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435 results for “Sterilization”

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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.

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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.

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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.

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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.

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Fig. 3 in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 3. Effect of gamma irradiation on (a) the percentage of active apyrene sperm, and (b) the intensity of active sperm (no. of undulations/s) in virgin irradiated parental (P) male Spodoptera litura.

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Fig. 2b in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 2b. Eupyrene sperm bundles descent from the testes to the reproductive tract (upper vasa deferentia (UVD), seminal vesicles (SV) and the duplex) of irradiated male Spodoptera litura and their F1 progeny during the photophase (white bars)and the scotophase (black bars). Means ± SE followed by the same capital letter within white bars, or within black bars within each treatment regimen of sperm descent in the UVD, SV and duplex are not significantly different at P ≤ 0.05 (ANOVA followed by LSD post-test). Means ± SE followed by a different small letter between white bar and black bar, within each age group within a regimen are significantly different at P ≤ 0.05 (ANOVA followed by LSD posttest).

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Fig. 2a in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 2a. Loose apyrene sperm descent from the testes to the reproductive tract [upper vasa deferentia (UVD), seminal vesicles (SV) and the duplex] of irradiated male Spodoptera litura and their F1 progeny during the photophase (white bars) and the scotophase (black bars). Means ± SE followed by the same capital letter within white bars, or within black bars for each treatment regimen of sperm descent in the UVD, SV and duplex are not significantly different at P ≤ 0.05 (ANOVA followed by LSD post-test). Means ± SE followed by different small letter between the white bars and black bars, within each age group within a regimen are significantly different at P ≤ 0.05 (ANOVA followed by LSD posttest).

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Fig. 1 in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 1. Reproductive system of male moth, Spodoptera litura. The ductus ejaculatorius simplex is also known as the prostatic part. Sperm pass through the prostatic part at the onset of mating and acquire motility for the first time.

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Fig. 4 in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 4. Effect of gamma irradiation on (a) the percentage of active apyrene sperm and (b) the intensity of active sperm (no. of undulations /s) in virgin irradiated parental (P) male Spodoptera litura and their F1progeny.

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Fig. 5 in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 5. Effect of gamma irradiation on (a) the percentage of active apyrene sperm, and (b) the intensity of active sperm (no. of undulations /s) in mated irradiated parental (P) male Spodoptera litura.

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Fig. 6 in Appraisal of sperm dynamics as a crucial trait of radio- sterilized Spodoptera litura (Lepidoptera: Noctuidae) and its F progeny for evaluation of the 'inherited sterility technique' for pest suppression

Fig. 6. Effect of gamma irradiation on (a) the percentage of active apyrene sperm, and (b) the intensity of sperm activity (no. of undulations /s) in mated irradiated parental (P) male Spodoptera litura and their F1progeny.

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Fig. 5 in Methods to separate Lobesia botrana (Lepidoptera: Tortricidae) males from females for the implementation of sterile insect-inherited sterility technique control tactics

Fig. 5. The percentages of male and female Lobesia botrana adults that emerged from the pupal stage on each consecutive d afer the onset of adult emergence.

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Fig. 6 in Methods to separate Lobesia botrana (Lepidoptera: Tortricidae) males from females for the implementation of sterile insect-inherited sterility technique control tactics

Fig. 6. Distribution of Lobesia botrana male and female pupae based on the overall lengths of the pupae.

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Fig. 3. R, G and B in Methods to separate Lobesia botrana (Lepidoptera: Tortricidae) males from females for the implementation of sterile insect-inherited sterility technique control tactics

Fig. 3. R, G and B color values of male and female Lobesia botrana larvae during the wandering phase. A. Average R, G and B color values of wandering male and female larvae, and B. Percentages of wandering red, green and blue larvae in relation to the R, G and B values as a proportion of total male and female larvae. * P = 0.001, Tukey α = 0.05.

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Fig. 1 in Methods to separate Lobesia botrana (Lepidoptera: Tortricidae) males from females for the implementation of sterile insect-inherited sterility technique control tactics

Fig. 1. Lobesia botrana pupae indicating the number of abdominal segments in (A) male (4 segments), and (B) female pupae (3 segments) as measured from the abdomen tip to the wing's point, and (C) distance between the head and the abdomen tip as a measurement of pupal length.

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Fig. 4 in Methods to separate Lobesia botrana (Lepidoptera: Tortricidae) males from females for the implementation of sterile insect-inherited sterility technique control tactics

Fig. 4. The percentages of wandering Lobesia botrana larvae that departed from their food on each consecutive day of the wandering phase and that sub- sequently developed into either adult males or adult females.

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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).

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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.

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Fig. 5 in Inherited sterility in Tuta absoluta (Lepidoptera: Gelechiidae): Pest population suppression and potential for combined use with a generalist predator

Fig. 5. Prey consumption in the choice test involving progeny of irradiated females. Number of T. absoluta eggs consumed per T. cucurbitaceus (mean ± SE) individual in 24 h from the following T. absoluta eggs crosses, ♀U × ƋU and ♀I × ƋU. The different letters above the 2 error bars indicates that there was a significant difference in the numbers of eggs consumed based on the crosses from which they had originated, even though the female parent had been irradiated in 1 of the crosses (paired t tests, P <0.05). U = untreated, I = irradiated.

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Fig. 3 in Inherited sterility in Tuta absoluta (Lepidoptera: Gelechiidae): Pest population suppression and potential for combined use with a generalist predator

Fig. 3. Prey consumption in the no-choice test. Number of T. absoluta eggs consumed per T. cucurbitaceus (mean ± SE) individual in 24 h from following T. absoluta eggs crosses: ♀U × ƋU,♀U × ƋI or ♀I × ƋU.The same letter above the 3 error bars indicates that there were no significant differences in the numbers of eggs consumed based on the crosses from which they had originated (ANOVA, P> 0.05). U = untreated, I = irradiated.

opencc-by-4.0Jun 2016View details →

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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.

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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.

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