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.
642
datasets available to search
ShareScore release 0.9.0
Dataset results
642 results for “cucumber”
FIGURE 1. Havelockia ferali andamanensis n. subsp. A in Two new subfamilies, three new species and a new subspecies of dendrochirotid sea cucumbers (Echinodermata: Holothuroidea)
FIGURE 1. Havelockia ferali andamanensis n. subsp. A. Specimens entire (a: holotype, NHMUK 1886.2.2.21; b: paratype, NHMUK 1986.2.2.22-24); B. Tentacle ossicles; C. Anal ossicles; D. Introvert ossicles; E. Body wall tables; F. Tube feet tables; G. Part of calcareous ring (dorsal). (B–F drawn to same scale).
FIGURE 3. Thyonina rasidae n in Two new subfamilies, three new species and a new subspecies of dendrochirotid sea cucumbers (Echinodermata: Holothuroidea)
FIGURE 3. Thyonina rasidae n. sp. A. Specimen entire (holotype,NHMUK 1883.4.19.7); B. Anal body wall plates; C. Body wall ossicles; D. Tube feet end-plate; E. Rods and rosettes from tentacles; F. Rods and rosettes from introvert; G. Part of calcareous ring (dorsal). (B–F drawn to same scale).
FIGURE 2. Thyonina bijui n in Two new subfamilies, three new species and a new subspecies of dendrochirotid sea cucumbers (Echinodermata: Holothuroidea)
FIGURE 2. Thyonina bijui n. sp. A. Specimen entire (holotype, DABFUK ECH HO 17); B. Body wall ossicles; C. Ventral podia plates; D. Dorsal podia plate; E. rods and rosettes from tentacles; F. Anal region ossicles; G. Introvert ossices; H. Part of calcareous ring (dorsal). (A–D, F, G by courtesy of Biju Kumar).
Optimizing Cucumber Growth: Integrating Smart Irrigation with various Fertilization Strategies in Greenhouse Conditions
<div> <div>Supplemental materials for:</div> <div>"Optimizing Cucumber Growth: Integrating Smart Irrigation with various Fertilization Strategies in Greenhouse Conditions", under submission.</div> <br> <div>The 'datas.xlsx' file contains tables of raw data collected from the experiment site.</div> <div> </div> <div>Features:</div> <div> <ul> <li>Leaf Area</li> <li>Iwp</li> <li>Photosynthesis</li> <li>Yield</li> <li>Fruit Quality</li> <li>Summary</li> </ul> </div> </div>
FIGURE 10 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 10. Bayesian inference tree of the 16S mitochondrial gene of the specimens obtained for the present study. Numbers in nodes refer to posterior probability.
FIGURE 9 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 9. Bayesian inference tree of the COI mitochondrial gene of the specimens obtained for the present study. Numbers in nodes refer to posterior probability.
FIGURE 8 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 8. Type ossicles of Holothuria inornata; syntype no. 84.3.8.18, Natural History Museum, London. A. Dorsal body wall (bars from tables = 50 µm; rod = 80 µm). B. Dorsal podia (bars from table = 50 µm; rods = 80 µm) C. Ventral body wall (bar = 30 µm). D. Tentacles (bar = 100 µm). E. Ventral podia (bars from tables = 50 µm; endplate = 500 µm; pseudoplate = 80 µm; rod = 100 µm).
FIGURE 7 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 7. Type ossicles of Holothuria kefersteinii; syntype no. 4.19, Göttingen Museum of Natural History. A. Dorsal body wall. B. Ventral body wall. C. Ventral tube feet. D. Tentacles. (bars from tables = 40 µm; endplate = 500 µm; pseudoplate = 50 µm; rods = 40 µm).
FIGURE 6 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 6. SEM ossicles of Holothuria inornata ("red") collected for the present study. A. Dorsal body wall (bar = 50 µm). B. Dorsal tube feet (first rod bar = 100 µm; second rod = 50 µm; endplate = 200 µm). C. Dorsal papillae on warts (bar = 100 µm). D. Ventral body wall (bar = 30 µm). E. Ventral tube feet (pseudoplate bar = 50 µm; endplate = 500 µm). F. Tentacles (first to third rod bar = 100 µm; fourth rod = 50 µm).
FIGURE 4 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 4. SEM ossicles of Holothuria kefersteinii ("green") collected for the present study. A. Dorsal body wall (bar = 40 µm). B. Dorsal tube feet (endplate bar = 100 µm; table = 50 µm). C. Dorsal papillae on warts (bar = 50 µm). D. Ventral tube feet (bar = 40 µm).
FIGURE 3 in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 3. Copy of original drawing of specimen and ossicles from original description of Selenka's Stichopus kefersteinii.
FIGURE 2b in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 2b. Preserved specimens of Holothuria inornata ("red"). A. Dorsal view. B. Ventral view. C. Side view. Bar = 2 cm.
FIGURE 1b in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 1b. Preserved specimens of Holothuria kefersteinii ("green"). A. Dorsal view. B. Ventral view. C. Side view. Bar = 2 cm.
FIGURE 1a in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 1a. Live specimens of Holothuria kefersteinii ("green"). A. Dorsal side of collected specimen; bar = 2 cm. B and C. Live specimens in situ, after removal of covering rock.
FIGURE 2a in A revision of Holothuria (Halodeima) kefersteinii (Selenka, 1867) and the revival of Holothuria inornata Semper, 1868 from sea cucumbers collected in Mexico and Central America
FIGURE 2a. Live specimens of Holothuria inornata ("red"). A. Dorsal and ventral sides of collected specimen; partial removal of sand covering the body; bar = 2 cm. B and C. Live specimens in situ not covered by rocks.
FIGURE 1 in Lissothuria imbricata sp. nov., a new species of sea cucumber (Echinodermata: Holothuroidea) from the central-eastern Pacific Ocean
FIGURE 1. Lissothuria imbricata sp. nov., holotype ICML-UNAM 18000, A, Dorsal view; B, Ventral view. Paratype ICML- UNAM 12135; C, In situ picture showing habitat preferences; D, Live specimen, lateral view. All scale bars: 5 mm.
FIGURE 3 in Lissothuria imbricata sp. nov., a new species of sea cucumber (Echinodermata: Holothuroidea) from the central-eastern Pacific Ocean
FIGURE 3. Lissothuria imbricata sp. nov., holotype ICML-UNAM 18000, A–C, Ventral ossicles, knobbed buttons, scale bar: 50 µm; D–F, Ventral ossicles, various shapes of perforated plates with smooth or knobbed margin, scale bar: 50 µm; G–I, Ventral ossicles, small shallow baskets, with knobbed edges, scale bar: 30 µm; J–K, Tentacles ossicles, small rosettes, scale bar: 10 µm; L, Tentacles ossicles, flat, curved and perforated rods, scale bar: 50 µm; and M, Tentacles ossicles, perforated plates, scale bar: 100 µm.
FIGURE 2 in Lissothuria imbricata sp. nov., a new species of sea cucumber (Echinodermata: Holothuroidea) from the central-eastern Pacific Ocean
FIGURE 2. Lissothuria imbricata sp. nov., holotype ICML-UNAM 18000, A, Dorsal perforated scale for passage of tube feet, scale bar: 100 µm; B, Detail of perforations in the dorsal scale; C–E, Massive towers from the dorsal side, with slightly spiny apex, scale bar: 50 µm; F–I, Baskets from the dorsal side, scale bar: 40 µm; J–K, Dorsal tube feet vestigial end plates, scale bar: 50 µm.
Figure 11 in New dendrochirotid sea cucumbers from northern Australia (Echinodermata: Holothuroidea: Dendrochirotida)
Figure 11. Photos of preserved specimens of Actinocucumis solanderi O'Loughlin sp. nov. A, right lateral view of the preserved holotype (mouth right, 45 mm long, WAM Z27850); insert with sketch of a transverse section of the new species showing slight radial ridges and large and small tube feet and papillae; B, right lateral view of the preserved paratype (mouth left, 55 mm long, NMV F202991); C, dorsal view of tentacle crown with small tentacles ventrally (paratype NMV F202991); D, photo of the calcareous ring of the holotype; insert with sketch of the calcareous ring.
Figure 9 in New dendrochirotid sea cucumbers from northern Australia (Echinodermata: Holothuroidea: Dendrochirotida)
Figure 9. Photos of live and preserved specimens of Triasemperia stola O'Loughlin sp. nov. A, lateral view of live holotype specimen (mouth right; NMV F174889); B, lateral view of preserved holotype (mouth right, lateral view width 45 mm); C, lateral view of preserved paratype (mouth right, lateral view width 50 mm, NMV F204088); D, photo of the calcareous ring of the holotype; insert with sketch of the calcareous ring.
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.