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875 results for “Infestation”
Figure 5 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 5. Number of cats according to the clinical score for hair loss in Group 2 (Frontline Combo®).
Figure 1 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 1. Infestation with Felicola subrostratus in domestic cats. (a) Note the adult louse; (b) presence of adult louse and nits.
Figure 4 in Relationship between weedy rice (Oryzo sotivo) infestation level and agronomic practices in Italian rice farms
Figure 4. The three clusters identified in the two-step cluster analysis and the composition of each cluster for all the variables that contributed to clustering. The size of the circle and percentages close to each circle represent the proportion of farms pertaining to a certain category of each variable. The percentage of farms belonging to each cluster is reported in parentheses following the cluster name. (A) Cluster 1; (B) cluster 2; and (C) cluster 3.
Fig. 1 in New report of the exotic species Megalurothrips usitatus (Thysanoptera: Thripidae) infesting three commercial legumes in Nayarit, Mexico
Fig. 1. (A) Adult female of Megalurothrips usitatus; (B) thrips-infested flowers of Phaseolus vulgaris; (C) common bean inflorescence infested with thrips; (D) twisted and deformed pods of cowpeas; (E) inflorescence of jicama infested by thrips; (F) brown coloration produced by thrips feeding.
Figure 2 in Relationship between Anisakis infestation and ovarian abnormalities in Trachurus trachurus (Carangidae) from the eastern coast of Algeria
Figure 2. – Microphotographs of crosssections of horse mackerel ovaries (Mayer's haemalum-eosine staining). A: Normal mature follicle; B: Cystic follicles with C: Proliferation of follicular cell layers (black arrows); D: Normal atretic oocyte showing invasion of the oocyte yolk by the granulosa cells (arrowheads) and appearance of several vacuoles (asterisk); E: Stratified squamous epithelium structure of a cyst with disorganized cells (black arrows) and F: Vacuoles. cyf: cystic follicle; gr: granulosa; mle: multi-layered epithelium; th: theca; v: vacuole; zr: zona radiata.
Figure 1 in Relationship between Anisakis infestation and ovarian abnormalities in Trachurus trachurus (Carangidae) from the eastern coast of Algeria
Figure 1. – Morphology of Trachurus trachurus gonads. A: Compartmented ovary: ovarian strand separated into two lobes; B: Normal ovary. Scale bar = 1 cm.
Figure 3 in Relationship between Anisakis infestation and ovarian abnormalities in Trachurus trachurus (Carangidae) from the eastern coast of Algeria
Figure 3. – Microphotographs of cross-section of horse mackerel ovaries (Mayer's haemalum-eosine staining). A: Normal histological structure with oocytes at various maturation stages; B: High incidence of atresia (asterisk), oocyte detachment from follicular layers (arrowheads) and breaking of the ovarian follicle (arrows). OI: Oocyte in stage I; OII: Oocyte in stage II; OIII: Oocyte in stage III; OIV: Oocyte in stage IV; Oat: atretic oocyte; Og: Oogonia.
Figure 4 in Monitoring of infestation percentages of the invasive red palm weevil, Rhynchophorus ferrugineus (Coleoptera: Curculionidae), and management tactics: a six-year study
Figure 4. Percentages of infested, treated & removed palm trees affected by R. ferrugineus, in 8 date palm locations in Qassim Province from 2015 to 2020, Saudi Arabia.
Figure 5 in Monitoring of infestation percentages of the invasive red palm weevil, Rhynchophorus ferrugineus (Coleoptera: Curculionidae), and management tactics: a six-year study
Figure 5. The relationship between the percentage of infested to treated and infested to removed date palm trees affected by R. ferrugineus, from 2015 to 2020 (Regression equations and R2 values).
Figure 1 in Monitoring of infestation percentages of the invasive red palm weevil, Rhynchophorus ferrugineus (Coleoptera: Curculionidae), and management tactics: a six-year study
Figure 1. Map of Qassim province showing the 8 locations of study. In the eight locations (Qassim/Saudi Arabia) in which a survey of RPW studies was conducted from 2015-2020 - Each Location was coded with a Blue Letter.
Figure 3 in Monitoring of infestation percentages of the invasive red palm weevil, Rhynchophorus ferrugineus (Coleoptera: Curculionidae), and management tactics: a six-year study
Figure 3. The yearly average of infested, treated & removed date palm trees affected by R. ferrugineus from 2015 to 2020, Qassim Province, Saudi Arabia.
Figure 2 in The predatory mite Neoseiulus californicus (Acari: Phytoseiidae) does not respond for volatiles of maize infested by Tetranychus urticae (Acari: Tetranychidae)
Figure 2. Olfactory response of Neoseiulus californicus in Y-olfactometer. (A) maize plants without infestation vs. maize plants infested by 100 adult females of T. urticae, (B) maize plants without infestation vs. maize plants infested by 200 adult females of T. urticae and (C) maize plants infested by ten vs. 200 adult females of T. urticae. NR represents non-responsive insects (no choice). Chi-square test with 5% significance. Numbers in bars represent individual predator that choose the indicated odor. The number of predatory mite without response to the treatments (NR), after 5 minutes, was eliminated from the statistical analysis.
Figure 1 in The predatory mite Neoseiulus californicus (Acari: Phytoseiidae) does not respond for volatiles of maize infested by Tetranychus urticae (Acari: Tetranychidae)
Figure 1. Olfactory response of Neoseiulus californicus in Y-olfactometer. (A) air vs. air (white bars), (B) air vs. maize plants without infestation and (C) maize plants without infestation vs. maize plants infested by ten adult females of T. urticae. NR represents nonresponsive insects (no choice). Chi-square test with 5% significance. Numbers in bars represent individual predator that choose the indicated odor. The number of predatory mite without response to the treatments (NR), after 5 minutes, was eliminated from the statistical analysis.
Fig. 4 in Greenhouse evaluation of neonate and adult applications of Coleomegilla maculata (Coleoptera: Coccinellidae) to control twospotted spider mite infestations
Fig. 4. Spider mite infestation levels in each treatment 20 d afer treatment application. Data represent the non-transformed mean number of mites, at specified developmental stage, per square cm of leaf surface (abaxial) ± SEM (n = 4). Different letters above bars indicate significant difference (P <0.05, Holm-Sidak multiple comparisons).
Fig. 2 in Greenhouse evaluation of neonate and adult applications of Coleomegilla maculata (Coleoptera: Coccinellidae) to control twospotted spider mite infestations
Fig. 2. Temperature fluctuations (only daily high temperatures are charted) during the course of the experiment.
Fig. 3. Representative samples from initial experiment interrupted and lef untended for 17 d in Greenhouse evaluation of neonate and adult applications of Coleomegilla maculata (Coleoptera: Coccinellidae) to control twospotted spider mite infestations
Fig. 3. Representative samples from initial experiment interrupted and lef untended for 17 d. Plants treated with lady beetles recovered from extreme stress; infested and untreated plants could not grow new leaves (no recovery).
Fig. 2 in Myrmecofauna (Hymenoptera: Formicidae) present in vineyards infested with Eurhizococcus brasiliensis (Hemiptera: Margarodidae) in southern Brazil
Fig. 2. Relative frequencies of occurrence of the main ant species in vineyards where Eurhizococcus brasiliensis occurred in Santa Catarina.
Fig. 2 in Infestation of the road-killed Eastern European hedgehogs (Erinaceus roumanicus) with Ixodidae ticks in some parts of Upper Thracian Plain (Bulgaria)
Fig. 2. Ixodidae ticks found parasitizing on road-killed Eastern European hedgehogs: (A) male Rh. bursa; (B) engorged female Rh. sanguineus (left) and male Rh. turanicus (right); (C) male H. marginatus; (D) engorged female I. ricinus.
Fig. 1 in Infestation of the road-killed Eastern European hedgehogs (Erinaceus roumanicus) with Ixodidae ticks in some parts of Upper Thracian Plain (Bulgaria)
Fig. 1. Location of the field study area (1- part of national road II-66; 2- part of national road I-8; 3- national road Karlovo - Plovdiv).
Figs. 1–6 in Armored scales (Hemiptera: Diaspididae) infesting Hass avocado intercepted in Florida and a new parasitoid-host association for Davidsonaspis aguacatae
Figs. 1–6. Scale insects on intercepted Hass avocado. 1. Latania scale, Hemiberlesia lataniae, adult females on avocado surrounding peduncle remnant. Arrow indicates parasitoid emergence hole. 2–6. Aguacatae scale, Davidsonaspis aguacatae: 2. Adult female scales on avocado skin on intercepted fruit. Ink circles ap- plied by interception officer, arrows indicate actual scale. 3. Adult female with scale cover removed. 4. Close-up of same. 5. Adult female scale cover. 6. Pygidium of slide-mounted female, with diagnostic characters; ao–anal opening, pl–pygidial lobe.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.