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 “Leafhoppers”
FIGURES 259–273 in Revision of Elginus Theron (Hemiptera: Cicadellidae: Deltocephalinae) with the description of two new genera and comments on the grassland leafhopper fauna in South Africa
FIGURES 259–273. Elginus species, male, abdominal apodemes, Fig. 259, E. cultellus, curved aedeagus; Fig. 260, E. cultellus, straight aedeagus; Fig. 261, E. denticulatus; Fig. 262, E. eccentricus; Fig. 263, E. falcatus; Fig. 264, E. furcillatus; Fig. 265, E. malotiensis; Fig. 266, E. matarei; Fig. 267, E. minutulus; Fig. 268, E. oriens; Fig. 269, E. saltus (Naudé); Fig. 270, E. theroni; Fig. 271, E. tortuosus; Fig. 272, E. tubulus; Fig. 273, E. vulgaris.
FIGURES 180–205 in Revision of Elginus Theron (Hemiptera: Cicadellidae: Deltocephalinae) with the description of two new genera and comments on the grassland leafhopper fauna in South Africa
FIGURES 180–205. Elginus species, male, pygofer, lateral view. Fig. 180, E. acutus; Fig. 181, E. bispinus; Fig. 182, E. cavatus; Fig. 183, E. contradens; Fig. 184, E. cultellus, curved aedeagus; Fig. 185, E. cultellus, straight aedeagus; Fig. 186, E. denticulatus; Fig. 187, E. dexteruncus; Fig. 188, E. eccentricus; Fig. 189, E. extrinsecus; Fig. 190, E. falcatus; Fig. 191, E. furcillatus; Fig. 192, E. latus; Fig. 193, E. levilobus; Fig. 194, E. malotiensis; Fig. 195, E. matarei; Fig. 196, E. minutulus; Fig. 197, E. oriens; Fig. 198, E. recavus; Fig. 199, E. semialatus, with paired process; Fig. 200, E. semialatus, single process; Fig. 201, E. theroni; Fig. 202, E. tortuosus; Fig. 203, E. tubulus; Fig. 204, E. unispinus; Fig. 205, E. vulgaris.
FIGURES 284–290. Theronus priapus. Fig. 284 in Revision of Elginus Theron (Hemiptera: Cicadellidae: Deltocephalinae) with the description of two new genera and comments on the grassland leafhopper fauna in South Africa
FIGURES 284–290. Theronus priapus. Fig. 284, aedeagus, ventral view; Fig. 285, aedeagus, lateral view; Fig. 286, plate and valve; Fig. 287, apex of abdomen, dorsal view, depicting position of genitalia; Fig. 288, style; Fig. 289, sternite VII, female; Fig. 290, apex of abdomen, lateral view, depicting position of genitalia.
FIGURES 206–232 in Revision of Elginus Theron (Hemiptera: Cicadellidae: Deltocephalinae) with the description of two new genera and comments on the grassland leafhopper fauna in South Africa
FIGURES 206–232. Elginus species, male, style, Fig. 206, E. acutus; Fig. 207, E. bispinus; Fig. 208, E. cavatus; Fig. 209, E. contradens; Fig. 210, E. cultellus, curved aedeagus; Fig. 211, E. cultellus, straight aedeagus; Fig. 212, E. denticulatus; Fig. 213, E. dexteruncus; Fig. 214, E. eccentricus; Fig. 215, E. extrinsecus; Fig. 216, E. falcatus; Fig. 217, E. furcillatus; Fig. 218, E. latus; Fig. 219, E. levilobus; Fig. 220, E. malotiensis; Fig. 221, E. matarei; Fig. 222, E. minutulus; Fig. 223, E. oriens; Fig. 224, E. recavus; Fig. 225, E. saltus (Naudé); Fig. 226, E. semialatus, with paired process; Fig. 227, E. semialatus, single process; Fig. 228, E. theroni; Fig. 229, E. tortuosus; Fig. 230, E. tubulus; Fig. 231, E. unispinus; Fig. 232, E. vulgaris.
Figure 5 in Diversity and temporal variations of the leafhopper fauna (Cicadellidae, Auchenorrhyncha, Hemiptera) in two ecological zones of Egypt
Figure 5. Seasonal fluctuations of the mean monthly temperature and relative humidity in Qena and Alexandria governorates throughout 2018. SE: standard error.
Figure 4 in Diversity and temporal variations of the leafhopper fauna (Cicadellidae, Auchenorrhyncha, Hemiptera) in two ecological zones of Egypt
Figure 4. Monthly variation in the mean density of leafhoppers per week caught by light trap in Alexandria governorate during 2018. Error bars represent the mean abundance for 4 consecutive weeks per month in three sites (12 counts).
Figure 3 in Phylogenetic analysis of the leafhopper genus Apogonalia (Insecta: Hemiptera: Cicadellidae) and comments on the biogeography of the Caribbean islands
Figure 3. Dorsal habitus of Apogonalia. A, A. fraterna Young, a mainland species, with elliptical (not swollen) eyes, character 13(0); B, A. histrio (Fabricius), an Antillean species, with typical globular and swollen eyes, character 13(1).
Figure 2 in Phylogenetic analysis of the leafhopper genus Apogonalia (Insecta: Hemiptera: Cicadellidae) and comments on the biogeography of the Caribbean islands
Figure 2. Preferred tree of the phylogenetic analysis of Apogonalia (in bold type) and outgroup taxa. Strict consensus of the 62 most-parsimonious trees obtained by successive weighting. Node numbers are above branches. Character state transformations of the nodes are given in Appendix 3. C., Coronigoniella; M., Macugonalia; H., Hadria; A., Apogonalia. Length = 187.16, CI = 0.75 (0.68 excluding uninformative characters), RI = 0.85, and RC = 0.64. Geographical distribution of each terminal is provided based on specimens examined and literature. Countries are separated by commas and regions of a country by dots. Uncertain country records are followed by a question mark.
Figure 1 in Phylogenetic analysis of the leafhopper genus Apogonalia (Insecta: Hemiptera: Cicadellidae) and comments on the biogeography of the Caribbean islands
Figure 1. Strict consensus of the 1391 equally most-parsimonious trees from the phylogenetic analysis of Apogonalia (in bold type) and outgroup taxa. Bootstrap support values greater than 50 are shown above branches. Bremer support values other than zero are shown below branches. C., Coronigoniella; M., Macugonalia; H., Hadria; A., Apogonalia. Length = 437, consistency index (CI) = 0.52 (0.47 excluding uninformative characters), retention index (RI) = 0.72, and rescaled consistency index (RC) = 0.38.
Figure 5 in Phylogenetic analysis of the leafhopper genus Apogonalia (Insecta: Hemiptera: Cicadellidae) and comments on the biogeography of the Caribbean islands
Figure 5. Forewings of Apogonalia. A, A. fraterna Young, with long outer anteapical cell, character 76(0); B, A. interrupta (Signoret), with short outer anteapical cell, character 76(1). Arrows show anterior and posterior ends of the cell.
Figure 15. Nesocerus trimaculatus Freytag & Cwikla. A in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 15. Nesocerus trimaculatus Freytag & Cwikla. A, dorsal habitus; B, face; C–D, aedeagus in lateral (C) and caudal (D) views.
Figure 14 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 14. Nesocerus spp. nov. Male pygofer in lateral view (A, H, O), male subgenital plate in ventral view (B, I, P) and lateral views (C, J, Q), aedeagus in lateral view (D, K, R) and caudal (E, L, S) views, style in lateral view (F, M, T), style and connective in dorsal view (G, N, U). A–G, Nesocerus basiprocessus; H–N, Nesocerus serratus; O–U, Nesocerus convolutus.
Figure 13 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 13. Nesocerus spp. nov. Male pygofer in lateral view (A, H, O), male subgenital plate in ventral (B, I, P) and lateral views (C, J, Q), aedeagus in lateral (D, K, R) and caudal views (E, L, S), style in lateral view (F, M, T), style and connective in dorsal view (G, N, U). A–G, Nesocerus flexus; H–N, Nesocerus breviprocessus; O–U, Nesocerus latus.
Figure 12 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 12. Nesocerus spp. nov. Male pygofer in lateral view (A, H, O), male subgenital plate in ventral (B, I, P) and lateral views (C, J, Q), aedeagus in lateral (D, K, R) and caudal views (E, L, S), style in lateral view (F, M, T), style and connective in dorsal view (G, N, U). A–G, Nesocerus asymmetricus; H–N, Nesocerus uniprocessus; O–U, Nesocerus compressus.
Figure 11 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 11. Nesocerus spp. nov. Male pygofer in lateral view (A, H, O), male subgenital plate in ventral (B, I, P) and lateral views (C, J, Q), aedeagus in lateral (D, K, R) and caudal views (E, L, S), style in lateral view (F, M, T), style and connective in dorsal view (G, N, U). A–G, Nesocerus nanus; H–N, Nesocerus mananarensis; O–U, Nesocerus quinquespinosus.
Figure 10 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 10. Nesocerus spp. nov. Male pygofer in lateral view (A, H, O), male subgenital plate in ventral (B, I, P) and lateral views (C, J, Q), aedeagus in lateral (D, K, R) and caudal views (E, L), style in lateral view (F, M, S), style and connective in dorsal view (G, N, T). A–G, Nesocerus nigrum; H–N, Nesocerus tristriatus; O–T, Nesocerus brevipinguis.
Figure 7 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 7. Nesocerus spp. nov. Male pygofer in lateral view (A, H, P), male subgenital plate in ventral (B, J, Q) and lateral views (C, K, R), aedeagus in lateral (D, L, S) and caudal views (E, M, T), style in lateral view (F, N, U), style and connective in dorsal view (G, O, V), apex of male pygofer in caudal view (I). A–G, Nesocerus orbiculatus; H–O, Nesocerus bifurcatus; P–V, Nesocerus littoralis.
Figure 8 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 8. Nesocerus spp. nov. Male pygofer in lateral view (A, H, O), male subgenital plate in ventral (B, I, P) and lateral views (C, J, Q), aedeagus in lateral (D, K, R) and caudal views (E, L, S), style in lateral view (F, M, T), style and connective in dorsal view (G, N, U). A–G, Nesocerus fasika; H–N, Nesocerus tulearensis; O–U, Nesocerus recurvus.
Figure 6 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 6. Nesocerus spp. nov. Male pygofer in lateral view (A, I, R), male subgenital plate in ventral (B, J, T) and lateral views (C, K, U), aedeagus in lateral (D, L, P, V, Z) and caudal views (E, M, Q, W, A1), style in lateral view (F, N, X), style and connective in dorsal view (G, O, Y), apex of male pygofer in caudal view (H, S). A–H, Nesocerus trilineatus; I–O, Nesocerus ranomafanaensis; P–Q, Nesocerus affinis; R–Y, Nesocerus angulatus; Z–A1, Nesocerus sclerophyllus.
Figure 5 in Taxonomic revision and phylogeny of an endemic leafhopper genus Nesocerus (Hemiptera: Cicadellidae: Idiocerinae) from Madagascar
Figure 5. Nesocerus spp. nov., dorsal habitus and face of holotype male. A, B, Nesocerus asymmetricus; C, D, Nesocerus uniprocessus; E, F, Nesocerus compressus; G, H, Nesocerus flexus; I, J, Nesocerus breviprocessus; K, L, Nesocerus latus; M, N, Nesocerus basiprocessus; O, P, Nesocerus serratus; Q, R, Nesocerus convolutus.
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.