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Fig. 1. Sample completeness curve for a in Abundance and diversity of beneficial and pest arthropods in buckwheat on blueberry and vegetable farms in north Florida
Fig. 1. Sample completeness curve for a vegetable farm (dark shaded area, 38 samples) and blueberry farm (light shaded area, 19 samples) in Suwannee County, Florida. The solid line is the interpolated insect family-level richness and the dashed line is the extrapolated richness. The shaded areas represent 95% confidence intervals. Sampling effort is standardized based on the sample completeness (the proportion of sampled families to predicted families) at each sampling level, with the circle representing final sampling completeness of 38 samples taken at the vegetable farm and the triangle representing final sampling completeness of 19 samples taken at the blueberry farm.
Fig. 1 in Pest and beneficial arthropods in a 'Tifon 85' bermudagrass field in north central Florida
Fig. 1. Mean number of major pest arthropods collected each sampling day (9 sweep net samples per sub-plot, 3 replicates) on a north central Florida farm in 'Tifon 85' bermudagrass grown for 35 d afer being cut to a stubble height of 8 or 15 cm. The sampling days were 5, 13, 18, and 27 Aug; 3, 9, 16, 23, and 30 Sep; and 7, 14, 22, and 29 Oct 2008. The grass was cut on 4 Sep and 9 Oct, between sample days 5 and 6 and sample days 10 and 11, respectively (bars below the x-axes).
Fig. 2 in Effects of Farming Systems on Insect Communities in the Paddy Fields of a Simplified Landscape During a Pest-control Intervention.
Fig. 2. Two-dimensional NMDS ordination of 40 insect communities sampled under different farming systems in northern Taiwan (stress = 0.18).
Figure 1 in First Occurrence and Population Dynamics of Blissus pulchellus (Hemiptera: Blissidae) in Brazil: a new pest of pastures in Roraima
Figure 1 Area of Brachiaria brizantha cv.Marandu with damage of Blissus pulchellus (A), clump with symptoms of attack (B), adult (C), nymphs (D) and colonies (E), Roraima,Brazil.
Fig. 2 in Identification and pest status of Holopothrips fulvus (Thysanoptera: Phlaeothripidae) on dwarf-cashew crops in northeastern Brazil
Fig. 2. Morphology of Holopothrips fulvus (Morgan, 1929): (A) antennal segment III; (B) antennal segment IV; (C) female head; (D) male head; (E) male head and pronotum; (F) prosternum; (G) male tube; (H) fore wing; (I) mesonotum and metanotum; and (J) second instar larva.
Figures 5a–f in Trapping Records of Fruit Fly Pest Species (Diptera: Tephritidae) on Oahu (Hawaiian Islands): Analysis of Spatial Population Trends
Figures 5a–f. Mean (± S.E.) captures in different habitats for B. cucurbitae in cuelure and torula yeast (a, b), B. dorsalis in methyl eugenol and torula yeast (c, d) and C. capitata in trimedlure and torula yeast (e, f) traps. Units are flies per trap per day in male lure and per week in torula yeast traps.
Figure 2 in The phenology of Pulvinaria floccifera Westwood (Hemiptera: Coccomorpha: Coccidae) a new invasive pest on ornamentals outdoors in Poland
Figure 2. Life cycle of Pulvinaria floccifera Westwood on Ilex aquifolium outdoors in Poland in the years 2009 (), 2010 (), 2011 (), the period of maximum abundance (). Table. The dates of the first appearance of Pulvinaria floccifera Westwood instars in the years 2009–2011 and the number of days from hatching to each following stage.
Figure 4 in Temporal variation and spatial distribution of the pest insect Edessa meditabunda in cotton (Gossypium hirsutum) as an alternative host plant
Figure 4. Surface maps constructed based on Inverse Distance Weight (IDW) interpolation showing spatial distribution of nymphs + adults in cotton between 55 (A) 70 (B), 77 (C), 84 (D), 91 (E) days after emergence (DAE) and Sum of all Evaluations (F). Low density is represented in green while red indicates high density of E. meditabunda.
Figure 3 in Temporal variation and spatial distribution of the pest insect Edessa meditabunda in cotton (Gossypium hirsutum) as an alternative host plant
Figure 3. Surface maps constructed based on Inverse Distance Weight (IDW) interpolation showing spatial distribution of adults in cotton between 55 (A) 70 (B), 77 (C), 84 (D), 91 (E) days after emergence (DAE) and Sum of all Evaluations (F). Low density is represented in green while red indicates high density of E. meditabunda.
Figure 1 in Temporal variation and spatial distribution of the pest insect Edessa meditabunda in cotton (Gossypium hirsutum) as an alternative host plant
Figure 1 Temporal variation of Edessa meditabunda population in the alternative host plant Gossypium hirsutum (cotton) in experimental Field of Dourados, Brazil.
Fig. 3 in High-level phylogeographic structuring of Neoleucinodes elegantalis Guenée (Lepidoptera, Crambridae) in Brazil: an important tomato pest
Fig. 3. Potential distribution as the probability of occurrence of N. elegantalis in the present (Now, 0 years BP), last glacial maximum (LGM; <21,000 years BP), and last interglacial (LIG, 120,000–140,000 years BP).
Figure 3 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 3. Desisa subfasciata damage in Eucalyptus hybrid (E. urophylla × E. grandis) in Bac Giang province: A, B, C. female adult; D. damaged tree with a hole on the top (white arrow).
Figure 2 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 2. Anagelasta apicalis damage in Eucalyptus hybrid (E. urophylla × E. grandis) in Bac Giang province: A, B, C. female adult; D. damaged tree with holes near the base.
Figure 1 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 1. Coptops annulipes damage in Acacia crassicarpa in Quang Tri province: A, B, C. female adult; D. damaged tree with holes on the stem (white arrows).
Figure 4 in Longhorn beetles as new pests for exotic plantations in Vietnam
Figure 4. Cephalallus unicolor damage in Pinus caribaea in Quang Tri province: A, B, C. female adult; D. damaged tree with holes on the stem
Fig. 3 in The stem borer Zeuzera multistrigata Moore (Lepidoptera, Cossidae): a serious pest undermining Eucalyptus plantations in Northern Vietnam
Fig. 3 Symptoms of Zeuzera multistrigata in Eucalyptus hybrid: a. damaged tree; b. damage to the wood; c. broken tree after sereous damaged by Z. multistrigata.
Figure 2 in The stem borer Zeuzera multistrigata Moore (Lepidoptera, Cossidae): a serious pest undermining Eucalyptus plantations in Northern Vietnam
Figure 2. Morphological characteristics of Zeuzera multistrigata: a, b. female adult; a. dorsal view b. ventral view; c. eggs; d. larva; e. Pupa
Fig. 2 in Evaluation of abamectin as a potential chemical control for the lychee erinose mite (Acari: Eriophyidae), a new invasive pest in Florida
Fig. 2. Proportion of lychee plants that did not develop erinea on the new flush afer being sprayed with the treatment that was previously applied to the received leaflet. Lychee plants were sprayed with abamectin (red, N = 7), organosilicone surfactant (black, N = 9), combination of abamectin and organosilicone surfactant (grey, N = 8), water (blue, N = 10) or non-sprayed (green, N = 10). Shown are average proportions of lychee plants through time.
Fig. 1 in Evaluation of abamectin as a potential chemical control for the lychee erinose mite (Acari: Eriophyidae), a new invasive pest in Florida
Fig. 1. Proportion of lychee plants that did not develop erinea afer Aceria litchii infested leaflets were placed on them. Leaflets were sprayed with abamectin (red), organosilicone surfactant (black), a combination of abamectin and organosilicone surfactant (grey), water (blue), or non-sprayed (green). Shown are average proportions of lychee plants through time. N = 10 for each treatment.
Fig. 2 in A new record of a pest mite on strawberry: Phytonemus pallidus (Banks) (Acari: Tarsonemidae) arrives in Minas Gerais, Brazil
Fig. 2. Calyx of strawberry fruit infested with Phytonemus pallidus mite (A); P. pallidus eggs (B); juveniles and adults on the surface of the calyx (C); ventral view of a P. pallidus female under microscope (20×) (D); idiosoma (40×) (E); proterosoma (40×) (F).
ScienceDex guides
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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.