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.
14,755
datasets available to search
ShareScore release 0.7.1
Dataset results
14,755 results for “redescription”
Fig. 2 in Rediscovering Anhanga: redescription and considerations on its taxonomic placement (Hemiptera: Heteroptera: Pentatomidae)
Fig. 2. Lectotype of Anhanga modesta Distant, 1887.A – dorsal view; B – ventral view; C – lateral view; D – genital plates in postero-ventral view; E – labels. Scale not provided.
Fig. 4 in Rediscovering Anhanga: redescription and considerations on its taxonomic placement (Hemiptera: Heteroptera: Pentatomidae)
Fig. 4. Internal female genitalia of Anhanga modesta Distant, 1887. Abbreviations: aaf – anterior annular flange; cs – capsula seminalis; dr – ductusreceptaculi; g9 – gonapophyses IX; gc9 – gonocoxites IX; la8 – laterotergites VIII; la9 – laterotergites IX; or – orificium receptaculi; paf – posterior annular flange; pc – pars communis; pcs – finger-like process of capsula seminalis; pi – pars intermedialis; rs – ring sclerites; tvi – thickening of vaginal intima; va – vesicular area; X – tenth segment). Scale bar: 1 mm.
Fig. 1. Anhanga modesta Distant, 1887. A in Rediscovering Anhanga: redescription and considerations on its taxonomic placement (Hemiptera: Heteroptera: Pentatomidae)
Fig. 1. Anhanga modesta Distant, 1887. A – dorsal view; B – magnification of the head in ventral view, dashed line highlighting the basal segment of labium arising anteriorly to the imaginary line traversing head at anterior margin of eyes; C – ventral view; D – magnification of external scent efferent system of metathoracic scent glands; E – magnification of abdomen, highlighting the placement of the pair of trichobothria (arrows) along the imaginary line of spiracles on urosternites VI and VII. Scale bar: 5 mm.
Fig. 2. a in Revalidation and redescription of Steindachnerina nigrotaenia and redescription of S. insculpta (Characiformes: Curimatidae)
Fig. 2. a. Steindachnerina nigrotaenia, lectotype of Curimatus nigrotaenia, BMNH 1902.2.10.30, 43.5 mm SL, Brazil, Mato Grosso, rio Coxipó, upper rio Paraguai; b. LBP 1477, 43.4 mm SL, Brazil, Mato Grosso do Sul, Coxim, rio Taquari, upper rio Paraguai.
Figures 17–22. Bomansius gabrieli. 17–19 in A new species of Bomansius Lacroix (Coleoptera: Lucanidae) from Vanuatu, with redescriptions of its genus and its only congener, Bomansius gabrieli Lacroix, 1978
Figures 17–22. Bomansius gabrieli. 17–19) Males. 17) Dorsal habitus. 18) Ventral habitus. 19) Lateral habitus. 20–22) Females. 20) Dorsal habitus. 21) Ventral habitus. 22) Lateral habitus.
Fig. 5 in Redescription of Hyphessobrycon itaparicensis, a senior synonym of H. sergipanus (Characiformes: Characidae)
Fig. 5. Distribution map of Hyphessobrycon itaparicensis. White and red stars represent the type localities of H. itaparicensis and H. sergipanus, respectively. Some circles indicate more than one sampling site. Names of the main drainages of the Northeastern Mata Atlântica ecoregion are given. Numbers refer to conservation units (1) Itabaiana National Park, (2) Baía de Todos os Santos Environmental Protection Area (EPA), (3) Caminhos Ecológicos da Boa Esperança EPA, (4) Pratigi EPA and (5) Baía de Camamu EPA.
Figure 4. Skelosophusa prolixa. A dorsal view B frontal view C sternal view D in A new species of Foza Reed & Cumberlidge, 2006 from northern Madagascar (Decapoda, Brachyura, Potamoidea, Potamonautidae), with a redescription of F. goudoti (H. Milne Edwards, 1853) comb. n., and comments on Skelosophusa prolixa Ng & Takeda, 1994
Figure 4. Skelosophusa prolixa. A dorsal view B frontal view C sternal view D major (left) cheliped. Adult male (NHM 2009.122), CW 29.3 mm.
Figure 2 in A new species of Foza Reed & Cumberlidge, 2006 from northern Madagascar (Decapoda, Brachyura, Potamoidea, Potamonautidae), with a redescription of F. goudoti (H. Milne Edwards, 1853) comb. n., and comments on Skelosophusa prolixa Ng & Takeda, 1994
Figure 2. Foza ambohitra sp. n. A dorsal view B frontal view C sternal view D major (right) cheliped. A, B adult female (FMNH 11056), CW 43.1 mm C, D holotype, adult male, CW 39.5 mm.
Fig. 1. A in Redescription of Inglisia vitrea Cockerell (Hemiptera, Coccidae) and its transfer to the genus Pseudokermes Cockerell
Fig. 1. A. Dry insects and twigs with original labels; B. Close-up of one dry adult female showing half of glassy covering removed; C. I. vitrea on leaf of greenhouse plant (Araliaceae), Brazil. (A and B: Type material of I. vitrea Cockerell, housed in USNM; photos by T. Kondo).
Fig. 7 in Redescription of some species of Bryozoa described by J. Jullien and L. Calvet in the NE Atlantic
Fig. 7. Rhynchozoon confusum (Calvet, 1906) comb. nov. A. Young autozooids in the colony margin; note the presence of small adventitious avicularia (MNHN 2354, paralectotype). B. Older zooids with indistinct margins and well-developed oral knobs (MNHN 494, paralectotype). C. Primary orifice (MNHN 4007, lectotype). D. Same, ovicell. E. Detail of an adventitious avicularium (MNHN 494, paralectotype).
Fig. 4 in Redescription of some species of Bryozoa described by J. Jullien and L. Calvet in the NE Atlantic
Fig. 4. Escharina alderi (Busk, 1856). A. Group of autozooids (NHMUK 1911.10.1.1197, type of Alysidota alderi Busk, 1856). B. Same, ovicellate zooid; note the distal marginal pores in the ovicell. C. Same, detail of a broken ovicell. D. Same, primary orifice. E. Ovicellate zooid and one adventitious avicularium in a uniserial colony (NHMUK 1899.7.1.2145, paratype of Alysidota alderi Busk, 1856).
Fig. 6 in Redescription of some species of Bryozoa described by J. Jullien and L. Calvet in the NE Atlantic
Fig. 6. Escharella guernei (Jullien & Calvet, 1903) comb. nov. A. Autozooids (MOM INV-22518, lectotype). B. Same, primary orifice. C. Same, ovicellate zooids. D. Ovicellate and non-ovicellate zooids; note the ovicells, recumbent or immersed (MNHN 7069).
Fig. 5. Schizoporella ovum Jullien, 1882. A in Redescription of some species of Bryozoa described by J. Jullien and L. Calvet in the NE Atlantic
Fig. 5. Schizoporella ovum Jullien, 1882. A. Entire colony (NHMUK 1899.7.1.2348, lectotype). B. Same, primary orifice. C. Same, a broken ovicell showing the marginal pores. D. Ovicellate and nonovicellate zooids (MNHN 2347, paralectotype). E. Dietella (MNHN 1025, paralectotype).
Fig. 2 in Redescription of some species of Bryozoa described by J. Jullien and L. Calvet in the NE Atlantic
Fig. 2. Pulpeirina amoena (Jullien & Calvet, 1903) comb. nov. A. Autozooids (MOM INV-22502, lectotype of Schizoporella jullieni Calvet in Jullien & Calvet, 1903). B. Same, ovicellate and nonovicellate zooids. C. Autozooids; note the distal dietella (MOM INV-22580). D. Same, primary orifice. E. Same, ovicells.
Fig. 1 in Redescription of some species of Bryozoa described by J. Jullien and L. Calvet in the NE Atlantic
Fig. 1. Lectotype of Hippothoa amoena Jullien & Calvet, 1903 (MOM INV-22578). A. Some autozooids. B. Group of irregular kenozooids. C. Primary orifice. D. Ovicell. E. Distal dietella.
Fig. 2. Psolus tessellatus Koehler, 1896. A. Dorsal scale. B in Redescription of Psolus tessellatus Koehler, 1896 (Echinodermata, Holothuroidea) with neotype designation
Fig. 2. Psolus tessellatus Koehler, 1896. A. Dorsal scale. B. Detail of dorsal scale. C. Plates of ventral sole. D. Rods of large tube feet. E. End plate of large tube feet. F. End plate of small tube feet. G. Perforated plates at the base of the large tube feet.
Fig. 1. Psolus tessellatus Koehler, 1896. A. Dorsal view. B. Buccal cone. C. Anal cone. D in Redescription of Psolus tessellatus Koehler, 1896 (Echinodermata, Holothuroidea) with neotype designation
Fig. 1. Psolus tessellatus Koehler, 1896. A. Dorsal view. B. Buccal cone. C. Anal cone. D. Ventral view.
Figs 41–48 in Redescription of the types of species of Anastatus Motschulsky, 1859 (Hymenoptera: Chalcidoidea: Eupelmidae) described by J.K. Sheng and coauthors
Figs 41–48. Anastatus shichengensis, ♀. 41–46. Holotype. 41. Body, lateral view. 42. Head, frontal view. 43. Body, dorsal view. 44. Head, lateral view. 45. Mesosoma, dorsal view. 46. Head, frontolateral view. – 47–48. Paratype. 47. Front leg (the tooth is arrowed). 48. Apex of mesotibia and mesotarsus.
Figs 34–40 in Redescription of the types of species of Anastatus Motschulsky, 1859 (Hymenoptera: Chalcidoidea: Eupelmidae) described by J.K. Sheng and coauthors
Figs 34–40. Anastatus meilingensis Sheng & Yu, 1998. 34–36, 39. Holotype, ♀. 37, 38, 40. Paratype, ♀. – 34. Body, dorsal view. 35. Head, frontodorsal view. 36. Body, lateral view. 37. Head, frontal view. 38. Mesonotum, dorsal view. 39. Antenna. 40. Head, dorsal view.
Figs 28–33 in Redescription of the types of species of Anastatus Motschulsky, 1859 (Hymenoptera: Chalcidoidea: Eupelmidae) described by J.K. Sheng and coauthors
Figs 28–33. Anastatus huangi Sheng & Yu, 1998, holotype, ♀. 28. Body, lateral view. 29. Head, frontodorsal view. 30. Head, frontal view. 31. Mesosoma, dorsal view. 32. Scutellar-axillar complex and fore wing, dorsal view. 33. Middle and hind legs.
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.