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.
2,455
datasets available to search
ShareScore release 0.8.0
Dataset results
2,455 results for “nomenclature”
Figures 23-35 from: Kamimura Y, Ferreira RL (2017) Earwigs from Brazilian caves, with notes on the taxonomic and nomenclatural problems of the Dermaptera (Insecta). ZooKeys 713: 25-52. https://doi.org/10.3897/zookeys.713.15118
Figures 23-35 - 23–26 Euborellia janeirensis (male): habitus (23), penultimate sternite + manubrium (24), and genitalia (25, 26) 27–28 Euborellia janeirensis (female): habitus (27), and spermatheca (28) 29–32 Euborellia brasiliensis (male): habitus (29), penultimate sternite + manubrium (30), and genitalia (31, 32) 33 Anisolabididae gen. sp. 1 (female): habitus 34 Anisolabididae gen. sp. 2 (nymph): habitus 35 Anisolabididae gen. sp. 3 (nymph) habitus. Scale bars 3 mm for Figs 23–25, 27, 29, 30, 33–35; 0.5 mm for Figs 26, 28, 31; 100 μm for Fig. 32.
Figures 1-11 from: Kamimura Y, Ferreira RL (2017) Earwigs from Brazilian caves, with notes on the taxonomic and nomenclatural problems of the Dermaptera (Insecta). ZooKeys 713: 25-52. https://doi.org/10.3897/zookeys.713.15118
Figures 1-11 - 1-7 Cylindrogaster cavernicola Kamimura, sp. n. (male, holotype): habitus (1), head and thorax (2), tegmina and wings (3), penultimate sternite (4), ultimate tergite and forceps (5), and genitalia (6, 7) 8, 10 Cylindrogaster thoracicus (MM 3637; collected from Itatiaia, Brazil; det. W. D. Hincks): head and thorax (8), and genitalia (10) 9, 11Cylindrogaster gracilis: head and thorax (9: MM 3677; collected from Itatiaia, Brazil; det. W. D. Hincks), and genitalia (11: MM 3565; collected from Minas Gerais, Brazil; det. W. D. Hincks). Scale bars 3 mm for Fig. 1; 0.5 mm for Figs 2-6, 8-11; 200 ?m for Fig. 7.
Figure 2 from: Zheng T-X (2024) Nomenclatural notes of Frullania auriculata (Frullaniaceae) and lectotypification of Porella takakii (Porellaceae). PhytoKeys 241: 215-220. https://doi.org/10.3897/phytokeys.241.123013
Figure 2 Innermost female bracteole of Frullania auriculata S.Hatt. A from the original illustration (Hattori 1985) B from N. Kitagawa 23435 (NICH 389176). Arrows, arrow heads, asterisks and circles indicate the morphological similarities between A & B.
Figure 1 from: Zheng T-X (2024) Nomenclatural notes of Frullania auriculata (Frullaniaceae) and lectotypification of Porella takakii (Porellaceae). PhytoKeys 241: 215-220. https://doi.org/10.3897/phytokeys.241.123013
Figure 1 Specimen label of N. Kitagawa 23435 (NICH 389176). Arrow, arrow head and asterisk indicate "Types", "fig" and "この1点のみ" (= Only this one specimen), respectively, handwritten by Hattori.
Figure 3 from: Zheng T-X (2024) Nomenclatural notes of Frullania auriculata (Frullaniaceae) and lectotypification of Porella takakii (Porellaceae). PhytoKeys 241: 215-220. https://doi.org/10.3897/phytokeys.241.123013
Figure 3 Type citation of Porella takakii S.Hatt. in its protologue (Hattori 1953). Only substrate, ecological habitat, collection site, altitude, date and collector were given. The red underline indicates the absent specific number.
FIGURE 4. A in Taxonomic and Nomenclatural Notes on Six Genera of Acanthaceae in the West Indies
FIGURE 4. A. Lectotype of Stenandrium tuberosum from Burman (1756). B. Illustration of Stenandrium pinetorum from Jennings (1917). C. Isotype of Stenandrium droseroides, de la Sagra s.n. [000250674]. D. Stenandrium (likely S. tuberosum), part of tab. 12 with description from page 30 of Plumier (1703, as "Gerardia"); a. flower, b. corolla separated from c. calyx, d. capsule, e. septum, f. seed. E. Holotype of Stenandrium bracteosum, Wilson 7472 [00114975], courtesy of the C. V. Starr Virtual Herbarium of The New York Botanical Garden. F. Lectotype of Stenandrium ovatum, Ekman 10701 [05-310]. G. Lectotype of Stenandrium crenatum, Ekman 8700 [05-307].
FIGURE 3. A in Taxonomic and Nomenclatural Notes on Six Genera of Acanthaceae in the West Indies
FIGURE 3. A. Lectotype of Salpixantha coccinea from Hooker (1845); 1. inside of flower, 2. stamen, 3. cross-section of ovary, 4. longitudinal section of ovary. B. Illustration of Salpixantha purdieanus from Hooker (1876); 1. flower, 2. inside of flower, 3. stamen, 4. gynoecium, 5. section of ovary. C. Isolectotype of Samuelssonia verrucosa, Ekman H-9232 [05- 398]. D. Lectotype of Samuelssonia verrucosa, Ekman H-9232 [05-397].
Figure 1 in Diadromous fishes from Saint-Pierre and Miquelon archipelago: diagnoses, taxonomy, nomenclature and distribution
Figure 1. – Salvelinus fontinalis (Mitchill, 1814): neotype PSU 11387, Connetquot River, Connetquot River State Park, Long Island, New York, USA, 40°47.1714'N, 73°10.1134'W; credit photo J.R. Stauffer Jr. PSU.
Figure 8 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 8 Sesuvium ayresii: A the only species growing on the islet (Ile aux Fous, Mauritius, 1 August 2007) B clumps on sandy beach (Ilot Gabriel, Mauritius, 6 August 2007) C an individual clump on calcarenite (Ile de la Passe, Mauritius, 3 February 2007) D close-up of a flower (Rivulet Terre Rouge Bird Sanctuary, Mauritius, 1 September 2017). Photographs by F.B.V. Florens.
Figure 6 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 6 Phylogenetic relationships of perennial Sesuvium species from ML analysis of ITS sequences. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. ML bootstrap support/BI posterior probabilities are specified at the branch nodes (not shown when <50%).
Figure 7 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 7 Phylogenetic relationships of perennial Sesuvium species inferred from combined analysis of plastid (rps 16 intron, trnL-trnF, atpB-rbcL) and ITS sequences. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. ML bootstrap support/BI posterior probabilities are specified at the branch nodes (not shown when <50%).
Figure 3 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 3 SEM micrographs of Sesuvium seeds (covered with an aril). A, B S. portulacastrum subsp. persoonii C, D S. portulacastrum subsp. portulacastrum E, F S. verrucosum. Magnification: A, C, E: 70×; B, D, F: 300×. Arrow on image E indicates the detachment of the aril from the seed coat forming a distinctive fold in the cotyledon area.
Figure 5 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 5 Phylogenetic relationships of perennial Sesuvium species from ML analysis of combined plastid sequences (rps 16 intron, trnL-trnF, atpB-rbcL, 1377 bp in total). The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. ML bootstrap support/BI posterior probabilities are specified at the branch nodes (not shown when <50%).
Figure 2 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 2 SEM micrographs of Sesuvium seeds (covered with an aril). A, B S. ayresii C, D S. congense E, F S. crithmoides G, H S. crystallinum (now merged with S. crithmoides). Magnification: A, C, E, G: 70×; B, D, F, H : 300×.
Figure 17 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 17 Distribution map of Sesuvium portulacastrum subsp. persoonii (circles) and S. verrucosum (stars).
Figure 13 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 13 Parts of the plant of Sesuvium portulacastrum subsp. portulacastrum: A vegetative shoots B reproductive shoots. Photographs by M. Salas-Pascual (Gran Canaria, Canary Islands, Spain, July 2017).
Figure 1 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 1 Leaf anatomy of S. portulacastrum subsp. persoonii. Abbreviations: CHL chlorenchyma EP epidermis CR crystals (druses) ST starch grains in the palisade cells VB vascular bundles WST water storage tissue. Scale bar: 1 mm.
Figure 20 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 20 Sesuvium verrucosum: A green-leaved plants, B red-leaved plants. Photographs by F. Verloove (Gran Canaria, Canary Islands, Spain, spring 2017).
Figure 11 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 11 Parts of the plant of Sesuvium crithmoides: A reproductive shoots B close-up view of flowers. Photographs by C. Klak and P.V. Bruyns (at the mouth of Rio dos Flamingos, south of Namibe, Angola, December 2016).
Figure 10 from: Sukhorukov AP, Nilova MV, Erst AS, Kushunina M, Baider C, Verloove F, Salas-Pascual M, Belyaeva IV, Krinitsina AA, Bruyns PV, Klak C (2018) Diagnostics, taxonomy, nomenclature and distribution of perennial Sesuvium (Aizoaceae) in Africa. PhytoKeys 92: 45-88. https://doi.org/10.3897/phytokeys.92.22205
Figure 10 General view of Sesuvium crithmoides (incl. S. crystallinum) on the dunes of Rio dos Flamingos, Angola. Photographs by C. Klak and P.V. Bruyns (December 2016).
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.