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.
21,842
datasets available to search
ShareScore release 0.9.0
Dataset results
21,842 results for “Three new species”
Fig. 3 in Three Critically Endangered new species of Capurodendron (Sapotaceae) from Madagascar
Fig. 3. - Known distribution of (A-B) Capurodendron sahafariense L. Gaut. & Naciri (green), (A, C) C. schatzii L. Gaut. & Naciri (pink), and (A, D) C. nanophyllum L. Gaut. & Naciri (blue). Limits of protected areas in yellow. [Google Earth Images. Copyright 2018 DigitalGlobe. Reproduced per attribution guidelines]
Fig. 5 in Three Critically Endangered new species of Capurodendron (Sapotaceae) from Madagascar
Fig. 5. - Field photograph of the type collection of Capurodendron sahafariense L. Gaut. & Naciri. [Photo: F. Ratovoson]
Fig. 5 in A taxonomic revision of Melanoxerus (Rubiaceae), with descriptions of three new species of trees from Madagascar
Fig. 5. – Melanoxerus suavissimus (Homolle ex Cavaco) Kainul. & B. Bremer. A. Habit and habitat; B. Top view of the flower; C. Flower; D. Flowering branch; E–F. Immature fruits. [A–B: Ranaivojaona et al. 1456; D: Phillipson 2413; E–F: Andriamihajarivo et al. 1814] [Photos: A–B, D–E: P. Phillipson; C: S. Landrein, Ifaty (Toliara), 5.X.2006; F: K. Kainulainen]
Fig. 4. – Melanoxerus maritimus Kainul. A in A taxonomic revision of Melanoxerus (Rubiaceae), with descriptions of three new species of trees from Madagascar
Fig. 4. – Melanoxerus maritimus Kainul. A. Habit; B. Flowering branch; C. Flower bud; D–E. Open flowers; F. Transverse section of the corolla and stigma; G–H. Immature fruits. [A–C, F–G: Gautier et al. LG 6196; D: Randriatsivery 207; E: Labat et al. 3534; H: Labat et al. 3535] [Photos: A–C, F–G: L. Gautier; D: M. Randriatsivery; E, H: J.-N. Labat]
Fig. 1 in A taxonomic revision of Melanoxerus (Rubiaceae), with descriptions of three new species of trees from Madagascar
Fig. 1.– Distribution of Melanoxerus antsirananensis Kainul. (yellow circles), M. atropurpureus Kainul. (pink circles), M. maritimus Kainul. (triangles), and M. suavissimus (Homolle ex Cavaco) Kainul. & B. Bremer (stars) in Madagascar. [mapped on the bioclimatic zones of Madagascar (after CORNET, 1974; see SCHATZ, 2000)]
Fig. 3. – Melanoxerus atropurpureus Kainul. A–D in A taxonomic revision of Melanoxerus (Rubiaceae), with descriptions of three new species of trees from Madagascar
Fig. 3. – Melanoxerus atropurpureus Kainul. A–D. Corolla; E. Cross-section of a fruit showing the seeds embedded in whitish pulp; F. Fruiting branch. [A–D: Gautier et al. LG 5744; E: Hanitrarivo et al. HRM 146] [Photos: A–D: L. Gautier; E: M. Hanitrarivo; F: L. Rajaovelona, Ankarafantsika (Boeny), 17.III.2020]
Fig. 2. – Melanoxerus antsirananensis Kainul. A in A taxonomic revision of Melanoxerus (Rubiaceae), with descriptions of three new species of trees from Madagascar
Fig. 2. – Melanoxerus antsirananensis Kainul. A. Habit; B. Fruit and smooth bark of a trunk (c. 20 cm dbh); C. Fruiting branch; D–F. Flowering branch with young leaves; G. Immature fruits; H. Cross-section of a fruit showing the seeds embedded in whitish pulp. [A–B, H: Bremer et al. 5113; C, G: Ramandimbimanana & Randimbiarison SDR 372; D–E: Ratovoson 1332; F: Randrianaivo 1433] [Photos: A–B, H: K. Kainulainen; C, G: S.D. Ramandimbimanana; D–E: F. Ratovoson; F: R. Randrianaivo]
Fig. 1. Euphorbia blepharadena O.L.M in Three new species of Euphorbia subgenus Chamaesyce (Euphorbiaceae) endemic to Brazil
Fig. 1. Euphorbia blepharadena O.L.M.Silva & Cordeiro sp. nov. A. Habit. B. Detail of indumentum on branches, with curved short and longer erect trichomes. C. Leaf. D. Detail of leaf blade margin, showing a colleter at the apex of each tooth. E. Cyathium. F. Opened cyathium, showing staminate cymules and bracteoles. G. Isolated cyathial gland, with its fimbriate appendage. H. Young fruit. I. Seeds in ventral (left) and dorsal (right) views. Illustration of the holotype, J.A. Lombardi et al. 4433 (UEC), by Klei Souza.
Fig. 3. Euphorbia longipedunculata O.L.M in Three new species of Euphorbia subgenus Chamaesyce (Euphorbiaceae) endemic to Brazil
Fig. 3. Euphorbia longipedunculata O.L.M.Silva & Riina sp. nov. A. Habit. B. Cyathium, C. Opened cyathium, showing staminate cymules and bracteoles, D. Young fruit. E. Seeds in ventral (left) and dorsal (right) views. Illustrations of the holotype, B.M.T. Walter et al. 4688 (SP), by Klei Souza.
Fig. 2 in Three new species of Euphorbia subgenus Chamaesyce (Euphorbiaceae) endemic to Brazil
Fig. 2. Geographical distribution of Euphorbia blepharadena O.L.M.Silva & Cordeiro sp. nov. (triangle), E. longipedunculata O.L.M.Silva & Riina sp. nov. (star) and E. sobolifera O.L.M.Silva & P.J.Braun sp. nov. (square).
Fig. 4. Euphorbia sobolifera O.L.M.Silva & P.J in Three new species of Euphorbia subgenus Chamaesyce (Euphorbiaceae) endemic to Brazil
Fig. 4. Euphorbia sobolifera O.L.M.Silva & P.J.Braun sp. nov. A. Habitat. B. Habit. C. Portion of a branch producing soboles. D. Apical portion of branches with reduced opposite leaves. E. Detail of a node with opposite leaves. F. Cyathium showing one of the cyathophylls bearing colleters on its margin (arrows). G. Detail of a cyathium showing an involucre lobe (arrow). H. Grouped staminate cyathia. I. Solitary pistillate cyathium. J. Detail of a pistillate cyathium showing the pistillate flower. K. Immature fruit. L. Staminate cyathium opened, showing staminate cymules, bracteoles and a central pistillode. M. Pistillate cyathium opened, showing poorly developed staminate flowers and bracteoles. Photos: A–B: P.J. Braun in the field; C–K: O.L.M. Silva; L–M: Illustrations of plants cultivated at the Instituto de Botânica by Klei Souza.
Fig. 4. - Capurodendron sahafariense L. Gaut. & Naciri. A in Three Critically Endangered new species of Capurodendron (Sapotaceae) from Madagascar
Fig. 4. - Capurodendron sahafariense L. Gaut. & Naciri. A. Longitudinal section of flower; B. Flower; C. Corolla opened seen from inside; D. Corolla opened seen from outside; E. Brachyblast with leaves and post-anthesis flower; F. Branch with flowers and fruit; G. Fruit; H. Transverse section of ovary. [Drawings: G. Loza]
Fig. 16 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 16. Patrus procerus (Régimbart, 1884) (SYSU). A. ♀, habitus, dorsal view. B. ♀, habitus, ventral view. C. ♀, habitus, lateral view. D. ♂, genitalia. Scale bars: A–C = 1 mm; D = 0.5 mm.
Fig. 15 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 15. Patrus marginepennis angustilimbus (Ochs, 1925), ♀, habitus (IZCAS). A. Dorsal view. B. Ventral view. C. Lateral view. Scale bars = 1 mm.
Fig. 13 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 13. Patrus haemorrhous (Régimbart, 1891), ♀, habitus (SHNU). A. Dorsal view. B. Lateral view. Scale bar = 1 mm.
Fig. 11 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 11. Patrus annandalei (Ochs, 1925) (SYSU). A. ♀, habitus, dorsal view. B. ♀, habitus, ventral view. C. ♀, habitus, lateral view. D. ♀, surface sculpture on elytra. E. ♀, epipleural angle. F. ♂, male genitalia. Scale bars: A–C = 1 mm; D =30 μm; E = 100 μm; F = 0.5 mm.
Fig. 14 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 14. Patrus haemorrhous (Régimbart, 1891), syntypes (MNHN). A. ♀, habitus, dorsal view. B. ♂, habitus, lateral view. C. Label of specimen A. D. Label of specimen B. Figures provided by Antoine Mantilleri. Scale bars = 2 mm.
Fig. 12 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 12. Patrus coomani (Peschet, 1925) (SYSU). A. ♂, habitus, dorsal view. B. ♀, habitus, dorsal view. C. ♂, habitus, lateral view. D. ♀, habitus, lateral view. E. ♂, habitus, ventral view. F. ♂, surface sculpture on elytra. G. ♂, epipleural angle. H. ♂, genitalia. Scale bars: A–E = 1 mm; F–G = 100 μm; H = 0.5 mm.
Fig. 8. Orectochilus argenteolimbatus Peschet, 1923 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 8. Orectochilus argenteolimbatus Peschet, 1923, ♂ (SYSU). A. Habitus, dorsal view. B. Habitus, ventral view. C. Habitus, lateral view. D. Male genitalia. Scale bars: A–C = 1 mm; D = 0.5 mm.
Fig. 9 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 9. Orectochilus murinus Régimbart, 1892 (SYSU). A. ♂, habitus, dorsal view. B. ♀, habitus, dorsal view. C. ♂, habitus, ventral view. D. ♂, genitalia. Scale bars: A–C = 1 mm; D = 0.5 mm.
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.