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Figure 1 in Release-Recapture of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae) in Southern California
Figure 1. Capture of aerially released sterile male medflies as a function of the distance from the flight line for the four release dates. Ordinal values represent the proportion of the total captures in transect traps recorded at different positions, 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. For a given release date, data were pooled across the different transects, north and south directions (for positions ≥ 1), and the different post-release trap servicing dates. Numbers of captures for the different release dates are given in Table 2.
Figure 1 in Testing the Temporal Limits of Lures and Toxicants for Trapping Fruit Flies (Diptera: Tephritidae): Additional Weathering Studies of Solid Bactrocera and Zeugodacus Male Lures and Associated Insecticidal Strips
Figure 1. Captures of Zeugodacus cucurbitae males in Jackson traps containing toxicants of variable age deployed at Aloun Farm, Oahu, Hawaii. The lures were fresh in all traps and were prepared in Hawaii at the start of the test. Two fresh toxicants were included: naled in liquid CL (bar labelled L) and a DDVP strip with a CL plug (bar labelled P). The DDVP strips weathered in Arizona and Florida were tested during the same 1-day period (December 9–10, 2015). Values represent means (+ 1 SE); 12 traps were deployed per treatment. Bars marked by different letters were significantly different (Student-Newman-Keuls multiple comparisons test).
Figure 1. A in Seasonal Abundance of Economically Important Fruit Flies (Diptera: Tephritidae: Dacinae) in Bangladesh, in Relation to Abiotic Factors and Host Plants
Figure 1. A: Fruit fly trapping sites maintained at the Atomic Energy Research Establishment compound in Bangladesh in 2016–2017 (sites 1 to 10) and 2017–2018 (sites 1, 8, 9). B: Mean monthly rainfall and minimum and maximum temperature recorded in Dhaka, Bangladesh, during the study period.
Figure 2 in Effect of Pupal Holding Density on Emergence Rate, Flight Ability, and Yield of Sterile Male Mediterranean Fruit Flies (Diptera: Tephritidae)
Figure 2. Estimated numbers of fliers produced per tower (top) and ratios of number of fliers produced to number of pupae placed per tower (bottom) in relation to the pupal loading level per constituent tray. Hawaii-derived flies were used exclusively; towers contained 52 trays. Symbols represent means over 33 towers per loading level (3 towers per test day x 11 test days); error bars represent ± 1 SE.
Fig. 11 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 11. Average monthly temperatures (0C) and monthly rainfall totals (mm) in the region of Marques de Comillas, Chiapas, Mexico, for the years 2011, 2012 and 2013.
Fig. 4 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 4. Number of Mediterranean fruit fly transient entries (detections and outbreaks) in the Mexican States of Chiapas and Tabasco during 1982 - 2013.
Fig. 8 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 8. Relationship between the distance of the leading edge of the medfly infestation in Guatemala and the number of medfly transient entries (detections and outbreaks) into the PFA of Soconusco, Chiapas, for the Southwest–Soconusco (SW) Front for years the 2004-2013.
Fig. 12 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 12. Number of potential generations of the Mediterranean fruit fly in the Marques de Comillas pest free area (PFA) estimated for the periods Jun to Oct and Nov to May for the years 2011-2013 based on the Tassan degree-day model (Tassan et al. 1982).
Fig. 10 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 10. Number of fruit samples collected during 2012 and 2013 in the Marques de Comillas PFA in Chiapas, Mexico, reflecting availability of Mediterranean fruit fly hosts and fruit phenology in this region.
Fig. 6 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 6. Mediterranean fruit fly average FTD (flies per trap per day) index in the Mexican States of Chiapas and Tabasco from 2004 to 2013.
Fig. 9 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 9. Numbers of Mediterranean fruit fly transient entries (detections and outbreaks) per month during the years 2011-2013 into the PFA of Marques de Comillas, Chiapas, for the North Transversal Strip–Marques de Comillas (NTS) front.
Fig. 2 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 2. Mediterranean fruit fly pest free areas (PFAs) in Chiapas, Tabasco, Guatemala and Belize, as well as the location of the current containment barrier, infestation fronts and leading edge of the infestation within Guatemala. The white areas to the southwest and southeast represent the Pacific Ocean and the Caribbean Sea, respectively.
Fig. 5 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 5. Location and percentage of Mediterranean fruit fly transient entries into Mexico during 1982-2013.
Fig. 7 in Area freedom in Mexico from Mediterranean fruit fly (Diptera: Tephritidae): a review of over 30 years of a successful containment program using an integrated area-wide SIT approach
Fig. 7. Mediterranean fruit fly fluctuation (based on routine trapping) within suppression areas in Guatemala associated with El Niño/Southern Oscillation weather events and the population suppression effects of Hurricane Stan and Hurricane Agatha.
Fig. 1 in Exposure to tea tree oil enhances the mating success of male Mediterranean fruit flies (Diptera: Tephritidae)
Fig. 1. Number of matings (mean ± SE) obtained per replicate by wild-like medfly males exposed to TTO (treated) or not exposed (control) for the 3 different TTO concentrations provided to the treated males (the 5% and 50% doses represent TTO concentration [v/v] in a hexane solution). Bar heights represent averages; whiskers represent 1 SE. Results of t-tests: 5% solution: t = 4.8, P <0.001; 50% solution: t = 3.4, P = 0.003; pure (100%): t = 3.8, P <0.001; N = 12 replicates at each concentration.
Fig. 3 in Morganella morganii (Enterobacteriales: Enterobacteriaceae) is a lethal pathogen of Mexican fruit fly (Diptera: Tephritidae) larvae
Fig. 3. Yield of Mexican fruit fly larvae in bio-assay cups. Lef=Control, Right=Inoculated with Morganella morganii.
Fig. 1 in Evaluation of food lures for fruit flies (Diptera: Tephritidae) captured in a citrus orchard of the Serra Gaúcha
Fig. 1. Mean number of adult Anastrepha fraterculus (male and female) flies captured per trap per day (FTD) with McPhail monitoring traps containing food lures in a citrus orchard growing the Citrus sinensis cv. 'Valência' from Nov 2012 to Oct 2013. Municipality of Pinto Bandeira, Rio Grande do Sul State, Brazil. The continuous horizontal line indicates an FTD index of 0.5 (economic injury level).
Fig. 1 in Mixing male lures results in an effective multispecies bait for trapping Bactrocera (Diptera: Tephritidae) fruit flies
Fig. 1. Numbers of Bactrocera dorsalis male flies captured in traps baited with methyl eugenol (ME) alone or a mixture of ME and raspberry ketone (RK, a natural analogue of cue lure). Comparisons involved 3 mixtures in ME:RK ratios (wt:wt) of 95:5, 90:10, and 85:15. Symbols represent means (± SE) of 15 traps per lure type at 2 wk intervals over an 8 wk sampling period.
Fig. 6 in Inexpensive artisanal traps for mass trapping fruit flies (Diptera: Tephritidae) in Haiti
Fig. 6. Predicted number of fruit flies caught relative to trap density in a mango orchard in Haiti during Jan 21 to Mar 3, 2015.
Fig. 2 in Inexpensive artisanal traps for mass trapping fruit flies (Diptera: Tephritidae) in Haiti
Fig. 2. Total number of fruit flies caught for each trap model in a mango orchard in Haiti. Bars labeled with the same letter were not significantly different (ANOVA, Fisher LSD α = 0.05).
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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
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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.