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.
199
datasets available to search
ShareScore release 0.7.1
Dataset results
199 results for “Nepomorpha (Hemiptera: Heteroptera)”
Fig. 4 in Studies on the Nepomorpha, Gerromorpha, Leptopodomorpha, and Miridae excluding Phylini (Hemiptera: Heteroptera) of Khuzestan and the adjacent provinces of Iran
Fig. 4. Phytocoris bavanus sp. nov. A – male head in lateral view; B – right paramere; C–D – left paramere in two different views (drawn in glycerine slide mount); E – sensory lobe of the left paramere; F – spiculum.
Fig. 3 in Studies on the Nepomorpha, Gerromorpha, Leptopodomorpha, and Miridae excluding Phylini (Hemiptera: Heteroptera) of Khuzestan and the adjacent provinces of Iran
Fig. 3. Phytocoris bavanus sp. nov., holotype male. A – habitus, B – dorsal view of head and pronotum.
Fig. 2. Phytocoris arakhne Linnavuori, 1999.A in Studies on the Nepomorpha, Gerromorpha, Leptopodomorpha, and Miridae excluding Phylini (Hemiptera: Heteroptera) of Khuzestan and the adjacent provinces of Iran
Fig. 2. Phytocoris arakhne Linnavuori, 1999.A – male head in lateral view; B – pygophore in dorsal view (specimen from Zarqan); C–E – left lateral process of pygophore (C – J from Zarqan, D – paratype from 7 km NW of Shul, E – J from Zarqan Bamon National Park); F – right paramere; G – left paramere; H – spiculum.
Fig. 1 in Studies on the Nepomorpha, Gerromorpha, Leptopodomorpha, and Miridae excluding Phylini (Hemiptera: Heteroptera) of Khuzestan and the adjacent provinces of Iran
Fig. 1. Provinces of Iran. 1 – West Azerbaijan; 2 – East Azerbaijan; 3 – Ardabil; 4 – Gilan; 5 – Zanjan; 6 – Kurdestan; 7 – Kermanshah; 8 – Hamedan; 9 – Ghazvin; 10 – Mazandaran; 11 – Tehran; 12 – Qom; 13 – Markazi; 14 – Lorestan; 15 – Ilam; 16 – Khuzestan; 17 – Chaharmahal & Bakhtiari; 18 – Kohgiluyeh & Boyerahmad; 19 – Esfahan; 20 – Semnan; 21 – Golestan; 22 – Khorasan; 23 – Yazd; 24 – Fars; 25 – Bushehr; 26 – Hormozgan; 27 – Kerman; 28 – Sistan & Baluchestan (after ALIPANAH & USTJUZHANIN 2005).
Figs 47–48. 47 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 47–48. 47 – Micracanthia ornatula (Reuter, 1881), ♂, Qadub (body length 2.84 mm); 48 – Saldula niveolimbata (Reuter, 1900), ♀, Skand Mt. (3.43 mm).
Figs 45–46. 45 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 45–46. 45 – Limnogonus cereiventris (Signoret, 1862): 45 – macropterous ♀, wadi Zerig (body length 9.12 mm). 46 – Onychotrechus rhexenor Kirkaldy, 1903, apterous ♂, Firmihin (4.71 mm). (Orig. P. Kment).
Figs 49–53. 49 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 49–53. 49 – Arher, a spring near the sea coast (5 m a.s.l.), habitat of Ochterus papaceki Kment & Carapezza, 2020, Anisops debilis socotrensis Brown, 1956, Mesovelia vittigera Horváth, 1895, Hebrus kanyukovae sp.nov., Microvelia macani Brown, 1953, Rhagovelia infernalis socotrensis Brown, 1956 and Micracanthia ornatula (Reuter, 1881). 50 – Wadi Madar (1,170 m a.s.l.), habitat of Anisops d. socotrensis, A.varius Fieber, 1851, Mesovelia vittigera, Microvelia macani, and Rhagovelia i. socotrensis. 51 – Skand Mt., helocrene under the top (1,450 m a.s.l.), habitat of Microvelia gracillima Reuter, 1882 and Saldula niveolimbata (Reuter, 1900). 52 – Tudhen, helocrene (1,135 m a.s.l.), habitat of Mesovelia vittigera, Hebrus sp., and Microvelia gracillima Reuter, 1882. 53 – Wadi Zerig with a large pool (655 m a.s.l.), habitat of Micronecta eupompe Hutchinson, 1930, Sigara hoggarica Poisson, 1929, Anisops d. socotrensis, A. varius, Hebrus kanyukovae sp. nov., Limnogonus cereiventris (Signoret, 1862), and Micracanthia ornatula. (Orig.P.Kment: Figs 49–52; J. Hájek:Fig.53).
Figs 43–44. 43 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 43–44. 43 – Halobates germanus White, 1883, ♂, Indian Ocean near Madagascar; 44 – Halobates hayanus White, 1883, Saudia Arabia: Thuwal, mangroves of King Abdullah University of Science and Technology. Scale bars: 1 mm. (Orig. Marc Jia Jin Chang).
Figs 40–42. Rhagovelia infernalis socotrensis Brown, 1956 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 40–42. Rhagovelia infernalis socotrensis Brown, 1956: 40 – apterous ♂, Halla Arher (body length 3.61 mm); 41 – apterous ♀, wadi Madar (3.56 mm); 42 – macropterous ♂, Firmihin (4.22 mm). (Orig. P. Kment).
Figs 1–4. 1 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 1–4. 1 – Micronecta eupompe Hutchinson, 1930, ♂, wadi Zerig (2.77 mm); 2 – Sigara hoggarica Poisson, 1929, ♂, wadi Zerig (6.01 mm); 3 – Sigara lateralis (Leach, 1817), ♂, mountain way to Noged (4.80 mm); 4 – Ochterus papaceki Kment & Carapezza, 2020, ♂, wadi Matyaf (body length 4.58 mm). (Orig. A. Carapezza: Fig. 1, P. Kment: Figs 2–3, M. Tkoč: Fig. 4).
Figs 32–39. 32–35 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 32–39. 32–35 – Microvelia gracillima Reuter, 1882: 32–33 – apterous morph from Skand Mt.: 32 – ♂ (body length 1.76 mm), 33 – ♀ (1.86 mm); 34–35 – macropterous morph from Tudhen: 34 – ♂ (1.76 mm), 35 – ♀ (1.96 mm). 36–37 – M. macani Brown, 1953, apterous morph from Homhil, Ain Tsahrin: 36 – ♂ (1.57 mm), 37 – ♀ (1.76 mm). 38–39 – M. popovi Brown, 1951, apterous morph from Firmihin: 37 – ♂ (1.37 mm), 38 – ♀ (1.96). (Orig. P. Kment).
Figs 29–31 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 29–31. Hebrus kanyukovae sp. nov., ♂: 29 – hind leg, schematic; 30–31 – paramere (30 – dorsal view, 31 – ventral view, setae omitted): Abbreviations: ds – dorsal setae, is – inner setae. Scale bars: 0.05 mm (Figs 30–31), 0.2 (Fig. 29). (Orig. P. Kment).
Figs 17–25. 17–19 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 17–25. 17–19 – Hebrus kanyukovae sp. nov., ♂, holotype: 17 – fore body, dorsal view (magnification 100×); 18–19 – head (18 – dorsal view, 230×; 19 – lateral view, 190×). 20–25 – metanotal elevation, dorsal view (250×): 20–23 – H. kanyukovae sp. nov.: 20 – ♂, holotype; 21 – ♂, paratype; 22–23 – ♀♀, paratypes, Arher; 24 – H. cf. kanyukovae, ♀, wadi Zerig; 25 – Hebrus (Hebrus) sp., ♀, Tudhen. Scale bars: 0.1 mm (Figs 18–25), 0.2 mm (Fig. 17). (Orig. P. Kment).
Figs 26–28 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 26–28. Hebrus kanyukovae sp. nov., ♂, metatibia: 26–27 – paratype (magnification: 26 – 270×, 27 – 200×), 28 – holotype (350×). Abbreviations: ds – dorsal setae, is – inner setae. Scale bars: 0.1 mm. (Orig. P. Kment).
Figs 5–9. Micronecta eupompe Hutchinson, 1930 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 5–9. Micronecta eupompe Hutchinson, 1930, ♂, wadi Zerig. 15 – fore leg; 16 – free lobe of 8th tergite; 17–18 – left paamere (two different views); 19 – right paramere. Scale bar: 0.2 mm. (Orig. A. Carapezza).
Figs 10–11. 10 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Figs 10–11. 10 – Anisops debilis socotrensis Brown, 1956, Arher (body length 6.67 mm); 11 – Anisops varius Fieber, 1851, Di Hashus (7.55 mm). (Orig. P. Kment).
Fig. 14 in Notes on aquatic and semiaquatic bugs (Hemiptera: Heteroptera: Nepomorpha, Gerromorpha) from Malesia with description of three new species
Fig. 14. Neusterensifer stysi sp. nov., J (paratype), habitus, body length 1.90 mm.
Fig 12 in Heteroptera (Hemiptera) of the Socotra Archipelago I: Introduction, Nepomorpha, Gerromorpha and Leptopodomorpha
Fig 12. Mesovelia vittigera Horváth, 1915, apterous ♂, wadi Zerig (2.45 mm). (Orig. P. Kment).
FIGURE 5 in The Ochteridae of Ecuador, with new records and an identification key (Hemiptera: Heteroptera: Nepomorpha)
FIGURE 5. Right parameres of the Ochteridae of Ecuador: a) Ochterus perbosci (Guérin-Méneville, 1843); b) O. viridifrons (Champion, 1901); c) O. aeneifrons (Champion, 1901); d) O. unidentatus Nieser & Chen, 1992; e) O. parvus Schell, 1943; f) O. manni Hungerford, 1927. a, b, c, e, f modified from Schell (1943); d original (drawings F. Cianferoni).
FIGURE 3 in The Ochteridae of Ecuador, with new records and an identification key (Hemiptera: Heteroptera: Nepomorpha)
FIGURE 3. Genital capsule of Ochterus unidentatus Nieser & Chen, 1992 (photo P. Magrini). Length: 0.97 mm.
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.