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.
226
datasets available to search
ShareScore release 0.9.0
Dataset results
226 results for “Herrera”
Figure 19 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 19 Cyphomyrmex rimosus worker micrographs in A head in full-face view B view in profile, and SEM images of C head and mesosoma in profile D propodeum in dorsal view E dorsal view.
Figure 2 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 2 Glossary of terminology labeled from left to right A lateral view of a major worker of Camponotus planusB profile view of terminal portion of gaster of Paratrechina longicornis (Latreille, 1802) C frontal view of Tetramorium bicarinatum (Nylander, 1846) D lateral view of Tetramorium bicarinatum. Abbreviations: ac = antenna club; acp = acidopore; c = clypeus; cx = coxa; ey = eye; fc = frontal carina; fl = frontal lobe; fu = funiculus; GA = gaster; G1, 2, 3, 4, 5 = gastral segments 1–5; HD = head; lc = lateral portion of clypeus; man = mandible; mb = basal margin of mandible; mc = median portion of clypeus; MES = mesosoma; mg = metanotal groove; mn = mesonotum; mpl = mesopleuron; mtp = metapleuron; om = occipital margin; pe = petiole; pms = promesonotal; pn = pronotum; pro = propodeum; ppt = post-petiole; ps = propodeal spine; py = pygidium; s = sting; sc = scape scb = scrobe; sp = spiracle.
Figure 18 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 18 Cyphomyrmex nesiotus worker micrographs in A head in full-face view B view in profile, and SEM images of C antennae in front view D mesosoma in profile E mesosoma in dorsal view.
Figure 11 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 11 Camponotus planus worker micrographs in A head in full-face view B view in profile, and SEM images of C head in full-face view D head profile view E mesosoma in profile.
Figure 13 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 13 Paratrechina longicornis worker micrographs in A head in full-face view B view in profile, and SEM images of C head in full-face view D view in profile E mesosoma in profile.
Figure 14 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 14 Adelomyrmex longinoi worker micrographs in A head in full-face view B view in profile, and SEM images of C propodeum, petiole and postpetiole in profile D antennae in front view E mandibles in front view F head in profile.
Figure 10 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 10 Camponotus macilentus worker micrographs in A head in full-face view B view in profile, and SEM images of C head in full-face view D view in profile E. mesosoma and head profile view.
Figure 16 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 16 Cardiocondyla minutior worker micrographs in A head in full-face view B view in profile, and SEM images of C mesosoma in profile D head in full-face view E head in profile F mesosoma in dorsal view.
Figure 12 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 12 Nylanderia steinheili worker micrographs in A head in full-face view B view in profile, and SEM images of C head in full-face view D view in profile E mesosoma in profile.
Figure 15 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 15 Cardiocondyla emeryi worker micrographs in A head in full-face view B view in profile, and SEM images of C head in full-face view D mesosoma in dorsal view E mesosoma in profile F propodeum, petiole and postpetiole in dorsal view.
Figure 1 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 1 Delimitation of the three periods in the study of Galápagos ants. Period I: 1877–1933; Period II: 1933 until the end of the 1990's; Period III: 2000 onwards. The following references correspond to the years listed in the figure: 1877 = Smith (1877); 1893 = Emery (1893); 1919 = Wheeler (1919); 1924 = Wheeler (1924); 1933 = Wheeler (1933); 1972 = Silberglied (1972); 1982 = Clark et al. (1982); 1984 = Lubin (1984); 1992 = (Snelling and Longino 1992); 1998 = Pezzatti et al. (1998); 2007 – 2011 = Pacheco et al. (2007), Herrera and Longino (2008), Herrera and Causton (2010), Lattke (2011); 2013 – 2014 = Herrera et al. (2013, 2014).
Figure 17 from: Herrera HW, Tocora MC, Fiorentino G, Causton CE, Dekoninck W, Hendrickx F (2024) The ants of the Galápagos Islands (Hymenoptera, Formicidae): a historical overview, checklist, and identification key. ZooKeys 1191: 151-213. https://doi.org/10.3897/zookeys.1191.107324
Figure 17 Crematogaster JTL-022 worker micrographs in A head in full-face view B view in profile, and SEM images of C petiole and postpetiole in profile D head in full-face view E view in profile.
Figure 1 from: Wilf P, Wing SL, Meyer HW, Rose JA, Saha R, Serre T, Cúneo NR, Donovan MP, Erwin DM, Gandolfo MA, González-Akre E, Herrera F, Hu S, Iglesias A, Johnson KR, Karim TS, Zou X (2021) An image dataset of cleared, x-rayed, and fossil leaves vetted to plant family for human and machine learning. PhytoKeys 187: 93-128. https://doi.org/10.3897/phytokeys.187.72350
Figure 1 Selected image pairs of confamilial extant and fossil (see Appendix 1) leaves from the dataset ABatesia floribunda Spruce ex. Benth. (Fabaceae), NCLC-W 6417, showing typical layout of a cleared-leaf slide with original annotations (other examples are cropped in this figure); source voucher Froes 12074, DS 291771 (at CAS), Amazonas, Brazil BFabaceae sp. CJ1, SGC-ICP-10173; Cerrejón mine, middle-late Paleocene of Guajira Peninsula, Colombia CCrataegus viridis L. (Rosaceae), NCLC-W 11951b; H. Meyer s/n (collected 1974, no other voucher), cultivated, California, USA DCrataegus copeana (Rosaceae), UCMP 3610; Florissant, late Eocene of Colorado, USA; H. Meyer photograph number 0420 ETetracentron sinense Oliv. (Trochodendraceae), S. Wing negative 71-002; E.H. Wilson 659, US 599036, Szechuan, China FZiziphoides flabellum (Trochodendraceae), USNM 560134; Mexican Hat, early Paleocene of Montana, USA GQuercus prinus L. (Fagaceae), NCLC-W 6137; H. Foster 8223, US 1730249, Florida, USA HFagopsis longifolia (Fagaceae), FLFO 003432A; Florissant, late Eocene of Colorado, USA IEucalyptus astringens (Maiden) Maiden (Myrtaceae), NCLC-W 10489; J.H. Maiden (9 November 1909), Western Australia, UC 437518 JEucalyptus frenguelliana (Myrtaceae), MPEF-Pb 2344; Laguna del Hunco, early Eocene of Chubut, Argentina KCercidiphyllum obtritum (Cercidiphyllaceae), DMNH 25061; Republic, early Eocene of Washington, USA LCercidiphyllum japonicum Siebold & Zucc. ex J.J.Hoffm. & J.H.Schult.bis (Cercidiphyllaceae), Axelrod cleared leaf 166; UCMP (no other voucher) MPlatanus racemosa Nutt. (Platanaceae), NCLC-H 6631; Handel s/n (collected 1985, no other voucher), California, USA NErlingdorfia montana (compound-leaved Platanaceae), DMNH 7642; Hell Creek Formation, Late Cretaceous of North Dakota, USA. Scale bars: centimeters as labeled (A, B, L, M); 1 cm when not labeled (C–K, N).
Supplementary material 1 from: Medina-Ortiz AJ, Herrera T, Vásquez-Dávila MA, Raja HA, Figueroa M (2017) The genus Podaxis in arid regions of Mexico: preliminary ITS phylogeny and ethnomycological use. MycoKeys 20: 17-36. https://doi.org/10.3897/mycokeys.20.11570
Fruit bodies and basidiospores of Podaxis specimens :
Figure 5 from: Medina-Ortiz AJ, Herrera T, Vásquez-Dávila MA, Raja HA, Figueroa M (2017) The genus Podaxis in arid regions of Mexico: preliminary ITS phylogeny and ethnomycological use. MycoKeys 20: 17-36. https://doi.org/10.3897/mycokeys.20.11570
Figure 5 - A Desert scrub B Immature state of Podaxis sp. (MEXU 27843) and C at maturity (the gleba changes from white to dark brown (MEXU 27844); Culinary preparation: D cleaning process of the fruiting body of Podaxis sp. and E mixing ingredients for the typical dish [onions, "epazote" (Dysphania ambrosioides) and green pepper (chile verde)].
Figure 4 from: Medina-Ortiz AJ, Herrera T, Vásquez-Dávila MA, Raja HA, Figueroa M (2017) The genus Podaxis in arid regions of Mexico: preliminary ITS phylogeny and ethnomycological use. MycoKeys 20: 17-36. https://doi.org/10.3897/mycokeys.20.11570
Figure 4 - Phylogram of the most likely tree (-lnL = 1860.99) from a RAxML analysis of 56 taxa based on ITS rDNA (681 bp). Numbers above the nodes refer to RAxML bootstrap support values ≥ 70% based on 1000 replicates. Clades to the right (A–F) are labeled as per Conlon et al. 2016. The tree is rooted with Leucocoprinus birnbaumii. Symbol (*) next to collections indicates, it was reported from termite mounds. Bar indicates nucleotide substitutions per site.
Figure 2 from: Medina-Ortiz AJ, Herrera T, Vásquez-Dávila MA, Raja HA, Figueroa M (2017) The genus Podaxis in arid regions of Mexico: preliminary ITS phylogeny and ethnomycological use. MycoKeys 20: 17-36. https://doi.org/10.3897/mycokeys.20.11570
Figure 2 - Fruit bodies and basidiospores of selected Podaxis specimens from clades D (MEXU 12808 and 27557) and E (MEXU 8424 and 8426).
Figure 3 from: Medina-Ortiz AJ, Herrera T, Vásquez-Dávila MA, Raja HA, Figueroa M (2017) The genus Podaxis in arid regions of Mexico: preliminary ITS phylogeny and ethnomycological use. MycoKeys 20: 17-36. https://doi.org/10.3897/mycokeys.20.11570
Figure 3 - Mean ± SE spore (A) length and (B) width of MEXU Podaxis specimens from clades D and E. Results of Mann-Whitney U test: D–E, p < 0.001.
Figure 2 from: Urbano-Bonilla A, Ballen GA, Herrera-R GA, Zamudio J, Herrera-Collazos EE, DoNascimiento C, Prada-Pedreros S, Maldonado-Ocampo JA (2018) Fishes of the Cusiana River (Meta River basin, Colombia), with a key to its species. ZooKeys 733: 65-97. https://doi.org/10.3897/zookeys.733.20159
Figure 2 Distribution of sampling records along the Elevational gradient in the Cusiana River sub-basin. Asterisks indicate categories with the lowest sampling along the elevational gradient.
Figure 3 from: Urbano-Bonilla A, Ballen GA, Herrera-R GA, Zamudio J, Herrera-Collazos EE, DoNascimiento C, Prada-Pedreros S, Maldonado-Ocampo JA (2018) Fishes of the Cusiana River (Meta River basin, Colombia), with a key to its species. ZooKeys 733: 65-97. https://doi.org/10.3897/zookeys.733.20159
Figure 3 Species accumulation curve in the Cusiana River sub-basin. Abbreviations: S.obs = observed richness, S.est = estimated richness. Continuous line represents interpolation, and dashed line represents extrapolation.
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.