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372 results for “hawaii”
Fig. 3 in Trunk injection of systemic insecticides to control stem and leaf gall wasps, Josephiella species (Hymenoptera: Agaonidae), on Chinese banyan (Rosales: Moraceae) in Hawaii
Fig. 3. Mean percentage (± SE) of leaves infested with leaf gall wasps associated with chemical treatments and untreated control. Means with the same letter are not significantly different (ANOVA).
Fig. 1 in Trunk injection of systemic insecticides to control stem and leaf gall wasps, Josephiella species (Hymenoptera: Agaonidae), on Chinese banyan (Rosales: Moraceae) in Hawaii
Fig. 1. Mean number (± SE) of stem galls (on 45 cm shoots) associated with chemical treatments and untreated control. Means with the same letter are not significantly different (ANOVA).
Fig. 6 in Trunk injection of systemic insecticides to control stem and leaf gall wasps, Josephiella species (Hymenoptera: Agaonidae), on Chinese banyan (Rosales: Moraceae) in Hawaii
Fig. 6. Mean ratings of tree health condition (A) and mean ratings of new shoot emergence (B) 22 mo afer treatment (rating of tree health condition: 1 = excellent, 2 = good, 3 = fair, 4 = poor, 5 = dead; rating of new shoots emergence: 1 = many, 2 = moderate, 3 = some, 4 = few, 5 = very few). Means with the same letter are not significantly different (Kruskal–Wallis test).
Figure 2 in Polychaete assemblages associated with the invasive green alga Avrainvillea amadelpha and surrounding bare sediment patches in Hawaii
Figure 2. nMDS ordinations of polychaete assemblages: A, using data of all taxa; B, bubbles indicating abundance in number of individuals; C, bubbles indicating values of Shannon–Wiener diversity; D, bubbles indicating values of Pielou's Evenness.
Figure 1 in Polychaete assemblages associated with the invasive green alga Avrainvillea amadelpha and surrounding bare sediment patches in Hawaii
Figure 1. Map of the study area showing the algae ('A' stations; circles) and sediment stations ('S' stations; squares).
Roy Tsuda, Jeanine Olsen and Jim Marsh (Wytze Stam back center) lunching and reminiscing at The Hau Tree, Kaimana Beach, Hawaii in 2011. in Tribute to Roy Toshio Tsuda (1939 - 2020)
Roy Tsuda, Jeanine Olsen and Jim Marsh (Wytze Stam back center) lunching and reminiscing at The Hau Tree, Kaimana Beach, Hawaii in 2011.
Figure 1 in First Report of African Fig Fly, Zaprionus indianus Gupta (Diptera: Drosophilidae), on the Island of Maui, Hawaii, USA, in 2017 and Potential Impacts to the Hawaiian Entomofauna
Figure 1. Thorax (a) and front tibia (b) of Zaprionus indianus collected on Maui. The lack of a white spot on the scutellum, and the presence of tibial spines, separates this species from Zaprionus ghesquierei.
Figure 3 in A Second Adventive Species of Pinhole-borer on the Islands of Oahu and Hawaii (Coleoptera: Curculionidae: Platypodinae)
Figure 3. Locations where Euplatypus parallelus has been collected on the island of Oahu. (A) The forested hillside on Palikea Trail, in the Waianae mountains. (B) Lindgren-funnel trap in place at the collecting locality. (C) View of the forested Manoa valley hillsides surrounding the university campus. (D) Gilmore Hall at the University of Hawaii at Manoa campus, Honolulu. Photographs by C.P.D.T. Gillett.
Figure 2 in A Second Adventive Species of Pinhole-borer on the Islands of Oahu and Hawaii (Coleoptera: Curculionidae: Platypodinae)
Figure 2. Map showing localities where Euplatypus parallelus has been recorded on the islands of (A) Oahu, (B) Maui, and (C) Hawaii. Collection localities indicated by black stars.
Figure 1 in A Second Adventive Species of Pinhole-borer on the Islands of Oahu and Hawaii (Coleoptera: Curculionidae: Platypodinae)
Figure 1. Species of Platypodinae recorded from Hawaii. (A) Male and (B) female of Euplatypus parallelus collected on Oahu in September 2017. (C) Male and (D) female of Crossotarsus externedentatus collected on Hawaii. Specimens deposited in UHIM. Photographs by C.P.D.T. Gillett.
Figure 4 in Capture of Mediterranean Fruit Flies and Melon Flies (Diptera: Tephritidae) in Food-Baited Traps in Hawaii
Figure 4. Numbers of female and male C. cucurbitae captured in Multilure traps baited with torula yeast/borax pellets (TY) or Ceratrap (CT) over the 6-week sampling period in January–February 2015. Bar heights represent averages of 15 traps per bait type; whiskers represent + 1 SE.
Figure 2 in Trapping Sweetpotato Weevil, Cylas formicarius (Coleoptera: Brentidae), with High Doses of Sex Pheromone: Catch Enhancement and Weathering Rate in Hawaii
Figure 2. Effect of lure loading on trap catch over one week of weathering. Average (± SEM) male sweetpotato weevil catch per trap per week in sweetpotato fields in the vicinity of Pepeekeo, Hawaii, in traps baited with one of three different loadings of male sweetpotato weevil attractant. Catch results are from the first week following initial trap deployment with five traps for each loading, deployed in a randomized complete block design (average of three separate trials). Bars labeled with the same letter are not significantly different at the α = 0.05 level.
Figure 1 in Trapping Sweetpotato Weevil, Cylas formicarius (Coleoptera: Brentidae), with High Doses of Sex Pheromone: Catch Enhancement and Weathering Rate in Hawaii
Figure 1. Map of weathering trial showing locations of fields where traps with lures were placed (developed using ArcGIS [ESRI 2012]). Traps were initially deployed at Site 1 on 14 February, 2012, and moved on to Sites 2, 3, 4, and 5 over the course of the weathering trial. The weathering time of the traps at each site was as follows: (Site 1) first 8 weeks; (Site 2) weeks 9–16; (Site 3) weeks 17–24; (Site 4) weeks 25–40; and (Site 5) week 41 (assessment). A weather station was maintained over the course of the weathering trial and was located at Site 2 for the first 16 weeks and then located at the location of the filled circle on the map for the remaining weeks of the trial.
Figure 4. Trial 4 in Trapping Sweetpotato Weevil, Cylas formicarius (Coleoptera: Brentidae), with High Doses of Sex Pheromone: Catch Enhancement and Weathering Rate in Hawaii
Figure 4. Trial 4 results: Effect of weathering over 40 weeks on trap catch. Decline in sweetpotato weevil catch/trap/week over 40 weeks in traps baited with (A) septum holding 1.0 mg male lure (see text for calculated exponential decay curve), and (B) septum holding 120 μg male lure (see text for calculated exponential decay curve). Calculated septum age where catch is 50% of fresh catch is presented for each curve.
Figure 2 in Hylaeus (Nesoprosopis) mamo (Hymenoptera: Colletidae), a New Endemic Bee from Oahu, Hawaii
Figure 2. Hylaeus makaha, ♂. A) Lateral habitus. B) Head, frontal view. C) Left antennal scape, frontal view. D) Scape, lateral view. E) Genital capsule, ventral view. F) Seventh sternum, ventral view. G–I) Eighth sternum, ventral, lateral, and caudal views.
Figure 4. Xylosandrus compactus boring coffee berries around the blossom area. X. compactus boring a in First Report of Exploitation of Coffee Beans by Black Twig Borer (Xylosandrus Compactus) and Tropical Nut Borer (Hypothenemus obscurus) (Coleoptera; Curculionidae: Scolytinae) in Hawaii
Figure 4. Xylosandrus compactus boring coffee berries around the blossom area. X. compactus boring a coffee berry (A, left), hole made by X. compactus on the endosperm (B, right); galleries or immature stages were not found.
Figure 2 in First Report of Exploitation of Coffee Beans by Black Twig Borer (Xylosandrus Compactus) and Tropical Nut Borer (Hypothenemus obscurus) (Coleoptera; Curculionidae: Scolytinae) in Hawaii
Figure 2. Gallery of Xylosandrus compactus in coffee branches. Xylosandrus compactus female adults (left) and immature stages (right).
Figure 1. A in Forcipomyia hardyi (Diptera: Ceratopogonidae), a Potential Pollinator of Cacao (Theobroma cacao) Flowers in Hawaii
Figure 1. A. Flypaper pinned underneath of cacao flower and buds. B. Ethanol-preserved female F. hardyi identified by Frank Howarth. C. Flypaper trap containing two ants and one midge; arrowhead indicates pollen. D. Cacao flower showing presence of ants and aphids. E. Dorsal view of live F. hardyi. F. Lateral view of live F. hardyi; arrowhead indicates pollen; scale bar = 0.5 mm. G. Freshly opened cacao flower showing style surrounded by staminodes; scale bar = 1 mm. H. Pollinated cacao flower showing outwardly-recurved staminodes; arrowhead indicates pollen.
Figure 3 in First Report of Exploitation of Coffee Beans by Black Twig Borer (Xylosandrus Compactus) and Tropical Nut Borer (Hypothenemus obscurus) (Coleoptera; Curculionidae: Scolytinae) in Hawaii
Figure 3. Damage symptoms of X. compactus in coffee branches. First leaves turn light green (A, left), then the wilted leaves and bark beyond the affected area turn brown or black (B, right).
Fig. 1 in Captures of oriental fruit flies and melon flies (Diptera: Tephritidae) in traps baited with torula yeast borax solution or 2- or 3-component synthetic food cones in Hawaii
Fig. 1. Captures of wild Bactrocera dorsalis in traps baited with torula yeast borax solution, 2-component cones, or 3-component cones. Symbols represent means (± 1 SE); N = 12 traps per treatment per weathering interval.
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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)
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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.