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.
61
datasets available to search
ShareScore release 0.7.1
Dataset results
61 results for “Cyanea”
FIGURE 3. Aganisia cyanea f. cyanea. A in Taxonomic studies in the Aganisia complex (Orchidaceae, Zygopetalinae)
FIGURE 3. Aganisia cyanea f. cyanea. A. Plant in situ. B. Cultivated specimen. C. Aganisia cyanea f. alba. D. Aganisia pulchella. E. Cheiradenia cuspidata. Paradisanthus bahiensis. F. Typical colour form. G. Southern colour form. A. Pessoa et al. 369 (INPA), by Edlley M. Pessoa. B – C. By AWZ Orchids. D. Cavalcanti et al. 713 (UFP). By D. Cavalcanti. E. By Rudolf Jenny. Available through Swiss Orchid Foundation at Herbarium Jeny Renz. F. By Alex Popovkin. G. van den Berg et al. 184 (ESA). By Cássio van den Berg.
On following pages: 350. Tanzanian White-toothed Shrew (Crocidura tansaniana); 351. Usambara White-toothed Shrew (Crocidura usambarae); 352. Kivu White-toothed Shrew (Crocidura kivuana); 353. Niobe's White-toothed Shrew (Crocidura niobe): 354. Desert White-toothed Shrew (Crocidura smithii); 355. Sahelian Tiny White-toothed Shrew (Crocidura pasha); 356. Roosevelt's White-toothed Shrew (Crocidura roosevelt); 357. Long-footed White-toothed Shrew (Crocidura crenata): 358. Grasse's White-toothed Shrew (Crocidura grassei); 359. Bicolored African White-toothed Shrew (Crocidura fuscomurina); 360. Flat-headed White-toothed Shrew (Crocidura planiceps); 361. Crosse's White-toothed Shrew (Crocidura crossei): 362. Jouvenet's White-toothed Shrew (Crocidura jouvenetae); 363. Mauritanian White-toothed Shrew (Crocidura lusitania); 364. Naked-tailed White-toothed Shrew (Crocidura littoralis): 365. Gracile White-toothed Shrew (Crocidura maurisca); 366. Reddish-gray White-toothed Shrew (Crocidura cyanea); 367. Swamp White-toothed Shrew (Crocidura mariquensis), 368. Lesser Gray-brown White-toothed Shrew (Crocidura silacea): 369. Dent's White-toothed Shrew (Crocidura denti); 370. Hildegarde's White-toothed Shrew (Crocidura hildegardeae); 371. Mamfe White-toothed Shrew (Crocidura virgata), 372. Bates's White-toothed Shrew (Crocidura batesi): 373. Sao Tome White-toothed Shrew (Crocidura thomensis); 374. Fingui White-toothed Shrew (Crocidura fingui); 375. Fraser's White-toothed Shrew (Crocidura poensis); 376. Nigerian White-toothed Shrew (Crocidura nigeriae); 377. Hun White-toothed Shrew (Crocidura attila); 378. Fox's White-toothed Shrew (Crocidura foxi); 379. Buttikofer's White-toothed Shrew (Crocidura buettikoferi); 380. Therese's White-toothed Shrew (Crocidura theresae); 381. Large-headed White-toothed Shrew (Crocidura grandiceps); 382. Wimmer's White-toothed Shrew (Crocidura wimmeri); 383. African Black White-toothed Shrew (Crocidura nigrofusca); 384. Savanna Dwarf White-toothed Shrew (Crocidura nanilla); 385. Nimba White-toothed Shrew (Crocidura nimbae). in Soricidae
On following pages: 350. Tanzanian White-toothed Shrew (Crocidura tansaniana); 351. Usambara White-toothed Shrew (Crocidura usambarae); 352. Kivu White-toothed Shrew (Crocidura kivuana); 353. Niobe's White-toothed Shrew (Crocidura niobe): 354. Desert White-toothed Shrew (Crocidura smithii); 355. Sahelian Tiny White-toothed Shrew (Crocidura pasha); 356. Roosevelt's White-toothed Shrew (Crocidura roosevelt); 357. Long-footed White-toothed Shrew (Crocidura crenata): 358. Grasse's White-toothed Shrew (Crocidura grassei); 359. Bicolored African White-toothed Shrew (Crocidura fuscomurina); 360. Flat-headed White-toothed Shrew (Crocidura planiceps); 361. Crosse's White-toothed Shrew (Crocidura crossei): 362. Jouvenet's White-toothed Shrew (Crocidura jouvenetae); 363. Mauritanian White-toothed Shrew (Crocidura lusitania); 364. Naked-tailed White-toothed Shrew (Crocidura littoralis): 365. Gracile White-toothed Shrew (Crocidura maurisca); 366. Reddish-gray White-toothed Shrew (Crocidura cyanea); 367. Swamp White-toothed Shrew (Crocidura mariquensis), 368. Lesser Gray-brown White-toothed Shrew (Crocidura silacea): 369. Dent's White-toothed Shrew (Crocidura denti); 370. Hildegarde's White-toothed Shrew (Crocidura hildegardeae); 371. Mamfe White-toothed Shrew (Crocidura virgata), 372. Bates's White-toothed Shrew (Crocidura batesi): 373. Sao Tome White-toothed Shrew (Crocidura thomensis); 374. Fingui White-toothed Shrew (Crocidura fingui); 375. Fraser's White-toothed Shrew (Crocidura poensis); 376. Nigerian White-toothed Shrew (Crocidura nigeriae); 377. Hun White-toothed Shrew (Crocidura attila); 378. Fox's White-toothed Shrew (Crocidura foxi); 379. Buttikofer's White-toothed Shrew (Crocidura buettikoferi); 380. Therese's White-toothed Shrew (Crocidura theresae); 381. Large-headed White-toothed Shrew (Crocidura grandiceps); 382. Wimmer's White-toothed Shrew (Crocidura wimmeri); 383. African Black White-toothed Shrew (Crocidura nigrofusca); 384. Savanna Dwarf White-toothed Shrew (Crocidura nanilla); 385. Nimba White-toothed Shrew (Crocidura nimbae).
FIGURE 14 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 14. Plan diagrams of the subumbrella margin of the two subgroups of Cyanea. a) Cyanea capillata, capillata-group; b) Cyanea nozakii, nozakii-group. Red arrows indicate the radial septa, which are complete in the former and interrupted in the latter. pmc = primary marginal cleft, smc = secondary marginal cleft. From Stiasny and van der Maaden (1943).
FIGURE 13 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 13. Canonical Analysis of Principal Coordinates for six standardised and isometric measures of Cyanea annaskala, Cyanea rosea and Cyanea altafissura sp nov. Values for CAP1 and CAP2 were 0.93 and 0.41 respectively. (bt = bell thickness; dcmf = depth of coronal muscle folds; dsmc = depth of secondary marginal cleft, dpmc = depth of primary marginal cleft; nrmf = number of radial muscle folds; ncmf = number of coronal muscle folds).
FIGURE 11 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 11. Rooted Maximum Likelihood COI tree using GTR + I + G model of evolution: North Atlantic Ocean, red; Tropical Atlantic Ocean, black; South Pacific Ocean, blue; Indian Ocean, orange. Bootstrap support values (ML) are given above branches, with posterior probabilities (BY) given below branches.
FIGURE 9 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 9. Cyanea altafissura sp. nov. Subumbrella view, showing coronal muscle fields and inter-radial gastric cirri.
FIGURE 8 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 8. Cyanea altafissura sp. nov. Subumbrella view showing one of the four gonads (g) emerging from between adjacent oral pillars (op) at base of oral arms (oa). Velar (vcmf) and rhopalial (rcmf) coronal muscle fields, radial muscle fields (rmf) and tentacle bundles (tb) also shown.
FIGURE 7 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 7. Cyanea altafissura sp. nov. Subumbrella view of U-shaped tentacular bundle (tb), hollow tentacle (t), velar (vcmf) and rhopalial (rcmf) coronal muscle fields, radial muscle fields (rmf), primary marginal cleft (pmc) and rhopalium (r).
FIGURE 5 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 5. Cyanea altafissura sp. nov. View of subumbrella showing rectangular shape of marginal lappets, the comparative depths of the primary/velar (pmc) and secondary/rhopalial (smc) clefts, and the dendritic and anastomosing nature of marginal canals.
FIGURE 12 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 12: Rooted Maximum likelihood ITS1 tree using the GTR + I + G model of evolution: North Atlantic Ocean, red; Tropical Atlantic Ocean, black; South Pacific Ocean, blue; Pacific Ocean, purple. Bootstrap support values (ML) are given above branches, with posterior probabilities (BY) given below branches.
FIGURE 4 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 4. Cyanea altafissura sp. nov. a) Exumbrella surface showing uniform distribution of nematocyst warts.
FIGURE 3 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 3. Diagram depicting the features that were counted or measured (mm) on Cyanea specimens collected from NW Africa (bd = bell diameter; cmwr = rhopalial coronal muscle width; cmwv = velar coronal muscle width; dcmf = depth of coronal muscle folds; dpmc = depth of primary marginal cleft; dsmc = depth of secondary marginal cleft; gvpc = gastrovascular pits in the coronal muscle folds; gvpr = gastrovascular pits in the radial muscle folds; loa = length of oral arms; mlw = marginal lappet width; ncmf = number of coronal muscle folds; ncn = number of nematocyst clusters; ncp = nematocyst clusters protrude; nsl = number of secondary lobes; nt = number of tentacles; ntr = number of tentacle rows; tmc = tertiary marginal cleft; woa = width of oral arms): adapted from Dawson (2005a).
FIGURE 6 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 6. Cyanea altafissura sp. nov. A) Subumbrella view of the bell margin, showing a secondary marginal cleft (smc), the position of radial muscle fields (rmf), the rhopalium (r) and the overlapping edges of the marginal lappets that in effect form a rhopalial tube (see schematic inset). B) subumbrella view of bell margin showing a secondary marginal cleft (smc) and the rhopalial hood (rh). C) detail of rhopalium at base of rhopalial "tube", note the absence of bulbs/papillae on stalk.
FIGURE 2 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 2. Map showing the location of samples collected, with details of the northern Gulf of Guinea (A) and West Africa (B).
FIGURE 10 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 10. Cyanea altafissura sp. nov. Subumbrella view of gastric sinus running beneath radial muscle fields (rmf) and tentacular bundle (tb), highlighted by red dye. Inset shows point of dye injection (circle) and subsequent movement through anastomosing connections between the tentacular and rhopalial gastrovascular pouches.
FIGURE 1 in Integrative taxonomy reveals the presence of a new species of Cyanea (Scyphozoa: Discomedusae: Semaeostomeae: Cyaneidae) from the West coast of Africa
FIGURE 1. The only described species of Cyanea from the South Atlantic Ocean—Cyanea annasethe from off the west coast of South Africa. a) whole specimen in anteriolateral view, b) detail of subumbrella surface. Although the colours on Haeckel's (1899) iconic image are not based on observations of a living specimen, the images do impart useful information regarding, inter alia, the distribution of papillae on the exumbrella, the relative depths of velar and rhopalial marginal clefts, the numbers of tentacles, the arrangement of lappet canals, the base of the oral arms and the nature of the radial septa. Note too the endodermal core to the tentacles. Adapted from Plate 8, Haeckel (1899).
Figure 3 in Diversity in the diet of the predator Octopus cyanea in the coral reef system of Moorea, French Polynesia
Figure 3. Correlates of diversity in the diet of Octopus cyanea at each of five sampling sites. Dietary diversity (as midden species richness) was positively correlated with diversity of substrate types across the site (top) and with increasing octopus density (bottom). Each point represents all octopuses at a single site. N indicates the number of prey individuals represented by remains at each site.
Figure 1 in Diversity in the diet of the predator Octopus cyanea in the coral reef system of Moorea, French Polynesia
Figure 1. Locations of four nearshore fringing reef sites surveyed for octopuses on the island of Moore'a, adjacent to Tahiti, French Polynesia. The Gump site was located at the Richard B. Gump South Pacific Research Station. Insets indicate the spatial arrangements of dens at two sites: circles indicate dens by marker ID; connecting lines indicate the distance to adjacent dens (in metres, not to scale). Blank line maps of Tahiti and Moorea, and globe used with permission from WorldAtlas.com and FreeUSandWorldmaps.com; den inset by TL.
Figure 1. A in The den ecology and the effects of fishing pressure on the distribution of Octopus cyanea (Octopodidae: Mollusca) in Rodrigues lagoon, Rodrigues, Mauritius
Figure 1. A map of the geographical location of the island of Rodrigues showing the four protected areas in the north and north west (solid lines) and the approximate area of Ile aux Fous (nonprotected, dotted line).
Figure 3. A in The den ecology and the effects of fishing pressure on the distribution of Octopus cyanea (Octopodidae: Mollusca) in Rodrigues lagoon, Rodrigues, Mauritius
Figure 3. A schematic diagram of a transect set-up and the search path that was used for recording the octopus dens and the invertebrate benthos. The blue circle indicates the position of the painted rock, a marker to allow a second transect within 100 m of the first one to be measured. The dashed lines show the position of the outer tape measures which marked out the sample area, the small arrows show the direction each surveyor looked either side of the inner belt transect (2 m either side), the red lines show the position of the inner three transects that were used for recording, the long arrows show the direction each surveyor swam along each transect and the small numbers show the distance along the bottom tape measure that the three inner transects were placed.
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.