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”
Image 6 in First record of two Pentatomidae bugs from Chandoli area, Kolhapur, Maharashtra, India
Image 6. Andrallus spinidens: abdomen (ventral view) showing characteristic pattern of black coloration and coarse punctures.
Image 3a in First record of two Pentatomidae bugs from Chandoli area, Kolhapur, Maharashtra, India
Image 3a. Andrallus spinidens: close up of head and pronotum. Dorsal view showing lateral pronotal spines and impunctate pale line joining the two, crenulations of lateral border and pattern of black punctures near pronotal calli
Image 4 in First record of two Pentatomidae bugs from Chandoli area, Kolhapur, Maharashtra, India
Image 4. Andrallus spinidens: scutellum close up showing relatively dark coarse punctures in basal area and clear central line as well as an apical colorless area with punctures
UAV bugs dataset and taxonomy
<p>This data set contains 569 real world bugs, 168 UAV-specific bugs and their taxonomy. Our replication package consists of two maim folders:bugSet and bugTaxonomy</p> <p>bugSet</p> <p>In this folder we have placed all the bugs that we have indentified from PX4 and Ardupilot on GitHub. Data collection process is explained in detail in Section 3.1 of the paper. Each line in bugSet.xlsx provides project name and the link of 569 real-world bugs.</p> <p>bugTaxonomy</p> <p>Our manual analysis was conducted in 3 iterations(Section 3.2 in the paper). In each file(3 iterations) we provide the following information: (a) Project name;(b)Bug link; (c)bug label or bug description.</p>
Figure 9-10 in The lace bug Cochlochila bullita (Stål) (Heteroptera: Tingidae), a potential pest of Orthosiphon stamineus Bentham (Lamiales: Lamiaceae) in Malaysia
Figure 9-10. Adults of C. bullita. 9) Dorsal view of a female (left) and male (right). 10) Ventral view of female with an ovipositor (left) and male with a rounded genital capsule (right).
Figure 5-8 in The lace bug Cochlochila bullita (Stål) (Heteroptera: Tingidae), a potential pest of Orthosiphon stamineus Bentham (Lamiales: Lamiaceae) in Malaysia
Figure 5-8. Life stages of C. bullita. 5) Eggs inserted along midrib of a leaf. 6) A cluster of eggs inserted in a shoot. 7) An egg of C. bullita. 8) Five nymphal stages of C. bullita.
Figure 1-4 in The lace bug Cochlochila bullita (Stål) (Heteroptera: Tingidae), a potential pest of Orthosiphon stamineus Bentham (Lamiales: Lamiaceae) in Malaysia
Figure 1-4. Feeding and damage of C. bullita. 1) Adult of C. bullita feeding on O. stamineus. 2) Wilted shoot caused by C. bullita. 3) Nymphs of C. bullita feeding gregariously on O. stamineus. 4) Seriously damaged O. stamineus.
Figures 15–18 in Tropidosteptes forestierae (Hemiptera: Heteroptera: Miridae: Mirinae): New Species of Plant Bug Injuring Ornamental Florida Swampprivet Forestiera segregata (Oleaceae), in South Florida
Figures 15–18. Tropidosteptes forestierae on host plant. 15) Adults and nymph showing feeding injury and black spots of excrement. 16) Egg inserted into host tissue. 17) Partially defoliated F. segregata hedge resulting from feeding by T. forestierae. 18) Healthy F. segregata hedge.
Figures 1–3. Tropidosteptes forestierae. 1 in Tropidosteptes forestierae (Hemiptera: Heteroptera: Miridae: Mirinae): New Species of Plant Bug Injuring Ornamental Florida Swampprivet Forestiera segregata (Oleaceae), in South Florida
Figures 1–3. Tropidosteptes forestierae. 1) Adult male, dorsal aspect. 2) Adult female, dorsal aspect. 3) Fifth instar, dorsal aspect.
Figures 9–11. Scanning electron photomicrographs. 8 in Tropidosteptes forestierae (Hemiptera: Heteroptera: Miridae: Mirinae): New Species of Plant Bug Injuring Ornamental Florida Swampprivet Forestiera segregata (Oleaceae), in South Florida
Figures 9–11. Scanning electron photomicrographs. 8) Head, frontal aspect. 9) Ostiolar evaporative area. 10) Male genital capsule, caudal aspect. 11) Claw.
Figures 4–7. Scanning electron photomicrographs. 4 in Tropidosteptes forestierae (Hemiptera: Heteroptera: Miridae: Mirinae): New Species of Plant Bug Injuring Ornamental Florida Swampprivet Forestiera segregata (Oleaceae), in South Florida
Figures 4–7. Scanning electron photomicrographs. 4) Full dorsal aspect. 5) Full lateral aspect. 6) Head and pronotum, dorsal aspect. 7) Head and pronotum, lateral aspect.
Figs 1–3 in Oblongiala zimbabwensis, a new assassin bug genus and species from Zimbabwe, with a key to the Afrotropical genera of Peiratinae (Hemiptera: Heteroptera: Reduviidae)
Figs 1–3. Oblongiala zimbabwensis sp. nov., holotype, J, habitus. 1 – dorsal view; 2 – lateral view; 3 – ventral view. Scale bar: 2.00 mm.
Figs 13–21 in Oblongiala zimbabwensis, a new assassin bug genus and species from Zimbabwe, with a key to the Afrotropical genera of Peiratinae (Hemiptera: Heteroptera: Reduviidae)
Figs 13–21. Male genitalia of Oblongiala zimbabwensis sp. nov., holotype. 13 – pygophore, ventral view; 14 – same, caudal view; 15 – same, lateral view; 16 – left paremere, outer ventrolateral view; 17 – right paramere, outer ventrolateral view; 18 – phallus, dorsal view; 19 – same, ventral view; 20 – same, lateral view; 21 – same, lateral view. Scale bar: 0.50 mm (Figs 13–15), 0.40 mm (Figs 16–21).
Figs 4–12 in Oblongiala zimbabwensis, a new assassin bug genus and species from Zimbabwe, with a key to the Afrotropical genera of Peiratinae (Hemiptera: Heteroptera: Reduviidae)
Figs 4–12. Oblongiala zimbabwensis sp. nov., holotype, J. 4 – antennal pedicel, lateralview; 5 – anterior part of body with antennae and legs removed, dorsal view; 6 – same, lateral view; 7 – same, ventral view; 8 – left fore leg, ventral view; 9 – right middle leg, ventral view; 10 – right hemelytron, dorsal view; 11 – abdomen, ventral view; 12 – same, caudal view. Scale bar: 1.50 mm.
Fig. 5 in The monocotyledon-feeding lace bugs of the genus Agramma from Japan (Hemiptera: Heteroptera: Tingidae)
Fig. 5.Collection sites of two species of Agramma from Japan used for present study. Red icon = A. abruptifrons Golub, 1990; green icons = A. japonicum. Circle = type locality; triangles = other localities.
Fig 4. A, B in The monocotyledon-feeding lace bugs of the genus Agramma from Japan (Hemiptera: Heteroptera: Tingidae)
Fig 4. A, B – habitus images of living adults (photographs taken indoor) for A. abruptifrons Golub, 1990 from Mie, Honshu, Japan. C – host plant (Juncus sp.) for A. abruptifrons at Mie, Honshu, Japan. D, E – habitus images of a living adult and a living fifth instar nymph (photographs taken indoors) for A. japonicum (Drake, 1948) from Hokkaido, Japan. F – host plant (Carex sp.) for A. japonicum from Hokkaido, Japan.
Fig. 3.A, D in The monocotyledon-feeding lace bugs of the genus Agramma from Japan (Hemiptera: Heteroptera: Tingidae)
Fig. 3.A, D – heads and pronota, dorsal view: B, C, E, F – parameres and pygophores, dorsal view:A, B, C – A. abruptifrons Golub, 1990; D, E, F – A. japonicum (Drake, 1948). Scale bars: A, D = 0.2 mm; B, C, E, F = 0.1 mm
Fig 1A–J in The monocotyledon-feeding lace bugs of the genus Agramma from Japan (Hemiptera: Heteroptera: Tingidae)
Fig 1A–J. Two species of Agramma from Japan, dorsal and lateral views:A–E – A. abruptifrons Golub, 1990: A, B – macropterous female, C, D – submacropterous female, E – macropterous male with segmental oligomery of right antenna. F–J – A. japonicum (Drake, 1948): F, G – macropterous male, H, I – submacropterous male, J – submacropterous female. Scale bar = 1.0 mm.
Fig. 2. A–B in The monocotyledon-feeding lace bugs of the genus Agramma from Japan (Hemiptera: Heteroptera: Tingidae)
Fig. 2. A–B – rostra and sternal laminae, ventral view: A – A. abruptifrons Golub, 1990; B – A. japonicum (Drake, 1948). C–H – apical part of abdomen, ventral view: C, F, G – A. abruptifrons: C – macropterous male, F – macropterous female, G – submacropterous female; D, E, H – A. japonicum: D – macropterous male, E – submacropterous male, H – submacropterous female. Scale bars = 0.2 mm.
Figure 1 in Novel trophobiotic interactions in lantern bugs (Insecta: Auchenorrhyncha: Fulgoridae)
Figure 1. Trophobiotic interactions of lantern bugs (Fulgoridae) with insects and snails. (a) Lantern bug, Enchophora sanguinea, with two simultaneous moth guests (small Platynota sp. and larger Elaeognatha argyritis); (b) Enchophora sanguinea tended by cockroach, Eurycotis sp. 1; (c) Enchophora sanguinea with a trophobiotic snail, Euglandina aurantiaca, and kleptotrophobiotic ant, Camponotus sp. n.; (d) snail, E. aurantiaca, catching a droplet of honeydew (red arrow) ejected by Enchophora sanguinea; (e) moth, Euclystis proba, waiting for a stream of honeydew; (f) snail, Euglandina aurantiaca, with lantern bug Phrictus quinquepartitus; (g) moth, Elaeognatha argyritis tapping Enchophora sanguinea with its antennae, which elicits immediate honeydew production; (h) lantern bug E. sanguinea squirting honeydew—this photograph shows a single droplet exposed multiple times with a stroboscopic flash.
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.