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.
41,236
datasets available to search
ShareScore release 0.9.0
Dataset results
41,236 results for “Review of reviews”
Fig. 1 in Arthropod parasites of Antarctic and Subantarctic birds and pinnipeds: A review of host-parasite associations
Fig. 1. Sub-areas of the Antarctic region. Legend: AAP = Antarctic Peninsula (including South Shetland Islands and Palmer Archipelago), AWS = Antarctica Weddell Sea sector, AAT = Antarctica Atlantic Ocean sector (including Bouvet Island), AIW = Antarctica Indian Ocean West sector, AIE = Antarctica Indian Ocean East sector, ARS = Antarctica Ross Sea sector (including Scott and Balleny Islands), APW = Antarctica Pacific Ocean West sector, APE = Antarctica Pacific Ocean East sector (including Peter I Island), SOI = South Orkney Island, SGI = South Georgia Island, SSI = South Sandwich Islands, PEI = Prince Edward Islands, CRI = Crozet Islands, KEI = Kerguelen Islands, HMI = Heard and McDonald Islands. The Antarctic Polar Front was drawn from Moore et al. (1999).
Fig. 2 in Cryptosporidium cf. avium in an inland-bearded dragon (Pogona vitticeps) - A case report and review of the literature
Fig. 2. Relationship of the novel Cryptosporidium cf. avium taxa (in bold) from the faeces of the inland-bearded dragon with representative Cryptosporidium sequences, established based on a phylogenetic analysis of sequence data from a portion of the small subunit of nuclear ribosomal RNA gene (SSU) employing the neighbourjoining distance method. Branch supports are represented by neighbour-joining bootstrap percentages. C. andersoni was used as an outgroup.
Fig. 1 in Cryptosporidium cf. avium in an inland-bearded dragon (Pogona vitticeps) - A case report and review of the literature
Fig. 1. Sequence alignment of a partial region (124 bp) of SSU for selected Cryptosporidium sp. to verify the identity of the green iguana sequence from the Netherlands HM069184 (Kik et al., 2011) and the sequence from Cryptosporidium from an inland bearded dragon from Scotland MT074295 (Lewis et al., 2020). (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Figure 4 in A review of the Sphingidae (Lepidoptera) fauna of Zanzibar (Unguja) Island (Tanzania)
Figure 4. Examples of Macroglossinae species from Zanzibar Island (collection of RMBH): (A) Hippotion eson (Cramer, 1779); (B) Nephele argentifera (Walker, 1856); (C) N. bipartita Butler, 1878; (D) N. funebris (Fabricius, 1793); (E) N. peneus (Cramer, 1776); (F) Theretra capensis (Linnaeus, 1764). Scale bar = 10 mm.
Figure 1 in A review of the Sphingidae (Lepidoptera) fauna of Zanzibar (Unguja) Island (Tanzania)
Figure 1. Examples of Smerinthinae species from Zanzibar Island (collection of RMBH): (A) Pseudoclanis postica (Walker, 1856); (B) Andriasa contraria Walker, 1856. Scale bar = 10 mm.
Figures 13−14 in Review of the genus Paracossus Hampson, 1904 (Lepidoptera: Cossidae, Cossinae) with description of one new species from Thailand
Figures 13−14. Genitalia of Paracossus: 13. P. korshunovi sp. n., male, holotype (ZISP); 14. P. korshunovi sp. n., female, paratype (RYB).
Figures 11−12. 11. P. parva Hampson, 1904 in Review of the genus Paracossus Hampson, 1904 (Lepidoptera: Cossidae, Cossinae) with description of one new species from Thailand
Figures 11−12. 11. P. parva Hampson, 1904, female, S. India (MWM); 12. P. zyaung Yakovlev, 2014, male, holotype (ZISP).
Figures 1−10 in Review of the genus Paracossus Hampson, 1904 (Lepidoptera: Cossidae, Cossinae) with description of one new species from Thailand
Figures 1−10. Adult specimens of Paracossus: 1. P. korshunovi sp. n., male, holotype (ZISP); 2. P. korshunovi sp. n., male, paratype (RYB); 3. P. korshunovi sp. n., female, paratype (RYB); 4. P. furcata Hampson, 1904, female, holotype (NHMUK); 5. P. griseatus Yakovlev, 2009, male, holotype (MWM); 6. P. hainanicus Yakovlev, 2009, male, holotype (MWM); 7. P. indradit Yakovlev, 2009, male, holotype (MWM); 8. P. indradit Yakovlev, 2009, male, Laos (MWM); 9. P. longispinalis (Chou & Hua, 1988), male, holotype (NWAU); 10. P. parva Hampson, 1904, male, holotype (NHMUK).
Figure 1 in Review of leaf beetles of the family Megalopodidae (Coleoptera: Chrysomeloidea) from Siberia and the Russian Far East
Figure 1. Zeugophora spp.: A–B. Z. annulata, habitus, dorsal view; C. Z. bicolor, habitus, dorsal view; D. Z. bicolor, habitus, ventral view; E. Z. bicolor, aedeagus, apex of median lobe, dorsal view; F. Z. nigricollis, habitus, dorsal view; G. Z. nigricollis, habitus, ventral view; H. Z. nigricollis, aedeagus, apex of median lobe, dorsal view; I, J, K. Z. bimaculata, habitus, dorsal view; L. Z. bimaculata, aedeagus, lateral view; M. Z. bimaculata, aedeagus, apex of median lobe, dorsal view; N. Z. cupka, habitus, dorsal view; O. Z. hozumii, dorsal view; P. Z. subspinosa, dorsal view.
Figure 2 in Review of leaf beetles of the family Megalopodidae (Coleoptera: Chrysomeloidea) from Siberia and the Russian Far East
Figure 2. Zeugophora spp., habitus, dorsal view: A – Z. flavicollis; B – Z. frontalis; C – Z. subspinosa; D – Z. turneri. Scale bar = 0.5 mm for D.
Figures 10−14 in New data on Neotropical Carpenter-Moths of Subfamily Hypoptinae Neumoegen & Dyar, 1894 (Lepidoptera: Cossidae). IV. A review of the genus Hypopta Hübner, 1818
Figures 10−14. Hypopta, male genitalia: 10. H. ambigua Hübner, 1818, male, Argentina, Chaco, San Bernardo, Chaco, San Bernardo, 20.I.1980 (Genital preparation №269 coll. Naydenov A.E.) (RYB); 11. H. ambigua Hübner, 1818, male, Argentina, Tornquist, "J.R.", 22.II.1993 (Genitalpräparat Heterocera № 26.729) (MWM); 12. H. guarani Penco, Yakovlev & Naydenov sp. nov., male, holotype, Paraguay, Dep. Alto Paraná, Estancia Dimas, S 25°33′ W 55°13′, 10- 12.II.2018, leg. U. Drechsel (Genital preparation №264 coll. Naydenov A.E.) (ZISP); 13. H. invetita (Dognin, 1923), male, Argentina, La Viña, 12.I.1994, leg. J. R[umi] (Genitalpräparat Heterocera № 26.746) (MWM); 14. H. watsoni (Schaus, 1901), male, Brazil, Bahia, Jequié, S 13°56′ W 40°11′, III.2012, leg. Hubert Thöny (Genitalpräparat Heterocera № 28.637) (MWM).
Figures 1−9 in New data on Neotropical Carpenter-Moths of Subfamily Hypoptinae Neumoegen & Dyar, 1894 (Lepidoptera: Cossidae). IV. A review of the genus Hypopta Hübner, 1818
Figures 1−9. Hypopta, adults: 1. H. ambigua Hübner, 1818, male, holotype of Endagria tigrina Boisduval, 1859, B[?]ayses, ex musaeo Boisduval (MNHN); 2. H. ambigua Hübner, 1818, male, Argentina, Tornquist, "J.R.", 22.II.1993 (MWM); 3. H. ambigua Hübner, 1818, female, Argentina, Chaco, San Bernardo, 12.I.1980, leg. O. Di Iorio (RYB); 4. H. guarani Penco, Yakovlev & Naydenov sp. nov., male, holotype, Paraguay, Dep. Alto Paraná, Estancia Dimas, S 25°33′ W 55°13′, 10-12.II.2018, leg. U. Drechsel (ZISP); 5. H. guarani Penco, Yakovlev & Naydenov sp. nov., male, paratype, Paraguay, Dep. Cordillera, Pirareta, S 25°29′ W 56°56′, 16 -18.III.2012, leg. U. Drechsel (RYB); 6. H. invetita (Dognin, 1923), female, holotype of Philanglaus invetita, Argentina, Cordoba, Type №29899 (USNM); 7. H. invetita (Dognin, 1923), male, Argentina, La Viña, 12.I.1994, leg. J. R[umi] (MWM); 8. H. watsoni (Schaus, 1901), male, holotype of Givira watsoni Schaus, 1901, Brazil, Bnito Prov., Pernambuco, Type №18594 (USNM); 9. H. watsoni (Schaus, 1901), male, Brazil, Bahia, Jequié, S 13°56′ W 40°11′, III.2012, leg. Hubert Thöny (MWM).
Figure 2 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 2. Rhaebus spp.: a – Rh. komarovi, female, syntype, habitus, dorsally; b – Rh. komarovi, female, syntype, habitus, laterally; c – Rh. komarovi, male, syntype, habitus, dorsally; d – Rh. komarovi, male, syntype, habitus, laterally; e–j – Rh. amnoni, male, holotype: e – habitus, dorsally; f – habitus, in front; g – metaleg; h – habitus, laterally; k – geographic label; l – type label; j – aedeagus.
Figure 1 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 1. Rhaebus spp.: a – Rh. mannerheimi, syntypes, habitus, dorsally, with labels; b – Rh. komarovi, syntype, habitus, dorsally, with labels.
Figure 7 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 7. Rhaebus spp., male: a – Rh. gebleri, aedeagus, dorsally, Astrakhan Oblast; b – Rh. gebleri, aedeagus, laterally, Astrakhan Oblast; c – Rh. solskyi, aedeagus, dorsally, Altai Republic; d – Rh. lukjanovitschi, aedeagus, dorsally, Ömnögovi Prov.; e – Rh. lukjanovitschi, tegmen, laterally, Ömnögovi Prov.; f – Rh. solskyi, aedeagus, laterally, Altai Republic; g – Rh. solskyi, tegmen, laterally, Altai Republic; h – Rh. lukjanovitschi, aedeagus, laterally, Ömnögovi Prov.; i – Rh. solskyi, tegmen, dorsally, Altai Republic; j – Rh. lukjanovitschi, tegmen, dorsally, Ömnögovi Prov. Scale bar = 0.2 mm.
Figure 6 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 6. Rhaebus spp., head, dorsally: a – Rh. solskyi, male, Altai Republic; b – Rh. lukjanovitschi, male, Ömnögovi Prov.; c – Rh. gebleri, male, East Kazakhstan Region; d – Rh. solskyi, female, Altaiskii Krai; e – Rh. lukjanovitschi, female, Ömnögovi Prov.; f – Rh. gebleri, female, Astrakhan Oblast; h – Rh. gebleri, type, East Kazakhstan Region (from Fischer von Waldheim 1824). Scale bar = 0.2 mm.
Figure 3 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 3. Rhaebus amnoni, paratypes: a – male, habitus, dorsally; b – female, habitus, dorsally; c – female, habitus, dorsally; d – female, habitus, laterally; e– female, habitus, laterally; f – female, habitus, in front; e – female, abdomen.
Figure 8 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 8. Rhaebus spp., metafemur, laterally: a – Rh. gebleri, male, East Kazakhstan Region; b – Rh. gebleri, female, Astrakhan Oblast; c – Rh. lukjanovitschi, male, Ömnögovi Prov.; d – Rh. lukjanovitschi, female, Ömnögovi Prov.; e – Rh. solskyi, male, Zabaikalskii Krai; f – Rh. solskyi, female, Altaiskii Krai. Scale bar = 0.2 mm.
Figure 4 in Review of the genus Rhaebus Fischer von Waldheim, 1824 (Coleoptera: Chrysomelidae: Bruchinae)
Figure 4. Rhaebus spp.: a – Rh. lukjanovitschi, male, habitus, dorsally; b – Rh. lukjanovitschi, female, syntype, habitus, dorsally; c – Rh. lukjanovitschi, female, syntype, habitus, dorsally; d – Rh. lukjanovitschi, labels; e – Rh. lukjanovitschi, male, aedeagus, dorsally; f – Rh. lukjanovitschi, female, syntype, head, dorsally; g – Rh. gebleri, male, Kirgizstan, habitus, dorsally; h – Rh. gebleri, male, Kirgizstan, habitus, dorsally laterally; i – Rh. gebleri, female, Kirgizstan, habitus, laterally.
Figures 11–16 in A review of the genus Brunia Moore from the Andaman Islands (India) with a description of a new species (Lepidoptera: Erebidae: Arctiinae)
Figures 11–16. Brunia spp.: adults. Depositories of the specimens: 11 in NHMUK (©The Trustees of NHMUK); 12–16 in MWM/ZSM.
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.