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530 results for “Pyralidae”
Fig. 5. A in Quality Control Aspects in Relation to Rearing of Moths New rearing method and larval diet for the mahogany shoot borer Hypsipyla grandella (Lepidoptera: Pyralidae)
Fig. 5. A) Average (± SE) weight of 3rd instar larvae, and B) percent survival of larvae reared on fresh cedar leaves or on artificial diet either in well plates or in Petri dishes.
Fig. 4. A in Quality Control Aspects in Relation to Rearing of Moths New rearing method and larval diet for the mahogany shoot borer Hypsipyla grandella (Lepidoptera: Pyralidae)
Fig. 4. A) Average (± SE) 3rd instar larval weight, and B) percent survival of larvae reared on fresh cedar leaves or on artificial diet in well plates.
Fig. 2. A in Quality Control Aspects in Relation to Rearing of Moths New rearing method and larval diet for the mahogany shoot borer Hypsipyla grandella (Lepidoptera: Pyralidae)
Fig. 2. A) Average (± SE) pupal weight (g), and B) average (± SE) number of d to pupation and emergence of insects reared on original or modified diets.
Fig. 3 in Radiation biology of Eldana saccharina (Lepidoptera: Pyralidae)
Fig. 3. Mean development time of Eldana saccharina F1 neonates descendants from males treated with increasing radiation doses and mated with untreated females. (0 Gy, n = 450; 100 Gy, n = 182; 150 Gy, n = 112; 200 Gy, n = 47; 250 Gy, n = 14; 300 Gy, n = 4 and 350 Gy, n = 2).
Fig. 2 in Mating compatibility and competitiveness between wild and laboratory strains of Eldana saccharina (Lepidoptera: Pyralidae) afer radiation treatment
Fig. 2. The mean number of matings in a pair-wise comparison between non-irradiated and irradiated laboratory reared Eldana saccharina adults. The expected possible mating combinations were: (i) non-irradiated laboratory female and non-irradiated laboratory male (Lf x Lm); (ii) non-irradiated laboratory female and irradiated laboratory male (Lf x Sm); (iii) irradiated laboratory female and non-irradiated laboratory male (Sf x Lm); and/or (iv) irradiated laboratory female and irradiated laboratory male (Sf x Sm).
Fig. 1 in Mating compatibility and competitiveness between wild and laboratory strains of Eldana saccharina (Lepidoptera: Pyralidae) afer radiation treatment
Fig. 1. The mean number of matings in a pair-wise comparison between non-irradiated laboratory and 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 were: (i) non-irradiated laboratory female and nonirradiated laboratory male (Lf x Lm); (ii) non-irradiated laboratory female and non-irradiated wild male (Lf x Wm); (iii) non-irradiated wild female and non-irradiated laboratory male (Wf x Lm); and/or (iv) non-irradiated wild female and non-irradiated wild male (Wf x Wm).
Fig. 3 in Quality Control Aspects in Relation to Rearing of Moths New rearing method and larval diet for the mahogany shoot borer Hypsipyla grandella (Lepidoptera: Pyralidae)
Fig. 3. Average (± SE) numbers of fertile eggs, infertile eggs and hatched larvae of insects reared either on the original diet or on the new modified diet.
Fig. 3 in Performance improvement through quality evaluations of sterile cactus moths, Cactoblastis cactorum (Lepidoptera: Pyralidae), mass-reared at two insectaries
Fig. 3. The mean percentage increase in mating of Cactoblastis cactorum females in mating cage bioassays as influenced by the insectary (DPI or TIF) and the trial conducted before (trial 1) and afer (trial 2) quality improvements were made to the rearing and handling protocols at the DPI insectary. Vertical bars denote 0.95 confidence intervals.
Fig. 6 in Performance improvement through quality evaluations of sterile cactus moths, Cactoblastis cactorum (Lepidoptera: Pyralidae), mass-reared at two insectaries
Fig. 6. The mean distance (m) from the field release site that Cactoblastis cactorum males were recaptured was significantly influenced by the insectary (DPI or TIF), the day that released males were recaptured, and the trial conducted before (trial 1) and afer (trial 2) quality improvements were made to the rearing and handling protocols at the DPI insectary. Vertical bars denote 0.95 confidence intervals.
Fig. 2 in Performance improvement through quality evaluations of sterile cactus moths, Cactoblastis cactorum (Lepidoptera: Pyralidae), mass-reared at two insectaries
Fig. 2. The mean percentage of Cactoblastis cactorum females that were mated at time of collection from the insectaries (DPI or TIF) and the trial conducted before (trial 1) and afer (trial 2) quality improvements were made to the rearing and handling protocols at the DPI insectary. Vertical bars denote 0.95 confidence intervals.
Fig. 5 in Performance improvement through quality evaluations of sterile cactus moths, Cactoblastis cactorum (Lepidoptera: Pyralidae), mass-reared at two insectaries
Fig. 5. The relationship between the mean percentage recapture of Cactoblastis cactorum males released in the field as influenced by the day that released males were recaptured. Males recaptured include individuals from both DPI and TIF insectaries. Vertical bars denote 0.95 confidence intervals.
Fig. 4 in Performance improvement through quality evaluations of sterile cactus moths, Cactoblastis cactorum (Lepidoptera: Pyralidae), mass-reared at two insectaries
Fig. 4. The mean percentage recapture of Cactoblastis cactorum males released in the field as influenced by the insectary (DPI or TIF) and the trial conducted before (trial 1) and afer (trial 2) quality improvements were made to the rearing and handling protocols at the DPI insectary. Vertical bars denote 0.95 confidence intervals.
Fig. 1 in Effect of temperature on the population growth of Tirathaba rufivena (Lepidoptera: Pyralidae) on Areca catechu (Arecaceae)
Fig. 1. Survival rates for immature stages and the entire development period (egg to adult) of Tirathaba rufivena at 5 constant temperatures. Each value represents the mean of 3 replicates for each temperature, and bars indicate the standard error.
Fig. 2 in Effect of temperature on the population growth of Tirathaba rufivena (Lepidoptera: Pyralidae) on Areca catechu (Arecaceae)
Fig. 2. Mean numbers of eggs deposited per Tirathaba rufivena female at 5 constant temperatures. Each value represents the mean of 3 replicates for each temperature, and bars indicate the standard error.
Fig. 3. Female genitalia. A. Noduliferola abstrusa Kuznetzov, 1973. B. Maliarpha borealis Sasaki, 2012. C. Ectoblemma rosella Sugi, 1982 in New records of five species of Lepidoptera (Cosmopterigidae, Tortricidae, Pyralidae and Erebidae) from sand-dunes along the western coastline of Korea
Fig. 3. Female genitalia. A. Noduliferola abstrusa Kuznetzov, 1973. B. Maliarpha borealis Sasaki, 2012. C. Ectoblemma rosella Sugi, 1982.
Fig. 1. Adult habitus. A. Cosmopterix flavidella Kuroko, 2011, male. B. Noduliferola abstrusa Kuznetzov, 1973, female. C. Maliarpha borealis Sasaki, 2012, male. D. Ectoblemma rosella Sugi, 1982, female. E in New records of five species of Lepidoptera (Cosmopterigidae, Tortricidae, Pyralidae and Erebidae) from sand-dunes along the western coastline of Korea
Fig. 1. Adult habitus. A. Cosmopterix flavidella Kuroko, 2011, male. B. Noduliferola abstrusa Kuznetzov, 1973, female. C. Maliarpha borealis Sasaki, 2012, male. D. Ectoblemma rosella Sugi, 1982, female. E. Metachrostis miasma (Hampson, 1891), male. Scale bars = 4 mm.
Figure 3 in Effects of Ni (II) p-hydroxybenzoate with caffeine on metabolic, antioxidant, and biochemical parameters of model insect Galleria mellonella L. (Lepidoptera: Pyralidae)
Figure 3. Effects of Ni (II) p-hydroxybenzoate with caffeine on ion levels of Galleria mellonella. Bars represent the means (± SD) of four replicates. Means followed by the same letter are not significantly different (p> 0.05).
Figure 1 in Effects of Ni (II) p-hydroxybenzoate with caffeine on metabolic, antioxidant, and biochemical parameters of model insect Galleria mellonella L. (Lepidoptera: Pyralidae)
Figure 1. Effects of Ni (II) p-hydroxybenzoate with caffeine on metabolic enzyme activity of Galleria mellonella. Bars represent the means (±SD) of four replicates. Means followed by the same letter are not significantly different (p> 0.05).
Figure 2 in Genotoxic effects of oxyclozanide on hemocytes of Galleria mellonella (Lepidoptera: Pyralidae) larvae
Figure 2. Tail length (μm) in hemocytes of seventh instar larvae of G. mellonella. Bars represent the means (± SE) of four replicates. Means followed by different letters are significantly different from each other, p <0.05 (LSD Test).
Figure 4 in Genotoxic effects of oxyclozanide on hemocytes of Galleria mellonella (Lepidoptera: Pyralidae) larvae
Figure 4. Tail moment in hemocytes of seventh instar larvae of G. mellonella. Bars represent the means (± SE) of four replicates. Means followed by different letters are significantly different from each other, p <0.05 (LSD Test).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.