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.
32
datasets available to search
ShareScore release 0.9.0
Dataset results
32 results for “Hyalina”
Figure 3. A–H, Monotheca hyalina. A in Review of the genus Monotheca (Hydrozoa: Leptolida) from Australia with description of a new species and a note on Monothecella Stechow, 1923
Figure 3. A–H, Monotheca hyalina. A, part of robust stem from cool temperate waters with intranodal septa; B, part of slender stem from temperate waters with no intranodal septa; C, hydrocladium and hydrotheca, lateral view; D, hydrocladium and hydrotheca, ventral view; E, gonotheca with female gonophore; F, apical stolonal plate; G, axillar hydrostatic pore; H, median inferior nematotheca; I, one of twin lateral nematothecae. Scale bar: A, B, 1 mm; C, D, 0.2 mm; E, 0.5 mm; G–I, 0.1 mm.
Transcriptome assemblies of Thalassiosira hyalina and Nitzschia frigida
<p>Transcriptome assemblies of Thalassiosira hyalina and Nitzschia frigida originating from a time course experiment, in which these two species were exposed to high light stress and monitored over 120h under low and high pCO2. The corresponding Sequencing data is deposited at the EBI ArrayExpress database under accession number E-MTAB-6999. Contigs were created with Trinity Assembler.</p> <p>The according publication is currently in review (8/6/2019): Higher sensitivity towards light stress and ocean acidification in an Arctic sympagic compared to a pelagic diatom;</p> <p>Author team: Ane C. Kvernvik, Sebastian D. Rokitta, Eva Leu, Lars Harms, Tove M. Gabrielsen, Björn Rost and Clara J. M. Hoppe</p> <p>Do not hesitate to contact the authors if you like more information!</p>
Diamond-BLASTx of transcriptome contigs of Thalassiosira hyalina and Nitzschia frigida
<p>This is an annotation file, delivering the Diamond-BLASTx results for the contigs of the transcriptome assemblies of Thalassiosira hyalina and Nitzschia frigida. Theswe originate from a time course experiment, in which these two species were exposed to high light stress and monitored over 120h under low and high pCO2. The corresponding Sequencing data is deposited at the EBI ArrayExpress database under accession number E-MTAB-6999. Contigs were created with Trinity Assembler and are available under DOI:10.5281/zenodo.3361258</p> <p>The according publication is currently in review (8/6/2019): Higher sensitivity towards light stress and ocean acidification in an Arctic sympagic compared to a pelagic diatom;</p> <p>Author team: Ane C. Kvernvik, Sebastian D. Rokitta, Eva Leu, Lars Harms, Tove M. Gabrielsen, Björn Rost and Clara J. M. Hoppe</p> <p>Do not hesitate to contact the authors if you like more information!</p>
FIGURE 3. Neopolynoe acanellae n in Revision of Hermadion Kinberg, 1856, with a redescription of Hermadion magalhaensi Kinberg, 1856, Adyte hyalina (G. O. Sars, 1873) n. comb. and Neopolynoe acanellae (Verrill, 1881) n. comb. (Polychaeta: Polynoidae)
FIGURE 3. Neopolynoe acanellae n. comb. (lectotype, YPM 2741). (A) Anterior end; styles of left antenna, dorsal tentacular cirri and dorsal cirri missing; (B) left elytron from segment 5; (C) microtubercles and papillae from same; (D) right cirrigerous parapodium from segment 12, posterior view, style of dorsal cirrus missing; (E) distal half of long notochaeta; (F) distal part of middle neurochaeta. (Scales: A = 1,5 mm; B = 2,5 mm; C, E, F = 125 µm; D = 500 µm).
FIGURE 2. Adyte hyalina n in Revision of Hermadion Kinberg, 1856, with a redescription of Hermadion magalhaensi Kinberg, 1856, Adyte hyalina (G. O. Sars, 1873) n. comb. and Neopolynoe acanellae (Verrill, 1881) n. comb. (Polychaeta: Polynoidae)
FIGURE 2. Adyte hyalina n. comb. (holotype ZMUO C 2028). (A) Anterior end; styles of median antenna, dorsal tentacular cirri and dorsal cirri missing; (B) right elytron from unknown segment in anterior body region; (C) detail of posterior margin of same; (D) right elytragerous parapodium from segment 9, posterior view; (E) distal half of long notochaeta; (F) distal part of middle neurochaeta; (G) tip of upper neurochaeta. (Scales: A = 1 mm; B = 250 µm; C, E, F, G = 50 µm; D = 500 µm).
FIGURE 1 in Revision of Hermadion Kinberg, 1856, with a redescription of Hermadion magalhaensi Kinberg, 1856, Adyte hyalina (G. O. Sars, 1873) n. comb. and Neopolynoe acanellae (Verrill, 1881) n. comb. (Polychaeta: Polynoidae)
FIGURE 1. Hermadion magalhaensi (syntypes, SMNH Type-401). (A) Anterior end; style of left tentacular cirrus bent downwards, styles of other cirri and styles of antennae missing; (B) left elytron from unknown segment in anterior body region; (C) detail of posterior margin of same; (D) right cirrigerous parapodium, posterior view, tip of ventral cirrus missing; (E) distal half of long notochaeta; (F) distal part of middle notochaeta. (Scale bars: A = 2,5 mm; B = 1 mm; C = 125 µm; D = 1 mm; E = 125 µm; F = 250 µm).
FIGURE 7 in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 7. Foa yamba, location of the type collections. A. Holotype and paratypes, Iluka Marina, Queen Street. B. PARATYPES, near bridge, Yamba Road. Scale = 1368 m. Image © 2014 CNES / Astrium.
FIGURE 2. Foa hyalina. A in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 2. Foa hyalina. A. Live, Madang, Papua New Guinea, by G.R. Allen. B. Positive radiograph of paratype of Apogon hyalina, USNM 171126, 33.7 mm SL, by S. Raredon. C. Enlarged section of the caudal skeleton showing five hypurals.
FIGURE 3 in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 3. The holotype of Foa longimana, 14.2 mm SL, 19 mm TL, ZMA 112.203. A. Holotype, preserved in ethanol, photograph by Z. Randall. B. Figure scanned from Weber's Die Fische der Siboga-expedition (1913:258, Figure 58, by M. Weber). The same figure is on p.354, figure 83 of Weber & de Beaufort (1929).
FIGURE 6. Foa yamba. A. AMS I.41287–063, 45.1 in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 6. Foa yamba. A. AMS I.41287–063, 45.1 mm SL, paratype. Fourth pored ctenoid, lateral-line scale. B. Second pitted, ctenoid lateral-line scale from last scale on caudal fin. Scale = 1mm. C. AMS I. 41858–037, 33.9 mm SL, holotype, canted left view of snout area with relative positions of pores and nares. AN = anterior naris, PN = posterior naris, IO = infraorbital pores on anterior portion of the lacrhymal, SO = anterior supraorbital pores. Scale = 1 mm.
FIGURE 1 in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 1. Holotype of Amia hyalina, USNM 70245, 36.7 mm SL. A. Preserved in 70% ethanol. B. Figure from the Smithsonian's original illustration by V. Dandridge for Plate 36, figure 3 from Smith & Radcliffe in Radcliffe (1912).
FIGURE 5. Foa yamba AMS I. 41287–063, 45.1 in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 5. Foa yamba AMS I. 41287–063, 45.1 mm SL, paratype. A semi-diagrammatic presentation of cephalic canal pores (spots) and free neuromasts (dots) with some pores and neuromasts obscured or missing. Scale = 1mm. A. Dorsal view. B. Lateral view. C. Ventral view.
FIGURE 4. Foa yamba, holotype AMS I.41858‒037, 33.9 in Foa yamba, a new species of cardinalfish (Percomorpha: Apogonidae: Apogonichthyini) from the tidal region of the Clarence River, Australia and redescriptions of the West Pacific Foa longimana and Foa hyalina
FIGURE 4. Foa yamba, holotype AMS I.41858‒037, 33.9 mm SL. A. Post mortem photograph by Mark McGrouther. B. Preserved in 70% ethyl alcohol by T. Fraser.
FIGURE 13. Turbanella hyalina Schultze, 1853. A in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 13. Turbanella hyalina Schultze, 1853. A—Anterior adhesive tubes, B—Lateral adhesive tubes, C—Dorso-lateral adhesive tubes, D—Dorsal view of caudum, E—Internal view of caudum, F—Ventral view of caudum.
FIGURE 10 in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 10. Heterolepidoderma joermungandri Kånneby, 2011. A—Dorsal view of scales in head region, B—Dorsal view of scales in posterior trunk region and in furcal base, C—Pharynx with cuticular reinforcements, D—Dorsal view of scales in trunk region, E—Ventral view of scales of interciliary field.
FIGURE 7 in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 7. Heterolepidoderma joermungandri Kånneby, 2011. Specimen with mature egg. A—Dorsal view, B—View of internal morphology, C—Ventral view.
FIGURE 8 in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 8. Heterolepidoderma joermungandri Kånneby, 2011. Juvenile specimen—habitus. A—Dorsal view, B—View of internal morphology.
FIGURE 5 in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 5. Heterolepidoderma joermungandri Kånneby, 2011. Adult specimen. A—Dorsal view, B—View of internal morphology, C—Ventral view.
FIGURE 2 in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 2. Baltic Sea with points marking stations where Heterolepidoderma joermungandri Kånneby, 2011 was found. 1—locus typicus, island Skarvesäter; 2—Puck Bay.
FIGURE 1 in Checklist of Gastrotricha of the Polish Baltic Sea with the first reports of Heterolepidoderma joermungandri Kånneby, 2011, and Turbanella hyalina Schultze, 1853
FIGURE 1. Selected areas of the Polish Baltic Sea with localisation of the sampling sites (1–41). Kisielewski 1975—Sites: 1–5, 7–14, 16, 17, 22, 26, 30, 31. Hummon 2008—Site 2. Kolicka & Zawierucha 2012—Site 6. Present study—Sites: 10, 11, 18–20, 25, 27–29. Roszczak 1939 - Sites: 12, 13, 15–17, 21–25. Radziejewska unpublished data - Sites: 32–41.
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.