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6,859 results for “parasitism”
Figure 1 in Collyriclum faba (Digenea: Collyriclidae) in migrant Phylloscopus trochilus (Aves: Sylvidae) in Egypt: the first record of the parasite on the African continent
Figure 1. Subcutaneous cysts with Collyriclum faba in the leg (A) and head (B) of Phylloscopus trochilus found naturally infected in Egypt. Photos by I Rząd, Wadi Allaqi, Egypt, 24 September 2012.
Figure 6 in Intensity and prevalence of some crustacean fish parasites in Turkey and their molecular identification
Figure 6. Livoneca punctata on gill of Alosa immaculata (A), manca (B, D), adult female L. punctata and its juvenile manca (C).
Figure 5 in Intensity and prevalence of some crustacean fish parasites in Turkey and their molecular identification
Figure 5. Infestation of Nerocila spp. on Platichthys flesus (A) and infestation of Nerocila bivittata on Pegusa nasuta (B), mechanic injury on caudal peduncle of sole (C), clear lesions on caudal fin of sea bass (D. labrax) (D).
Figure 3 in Four new records of plant parasitic nematodes from Iran
Figure 3. Criconemoides morgensis: (A) anterior end of the body, (B) ovary, (C) body shape, (D–F) anastomoses, (G, H) variation of the tail.
Figure 4 in Four new records of plant parasitic nematodes from Iran
Figure 4. Paratylenchus vandenbrandei: (A) anterior end of the body, (B) lip region, (C) ovary, (D) body shape, (E, F) variation of the tail, (G) lateral lines with deirid.
Figure 2 in Four new records of plant parasitic nematodes from Iran
Figure 2. Geocenamus dobroticus: (A) anterior end of the body,(B) lip region, (C) ovary, (D) body shape, (E) lateral lines, (F, G) variation of the tail.
Figure 1 in Four new records of plant parasitic nematodes from Iran
Figure 1. Merlinius acuminatus: (A) anterior end of the body, (B) lip region, (C) ovary, (D) body shape, (E) lateral lines, (F, G) variation of the tail.
Figure 1 in A tritrophic interaction at the Brazilian triple frontier: new record of parasitism on Conocephalus saltator (Sausurre, 1859) (Orthoptera, Tettigoniidae)
Figure 1 Individuals of Conocephalus saltator. A: Adult male; B: Adult female; C: Male nymph; D: Female nymph; E: Male nymph, feeding on grass seeds.
Figure 3 in A tritrophic interaction at the Brazilian triple frontier: new record of parasitism on Conocephalus saltator (Sausurre, 1859) (Orthoptera, Tettigoniidae)
Figure 3 All reared specimens of Perilampus sp. A: specimen 477, lateral view; B: specimen 477, dorsal view; C: specimen 40; D: specimen 337; E: specimen 55.
Fig. 3 in Host-parasite interaction and impact of mite infection on mosquito population
Fig. 3. Attachment preferences of mites for mosquito body parts. Bars show ± SE, comparisons are made at 95% confidence using ANOVA. Bars without SE = no variations.
Fig. 4 in Host-parasite interaction and impact of mite infection on mosquito population
Fig. 4. Attachment preference of mites for mosquito sexes. Bars show ± SE, comparisons are made at 95% confidence using ANOVA. Bars without SE = no variations.
Fig. 1 in Parasitism rate of Myzus persicae (Sulzer) by Diaeretiella rapae (McIntosh) in the presence of an alternative, resistant host
Fig. 1. (A) Proportion of M. persicae parasitized by D. rapae in plants with resistant or susceptible L. pseudobrassicae populations. (B) Proportion of resistant or susceptible L. pseudobrassicae parasitized by D. rapae in plants with M. persicae.
Fig. 2 in Host-parasite interaction and impact of mite infection on mosquito population
Fig. 2. Mosquitoes parasitized by mites. Tukey's multiple comparison tests were applied at 95% confidence to compare differences. Bars (±SE) with different letters show significant differences at p ≤ 0.05. Bars without SE = no variations.
Fig. 1 in Host-parasite interaction and impact of mite infection on mosquito population
Fig. 1. (A) Culex pipiens fatigans infected by Arrenurus danbyensis; (B and C) Coquillettidia sp. infected with Leptus sp.; (D) Aedes sp., infected with Arrenurus danbyensis.
Fig. 2 in Parasitism rate of Myzus persicae (Sulzer) by Diaeretiella rapae (McIntosh) in the presence of an alternative, resistant host
Fig. 2. Relationship between the absolute number of L. pseudobrassicae parasitized by D. rapae and the percentage of parasitism on M. persicae. Each symbol represents a different plant.
Fig. 3 in Parasitism rate of Myzus persicae (Sulzer) by Diaeretiella rapae (McIntosh) in the presence of an alternative, resistant host
Fig. 3. (A) Relative growth rates of M. persicae and resistant L. pseudobrassicae populations. (B) Relative growth rates of M. persicae and susceptible L. pseudobrassicae populations.
Fig. 3 in The trade-off between the transmission of chemical cues and parasites: behavioral interactions between leaf-cutting ant workers of different age classes
Fig. 3. Mean ± s.e. frequencies that young and old ants were observed giving or receiving allogrooming during a 15 s observation period.
Fig. 2 in The trade-off between the transmission of chemical cues and parasites: behavioral interactions between leaf-cutting ant workers of different age classes
Fig. 2. Mean ± s.e. frequencies that young and old ants were: (a) observed selfgrooming and (b) observed engaged in mandible scraping with another ant, during a 15 s observation period.
Fig. 1 in The trade-off between the transmission of chemical cues and parasites: behavioral interactions between leaf-cutting ant workers of different age classes
Fig. 1. Overall activity levels. Mean ± s.e. frequencies that young and old ants were: (a) observed engaging in one of the focal behaviors and (b) observed engaged in antennation with another ant, during a 15 s observation period.
Figure 4 in Infestation and effect of parasitic isopod Epipenaeon ingens ingens Nobili, 1906 on commercial shrimp species in the eastern Mediterranean: a case study of the population of brown shrimp Penaeus aztecus Ives, 1891
Figure 4. Data of E. ingens ingens. Expected (pink logistic line) percentage of a female with male, expected (red logistic line) and observed percentage (red circular) of Ov-F, and size structure of female parasite (thick line), female accompanied with male (broken line) and Ov-F (thin line), size at first accompaniment (FAS ) and size at first maturity (FMS ).
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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)
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.