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372 results for “hawaii”
Figure 1. a in Ramie Moth, Arcte coerula (Lepidoptera: Noctuidae): A New Invasive Pest in Hawaii on Endemic Plants
Figure 1. a. Distribution (red dots) of Arcte coerula on the island of Maui: 1 Kahakuloa, 2 ʻĪao Valley, 3 Waikapū, 4 Olowalu, 5 Olinda, 6 Kēōkea; b. Distribution (red dots) of A. coerula on the island of Hawaii: 1 Honokaʻa, 2 Pāpaʻikou, 3 Hilo, 4 Mountain View, 5 Pāhoa, 6 Kalapana, 7 Volcano, 8 Pāhala.
Figure 3 in Ramie Moth, Arcte coerula (Lepidoptera: Noctuidae): A New Invasive Pest in Hawaii on Endemic Plants
Figure 3. First instar larva of Arcte coerula. Black markings (arrow) on its side distinguish these larvae from other Lepidoptera that also use māmaki as a food source.
Figure 7. a in Ramie Moth, Arcte coerula (Lepidoptera: Noctuidae): A New Invasive Pest in Hawaii on Endemic Plants
Figure 7. a. Fifth instar yellow morph Arcte coerula larva; b. Fifth instar black morph A. coerula larva.
Figure 1 in Weathering of Torula Yeast Borax Food Bait and Capture of Oriental, Mediterranean, and Melon Fruit Flies in Hawaii (Diptera: Tephritidae)
Figure 1. Captures of oriental fruit flies (males and females combined) in Multilure traps baited with torula yeast borax weathered 3, 6, 9, or 12 d. Traps operated for 2 d at weekly intervals over 8 consecutive weeks. Symbols represent means + 1 SE (N = 10 traps/treatment/sampling period).
Figure 3 in Weathering of Torula Yeast Borax Food Bait and Capture of Oriental, Mediterranean, and Melon Fruit Flies in Hawaii (Diptera: Tephritidae)
Figure 3. Captures of melon flies (males and females combined) in Multilure traps baited with torula yeast borax weathered 3, 6, 9, or 12 d. Traps operated for 2 d at weekly intervals over 4 consecutive weeks. Symbols represent means + 1 SE (N = 10 traps/treatment/sampling period).
Figure 4. a in Ramie Moth, Arcte coerula (Lepidoptera: Noctuidae): A New Invasive Pest in Hawaii on Endemic Plants
Figure 4. a. First instar larva of Vanessa tameamea; b. Larvae typically found in a tent-like protective structure at the edge of a leaf. Photo courtesy of DLNR-DOFAW.
Figure 3 in Response of Invasive Longhorn Beetles (Coleoptera: Lamiinae) to Known Cerambycid Aggregation-Sex Pheromones in the Puna District of Hawaii Island
Figure 3. Mean (± SE) numbers of PLB (Lagocheirus obsoletus) caught in traps baited with solvent control, fuscumol acetate, or monochamol (experiment 1). Means with an asterisk are significantly different than the solvent control (max-t test, p <0.05).
Figure 5 in Contribution of Insect Pollination to Macadamia integrifolia Production in Hawaii
Figure 5. Mean (± SE) macadamia nut yield for open-pollination and insect exclusion treatments for year I and II combined. Bars with different letters were significantly different (P <0.0001) Students t-test.
Figure 2 in Response of Invasive Longhorn Beetles (Coleoptera: Lamiinae) to Known Cerambycid Aggregation-Sex Pheromones in the Puna District of Hawaii Island
Figure 2. Mean (± SE) numbers of QLB (Acalolepta aesthetica) caught in traps baited with solvent control, fuscumol, fuscumol acetate, geranylacetone, or a blend of the three compounds (experiment 2). There were no significant differences between the treatments and the solvent control (max-t test, p> 0.05).
Figure 2 in Contribution of Insect Pollination to Macadamia integrifolia Production in Hawaii
Figure 2. (A) Immature macadamia inflorescence, (B) macadamia inflorescence one day before opening with a syrphid, Ornidia obesa, and (C) macadamia inflorescence that has flowers completely open with a honeybee, Apis mellifera.
Figure 4 in Contribution of Insect Pollination to Macadamia integrifolia Production in Hawaii
Figure 4. (A) Initial fruit set per raceme at 14 days after flowering, and (B) fruit retention at 2 months (2010, n = 10) and 3 months (2011, n = 40) after flowering (means ± SE). Bars with different letters (within a year) were significantly different (P <0.001), Students t-tests.
Figure 2 in Field Capture of Male Melon Flies, Bactrocera cucurbitae (Coquillett), in Jackson Traps Baited with Cue-Lure Versus Raspberry Ketone Formate in Hawaii
Figure 2. Number of B. cucurbitae males captured in Jackson traps baited with cue-lure (CL) liquid (●) versus raspberry ketone formate (RKF) liquid (○) at four study sites on Oahu, Hawaii. At each site, 15 traps of each treatment were operated 1 day per week over 6 consecutive weeks. Symbols represent means (+ 1 SE, n = 15).
Figure 1 in Contribution of Insect Pollination to Macadamia integrifolia Production in Hawaii
Figure 1. Map of orchard at the University of Hawaii Waimanalo Research Station showing transect route.
Figure 1 in Field Capture of Male Melon Flies, Bactrocera cucurbitae (Coquillett), in Jackson Traps Baited with Cue-Lure Versus Raspberry Ketone Formate in Hawaii
Figure 1. Number of B. cucurbitae males captured in Jackson traps baited with cue-lure (CL) liquid (●) versus raspberry ketone formate (RKF) plugs (○) at four study sites on Oahu, Hawaii. At each site, 15 traps of each treatment were operated 1 day per week over 6 consecutive weeks. Symbols represent means (+ 1 SE, n = 15).
Figure 1 in Response of Invasive Longhorn Beetles (Coleoptera: Lamiinae) to Known Cerambycid Aggregation-Sex Pheromones in the Puna District of Hawaii Island
Figure 1. Mean (± SE) numbers of QLB (Acalolepta aesthetica) caught in traps baited with solvent control, fuscumol acetate, or monochamol (experiment 1). There were no significant differences between the treatments and the solvent control (max-t test, p> 0.05).
Figure 4 in Response of Invasive Longhorn Beetles (Coleoptera: Lamiinae) to Known Cerambycid Aggregation-Sex Pheromones in the Puna District of Hawaii Island
Figure 4. Mean (± SE) numbers of PLB (Lagocheirus obsoletus) caught in traps baited with solvent control, fuscumol, fuscumol acetate, geranylacetone, or a blend of the three compounds (experiment 2). Means with an asterisk are significantly different than the solvent control (max-t test, p <0.05).
Figure 3 in Contribution of Insect Pollination to Macadamia integrifolia Production in Hawaii
Figure 3. Progression of a macadamia flower: (A) macadamia flower one day before opening with its pistil beginning to emerge from perianth and creating a loop, (B) macadamia flower that has just opened, note pollen on the stigma, (C) two days old, note stigma is free of pollen, (D) three days old, and (E) four days old, petaloid sepals have turned brown and will soon drop off. Stigma is receptive around 2–3 days.
Fig. 4 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. 4. Mean leaf gall infestation level on new shoots associated with chemical treatments and untreated control (1–5, where 1 = no infestation and 5 = severe infestation), where * indicates P ≤ 0.05 and ** indicates P ≤ 0.01 within each sampling month (Kruskal–Wallis test).
Fig. 5 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. 5. Mean ratings of tree health condition (A) and mean ratings of new shoot emergence (B) 14 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).
Fig. 2 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. 2. Mean stem gall infestation levels on new shoots associated with chemical treatments and untreated control (1–5, where 1 = no infestation and 5 = severe infestation), where * indicates P ≤ 0.05 and ** indicates P ≤ 0.01 within each sampling month (Kruskal–Wallis test).
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.