Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
2,567
datasets available to search
ShareScore release 0.9.0
Dataset results
2,567 results for “bugs”
Fig 4 in Spatiotemporal distribution of stink bugs (Hemiptera: Pentatomidae) in peach orchards and surrounding habitat
Fig 4. Interpolated maps of Euschistus tristigmus adult distributions in peach orchards and surrounding habitat early season (wk 1), mid-season (wk 8), and late season (wk 12) in 2002 and 2003.
Fig. 1 in Volatile compounds emitted by the stink bug Antiteuchus innocens (Hemiptera: Pentatomidae)
Fig. 1. Typical gas chromatograms of volatile compounds released by disturbed females (A) and fifh instar nymphs (B), or produced by the dorsal gland of fifh instar nymphs (C). For an explanation of peak numbers see Tables 1 and 2.
Fig. 2 in Spatiotemporal distribution of stink bugs (Hemiptera: Pentatomidae) in peach orchards and surrounding habitat
Fig. 2. Seasonal capture of Euschistus servus and Euschistus tristigmus in pheromone-baited traps; (A) mean number of E. servus and E. tristigmus per pheromonebaited trap in peach and non-crop habitat over time in 2002; (B) mean number of E. servus and E. tristigmus per pheromone-baited trap in peach and surrounding habitat over time in 2003.
Fig 3 in Spatiotemporal distribution of stink bugs (Hemiptera: Pentatomidae) in peach orchards and surrounding habitat
Fig 3. Interpolated maps of Euschistus servus adult distributions in peach orchards and surrounding non-crop habitat early season (wk 1), mid-season (wk 8), and late season (wk 12) in 2002 and 2003.
Fig. 1 in Spatiotemporal distribution of stink bugs (Hemiptera: Pentatomidae) in peach orchards and surrounding habitat
Fig. 1. Spatiotemporal distribution patterns of Euschistus servus and Euschistus tristigmus: (A) number of traps in which E. servus and E. tristigmus were present in peach and surrounding habitat; (B) number of traps in which stink bugs were present over the season in peach and surrounding habitat.
Fig. 2 in Survey of Florida olive groves during olive fruit development: monitoring for stink bugs and olive fruit flies
Fig. 2. Comparison of type of stink bug on total monthly collection (mean ± SE) from 2017 and 2018 of (A) Hemiptera, and (B) Euschistus quadrator Rolston. Lures consisted of either a consperse stink bug lure or a combination of green stink bug and brown marmorated stink bug lures. Statistical comparisons were made with a paired t-test (P ≤ 0.05); means with different letters are significantly different.
Fig. 1 in Survey of Florida olive groves during olive fruit development: monitoring for stink bugs and olive fruit flies
Fig. 1. Diagram of (A) trap locations in Florida olive groves, and (B) spatial identifiers used to characterize the locations for analysis. The large rectangle represents a 4-ha area surveyed; each white box represents a 1-ha subplot. Each circle represents a sampling location where 1 baited olive fruit fly trap and 2 dual funnel stink bug traps, 1 baited for the brown marmorated stink bug and 1 baited for the consperse stink bug were placed during each sampling visit. Spatial identifiers for sampling sites included: COR = corner site, CEN = center site, ER = edge of the grove site and bordered by olive trees on 3 sides of the tree, END = site located at the end of a row, but not a corner. Image from Google Maps.
Fig. 2 in A new pentatomoid bug from the Ypresian of Patagonia, Argentina
Fig. 2. Ventral habitus of female of pentatomoid bug Chinchekoala qunita gen. et sp. nov., holotype MPEF-PI 944b from Laguna del Hunco (Chubut, Argentina); Ypresian, lower Eocene. Photograph (A), camera lucida drawing (B).
Fig. 3 in A new pentatomoid bug from the Ypresian of Patagonia, Argentina
Fig. 3. Details of dorsal habitus of female of pentatomoid bug Chinchekoala qunita gen. et sp. nov., holotype MPEF-PI 944a from Laguna del Hunco (Chubut, Argentina); Ypresian, lower Eocene. Head (A), eye (B), last tergites (C).
Fig. 1 in A new pentatomoid bug from the Ypresian of Patagonia, Argentina
Fig. 1. Dorsal habitus of female of pentatomoid bug Chinchekoala qunita gen. et sp. nov., holotype MPEF-PI 944a from Laguna del Hunco (Chubut, Argentina); Ypresian, lower Eocene. Photograph (A), camera lucida drawing (B).
Fig. 4 in A new pentatomoid bug from the Ypresian of Patagonia, Argentina
Fig. 4. Details of ventral habitus of female of pentatomoid bug Chinchekoala qunita gen. et sp. nov., holotype MPEF-PI 944b from Laguna del Hunco (Chubut, Argentina); Ypresian, lower Eocene. Head (A), thoracic scent efferent system (B), genitalia (C).
Fig. 1 in Wasp mimicry among Palaeocene reduviid bug from Svalbard
Fig. 1. Representative assassin bugs of the subfamily Saicinae (Reduviidae), Recent (A–D) and fossil (E) specimens. A. Tagalis inornata Stål, 1860. B. Polytoxus wahlbergi Stål, 1855. C. Saica tibialis Stål, 1862. D. Uncoated ESEM on the wings of Tagalis sp. (det. Christiane Weirauch). E. Hymenopterites Heer, 1870, coll. No. Ar 46. Holotype specimen with orginal labeling from Alfred Erik Nordenskiöld (E1). Specimen photographed un− der normal light conditions (E2) and under alcohol (E3). F. Line drawing of forewing. Scale bars 1 mm.
Fig. 1 in Density and egg parasitism of stink bugs (Hemiptera: Pentatomidae) in mimosa
Fig. 1. Mean number of C. hilaris egg masses, nymphs, and adults on mimosa over time in 2013, 2014, 2015, 2017, and 2018, and percentage of senesced pods over time in mimosa in 2017 and 2018. G = green pod; S = senesced pod; s = small-sized seeds in pods; M = medium-sized seeds in pods; L = large seeds in pods.
Fig. 2 in Bugs carry pollen too: pollination efficiency of plant bug Pseudatomoscelis seriatus (Hemiptera: Miridae) visiting cotton flowers
Fig. 2. Pollination of cotton, Gossypium hirsutum, by cotton fleahopper, Pseudatomoscelis seriatus: (A) number of seeds per fruit among pollination treatments; (B) seed mass per fruit among pollination treatments; (C) lint weight per fruit among pollination treatments. Bars represent treatment means and error bars represent ± standard error of the mean. Treatment means listed with the same letter are not significantly different (P> 0.05).
Fig. 1 in Bugs carry pollen too: pollination efficiency of plant bug Pseudatomoscelis seriatus (Hemiptera: Miridae) visiting cotton flowers
Fig. 1. Photographs of a cotton fleahopper, Pseudatomoscelis seriatus, taken under a dissecting microscope (A) foraging on a cotton, Gossypium hirsutum, stigma, and (B) carrying cotton pollen grains.
Fig. 1 in Biodiversity, bugs, and barcodes: the Cicadellidae associated with grassland and phytoplasmas in the Sabana de Bogotá, Colombia
Fig. 1. Accumulation curves for the observed species (S) and for the non-parametric estimators Chao 2, Jack 1 = Jackknife 1, Jack 2 = Jackknife 2, and Bootstrap from Universidad Nacional de Colombia (UNAL) and Universidad Militar Nueva Granada (UMNG).
Fig. 3 in Biodiversity, bugs, and barcodes: the Cicadellidae associated with grassland and phytoplasmas in the Sabana de Bogotá, Colombia
Fig. 3. COI gene neighbor joining tree using Kimura-two-parameter (K2P) with 1,000 Bootstrap. The tree includes 77 leafopper sequences. Red Circles indicate the sequences of species captured at Universidad Militar Nueva Granada (UMNG) and triangles at Universidad Nacional de Colombia (UNAL).
Fig. 2 in Biodiversity, bugs, and barcodes: the Cicadellidae associated with grassland and phytoplasmas in the Sabana de Bogotá, Colombia
Fig. 2. Capture rate per month of Exitianus atratus, Amplicephalus funzaensis, Borogonalia impressifrons, Dalbulus sp., and Haldorus sp. at Universidad Nacio- nal de Colombia (UNAL) and Universidad Militar Nueva Granada (UMNG).
Linked collectors and determiners for: Description of eight new species of the traumatically inseminating plant bug genus Coridromius (Heteroptera: Miridae: Orthotylinae: Coridromini).
Natural history specimen data linked to collectors and determiners held within, "Description of eight new species of the traumatically inseminating plant bug genus Coridromius (Heteroptera: Miridae: Orthotylinae: Coridromini)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/cb8a8038-f5a4-4803-a5fa-dba5f11f15d2">https://bionomia.net/dataset/cb8a8038-f5a4-4803-a5fa-dba5f11f15d2</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/cb8a8038-f5a4-4803-a5fa-dba5f11f15d2">https://gbif.org/dataset/cb8a8038-f5a4-4803-a5fa-dba5f11f15d2</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Revision and Phylogeny of the Eccritotarsine Plant Bug Genus Caulotops Bergroth, with Descriptions of Four New Genera and 14 New Species (Hemiptera Heteroptera: Miridae: Bryocorinae) Associated with Agave (Agavoideae Asparagaceae) and Related Plant Genera.
Natural history specimen data linked to collectors and determiners held within, "Revision and Phylogeny of the Eccritotarsine Plant Bug Genus Caulotops Bergroth, with Descriptions of Four New Genera and 14 New Species (Hemiptera Heteroptera: Miridae: Bryocorinae) Associated with Agave (Agavoideae Asparagaceae) and Related Plant Genera". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/be5e4bdb-a5e2-48f0-bc0c-3c27ddb7a1cf">https://bionomia.net/dataset/be5e4bdb-a5e2-48f0-bc0c-3c27ddb7a1cf</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/be5e4bdb-a5e2-48f0-bc0c-3c27ddb7a1cf">https://gbif.org/dataset/be5e4bdb-a5e2-48f0-bc0c-3c27ddb7a1cf</a>. Formatted as a Frictionless Data package.
ScienceDex guides
Understand access before you commit
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.