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.
769
datasets available to search
ShareScore release 0.7.1
Dataset results
769 results for “scale insects”
FIGURE 3 in Archaeococcoid scale insects (Hemiptera: Coccoidea) from the tropical high mountains of the Andean Cordillera, South America
FIGURE 3. First-intar nymph of Crypticerya abrahami (Newstead). Where: A = prothoracic leg; B = thoracic spiracle; C = dorsal hexagonal multilocular pore; D = anal tube; E + F = multilocular pores and polygonal wax pores at inner end of anal tube; G = multilocular pore on dorsum and venter; H = quadrilocular pore on venter; I = posteroventral circular cicatrix; J = 3 pairs of long caudal setae, median pair represent shorter collared setae; K = dorsal hair-like setae; L = collared setae on margin; M = antenna; N = eye; O = hair-like setae on margin.
FIGURE 6 in Archaeococcoid scale insects (Hemiptera: Coccoidea) from the tropical high mountains of the Andean Cordillera, South America
FIGURE 6. Adult female of Paramoandesia ecuadorensis Foldi n. sp. Where: A = antenna; B = multilocular pore with oval centre; C = dorsal hair; D = flagellate seta; E = dorsal multilocular pore with quadrate centre; F = multilocular pore with triangular centre; G = hair on abdomen; H = minute circular pore with irregular opening; I = marginal hair-like seta; J = abdominal spiracle with atrial pores; K = multilocular pore with quadrate centre surrounding vulvar opening; L = mosaic-like structure on intersegmantal membrane; M = metathoracic claw; N = thoracic spiracles with perispiracular pores.
FIGURE 1 in Archaeococcoid scale insects (Hemiptera: Coccoidea) from the tropical high mountains of the Andean Cordillera, South America
FIGURE 1. Adult female of Corandesia kozári Foldi n. sp. Where: A = apical antennal segment; B = straight and curved stout spiniform setae; C = multilocular pore with oval centre; D = dorsal hair; E = hair-like seta; F = multilocular pores with large triangular outer loculi; G = anal tube; H = long hair-like seta; I = cicatrices; J = multilocular pore with triangular centre; K = abdominal spiracle; L = sclerotised dermal plates; M = spinules; N = multilocular pore with triangular centre; O = flagellate seta; P = thoracic spiracle with atrial pores; R = multilocular pore with six elongated narrow outer loculi and trilocular centre.
FIGURE 9 in Archaeococcoid scale insects (Hemiptera: Coccoidea) from the tropical high mountains of the Andean Cordillera, South America
FIGURE 9. Preadult female of Mimosicerya williamsi Foldi n. sp. Where: A = raised pore; B = hair-like seta; C = stout conical spine; D = antenna; E = short spiniform seta; F = slender flagellate seta; G = hair; H = multilocular pore with quadrate centre; J = anal tube with polygonal wax pores (K) and multilocular pore with triangular centre (L); M = raised pore; O = abdominal spiracle with minute spiniform setae (N), plus cruciform pore (P) and multilocular pore (R); S = multilocular pore with triangular centre; T = spinules; U = tubular pore; V = cicatrix; W = tibia+ tarsus + claw of metathoracic leg; X = long hair with swollen apex on thorax; Y = stout conical spine; Z = thoracic spiracle with enlargement of simple pores and multilocular pores near peritreme.
FIGURE 8 in Archaeococcoid scale insects (Hemiptera: Coccoidea) from the tropical high mountains of the Andean Cordillera, South America
FIGURE 8. Adult female of Mimosicerya williamsi Foldi n. sp. Where: A = detail of sclerotised area; B = multilocular pore with triangular centre with 3 loculi and 10 triangular shaped outer loculi; C = multilocular pore with oval centre in the sclerotised area; D = spiniform setae from dorsum and venter; E = hair-like seta; F = flagellate seta; G = multilocular pores on dorsum and venter: H = slender hair-like seta; I = abdominal spiracle; J = anal tube; K = stout hair-like seta; L = hair; M = long hair-like setae medially; N = vestigial metathoracic leg; O = mesothoracic spiracle with perispiracular pores; P= antenna; R = conical spiniform seta.
FIGURE 6 in Molecular and morphological identification of pistachio armored scale insects (Hemiptera: Diaspididae), with description of a new species
FIGURE 6. Fifty percent majority rule consensus tree resulting from Bayesian analysis of the COI dataset. Numbers above branches are posterior probability and likelihood as well as parsimony bootstrap values, respectively. Values <50 % are not shown.
FIGURE 5 in Molecular and morphological identification of pistachio armored scale insects (Hemiptera: Diaspididae), with description of a new species
FIGURE 5. Second-instar female of Suturaspis davatchi Balachowsky & Kaussari, illustration by Hosseininaveh.
FIGURE 4 in Molecular and morphological identification of pistachio armored scale insects (Hemiptera: Diaspididae), with description of a new species
FIGURE 4. Adult female of Suturaspis davatchi Balachowsky & Kaussari, illustration by Hosseininaveh.
FIGURE 7 in Molecular and morphological identification of pistachio armored scale insects (Hemiptera: Diaspididae), with description of a new species
FIGURE 7. Fifty percent majority rule consensus tree resulting from Bayesian analysis of the 28S rDNA dataset. Numbers above branches are posterior probability and likelihood as well as parsimony bootstrap values, respectively. Values <50 % are not shown.
FIGURE 3. Greeniella calophylli Williams and Miller. A. Adult female, B. Pygidium, C. Pygidial margin, D. Antenna, E. & F in Scale insects (Hemiptera: Sternorrhyncha: Coccoidea) of the Krakatau Islands including species from adjacent Java
FIGURE 3. Greeniella calophylli Williams and Miller. A. Adult female, B. Pygidium, C. Pygidial margin, D. Antenna, E. & F. Two sizes of microducts, G. Gland spines.
FIGURE 2. Aulacaspis thorntoni Williams and Miller. A. Adult female, B. Pygidium, C. Median lobes, D. Anterior spiracle, E in Scale insects (Hemiptera: Sternorrhyncha: Coccoidea) of the Krakatau Islands including species from adjacent Java
FIGURE 2. Aulacaspis thorntoni Williams and Miller. A. Adult female, B. Pygidium, C. Median lobes, D. Anterior spiracle, E. Posterior spiracle.
FIGURE 5 in Scale insect fauna (Hemiptera: Sternorrhyncha: Coccoidea) of New Zealand's pygmy mistletoes (Korthalsella: Viscaceae) with description of three new species: Leucaspis albotecta, L. trilobata (Diaspididae) and Eriococcus korthalsellae (Eriococcidae)
FIGURE 5. Leucaspis trilobata Henderson sp. nov., adult female. Pupillarium with vignette of dorsal sclerotisation pattern.
FIGURE 2 in Scale insect fauna (Hemiptera: Sternorrhyncha: Coccoidea) of New Zealand's pygmy mistletoes (Korthalsella: Viscaceae) with description of three new species: Leucaspis albotecta, L. trilobata (Diaspididae) and Eriococcus korthalsellae (Eriococcidae)
FIGURE 2. Leucaspis albotecta Henderson sp. nov., adult female. Pupillarium with vignette of dorsal sclerotisation pattern.
FIGURE 1 in Scale insect fauna (Hemiptera: Sternorrhyncha: Coccoidea) of New Zealand's pygmy mistletoes (Korthalsella: Viscaceae) with description of three new species: Leucaspis albotecta, L. trilobata (Diaspididae) and Eriococcus korthalsellae (Eriococcidae)
FIGURE 1. New Zealand Korthalsella species in life. A, young fruiting K. clavata parasitic on Coprosma propinqua; B, flowering K. salicornioides parasitic on Leptospermum scoparium; C. fruiting K. lindsayi parasitic on Melicope simplex; D, Leucaspis trilobata sp. nov. on K. lindsayi.
FIGURE 12. Distribution map for Leucaspis albotecta, L in Scale insect fauna (Hemiptera: Sternorrhyncha: Coccoidea) of New Zealand's pygmy mistletoes (Korthalsella: Viscaceae) with description of three new species: Leucaspis albotecta, L. trilobata (Diaspididae) and Eriococcus korthalsellae (Eriococcidae)
FIGURE 12. Distribution map for Leucaspis albotecta, L. trilobata and Eriococcus korthalsellae in New Zealand.
FIGURE 1 in A new scale insect genus, Torosaspis (Hemiptera: Sternorrhyncha: Coccoidea: Diaspididae), with a new species, Torosaspis turcica, from Turkey
FIGURE 1. Torosaspis turcica sp. nov. a) adult female in situ on needle of Pinus brutia; b) adult female with test removed; c.) male test on needle of Pinus brutia.
FIGURE 1 in A study of the scale insect genera Puto Signoret (Hemiptera: Sternorrhyncha: Coccoidea: Putoidae) and Ceroputo Šulc (Pseudococcidae) with a comparison to Phenacoccus Cockerell (Pseudococcidae)
FIGURE 1. Diagnostic features of Puto as exemplified by the adult female of P. albicans McKenzie: (A) An antenna with pairs of intersegmental sensilla in the membranes between segments III–IV, IV–V and VI–VII, and (B) a hind leg with enlargements of the four campaniform sensilla on the (i) ventral and (ii) dorsal surfaces of the trochanter, and (iii) an enlargement of the claw showing the basal spur and claw digitules of one side (drawing by S.I. Han).
FIGURE 3 in New scale insect (Hemiptera: Sternorrhyncha: Coccoidea) records from Fiji: three new species, records of several new invasive species and an updated checklist of Coccoidea
FIGURE 3. Adult female Crystallotesta marika Hodgson & Łagowska, sp. n. Where A = stigmatic spine; B = dorsal microductule; C = minute simple pore in each reticulation line; D = larger simple pore in transverse reticulation lines just anterior to anal plates; E = largest simple pore near anal plates; F = marginal setae; G = anal plate; H = ventral view of anal plate; J = anal lobe seta; K = pregenital disc-pore; L = tarsus + claw; M = ventral submarginal simple pore; N = ventral tubular duct; P = ventral microduct; Q = spiracular disc-pore; R = preantennal pore, S = antenna, and X = side view of glassy test.
FIGURE 4 in New scale insect (Hemiptera: Sternorrhyncha: Coccoidea) records from Fiji: three new species, records of several new invasive species and an updated checklist of Coccoidea
FIGURE 4. Adult female Pseudaulacaspis pyrrosiae Hodgson & Łagowska, sp. n. Where A = small dorsal 2-barred ducts; B = large dorsal 2-barred ducts; C = dorsal view of posterior end of pygidium; D = ventral view of posterior end of pygidium; E = gland spine; F = variation in shape of median lobes; G = ventral microduct; H = ventral small 2-barred duct; J = anterior spiracle, and K = antenna.
FIGURE 2 in New scale insect (Hemiptera: Sternorrhyncha: Coccoidea) records from Fiji: three new species, records of several new invasive species and an updated checklist of Coccoidea
FIGURE 2. Adult female Paracoccus boumaensis Hodgson & Łagowska, sp. n. Where A = dorsal trilocular pore; B = dorsal oral-rim duct; C = dorsal setae; D = dorsal discoidal pore; E = dorsal multilocular pore; F = dorsal view of anal lobe; G = ventral view of anal lobe; H = ventral multilocular pore; J = claw; K = metatibia; L = larger oral-collar duct; M = smaller oral collar duct; N = metacoxa; P = ventral discoidal pore; Q = ventral trilocular pore.
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.