. C) Abdomen, female. D) Abdomen, male. E) Wing. F) Distribution in Bangladesh. G) Lateral view, female. H) Lateral view, male.
Figure 12 in New country records, annotated checklist and key to the dacine fruit flies (Diptera: Tephritidae: Dacinae: Dacini) of Bangladesh
Figure 12. Bactrocera (Bactrocera) nigrifacia Zhang, Ji and Chen, male. A) Head. B) Head and scutum. C) Abdomen. D) Wing. E) Lateral view. F) Distribution in Bangladesh.
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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.