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Fig. 7 in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 7. The average Eldana saccharina larval infestation with the passage of time simulated for the SIT/IS pilot site near the Eston area of KwaZulu-Natal, South Africa with weekly releases commencing only in fields of age at most 6 mo at the start of the release. Time, t, is measured in days. The density, e/100s, is the number of borers, e, per 100 stalks of sugarcane. The graph shows that the average infestation level in the second yr of the control program is substantially reduced.
Fig. 5 in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 5. The discretization of the spatial domain. On the lef a typical sugarcane field layout is illustrated with different colors representing crop age, and on the right the discretized domain corresponding to the area within the red square. This was done by transforming the spatial information obtained from the shapefiles to a matrix data structure in Matlab containing the entries '0', '1' and '2' denoting non-sugarcane patches, patches inside a field and edge patches, respectively. In the right half of the figure these data are represented by white, blue and green, respectively.
Fig. 4. A in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 4. A model representing sugarcane dynamics as currently implemented in the simulation tool for the field application of a SIT/IS strategy against Eldana saccharina in sugarcane.
Fig. 3 in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 3. The Eldana saccharina module developed in this study. The module describes the dynamics of all E. saccharina life stages under the influence of the SIT/IS technique. Other control measures may also be included, and are currently under investigation.
Fig. 6 in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 6. The graphical user interface designed for the SIT/IS simulation tool for the field application of a SIT/IS strategy against Eldana saccharina in sugarcane. The initial infestation, e/100s, is the number of borers per 100 stalks of sugarcane.
Fig. 1 in Anoxia-conditioning hormesis alters the relationship between irradiation doses for survival and sterility in the cactus moth, Cactoblastis cactorum (Lepidoptera: Pyralidae)
Fig. 1. Fertility (as measured by egg hatch success and time to hatch) of Cactoblastis cactorum treated as adults at 5 levels of irradiation and 2 levels of atmospheric conditions. Means and standard errors are plotted. Letter designations refer to Tukey's post hoc analysis.
Fig. 4 in Anoxia-conditioning hormesis alters the relationship between irradiation doses for survival and sterility in the cactus moth, Cactoblastis cactorum (Lepidoptera: Pyralidae)
Fig. 4. Median longevity (median ± SE) of untreated control (no irradiation or atmospheric treatment) female and male Cactoblastis cactorum adults housed in 3 different conditions; individually in restrictive cups, together in single gen- der cages that allowed movement, and together in mixed gender cages that allowed movement and mating. Letter designations refer to Tukey's post hoc analysis.
Fig. 6 in Anoxia-conditioning hormesis alters the relationship between irradiation doses for survival and sterility in the cactus moth, Cactoblastis cactorum (Lepidoptera: Pyralidae)
Fig. 6. Median longevity (median ± SE) of female and male Cactoblastis cactorum adults treated at 5 levels of irradiation and 2 levels of atmospheric conditions. Asterisks refer to significant differences at the 0.0001 level.
Fig. 2 in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 2. The pest species subsystem which may include all the important pest species in South African sugarcane.The total damage caused by the various pest species may be estimated by such a system. Currently, only the Eldana saccharina module has been developed.
Fig. 9. A in Simulation modelling as a decision support in developing a sterile insect-inherited sterility release strategy for Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 9. A spatial overview of the Eldana saccharina larval infestation at the end of a 24 mo simulation of a SIT/IS program at the pilot site near the Eston area of KwaZulu-Natal, South Africa. The colors indicate infestation levels measured in e/100 stalks, i.e., number of borers per 100 stalks of sugarcane. The fields colored in dark blue in the top right corner are aged 0, 1 and 2 mo, and they were harvested just before the end of the simulation; therefore the infestation levels are still low and this is before the commencement of releases of irradiated adult moths.
Fig. 3 in Anoxia-conditioning hormesis alters the relationship between irradiation doses for survival and sterility in the cactus moth, Cactoblastis cactorum (Lepidoptera: Pyralidae)
Fig. 3. Success rate (mean ± SE) of neonate Cactoblastis cactorum at building communal webs in the absence of food and water whose parents had been treated at 5 levels of irradiation and 2 levels of atmospheric conditions.
Fig. 5 in Anoxia-conditioning hormesis alters the relationship between irradiation doses for survival and sterility in the cactus moth, Cactoblastis cactorum (Lepidoptera: Pyralidae)
Fig. 5. Survivorship and longevity (mean ± SE) of female and male Cactoblastis cactorum adults treated at 5 levels of irradiation and 2 levels of atmospheric conditions.
Fig. 3 in Factors and Variables that Affect Quality of Lepidopterans Used in SIT Programs General biology of Eldana saccharina (Lepidoptera: Pyralidae): A target for the sterile insect technique
Fig. 3. Frequency distribution of multiple matings of Eldana saccharina males during 1 to 7 days afer emergence (n = 30).
Fig. 1 in Factors and Variables that Affect Quality of Lepidopterans Used in SIT Programs General biology of Eldana saccharina (Lepidoptera: Pyralidae): A target for the sterile insect technique
Fig. 1. Mean percentage of eggs (± SE; n = 20) oviposited by Eldana saccharina adult females per night afer emergence.
Fig. 3 in Mating compatibility and competitiveness between wild and laboratory strains of Eldana saccharina (Lepidoptera: Pyralidae) afer radiation treatment
Fig. 3. The mean number of Eldana saccharina matings in a pair-wise comparison between non-irradiated laboratory adults and irradiated laboratory adults showing a significant 2-way interaction between time of night and location of trials. Data were pooled across the entire observation period to obtain total matings irrespective of cross type. Error bars denote 95% confidence limits.
Fig. 4 in Mating compatibility and competitiveness between wild and laboratory strains of Eldana saccharina (Lepidoptera: Pyralidae) afer radiation treatment
Fig. 4. The mean number of matings in a pair-wise comparison between irradiated laboratory reared and non-irradiated wild Eldana saccharina adults showing a significant 3-way interaction across time of night, type of cross and location of trials. The expected possible mating combinations/cross types were: (i) irradiated laboratory female and irradiated laboratory male (Sf x Sm); (ii) irradiated laboratory female and non-irradiated wild male (Sf x Wm); (iii) non-irradiated wild female and irradiated laboratory male (Wf x Sm); and/or (iv) non-irradiated wild female and non-irradiated wild male (Wf x Wm).
Fig. 6 in Radiation biology of Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 6. Percentage males in the total Eldana saccharina F1 larvae surviving to adulthood from 3 parental crosses with increasing radiation doses (T = Treated by irradiation; U = Untreated; M = Male; F = Female).
Fig. 4 in Radiation biology of Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 4. Mean development time to adulthood of Eldana saccharina F1 neonates descendants from females treated with increasing radiation doses and mated with untreated males. (0 Gy, n = 450; 100 Gy, n = 61; 150 Gy, n = 13 and 200 Gy,n = 2).
Fig. 2 in Radiation biology of Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 2. Mean percent fertility of Eldana saccharina females from 3 parental crosses treated with increasing radiation doses (T = Treated by irradiation; U = Untreated; M = Male; F = Female).
Fig. 1. Mean fecundity per Eldana saccharina female from 3 in Radiation biology of Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 1. Mean fecundity per Eldana saccharina female from 3 parental crosses treated with increasing radiation doses (T = Treated by irradiation; U = Untreat- ed; M = Male; F = Female).
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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.