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.
18,745
datasets available to search
ShareScore release 0.9.0
Dataset results
18,745 results for “Taxonomies”
Figure 1 in Revised taxonomy of eastern North Pacific killer whales ( Orcinus orca ): Bigg's and resident ecotypes deserve species status
Figure 1. Expected range maps for (a) resident and (b) Bigg's killer whales, including locations of samples used for mitogenome analysis (figure 5a, resident n = 106, Bigg's n = 93) [15]. Distribution ranges have been inferred based on published identifications of individuals that are identified by ecotype [48–53]. Sample distributions cover the known ranges of both ecotypes, with the exception of residents of Oregon and northern California, and both ecotypes off northern Japan (Hokkaido) in the western Pacific [48,54]. Sample maps for microsatellite data are in electronic supplementary material, figure S2.
Figure 8 in Revised taxonomy of eastern North Pacific killer whales ( Orcinus orca ): Bigg's and resident ecotypes deserve species status
Figure 8. Vertical images of (a) an adult male Bigg's killer whale (BKW) from the West Coast Transient population of Bigg's killer whales and (b) an adult male resident killer whale (RKW) from the sympatric Southern Resident population of resident killer whales. Images are scaled to the estimated asymptotic lengths of 7.3 m [20] and 6.9 m [145], respectively. Vertical images were collected using an octocopter drone using methods described by Durban et al. [146], provided by John Durban and Holly Fearnbach.
Figure 6 in Revised taxonomy of eastern North Pacific killer whales ( Orcinus orca ): Bigg's and resident ecotypes deserve species status
Figure 6. Illustrations of (a) O. ater and (b) O. rectipinnus from Scammon [138,140]. These illustrations were likely made by Scammon, or made under his guidance from his field notes and sketches. Whether they represent renderings of specific specimens, or composite sketches, is unknown.
Figure 2. Canonical variate 1 and 2 in Revised taxonomy of eastern North Pacific killer whales ( Orcinus orca ): Bigg's and resident ecotypes deserve species status
Figure 2. Canonical variate 1 and 2 plots for cranial shape features that distinguish among ecotypes for (a) skull morphology (resident (n = 17), Bigg's (n = 13) and offshore (n = 6)) and (b) dentary bone morphology (resident (n = 21), Bigg's (n = 12) and offshore (n = 8) specimens) (reprinted from [103]).
Figure 4. Structure assignment probability plots for K in Revised taxonomy of eastern North Pacific killer whales ( Orcinus orca ): Bigg's and resident ecotypes deserve species status
Figure 4. Structure assignment probability plots for K = 3 groups from (a) 26 microsatellites: offshore (n = 5), resident (n = 250), Bigg's (n = 116) samples genotyped at ≥ 20 loci) (56; unpublished); (b) 3340 RADseq SNPs (polymorphic in sample set): offshore (n = 7), resident (n = 52) and Bigg's (n = 37) populations [57,62]. Vertical bars represent the individual assignment probability for each group inferred by Structure (groups identified by shading), with samples sorted by a priori ecotype assignment. See electronic supplementary material for methods and data set information.
Figure 2 in Taxonomy, distribution, and ecology of crustacean zooplankton in trough waters of Ankara (Turkey)
Figure 2. UPGMA illustrates the clustering relationships of 12 zooplankton species. Abbreviations: EU: Eucyclops serrulatus; PC: Paracyclops chiltoni; AR: Acanthocyclops robustus; PF: Paracyclops fimbiratus; AV: Acanthocyclops vernalis; MH: Macrothrix hirsuticornis; CS: Chydorus sphaericus; PA: Pleuroxus aduncus; OT: Oxyurella tenuicaudis; LL: Leydigia leydigi; CAN: Canthocamptus staphylinus; ATT: Attheyalla crassa.
Figure 4 in Taxonomy, distribution, and ecology of crustacean zooplankton in trough waters of Ankara (Turkey)
Figure 4. Number of species (species no.) and numbers of troughs (trough no.) at 100-m altitudinal ranges.
Figure 3 in Taxonomy, distribution, and ecology of crustacean zooplankton in trough waters of Ankara (Turkey)
Figure 3. Distribution of the numbers of species among 142 troughs from no species (0) in 43 troughs to 5 (5+) or more species in 3 troughs.
FIG. 2. — Frevillea barbata A in Notes on the taxonomy of Frevillea A. Milne-Edwards, 1880 (Crustacea, Brachyura, Goneplacoidea), with the description of a new genus for F. sigsbei A. Milne-Edwards, 1880
FIG. 2. — Frevillea barbata A. Milne-Edwards, 1880: A, B, F, paralectotype ♂ (16.5 × 10.0 mm) (MNHN-IU-2014-7505); C, paralectotype ♀ (27.3 × 17.2 mm) (MCZ-IZ-CRU-9155); D, lectotype ♂ (29.5 × 18.4 mm) (MCZ-IZ-CRU-9155); E, paralectotype ♀ (22.7 × 15.7 mm) (MNHN-IU-2014-7506): A, left side of carapace and left cheliped; B, right chela; C-E, ventral view of cephalothorax and pleon; F, ♂ sternopleonal cavity. Credits: A, B, E, F photographs by P. K. L. Ng; C, D, photographs by Alana Rivera, MCZ.
FIG. 5 in Notes on the taxonomy of Frevillea A. Milne-Edwards, 1880 (Crustacea, Brachyura, Goneplacoidea), with the description of a new genus for F. sigsbei A. Milne-Edwards, 1880
FIG. 5. — Diuplax sigsbei (A. Milne-Edwards, 1880) n. comb.: A-C, lectotype ovigerous ♀ (15.3 × 9.5 mm) (MCZ-IZ-CRU-10991); D, E, paralectotype ♂ (14.1 × 8.4 mm) (MCZ-IZ-CRU-10992); F, ♂ (13.0 × 8.5 mm) (MNHN-IU-2014-11828); G, ♀ (10.8 × 7.3 mm) (MNHN-IU-2014-11828): A, B, D, F, G, overall dorsal view; C, E, ventral view of cephalothorax and pleon. Credits: A, after A. Milne-Edwards & Bouvier (1923: pl. 6, fig. 2); B, C, photographs by Alana Rivera, MCZ; D-G, photographs by P. K. L. Ng.
FIG. 1. — Frevillea barbata A in Notes on the taxonomy of Frevillea A. Milne-Edwards, 1880 (Crustacea, Brachyura, Goneplacoidea), with the description of a new genus for F. sigsbei A. Milne-Edwards, 1880
FIG. 1. — Frevillea barbata A. Milne-Edwards, 1880: A-D, lectotype ♂ (29.5 × 18.4 mm) (MCZ-IZ-CRU-9155); E, paralectotype ♀ (27.3 × 17.2 mm) (MCZ-IZ- CRU-9155); F, paralectotype ♂ (16.5 × 10.0 mm) (MNHN-IU-2014-7505); G, paralectotype ♀ (22.7 × 15.7 mm) (MNHN-IU-2014-7506); H, juvenile paralectotype ♀ (7.9 × 5.0 mm) (MNHN-IU-2014-7506): A, D-H, overall dorsal views; B, right chela; C, pleon. Credits: A-C after A. Milne-Edwards & Bouvier (1923: fig. 2; pl. 7, figs 1, 2); D, E, photographs by Alana Rivera, MCZ;, F-H, photographs by P. K. L. Ng.
FIG. 7 in Notes on the taxonomy of Frevillea A. Milne-Edwards, 1880 (Crustacea, Brachyura, Goneplacoidea), with the description of a new genus for F. sigsbei A. Milne-Edwards, 1880
FIG. 7. — Goneplax rhomboides (Linnaeus, 1758), ♂ (36.5 × 22.6 mm) (ZRC 2010.0069), Scotland. A, dorsal view of carapace; B, frontal view of cephalothorax; C, left third maxilliped; D, anterior thoracic sternum and pleon; E, posterior thoracic sternum and pleon; F, right merus of cheliped (inner view); G, left fourth ambulatory leg. Credits: photographs by P. K. L. Ng.
FIG. 4. — Frevillea tridentata A in Notes on the taxonomy of Frevillea A. Milne-Edwards, 1880 (Crustacea, Brachyura, Goneplacoidea), with the description of a new genus for F. sigsbei A. Milne-Edwards, 1880
FIG. 4. — Frevillea tridentata A. Milne-Edwards, 1880 (now Trapezioplax tridentata): A-D, lectotype ♀ (8.5 × 4.7 mm) (MCZ-IZ-CRU-9170); E, F, paralectotype ♂ (6.9 × 4.3 mm) (MCZ-IZ-CRU-9170); G, H, right cheliped from either male or female specimen from MCZ (MCZ-IZ-CRU-9170); I-K, ambulatory legs from either MCZ specimen: A, C, E, overall dorsal view; B, pleon; D, F, ventral view of cephalothorax; G, right cheliped (dorsal view); H, right cheliped (ventral view); I, right ambulatory leg; J, K, left ambulatory leg. Credits: A, B, after A. Milne-Edwards & Bouvier (1923: fig. 4; pl. 6 fig. 3); C-K, photographs by Alana Rivera, MCZ.
FIG. 6 in Notes on the taxonomy of Frevillea A. Milne-Edwards, 1880 (Crustacea, Brachyura, Goneplacoidea), with the description of a new genus for F. sigsbei A. Milne-Edwards, 1880
FIG. 6. — Diuplax sigsbei (A. Milne-Edwards, 1880) n. comb.: A, lectotype ovigerous ♀ (15.3 × 9.5 mm) (MCZ-IZ-CRU-10991); B-I, ♂ (13.0 × 8.5 mm) (MNHN- IU-2014-11828); A, frontal view of cephalothorax; B, left side of carapace showing orbit and third maxilliped (left side); C, ♂ thoracic sternite 8 and pleonal somites 1 and 2; D, sternopleonal cavity; E, penis and coxa of fourth ambulatory leg (tilted at angle to see penis); F, left G1; G, distal part of left G1; H, left G2; I, distal part of left G2. Credits: A, after A. Milne-Edwards & Bouvier (1923: fig. 3); B, D, F-I, after Guinot (1969b: figs 63, 68, 71, 72); C, E, by P. K. L. Ng. Abbreviations: cx5, coxa of fourth ambulatory leg; pe, penis; so1, 2, pleonal somites 1 and 2, respectively; st5-8, thoracic sternites 5-8.
Supplementary material of the manuscript "Beyond authorship: Analyzing disciplinary patterns of contribution statements using the CRediT taxonomy"
<p>Supplementary material of the manuscript "Beyond authorship: Analyzing disciplinary patterns of contribution statements using the CRediT taxonomy". In this research article we present the first cross-disciplinary descriptive analysis on the use of contribution statements. Our main objective is to obtain further insight on contributions by a variety of fields (Multidisciplinary, Health, Life, Physical and Social Sciences) from the largest dataset used up to now. We examine more than 700,000 articles published between 2017 and 2024 in Elsevier and PLOS journals, in combination with bibliometric data extracted from the Scopus database. The descriptive analysis of the dataset focuses on the overall coverage of the merged data, the distribution of authorship and disciplines at paper level, and the interactions between contribution statements, author order and disciplines. Our two main findings indicate that, on the one hand, looking at contributions and authorship order can enrich the way we understand science as a social endeavor. On the other hand, delving deeper into contributorship differences by field is key. We underscore the value of the CRediT taxonomy in unveiling nuanced research dynamics and offering a more equitable framework for evaluation.</p>
Figures 9–17 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 9–17: Comparative adult specimens of Cerurina marshalli (all ANHRT, unless otherwise indicated), arrows indicate diagnostic generic characters. 9. Syntype ♀, Zimbabwe, Mashonaland (NHMUK), a. defined antemedial fascia, b. almost completely deleted subterminal fascia; 10. Zambia, Mutinondo (ANHRTUK00152995, LG5366♀); 11. Zambia, Mutinondo (ANHRTUK00152996, LG5357♀); 12. Zambia, Lukwakwa (ANHRTUK00061207, ANHRT Gen. slide no. 00519♀); 13. Zambia, Lukwakwa (ANHRTUK00061232, LG5358♂); 14. Zambia, Kitwe (ANHRTUK00050387, ♂); 15. Ivory Coast, Mt. Tonkoui (ANHRTUK00043082, ANHRT Gen. slide no. 00315♂); 16. Tanzania, Livingstone Mts. (ANHRTUK00081591, ANHRT Gen. slide no. 00520♂); 17. D. R. Congo, Nord Kivu (ANHRTUK00158203, LG5367♂).
Figures 39‒42 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 39‒42 ‒ Male genitalia of Afrocerura spp. (all ANHRT), arrow indicates a diagnostic generic character. 39. A. cameroona (Bethune-Baker, 1927), Gabon, Ivindo N.P. (ANHRTUK00044930, ANHRT slide no. 00521♂); 40. A. cameroona, Zambia, Kafue N.P. (ANHRTUK00081592, ANHRT slide no. 00522♂); 41. A. cameroona, Zambia, Hillwood, Ikelenge (ANHRTUK00073571, LG5359♂); 42. A. thomensis (Talbot, 1929), São Tomé, Bom Successo (ANHRTUK00041722, LG5362♂), a. dorsal crest on the uncus.
Figures 32‒35 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 32‒35: Male genitalia of Cerurina marshalli (Hampson, 1910) (all ANHRT), arrows indicate diagnostic generic characters. 32. Zambia, Lukwakwa (ANHRTUK00061232, LG5358♂), a. bifid uncus tip and lateral denticulations, b. socii well developed with 2‒3 denticulations, c. valvae club-like and apically rounded; 33. Ivory Coast, Mt. Tonkoui, (ANHRTUK00043082, ANHRT Gen. slide no. 00315♂); 34. Tanzania, Livingstone Mts. (ANHRTUK00081591, ANHRT Gen. slide no. 00520♂); 35. D.R. Congo, Nord Kivu (ANHRTUK00158203, LG5367♂).
Figures 36‒38 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 36‒38 ‒ Male genitalia of Afrocerura spp. (all ANHRT), arrows indicate diagnostic generic characters. 36. A. leonensis (Hampson, 1910), Guinea, Dalaba (ANHRTUK00103029, LG5368♂), a. narrow uncus tip without denticulate margins, b. relatively short, slender, slightly arched socii without denticulations; 37. A. bifasciata bifasciata (Janse, 1920), Zambia, Kasanka N.P. (ANHRTUK00073572, LG5363♂), c. narrow valvae; 38. A. bifasciata bifasciata, Zambia, Kankonde Camp, Mutinondo Stream (ANHRTUK00073573, LG5364♂).
Figure 48 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figure 48: Geographical proximity of the type locality of Afrocerura cameroona (HT♀), the type locality of Cerura argentina Schultze, 1916 (ST♀♂) and the collecting locality of the ANHRT Gabon specimen (ANHRTUK00044930, ♂), all believed here to be conspecific with A. cameroona.
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.