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.
485
datasets available to search
ShareScore release 0.9.0
Dataset results
485 results for “cooking”
Linked collectors and determiners for: Expanded concept and revised taxonomy of the milliped family Xystodesmidae Cook, 1895 (Polydesmida: Leptodesmidea: Xystodesmoidea): incorporations of Euryuridae Pocock, 1909 and Eurymerodesmidae Causey, 1951, taxon revivals / proposals / transferrals, and a distributional update.
Natural history specimen data linked to collectors and determiners held within, "Expanded concept and revised taxonomy of the milliped family Xystodesmidae Cook, 1895 (Polydesmida: Leptodesmidea: Xystodesmoidea): incorporations of Euryuridae Pocock, 1909 and Eurymerodesmidae Causey, 1951, taxon revivals / proposals / transferrals, and a distributional update". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b412f1c4-28b9-4786-9aec-f930c9c00373">https://bionomia.net/dataset/b412f1c4-28b9-4786-9aec-f930c9c00373</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b412f1c4-28b9-4786-9aec-f930c9c00373">https://gbif.org/dataset/b412f1c4-28b9-4786-9aec-f930c9c00373</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Neoniphon pencei, a new species of holocentrid (Teleostei: Beryciformes) from Rarotonga, Cook Islands.
Natural history specimen data linked to collectors and determiners held within, "Neoniphon pencei, a new species of holocentrid (Teleostei: Beryciformes) from Rarotonga, Cook Islands". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d314a5d4-ef46-465b-a008-00337afcd1f0">https://bionomia.net/dataset/d314a5d4-ef46-465b-a008-00337afcd1f0</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d314a5d4-ef46-465b-a008-00337afcd1f0">https://gbif.org/dataset/d314a5d4-ef46-465b-a008-00337afcd1f0</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: The Albert J. Cook Arthropod Research Collection.
Natural history specimen data linked to collectors and determiners held within, "The Albert J. Cook Arthropod Research Collection". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/76525e81-9210-401d-a90d-5509f771c0e7">https://bionomia.net/dataset/76525e81-9210-401d-a90d-5509f771c0e7</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/76525e81-9210-401d-a90d-5509f771c0e7">https://gbif.org/dataset/76525e81-9210-401d-a90d-5509f771c0e7</a>. Formatted as a Frictionless Data package.
Figures 15–22 in Parajulid milliped studies XII: Initial assessment of Ptyoiulus Cook 1895 and neotype designations for Julus impressus Say 1821 and J. montanus Cope 1869 (Diplopoda: Julida)
Figures 15–22. Gonopodal variation in P. montanus. 15) Distal extremity of right anterior gonopod of male from Montgomery Co., Virginia, caudal view. 16) The same of male from Tishomingo Co., Mississippi. 17) The same of male from DeKalb Co., Georgia. 18) The same of male from Craighead Co., Arkansas. 19) The same of male from Clay Co., Arkansas. 20) Right posterior gonopod of male from Mason Co., Tennessee, lateral view. 21) The same of male from Tishomingo Co., Mississippi. 22) The same of male from Montgomery Co., Virginia. Abbreviations as in Fig. 5–6.
Figures 7–13 in Parajulid milliped studies XII: Initial assessment of Ptyoiulus Cook 1895 and neotype designations for Julus impressus Say 1821 and J. montanus Cope 1869 (Diplopoda: Julida)
Figures 7–13. Gonopodal variation in P. impressus. 7) Distal extremity of right anterior gonopod of neotype, caudal view. 8) The same of male from Rabun Co., Georgia. 9) The same of male from Liberty Co., Florida. 10) The same of male from Leon Co., Florida. 11) The same of male from Greene Co., Arkansas. 12) Right posterior gonopod of male from Rabun Co., Georgia, lateral view. 13) The same of male from Greene Co., Arkansas. Abbreviations as in Fig. 5–6.
Figure 14 in Parajulid milliped studies XII: Initial assessment of Ptyoiulus Cook 1895 and neotype designations for Julus impressus Say 1821 and J. montanus Cope 1869 (Diplopoda: Julida)
Figure 14. Distributions of species of Ptyoiulus. Black dots, P. impressus. Open black circle in southeastern Pennsylvania, denoted by the black arrow, is the neotype locality. Red dots, P. montanus. Open red circle in central North Carolina, denoted by the red arrow, is the neotype locality. Blue dots, geographically significant samples lacking adult males and presently unidentifiable to species.
Figures 5–6. Ptyoiulus spp. anterior gonopods, caudal views. 5 in Parajulid milliped studies XII: Initial assessment of Ptyoiulus Cook 1895 and neotype designations for Julus impressus Say 1821 and J. montanus Cope 1869 (Diplopoda: Julida)
Figures 5–6. Ptyoiulus spp. anterior gonopods, caudal views. 5) P. impressus. 6) P. montanus. at, anterior gonopod telopodite; ca, calyx; cp, coxal process stem.
Figure 4 in Parajulid milliped studies XII: Initial assessment of Ptyoiulus Cook 1895 and neotype designations for Julus impressus Say 1821 and J. montanus Cope 1869 (Diplopoda: Julida)
Figure 4. Distributions of Ptyoiulus/Ptyoiulinae plotted against the maximal extent of the Western Interior Seaway during the Cretaceous Period, Mesozoic Era. All land areas shown are in the eastern land mass, Appalachia, which was separated from western Laramidia by the vertical, latitudinal arm of the Seaway (not shown), which segregated Ptyoiulus from bollmaniulinines in Laramidia but is irrelevant to Ptyoiulus itself. The Seaway spread eastward south of Appalachia and when it receded, P. impressus spread southward into the formerly inundated area. 1, large, contiguous main range area. 2, small, disjunct northernmost population extending from Montreal, Québec, to northern Vermont. 3, disjunct population along the southwestern coast of Lake Michigan. 4, disjunct area in northeastern/eastcentral Arkansas. 5, point locality in northeastern Louisiana vouchered by females. The transect denoted by the red lines near the center of the distribution is the band occupied by both P. montanus and P. impressus; the latter occurs alone to the north and south.
Figures 1–3 in Parajulid milliped studies XII: Initial assessment of Ptyoiulus Cook 1895 and neotype designations for Julus impressus Say 1821 and J. montanus Cope 1869 (Diplopoda: Julida)
Figures 1–3. Pilosity and epiproct variation on caudalmost rings of Ptyoiulus impressus. 1) Specimen from Morgan Co., Ohio. 2) Specimen from Allen Co., Kentucky. 3) Specimen from Leon Co., Florida. e, epiproct; h, hypoproct; lp, left paraproct.
FIGURE 233 in GEORGE MELIKA, JULI PUJADE-VILLAR, JAMES A. NICHOLLS, VICTOR CUESTA-PORTA, CRYSTAL COOKE-McEWEN & GRAHAM N. STONE (2021) Three new Nearctic genera of oak cynipid gall wasps (Hymenoptera: Cynipidae: Cynipini): Burnettweldia Pujade-Villar, Melika & Nicholls, Nichollsiella Melika, Pujade-Villar & Stone, Disholandricus Melika, Pujade-Villar & Nicholls; and re-establishment of the genus Paracraspis Weld. Zootaxa, 4993: 001-081.
FIGURE 233. Consensus tree showing the relationships among the three new Nearctic gall wasp genera Burnettweldia, Nichollsiella and Disholandricus, the re-established genus Paracraspis and other allied genera, based on a Bayesian analysis of a concatenation of three loci (cytochrome b, long-wavelength opsin, and the D2 region of the 28S rRNA gene). Numbers above nodes indicate posterior probability support; nodes with <70% support have been collapsed.
Fig. 3 in Two parthenogenetic millipede species/lines of the genus Poratia Cook & Cook, 1894 (Diplopoda, Polydesmida, Pyrgodesmidae) found free from Wolbachia bacteria
Fig. 3. Agarose gel picture showing the results of PCR analysis of Poratia digitata egg DNA using specific WOB76f/WOB1012r primers, to illustrate the presence of eubacteria, but no Wolbachia.
Fig. 1 in Two parthenogenetic millipede species/lines of the genus Poratia Cook & Cook, 1894 (Diplopoda, Polydesmida, Pyrgodesmidae) found free from Wolbachia bacteria
Fig. 1. Agarose gel picture showing the results of PCR analysis of Poratia DNA using primers specific to the wsp gene of Wolbachia, but with traces of a band of the same molecular weight (ca 600 pairs of nucleotides) as in Wolbachia.
Fig. 2 in Two parthenogenetic millipede species/lines of the genus Poratia Cook & Cook, 1894 (Diplopoda, Polydesmida, Pyrgodesmidae) found free from Wolbachia bacteria
Fig. 2. Agarose gel picture showing PCR analysis of Poratia DNA using general eubacterial primers, with a band corresponding to 1459 pairs of nucleotides (eubacteria) being particularly distinct.
Figures 7-8. 7 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 7-8. 7 Adult male holotype of Troglocubazomus inexpectatus sp. n., close-ups: a) pedipalps, lateral view; b) abdominal segments IX–XII and flagellum, dorsal view; c) abdominal segments IX–XII and flagellum, lateral view. 8 Adult male topotype of Troglocubazomus orghidani included here for comparison, close-ups: a) pedipalps, lateral view; b) abdominal segments IX–XII and flagellum, dorsal view; c) abdominal segments IX–XII and flagellum, lateral view.
Figures 1-2. 1 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 1-2. 1 Adult male holotype of Antillostenochrus eremita sp. n., habitus: a) dorsal view; b) lateral view. 2 Subadult (?) female paratype of Antillostenochrus eremita sp. n., habitus: a) dorsal view; b) lateral view.
Figures 5-6. 5 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 5-6. 5 Adult male holotype of Troglocubazomus inexpectatus sp. n., habitus: a) dorsal view; b) lateral view. 6 Adult male topotype of Troglocubazomus orghidani included here for comparison, habitus: a) dorsal view; b) lateral view.
Figures 3-4. 3 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 3-4. 3 Adult male holotype of Antillostenochrus eremita sp. n., close-ups: a) pedipalps, lateral view; b) abdominal segments IX–XII and flagellum, dorsal view; c) abdominal segments IX–XII and flagellum, lateral view. 4 Subadult (?) female paratype of Antillostenochrus eremita sp. n., close-ups: a) pedipalps, lateral view; b) abdominal segments VIII–XII and flagellum, dorsal view; c) abdominal segments VIII–XII and flagellum, lateral view.
Figures 12-13. 12 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 12-13. 12 Map showing the geographical distribution of Antillostenochrus eremita sp. n. (red symbol) and the remaining Cuban populations of the genus (yellow symbols). Image frame = 450 x 195 km. 13 Map showing the geographical distribution of Troglocubazomus inexpectatus sp. n. (red symbol) and Troglocubazomus orghidani (yellow symbol). Image frame = 450 x 195 km.
Figures 9-11. 9 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 9-11. 9 Ecological conditions at the type-locality of Antillostenochrus eremita sp. n.: a) overview of the area; b) detail, the types were found under the larger tree at center; c) exact finding spot, see the large rocks semi-buried at the tree base. 10 Ecological conditions at the type-locality of Troglocubazomus inexpectatus sp. n.: a) overview of the area; b) detail, see the cave entrance at bottom right; c) exact finding spot, the holotype was found under the rock turned-over at center. 11 Ecological conditions at the type-locality of Troglocubazomus orghidani included here for comparison: a) overview of the area; b) detail, the cave entrance is located at bottom left; c) exact finding spot, see the senior author in the moment of collecting a topotype.
Figure 17 in Expanded concept and revised taxonomy of the milliped family Xystodesmidae Cook, 1895 (Polydesmida: Leptodesmidea: Xystodesmoidea): incorporations of Euryuridae Pocock, 1909 and Eurymerodesmidae Causey, 1951, taxon revivals/proposals/ transferrals, and a distributional update
Figure 17. Global distribution of Xystodesmidae.
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.