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 0.7.1
Dataset results
2,455 results for “nomenclature”
FIGURE 3. Bayesian 50 in Two new species of Pisolithus (Sclerodermataceae) from Australasia, and an assessment of the confused nomenclature of P. tinctorius
FIGURE 3. Bayesian 50% majority-rule consensus tree of the ITS nrDNA of the Australasian taxa Pisolithus, with some European clades as outgroup. Bayesian posterior probabilities (PP) values are indicated above or below branches. Novel sequences bold. Species clade numbering indicated as per Martin et al. (2002) and Phosri et al. (2012).
FIGURE 6. Pisolithus marmoratus. a in Two new species of Pisolithus (Sclerodermataceae) from Australasia, and an assessment of the confused nomenclature of P. tinctorius
FIGURE 6. Pisolithus marmoratus. a sporocarp (PDD93554); b SEM of spores (PDD77426); c–d spores (PDD77289).
FIGURE 5. Pisolithus croceorrhizus. a in Two new species of Pisolithus (Sclerodermataceae) from Australasia, and an assessment of the confused nomenclature of P. tinctorius
FIGURE 5. Pisolithus croceorrhizus. a sporocarps (PDD77286); b (PDD74169); c–d spores (PDD77431); e SEM of spores (PDD77437).
FIGURE 4. Pisolithus albus. a in Two new species of Pisolithus (Sclerodermataceae) from Australasia, and an assessment of the confused nomenclature of P. tinctorius
FIGURE 4. Pisolithus albus. a sporocarp (PDD77432); b–c SEMs of spores (PDD77430); d–e spores (PDD77430).
FIGURE 1 in Two new species of Pisolithus (Sclerodermataceae) from Australasia, and an assessment of the confused nomenclature of P. tinctorius
FIGURE 1. Typical habitat. New Zealand: a. thermal area with vents in middle distance and surrounding pine plantations visible (T. Lebel); b. fruitbodies of Pisolithus albus along path edge in thermal area (T. Lebel); c. sampling for Pisolithus, steam vents visible in background (T. Lebel); d. Pisolithus thermaeus fruitbodies at edge of steam vent (T. Lebel). Australia: e. typical disturbed ground in gravel track (S. McMullan-Fisher); f. fruitbodies along edge of walking path (S. McMullan-Fisher).
FIGURE 3 in Reinterpretation of the nomenclatural type of Archimedea pyramidalis (Balanophoraceae) with new combination to Lophophytum
FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. D–E. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1–B). F. Pistillate flowers (compare with Figure 1–E); arrow shows the cavities where the styles were originally inserted (see also Figure 1–D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit: A. Royal Botanic Gardens, Kew.
FIGURE 1 in Reinterpretation of the nomenclatural type of Archimedea pyramidalis (Balanophoraceae) with new combination to Lophophytum
FIGURE 1. Morphological features of Lophophytum pyramidale. A. Live specimen in its habitat (M.L. Brotto 1361, MBM). B. Anthers; arrows indicate the thecae insertion in different heights of the connective. C. Base of the inflorescence showing pistillate secondary branches. D–E. Alternate organization of the floral bracts and pistillate flowers covering the entire secondary branch (D. Frontal view; E. Lateral view). F. Individualized floral bract and pistillate flower (J.M.A. Braga 1623, RB).—Abbreviations: Br, scale-like bracts; C, cavities where the styles were originally inserted; Fb, floral bract; Pb, pistillate secondary branch; Pf, pistillate flower; S, style; Sb, staminate secondary branch.—Photo credit: A, M.L. Brotto.
FIGURE 1 in The nomenclatural types of four names in Lonicera (Caprifoliaceae)
FIGURE 1. Lectotype of Lonicera maialis Sennen (BC barcode BC966296).—Photography by courtesy of Herbarium BC; reproduced with permission.
FIGURE 4 in Reinterpretation of the nomenclatural type of Archimedea pyramidalis (Balanophoraceae) with new combination to Lophophytum
FIGURE 4. Epitype of Archimedea pyramidalis (J.M.A. Braga 1623, RB)—Photo credit: Rio de Janeiro Botanical Garden Research Institute. Jabot—Brazilian Flora database.
FIGURE 2 in Reinterpretation of the nomenclatural type of Archimedea pyramidalis (Balanophoraceae) with new combination to Lophophytum
FIGURE 2. Part of the original manuscript of Fr. Leandro do Sacramento with description of Archimedea pyramidalis, found in the Archives of The National Library of Brazil. The same manuscript transcribed by Saint-Hilaire (1837).
FIGURE 4 in Nomenclatural notes in Anathallis microphyta (Pleurothallidinae, Orchidaceae)
FIGURE 4. Anathallis microphyta (Barb. Rodr.) C.O.Azevedo & Van den Berg. A. Flower, side view. B. Habit, notice small size of the plant. Based on A. Toscano de Brito 3350. Photographs by Wade Collier & A. Toscano de Brito.
FIGURE 2 in Nomenclatural notes in Anathallis microphyta (Pleurothallidinae, Orchidaceae)
FIGURE 2. Anathallis microphyta (Barb. Rodr.) C.O.Azevedo & Van den Berg A. Flower, frontal view. B. Flower, ¾ view. C. Dorsal sepal, frontal view. D. Lateral sepal, frontal view. E. Petal, frontal view. F–G. Lip variation. H. Lip, lateral view. I. Ovary, column and lip, side view. J–L. Petal shape and indument variation, frontal view. M. Habit. Based on C.E. Siqueira 147, except: F and J, from M.C. Santos 20, and L, from Hatschbach, 21332. Drawn by Helena Ignowski.
FIGURE 3 in Nomenclatural notes in Anathallis microphyta (Pleurothallidinae, Orchidaceae)
FIGURE 3. Anathallis microphyta (Barb. Rodr.) C.O.Azevedo & Van den Berg. A. Habit. B. Flower, side view. C. Flower, frontal view. D. Flower, ¾ view. Based on A. Toscano de Brito 3501. Photographs by Wade Collier & A. Toscano de Brito.
FIGURE 6 in Nomenclatural notes in Anathallis microphyta (Pleurothallidinae, Orchidaceae)
FIGURE 6. SEM of Anathallis microphyta (Barb. Rodr.) C.O.Azevedo & Van den Berg. A. Petal, adaxial surface. B. Petal, abaxial surface. C. Petal, abaxial surface. D. Lip, adaxial surface. E. Lip, adaxial surface. F. Lobules on basal corners of lip. G. Adaxial surface of lip apex showing papillae and stomata. H. Stomata on lip adaxial surface. A, E–G, from M.C. Santos 20; B and D, from Siqueira 147; C, from Hatschbach 21332. H, from A. Toscano de Brito 3082.
FIGURE 5 in Nomenclatural notes in Anathallis microphyta (Pleurothallidinae, Orchidaceae)
FIGURE 5. Anathallis microphyta (Barb. Rodr.) C.O.Azevedo & Van den Berg. A. Dorsal sepal, frontal view. B–C. Lateral sepals, frontal view. D. Petal, frontal view. E. Lip, frontal view. F. Column, ¾ view. All based on J. Klein 008. Photographs by Jacques Klein.
FIGURE 4 in Nomenclatural novelties and typifications in Spinopalmoxylon, Sapindoidea and Carpolithes (fossil Magnoliidae) from central European Paleogene and Neogene
FIGURE 4. Carpolithes mettenii (Unger) Winterscheid; Bad Salzhausen near Nidda in Vogelsberg, middle Miocene (Langhian) [A– K]; and former open-cast mine "Ribbertwerk" near Hermühlheim, lower Miocene (Burdigalian) [L–P]. A–E. Neotype of Carpolithes mettenii [MB.Pb.2005/0705.1]. A–D. Lateral views. E. Apical view. F. Syntypes of Carpolithes mettenii [MB.Pb.2005/0705.2–13]. G–H. Original collection-labels. I. Syntypes illustrated in Ludwig (1860: pl. 60, figs 2a–f, as Trapa globosa R. Ludwig). K. Syntypes illustrated in Kirchheimer (1936: pl. 11, fig. 2b, as Spondiaecarpum turbinatum Menzel). L–P. Lectotype of Spondiaecarpum turbinatum [MB. Pb.2004/1100.1]. L–O. Lateral views. P. Apical view. A–E, L–P. Scale bar = 2 mm. F, I, K. Scale bar = 20 mm.
FIGURE 1 in Nomenclatural notes in Anathallis microphyta (Pleurothallidinae, Orchidaceae)
FIGURE 1. Anathallis microphyta (Barb. Rodr.) C.O.Azevedo & Van den Berg, Barbosa Rodrigues's original illustration reproduced in Sprunger et al. (1996: vol. 1: 426, fig. B, as Pleurothallis microphyta (Barb. Rodr.) Cogn. and here modified to show this species with estimated scales. Reproduced with permission of the Reinhardt Verlag, Basel.
FIGURE 2 in Nomenclatural novelties and typifications in Spinopalmoxylon, Sapindoidea and Carpolithes (fossil Magnoliidae) from central European Paleogene and Neogene
FIGURE 2. Spinopalmoxylon teutonicum (R.Ludw.) Winterscheid; Laubach near Giessen (Germany); middle Miocene (Langhian) brown coal of intravolcanic sediment deposits. A–C. Groups of spines on spathaceous bracts (A, B) and leaf sheaths (C). A. Neotype of Palaeospathe daemonorops [MB.Pb.1980/0296]. B. Syntype [MB.Pb.2016/1652]. C. Syntype [MB.Pb.2016/1654]. D. Isolated groups of spines of the lectotype [MB.Pb.2005/0214.1] (left) and syntype [MB.Pb.2005/0214.2] (right) of Chamaerops teutonica, and original collection-label. Scale bars = 20 mm.
FIGURE 3 in Nomenclatural novelties and typifications in Spinopalmoxylon, Sapindoidea and Carpolithes (fossil Magnoliidae) from central European Paleogene and Neogene
FIGURE 3. Sapindoidea margaritifera (R.Ludw.) Kirchh. and S. globosa (R.Ludw.) Kirchh.; Bad Salzhausen near Nidda in Vogelsberg; middle Miocene (Langhian). A. Sapindoidea margaritifera (R.Ludw.) Kirchh., lectotype at top right [MB.Pb.2005/0696.1] and syntypes [MB.Pb.2005/0696.2–5], with original collection-label. B. Sapindoidea globosa (R.Ludw.) Kirchh., lectotype at top right [MB. Pb.2005/0689.1] and syntypes [MB.Pb.2005/0689.2–7], with original collection-label. A. Scale bar = 10 mm. B. Scale bar = 20 mm.
FIGURE 1. Vriesea ensiformis var. ensiformis and V. simplex. A–D, V. ensiformis var. ensiformis. A in Nomenclature and epitypification of Vriesea (Bromeliaceae) species described in Vellozo's Flora fluminensis
FIGURE 1. Vriesea ensiformis var. ensiformis and V. simplex. A–D, V. ensiformis var. ensiformis. A, Lectotype (designated by Smith [Smith & Downs 1977]): Original parchment plate of Flora fluminensis in the Manuscript Section of the Biblioteca Nacional, Rio de Janeiro [cat. no.: mss1198652_133], published in 3rd Iconograph: Vellozo (1831: tab.129). B, flower detail of the plate. C, flowering specimen used for the epitype from Miguel Pereira, Rio de Janeiro, Brazil. D, flower detail. E–H, V. simplex. E, Lectotype (designated by Smith [Smith & Downs 1977]): Original parchment plate of Flora fluminensis in the Manuscript Section of the Biblioteca Nacional, Rio de Janeiro [cat. no.: mss1198652_134], published in 3rd Iconograph: Vellozo (1831: tab.130). F, bud detail of the plate. G, living specimen in the wild. H, bud detail. Images (A–B, E–F) adapted from Biodiversity Heritage Library. Photos by Igor Kessous (C–D) and Talita Mota (G–H).
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.