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.
172
datasets available to search
ShareScore release 0.9.0
Dataset results
172 results for “Hexacorallia”
FIGURE 3 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 3. (a–b) Different views of the black coral bed in the northern pass of the barrier reef of Toliara showing the abundance of whip and branched colonies.
FIGURE 21 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 21. Cirrhipathes cf. spiralis (Linnaeus, 1758). (a) In situ picture of the specimen INV.131371 with well-defined coils. (b–c) In situ pictures of other phenotypes with loose spirals. (d) Section 1.9 mm in diameter of the distal part of the colony pictured in (a). (e) Inner spines which are papillose, conical with a blunt tip slightly knobbed. (f) Longer straight outer spines having the same morphology as the inner spine.
FIGURE 7. Antipathes lentipinna Brook, 1889 specimen INV.131337 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 7. Antipathes lentipinna Brook, 1889 specimen INV.131337. (a) Entire colony in situ. (b) Detailed view of the branching pattern in situ. (c) Detailed view of the contracted and expanded polyps in situ. (d) Sections of branchlets 0.33 mm and 0.96 mm in diameter, respectively. The polypar side is on the right. (e) Section of a branch 2.65 mm in diameter. (f) Section of a branch 4.6 mm in diameter. (g) Polypar spine on a branch 0.33 mm in diameter. (h) Abpolypar spine on the same branch. (i–l) Different spines found on branches thicker than 1 mm in diameter.
FIGURE 10 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 10. Antipathes cf. virgata sensu Esper, 1788 specimen INV.131349. (a) Entire colony. (b–c) Close-up views of the branching pattern and the polyps. (d) Section of a branch 0.35 mm in diameter. The polypar side is on the right. (e) Section of a branch 0.74 mm in diameter. The polypar side is on the right. (f) Section of a branch 1 mm in diameter. Polyps are found on both sides on this branch. (g) Polypar spine on a branch 0.60 mm in diameter. (h) Abpolypar spine on the same branch. (i) Example of a stout polypar spine on a branch 0.70 mm in diameter.
FIGURE 9 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 9. Antipathes cf. pseudodichotoma Silberfeld, 1909 specimen INV.131364. (a, b) Entire colony measuring about 25 cm in height. (c) Section of a branch 0.24 mm in diameter. The polypar side is on the right. (d) Section of a branch 0.48 mm in diameter. The polypar side is on the right. (e) Section of a branch 0.62 mm in diameter. The polypar side is on the right. (f) Polypar spine on a branch of 0.60 mm in diameter. (g) Abpolypar spine on the same branch. (h) Example of irregular spine.
FIGURE 2 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 2. (a) Measurements made on the skeleton. (b) Measurements made on the polyps. d—diameter; p—transverse polyp diameter; ps—polyp spacing; sh—spine height; ss—spine spacing.
FIGURE 14 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 14. Cirrhipathes anguina (Dana, 1846) (a–h) In situ pictures showing the wide range of phenotypes that the species can present (a—INV.131378; b—INV.131369; c—INV.131373; d—INV.131379; e—INV.131360; f—INV.131359; g—INV.131362; h—INV.131363). All these phenotypes have the same spine morphology. (i) Distal section 0.48 mm in diameter from the 30 cm-long juvenile colony INV.131363. At this stage, regular rows of spines can be seen. (j) Distal section 3.5 mm in diameter of a 2.5 m tall colony INV.131379. The regular rows formed by the spines start to be lost. (k–n) Different spine morphologies seen on distal parts of Ci. anguina colonies. The spines are generally stout and papillose but irregular growths are sometimes found, as well as triangular, minute spines or cylindrical, narrow newly formed spines. (o) Triangular, laterally compressed spines from a distal fragment of the juvenile colony INV.131363.
FIGURE 17 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 17. Cirrhipathes cf. indica Summers, 1910 specimen INV.131341. (a) In situ picture of the entire colony. (b) Closeup view of the polyp arrangement on the basal part. (c) In situ close-up view of the polyp arrangement in the intermediate region showing a side free of polyps. (d) Section of the growing apical region 0.63 mm in diameter and showing irregularly verticillated spines. (e) Section of the intermediate region 3.6 mm in diameter. (f) Section of the basal region just above the basal anchorage measuring 6 mm in diameter. (g) Spines of the apical part. (h–i) Spines of the intermediate region. (j) Spine of the basal region.
FIGURE 16 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 16. (a, c) Cirrhipathes densiflora Silberfeld, 1909 type specimen (schizotype USNM 100475) from Japan. (b, d) Cirrhipathes contorta van Pesch, 1910 type specimen (schizotype USNM 100414) from Indonesia.
FIGURE 6 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 6. (a) Tylopathes? hypnoides (Brook, 1889) holotype NHMUK 86.2.8.2 from Mauritius. (b) Close-up view of the schizotype USNM 100356.
FIGURE 20. Cirrhipathes rumphii van Pesch, 1910 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 20. Cirrhipathes rumphii van Pesch, 1910 type specimen (schizotype USNM 100412) from Indonesia. (a) Section 1.25 mm in diameter. (b) Section 0.82 mm in diameter. (c) Spine found in the section shown in (a). (d) Spine found in the section shown in (b).
FIGURE 5 in Shallow-water black corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar
FIGURE 5. Antipathes hypnoides (Brook, 1889) specimen INV.131347. (a) Entire colony. (b) Top view of the colony showing some flabellate parts growing parallel to the plane. (c) Close-up view of expanded polyps. (d) Detailed view of the branching pattern. (e) Section of a branchlet 0.13 mm in diameter. The polypar side is on the right. (f) Section of a branch 0.23 mm in diameter. The polypar side is on the right. (g) Section of a branch 0.90 mm in diameter. (h) Polypar spine on a branch 0.13 mm in diameter. (i) Abpolypar spine on the same branch. (j–l) Needle-like, bifid and forked spines on a 0.90 mm branch. (m) Close-up view of the tip of a spine showing the small papillae.
FIGURE 5 in Morphological and molecular description of a new genus and species of black coral (Cnidaria: Anthozoa: Hexacorallia: Antipatharia: Antipathidae: Blastopathes) from Papua New Guinea
FIGURE 5. Blastopathes medusa holotype (MTQ G74904): A, branch cluster on stem; B, branch cluster on branch; C, branchlet on branch.
FIGURE 7 in Morphological and molecular description of a new genus and species of black coral (Cnidaria: Anthozoa: Hexacorallia: Antipatharia: Antipathidae: Blastopathes) from Papua New Guinea
FIGURE 7. Blastopathes medusa holotype (MTQ G74904): A, single row of polyps on multiple terminal branches; B, interpolypar space on terminal branch.
FIGURE 6 in Morphological and molecular description of a new genus and species of black coral (Cnidaria: Anthozoa: Hexacorallia: Antipatharia: Antipathidae: Blastopathes) from Papua New Guinea
FIGURE 6. Blastopathes medusa holotype (MTQ G74906): A, polypar spines on terminal branch; B, abpolypar spines on terminal branch; C, section of terminal branch.
FIGURE 2. Comparison A–B in Morphological and molecular description of a new genus and species of black coral (Cnidaria: Anthozoa: Hexacorallia: Antipatharia: Antipathidae: Blastopathes) from Papua New Guinea
FIGURE 2. Comparison A–B, branching characteristics of Allopathes denhartogi and Blastopathes medusa (A from A. denhartogi holotype RMNH Coel. 31293, B from B. medusa holotype MTQ G74904); comparison C–D, spine characteristics of A. denhartogi and A. medusa (C from A. denhartogi schizoholotype USNM 1014577, D from B. medusa holotype MTQ G74904)
FIGURE 17 in Carcinoecium-forming Epizoanthus [Hexacorallia: Zoantharia] and the biology of E. papillosus in the eastern Atlantic, with special reference to the cnidom
FIGURE 17. Cnida abundance, as percentage of the total count, in squashes from polyps of carcinoecia and free-living colonies. A, Spirocysts in tentacles, comparing large and small polyps in each colony; B, Basitrichs in tentacles, comparing carcinoecia and free-living colonies; C, Holotrichs in tentacles, comparing large and small polyps in each colony; D, p- mastigophores in the mesenteric filaments, comparing large and small polyps in each colony. L = largest, S = smallest polyp in a colony of 3, 4 or 5 polyps; C = carcinoecium, F = free-living colony.
FIGURE 16 in Carcinoecium-forming Epizoanthus [Hexacorallia: Zoantharia] and the biology of E. papillosus in the eastern Atlantic, with special reference to the cnidom
FIGURE 16. Shaft length as a percentage of capsule length vs capsule length is p-mastigophores from the mesenteric filaments of Epizoanthus papillosus carcinoecia and free-living colonies. Error bars are 95% confidence limits.
FIGURE 12 in Carcinoecium-forming Epizoanthus [Hexacorallia: Zoantharia] and the biology of E. papillosus in the eastern Atlantic, with special reference to the cnidom
FIGURE 12. Scyphozoan nematocysts sequestered by two Epizoanthus papillosus carcinoecia; all from the zoanthid's mesenteric filaments. A–B, Intact and exploded euryteles from polyp 4L; C–D, Intact and exploded O-isorhizas from polyp 4L; E, Unexploded a-isorhiza from polyp 4L; F, Exploded birhopaloid from polyp 3S; G–H, Intact and exploded large A-isorhizas from polyp 3S. Polyps are identified by the number of polyps in the colony (3–4) and whether they were the largest (L) or smallest (S). Unmarked scale bars = 10 µm. Nematocyst nomenclature from Östman & Hydman (1997).
FIGURE 14 in Carcinoecium-forming Epizoanthus [Hexacorallia: Zoantharia] and the biology of E. papillosus in the eastern Atlantic, with special reference to the cnidom
FIGURE 14. Length and width of holotrichs in carcinoecia and free-living colonies of Epizoanthus papillosus. Error bars are ± one standard deviation; n=50.
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.