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.
935
datasets available to search
ShareScore release 0.7.1
Dataset results
935 results for “Lacewings”
FIGURE 10 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 10. Longhead larva preserved in Myanmar amber, specimen BuB 10; all composite images. A, Habitus in dorsal view, non-polarised ring light on black background. B, Close-up; distal part of a locomotory appendage, with trumpet-shaped empodium (marked by arrow). C, Colour-marked version of A. D, Head capsule in ventral view, cross-polarised co-axial light on black background; teeth on stylets are marked with arrows. Abbreviations: at = antenna; hc = head capsule; la = locomotory appendage; lp = labial palp; ne = neck; sy = stylet; th = thorax.
FIGURE 9 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 9. Longhead larva preserved in Myanmar amber, specimen PED 0407; all composite images. A, Head capsule and its appendages in dorsal view, cross-polarised co-axial light on white background. B, Colour-marked version of A. C–D, Close-ups. C, Stylets with various teeth, small teeth are marked with arrows. D, Stemmata are marked with arrows. Abbreviations: at = antenna; hc = head capsule; lp = labial palp; st = stemmata; sy = stylet.
FIGURE 6 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 6. Longhead larva preserved in Myanmar amber, specimen BUB 3384; all composite images. A, Habitus in dorsal view, unpolarised ring light on white background. B, Colour-marked version of A. C, Habitus in ventral view, unpolarised ring light on black background. D–F, Close-ups. D, Head capsule and its appendages. E, Coloured-marked version of D. F, Locomotory appendage of prothorax, with trumpet-shaped empodia (marked by arrows). Abbreviations: a1–7 = abdomen segment 1–7; at = antenna; hc = head capsule; la = locomotory appendage; lp = labial palp; ms = mesothorax; mt = metathorax; ne = neck; pt = prothorax; st = stemmata; sy = stylet; te = terminal end.
FIGURE 3 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 3. Longhead larva preserved in Myanmar amber, specimen PED 0453; all composite images. A, Habitus in (possible) dorsal view, non-polarised ring light on white background. B, Colour-marked version of A. C, Habitus in (possible) ventral view, non-polarised ring light on white background. D–G, Close-ups. D, Stylets with prominent teeth; small teeth are marked by arrows. E, Supposed left locomotory appendage of prothorax, with trumpet-shaped empodium (marked by arrow). F, Supposed left locomotory appendage of mesothorax, with trumpet-shaped empodium (marked by arrow). G, Supposed right locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow). Abbreviations: at = antenna; fe = femur; hc = head capsule; lp = labial palp; sy = stylet; ta = tarsus; ti = tibia.
FIGURE 5 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 5. Longhead larva preserved in Myanmar amber, specimen PED 0582; all composite images. A, Habitus in dorso-lateral view, cross-polarised co-axial light on white background. B, Colour-marked version of A; inlet: close-up of tip of left antenna; subdivision of flagellum is marked with an arrow. C–E, Close-ups. C, Head capsule and its appendages, non-polarised ring light on white background; teeth on stylets are marked with arrows. D, Left locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow). E, Right locomotory appendage of prothorax, with trumpet-shaped empodium (marked by arrow). Abbreviations: a1–7 = abdomen segment 1–7; at = antenna; fe = femur; hc = head capsule; la = locomotory appendage; lp = labial palp; mb = membrane; ms = mesothorax; mt = metathorax; ne = neck; pt = prothorax; sy = stylet; ta = tarsus; te = terminal end; ti = tibia.
FIGURE 11 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 11. Scatterplot of PC2 over PC1, representing the shapes of head capsules and stylets of different larvae of Myrmeleontiformia. The group "longheads" includes the new larvae described in this study and the holotype of Macleodiella electrina (see discussion).
FIGURE 2 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 2. Longhead larva preserved in Myanmar amber, specimen PED 0436; all composite images. A, Habitus in ventral view, non-polarised ring light on white background. B, Colour-marked version of A. C–F, Close-ups. C, Right locomotory appendage of prothorax; claws are marked with arrows. D, Right locomotory appendage of mesothorax, with trumpet-shaped empodium (marked by arrow). E, Left locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow). F, Right locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow) Abbreviations: at = antenna; cx = coxa; fe = femur; hc = head capsule; lp = labial palp; st = stemmata; sy = stylet; ta = tarsus; ti = tibia; tr = trochanter.
FIGURE 1 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 1. Longhead larva preserved in Myanmar amber, specimen BUB 3954; all composite images. A, Habitus in dorsal view, cross-polarised co-axial light on white background. B, Colour-marked version of C. C, Habitus in latero-ventral view, cross-polarised co-axial light on black background. D–F, Close-ups. D, Distal part of locomotory appendages of mesothorax, with trumpet-shaped empodia (marked by arrows). E, Tarsus with a claw and an empodium of right locomotory appendage of prothorax. F, Head capsule and stylets, teeth on stylets are marked with arrows. Abbreviations: a1–9 = abdomen segment 1–9; at = antenna; hc = head capsule; la = locomotory appendage; lp = labial palp; m? = membrane; ms = mesothorax; mt = metathorax; ne = neck; pt = prothorax; sy = stylet; te = terminal end.
FIGURE 4 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 4. Longhead larva preserved in Myanmar amber, specimen PED 0566; all composite images. A, Habitus in dorsal view, non-polarised ring light on white background. B, Colour-marked version of A. C, Close-up; right locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow). D, Habitus in ventral view, non-polarised ring light on white background. E, Close-up; distal part of left locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow). Abbreviations: at = antenna; fe = femur; hc = head capsule; la = locomotory appendages; ms = mesothorax; ne = neck; pt = prothorax; sy = stylet; ta = tarsus; ti = tibia.
FIGURE 8 in Long-headed predators in Cretaceous amber-fossil findings of an unusual type of lacewing larva
FIGURE 8. Longhead larva preserved in Myanmar amber, specimen PED 0344; all composite images. A, Habitus in ventral view, transmitted light. B, Colour-marked version of A. C, Habitus in ventral view, non-polarised ring light on white background. D–E, Close-ups. D, Head capsule and its appendages; teeth on stylets are marked with arrows. E, Right locomotory appendage of metathorax, with trumpet-shaped empodium (marked by arrow). Abbreviations: a1–7 = abdomen segments 1–7; at = antenna; fe = femur; hc = head capsule; la = locomotory appendage; lp = labial palp; ms = mesothorax; mt = metathorax; pt = prothorax; st = stemmata; sy = stylet; ta = tarsus; te = terminal end; ti = tibia.
FIGURE 1 in Improved modelling of compositional heterogeneity reconciles phylogenomic conflicts among lacewings
FIGURE 1. Phylogram of Neuropterida relationships based on the CAT-GTR+G4 analysis of anchored hybrid enrichment (AHE) amino acid data. All branches have a support value of ≥ 0.93 Bayesian posterior probability (BPP) except those indicated by red dots (BPP <0.9). Abbreviations: Conio., Coniopterygoidea; Dilar., Dilaroidea; Ithon., Ithonoidea; Megal., Megaloptera; Psych., Psychopsoidea; Raphi., Raphidioptera. Superfamilial classification is adapted from Engel et al. (2018).
FIGURE 2 in Improved modelling of compositional heterogeneity reconciles phylogenomic conflicts among lacewings
FIGURE 2. Congruent interfamilial relationships of Neuropterida inferred from transcriptomic (left) and AHE (right) amino acid data respectively under the site-heterogeneous CAT-GTR+G4 model. All branches have a strong support (BPP> 0.93), except for the monophyly of Myrmeleontidae (only weakly supported in AHE nucleotide data under the CAT-GTR+G4 model). Note that the transcriptomic dataset has fewer and sparser familial sampling than the AHE data.
FIGURE 2 in The first Triassic beaded lacewing (Neuroptera: Berothidae) from Central Asia with redescription of Mesoberotha superbа (Riek, 1955)
FIGURE 2. Forewing of Ferganoberotha minutissima gen. et sp. nov. (Berothidae) from the Middle-Upper Triassic of Kyrgyzstan; holotype PIN № 2785/4061, SEM-image, photograph and drawing. Scale bar 1 mm.
FIGURE 1 in The first Triassic beaded lacewing (Neuroptera: Berothidae) from Central Asia with redescription of Mesoberotha superbа (Riek, 1955)
FIGURE 1. Forewing of Mesoberotha superba (Riek, 1955) (Berothidae) from the Upper Triassic of Australia; holotype C1404, C2098, part and counterpart, aligned in the same direction, photographs and drawing. Photos by Jakub Prokop. Scale bar 1 mm.
Data from: Seasonal shifts and complementary use of pollen sources by two bee, a lacewing and a ladybeetle species in European agricultural landscapes
Open the record for dataset details and reuse information.
Data from: Rapid comeback of males: evolution of male-killer suppression in a green lacewing population
Open the record for dataset details and reuse information.
Figure 1 from: Kuznetsova VG, Maryańska-Nadachowska A, Khabiev GN, Karagyan G, Krivokhatsky VAK (2019) Variation in the number of testicular follicles and ovarioles among 18 lacewing species of the families Myrmeleontidae, Ascalaphidae, and Nemopteridae (Insecta, Neuroptera, Myrmeleontiformia). ZooKeys 894: 33-51. https://doi.org/10.3897/zookeys.894.47040
Figure 1 The proposed ancestral numbers of follicles per testis (white circles) and ovarioles per ovary (black circles) and limits of their variation across the families Myrmeleontidae, Ascalaphidae, and Nemopteridae (Myrmeleontiformia)
Figures 18-22 from: Ma Y, Yang X, Liu X (2020) Notes on the green lacewing subgenus Ankylopteryx Brauer, 1864 (s. str.) (Neuroptera, Chrysopidae) from China, with description of a new species. ZooKeys 906: 41-71. https://doi.org/10.3897/zookeys.906.46438
Figures 18-22 Ankylopteryx (A.) doleschalii Brauer (Indonesia, Ambonia, holotype, ex, provided by NHMV). 18 head, frontal 19 head and thorax, dorsal 20 protibia and mesotibia 21 forewing 22 hind wing.
Figures 108-111 from: Ma Y, Yang X, Liu X (2020) Notes on the green lacewing subgenus Ankylopteryx Brauer, 1864 (s. str.) (Neuroptera, Chrysopidae) from China, with description of a new species. ZooKeys 906: 41-71. https://doi.org/10.3897/zookeys.906.46438
Figures 108-111 Pseudopenis, line drawings in lateral view. 108Ankylopteryx (A.) octopunctata candida (Fabricius) 109Ankylopteryx (A.) yangi sp. nov. 110Ankylopteryx (A.) ferruginea Tsukaguchi 111Ankylopteryx (A.) gracilis Nakahara
Figures 91-98 from: Ma Y, Yang X, Liu X (2020) Notes on the green lacewing subgenus Ankylopteryx Brauer, 1864 (s. str.) (Neuroptera, Chrysopidae) from China, with description of a new species. ZooKeys 906: 41-71. https://doi.org/10.3897/zookeys.906.46438
Figures 91-98 91–94Ankylopteryx (A.) yangi sp. nov., male abdomen (Guizhou, Libo, holotype, male, CAU). 91 segment A7-terminus, lateral 92 gonarcal complex, dorsal 93 gonarcal complex, lateral 94 gonarcus. 95–98Ankylopteryx (A.) yangi sp. nov., female abdomen (Guizhou, Libo, paratype, female, CAU). 95 segment A7-terminus, lateral 96 terminalia, ventral 97 callus cerci 98 spermatheca. cc callus cerci ent entoprocessus g.l. gonaphophyses lateralis gsac gonosaccus gon gonarcus pp pseudopenis S7 seventh sternum S8+9 fused eighth + ninth sternum sg.d. dorsal lobe of subgenitale sg.v. ventral lobe of subgenitale sm spermatheca sm.d. spermathecal duct t.s. transverse sclerite T8 eighth tergum T9+e ninth tergum + ectoproct.
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.