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841 results for “fruit flies”
Fig. 12–16. C. grandinata. 12 in Fruit Flies Of The Genus Campiglossa (Diptera, Tephritidae) In Iran, With The Key To Species
Fig. 12–16. C. grandinata. 12 — ♀, habitus, right; 13 — mesonotum, dorsally (SIZK); 14 — wing; 15 — glans; 16 — epandrium (SMNC).
Fig. 27–34. C. producta. 27 in Fruit Flies Of The Genus Campiglossa (Diptera, Tephritidae) In Iran, With The Key To Species
Fig. 27–34. C. producta. 27 — ♀, habitus, right; 28 — mesonotum, dorsally; 29 — wing; 30 — head (SIZK); 31 — aculeus apex, ventrally, enlarged 32 — epandrium; 33 — glans; 34 — abdomen (SMNC);
Figure 2 in Weathering of Torula Yeast Borax Food Bait and Capture of Oriental, Mediterranean, and Melon Fruit Flies in Hawaii (Diptera: Tephritidae)
Figure 2. Captures of Mediterranean fruit flies (males and females combined) in Multilure traps baited with torula yeast borax weathered 3, 6, 9, or 12 d. Traps operated for 2 d at weekly intervals over 5 consecutive weeks. Symbols represent means + 1 SE (N = 10 traps/treatment/sampling period).
Figure 1 in Ability of Sterile Males to Inhibit Female Remating in the Oriental Fruit Fly, Bactrocera dorsalis (Hendel) (Diptera: Tephritidae)
Figure 1. Numbers of rematings observed per cage for females first mated to fertile wild or sterile DTWP males at 3 intervals after the initial mating. Each cage held 10 test females. Symbols represent mean values + 1 SE; N = 8 in all cases.
Figure 2 in New Country Records and Annotated Checklist of the Dacine Fruit Flies (Diptera: Tephritidae: Dacini) of Nepal
Figure 2. Mean (± SE) captures (flies per trap per day) at four elevation ranges in Nepal for polyphagous fruit pests Bactrocera dorsalis (A) and B. zonata (D), cucurbit fruit pests Zeugodacus cucurbitae (B) and Z. tau (E), and non-pest B. nigrifacia (C) and B. rubigina (F).
Figure 1 in Weathering of Torula Yeast Borax Food Bait and Capture of Oriental, Mediterranean, and Melon Fruit Flies in Hawaii (Diptera: Tephritidae)
Figure 1. Captures of oriental fruit flies (males and females combined) in Multilure traps baited with torula yeast borax weathered 3, 6, 9, or 12 d. Traps operated for 2 d at weekly intervals over 8 consecutive weeks. Symbols represent means + 1 SE (N = 10 traps/treatment/sampling period).
Figure 3 in Weathering of Torula Yeast Borax Food Bait and Capture of Oriental, Mediterranean, and Melon Fruit Flies in Hawaii (Diptera: Tephritidae)
Figure 3. Captures of melon flies (males and females combined) in Multilure traps baited with torula yeast borax weathered 3, 6, 9, or 12 d. Traps operated for 2 d at weekly intervals over 4 consecutive weeks. Symbols represent means + 1 SE (N = 10 traps/treatment/sampling period).
Figure 1 in New Country Records and Annotated Checklist of the Dacine Fruit Flies (Diptera: Tephritidae: Dacini) of Nepal
Figure 1. Location, elevation range and number of trapping sites during fruit fly surveys carried out in May 2015 (in Sunwal) and June 2017 (all 9 locations).
Figure 5 in Seasonal Abundance of Economically Important Fruit Flies (Diptera: Tephritidae: Dacinae) in Bangladesh, in Relation to Abiotic Factors and Host Plants
Figure 5. Distribution and mean monthly trap captures of Dacus longicornis, in relation with abiotic factors and host fruit availability.
Figure 4 in Seasonal Abundance of Economically Important Fruit Flies (Diptera: Tephritidae: Dacinae) in Bangladesh, in Relation to Abiotic Factors and Host Plants
Figure 4. Distribution and mean monthly trap captures of Zeugodacus cucurbitae (A) and Z. tau (B), in relation with abiotic factors and host fruit availability.
Figure 3 in Seasonal Abundance of Economically Important Fruit Flies (Diptera: Tephritidae: Dacinae) in Bangladesh, in Relation to Abiotic Factors and Host Plants
Figure 3. Distribution and mean monthly trap captures of Bactrocera rubigina (A) and B. correcta (B), in relation with abiotic factors.
Figure 1 in Effect of Pupal Holding Density on Emergence Rate, Flight Ability, and Yield of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae)
Figure 1. Emergence rate (top) and flight ability (bottom) for Hawaii- and Guatemaladerived flies when held at loadings of 250, 350, or 450 ml per eclosion tower tray. Bar heights represent mean values over all trays for a given density (15 dates X 6 trays per loading amount per date = 90 trays total), and error bars represent 1 SE.
Figure 2 in Seasonal Abundance of Economically Important Fruit Flies (Diptera: Tephritidae: Dacinae) in Bangladesh, in Relation to Abiotic Factors and Host Plants
Figure 2. Distribution and mean monthly trap captures of Bactrocera dorsalis (A) and B. zonata (B), in relation with abiotic factors and host fruit availability.
Figure 7 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 7. Capture of aerially released sterile male medflies in PRP traps as a function of the direction from the east-west oriented flight line. For a given release date, ordinal values represent the proportion of the total captures in PRP traps recorded north or south of the flight line.
Figure 3 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 3. Capture of aerially released sterile male medflies as a function of days after release for three release dates (October 2011 was excluded owing to incomplete sampling). Ordinal values represent the proportion of the total recaptures in transect traps on alternate trap servicing days (1, 3, 5…11 d) after a release. For a given release date, data were pooled across the different transects and different trap positions. Numbers of captures for the different release dates are given in Table 2.
Figure 5 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 5. The probability of capturing ≥ 1 aerially released male medflies in transect traps as a function of distance from the east-west flight line located beneath or north of the flight line (top) or south of the flight line (bottom). North, over all dates: Y = 1/ (1+e(–(–0.20766)–0.0028X+ 0.13053)); South, over all dates: Y = 1/(1+e(–(–0.20766)– 0.0028X–0.58181).
Figure 4 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 4. Capture of aerially released sterile male medflies at different trap positions for different trap servicing intervals following release (October 2011 was excluded owing to incomplete sampling). Ordinal values represent the proportion of the total captures in transect traps recorded at different positions on post-release days 1, 3, 5, and ≥ 7 d (i.e., 7, 9, and 11), where trap position 0 indicates traps beneath the flight path, and higher trap positions represent increasing distances (by increments of 268 m between adjacent positions) along transects perpendicular to the flight line. Capture data were pooled across release dates, transects, and directions; data for trap positions 13–18 were pooled and categorized as> 12. Numbers of captures for the different release dates are given in Table 2.
Figure 6 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 6. Capture of aerially released sterile male medflies in PRP traps in different bands parallel to the flight line. Ordinal values represent proportions of all captures in both north and south directions over all release dates in bands 134 m wide, where band 1 was centered on the flight line, band 2 extended 67 m on either side of band 1, and so on. Captures are depicted for PRP traps up to 3,216 m (2 mi; band 24) from the release line.
Figure 8 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 8. The probability of capturing ≥ 1 aerially released male medflies in PRP traps as a function of distance from the east-west flight line (independent of direction). Over all dates, Y = 1/(1+e(–(0.20768–0.00187X))).
Figure 2 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 2. Capture of aerially released sterile male medflies as a function of the direction from the flight line for the four release dates. Ordinal values represent the proportion of the total captures in transect traps recorded south, north, or directly beneath the westeast oriented flight line. For a given release date, data were pooled across the different transects, different trap positions (for positions ≥ 1), and the different post-release trap servicing dates. Numbers of captures for the different release dates are given in Table 2.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.