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.
1,085
datasets available to search
ShareScore release 0.7.1
Dataset results
1,085 results for “Ciliophora”
FIGURE 3 in Checklist of ciliates (Alveolata: Ciliophora) that inhabit in bromeliads from the Neotropical Region
FIGURE 3. Ciliate species from Mexican bromeliads included in the present study: m. Colpoda lucida, n. C. cucullus, o. C. cavicola, p. C. maupasi, q. Emarginatophrya aspera, r. C. inflata, s. Cyclidium glaucoma, t. Paracolpoda lajacola, u. P. steinii, v. Bromeliothrix metopoides macrostome, w. microstomous theront of B. metopoides, x. microstomous trophont of B. metopoides. MA-macronucleus; m, p-x: Cells impregnated with the dry silver nitrate method (Foissner, 2014); n. Cell impregnated with nigrosine; o: Cells with silver carbonate impregnation (Fernández-Galiano 1976). Scale bars: 10µm.
FIGURE 2 in Checklist of ciliates (Alveolata: Ciliophora) that inhabit in bromeliads from the Neotropical Region
FIGURE 2. Ciliate species from Mexican bromeliads included in the present study: a. Fragmocirrus espeletiae, b. Gonostomum bromelicola, c. Leptopharynx bromeliophilus, d. L. brasiliensis, e. L. bromelicola, f. L. costatus, g. Chilodonella uncinata, h. Glaucomides bromelicola, i. Epistylis plicatilis (in vivo), j. Bromeliophrya brasiliensis, k. Drepanomonas revoluta, l. D. sphagni. MA-macronucleus; a, b, g, h, k: cells with protargol procedure (Foissner 2014); c-f, j, l. Cells impregnated with the dry silver nitrate method (Foissner 2014). Scale bars: 10µm.
FIGURE 1 in A checklist of trichodinid species (Ciliophora: Trichodinidae) on tilapia fishes (Cichlidae), with new records from Mexico and the first data from Argentina
FIGURE 1. Photomicrographs of representative specimens from each of the populations studied. A. Trichodina centrostrigeata, Huandacareo, Michoacán, Mexico; scale bar = 20 μm. B. T. centrostrigeata, San Vicente, Buenos Aires, Argentina; scale bar = 20 μm. C. T. compacta, Huandacareo, Michoacán, Mexico; scale bar = 20 μm. D. T. magna, Huandacareo, Michoacán, Mexico; scale bar = 20 μm. E. T. minuta, Las Pocitas, Baja California Sur, Mexico; scale bar = 10 μm. F. Trichodinella epizootica, Huandacareo, Michoacán, Mexico, scale bar = 10 μm.
FIGURE 2 in A checklist of trichodinid species (Ciliophora: Trichodinidae) on tilapia fishes (Cichlidae), with new records from Mexico and the first data from Argentina
FIGURE 2. Photomicrographs of representative specimens from each of the populations studied. A. Paratrichodina africana, San Vicente, Buenos Aires, Argentina; scale bar = 10 μm. B. P. africana, Huandacareo, Michoacán, Mexico; scale bar = 10 μm. C. Tripartiella orthodens, Huandacareo, Michoacán, Mexico; scale bar = 10 μm.
FIGURE 3 in Checklist of Cycloposthiidae species (Ciliophora, Entodiniomorphida), with a brief review on taxonomy, morphology and hosts
FIGURE 3. Species from the genus Triplumaria in drawings based from descriptions and redescriptions performed by other authors. A. T. acuticaudata (Timoshenko & Imai, 1995); B. T. alluvia (Ito et al. 2008); C. T. corrugata (Van Hovel et al. 1998); D. T. asiatica (Timoshenko & Imai, 1995); E. T. selenica (Ito et al. 2010); F. T. fulgora (Ito et al. 2011); G. T. grypoclunis (Ito et al. 2008); H. T. hamertoni (Anette & Van Hoven, 1980); I. T. antis (Ito et al. 2011); J. T. harpagonis (Ito et al. 2011); K. T. dvoinoisi (Ito et al. 2011); L. T. izmirae (Gürelli & Ito, 2014); M. T. longinucleata (Timoshenko & Imai, 1995); N. T. doliiformis (Timoshenko & Imai, 1995); O. T. suwako (Ito et al. 2011); P. T. sukuna (Ito et al. 2011); Q. T. solea (Ito et al. 2011); R. T. poljanskii (Timoshenko & Imai, 1995); S. T. zuze (Ito et al. 2011); T. T. heterofasciculata (Timoshenko & Imai, 1995); U. T. ovina (Timoshenko & Imai, 1995); V. T. irregularis (Timoshenko & Imai, 1995); W. T. nucleocaudata (Timoshenko & Imai, 1995). Ma: macronucleus; PK: paralabial kineties; PVP: perivestibular polybrachykinety; SP: skeletal plates; Ve: vestibulum. Bars: 100µm.
FIGURE 4. Part 2 in Checklist of Cycloposthiidae species (Ciliophora, Entodiniomorphida), with a brief review on taxonomy, morphology and hosts
FIGURE 4. Part 2. Morphometric characterization of species which were described in the Cycloposthiidae family. The morphometric values shown in the figure refer to the mean, standard deviation and minimum and maximum values retrieved from the literature for each species. However, statistical data is not avalibable for all species. The species Carinoposthium caudatum, Cycloposthium plicatocaudatum and Prototapirella intestinalis were not included in the figure because their morphometric data are unavailable. 1Van Hoven et al. 1987; 2Ito et al. 2014; 3Buisson, 1923; 4Hsiung, 1930; 5Ito & Imai, 2000; 6Cunha & Muniz, 1927; 7Van Hoven et al. 1998; 8Thurston & Noirot-Timothée, 1973; 9Ito et al. 2016; 10Timoshenko & Imai, 1995; 11Ito et al. 2008; 12Ito et al. 2011; 13Hoare, 1937; 14 Gürelli & Ito, 2014; 15Ito et al. 2010.
FIGURE 4. Part 1 in Checklist of Cycloposthiidae species (Ciliophora, Entodiniomorphida), with a brief review on taxonomy, morphology and hosts
FIGURE 4. Part 1. Morphometric characterization of species which were described in the Cycloposthiidae family. The morphometric values shown in the figure refer to the mean, standard deviation and minimum and maximum values retrieved from the literature for each species. However, statistical data is not avalibable for all species. The species Carinoposthium caudatum, Cycloposthium plicatocaudatum and Prototapirella intestinalis were not included in the figure because their morphometric data are unavailable. 1Van Hoven et al. 1987; 2Ito et al. 2014; 3Buisson, 1923; 4Hsiung, 1930; 5Ito & Imai, 2000; 6Cunha & Muniz, 1927; 7Van Hoven et al. 1998; 8Thurston & Noirot-Timothée, 1973; 9Ito et al. 2016; 10Timoshenko & Imai, 1995; 11Ito et al. 2008; 12Ito et al. 2011; 13Hoare, 1937; 14 Gürelli & Ito, 2014; 15Ito et al. 2010.
FIGURE 2 in Checklist of Cycloposthiidae species (Ciliophora, Entodiniomorphida), with a brief review on taxonomy, morphology and hosts
FIGURE 2. Species of the genera Arachnodinella, Bozasella, Lavierella, Monoposthium, Phalodinium, Prototapirella, Tricaudalia, Trifascicularia e Tripalmaria in drawings based from descriptions and redescriptions performed by other authors. A. Arachnodinella noveni (Van Hoven et al. 1987); B. Monoposthium acanthum (Thurston & Noirot-Timothe, 1973); C. Monoposthium bracchium (Van Hoven et al. 1987); D. Monoposthium latus (Van Hoven et al. 1987); E. Monoposthium cynodontum (Ito & Imai, 2000); F. Monoposthium vulgaris (Van Hoven et al. 1987); G. Phalodinium digitalis (Van Hoven et al. 1987); H. Lavierella africana (Buisson, 1923); I. Lavierella klipdrifi (Van Hoven et al. 1987); J. Prototapirella clypeata (Buisson, 1923); K. Bozasella gracilis (Ito et al. 2014); L. Bozasella rhinocerotis (Buisson, 1923); M. Prototapirella fosseyi (Ito et al. 2016); N. Tricaudalia brumpti (Buisson, 1923); O. Tripalmaria dogieli (Hsiung, 1930); P. Prototapirella cristata (Buisson, 1923); Q. Prototapirella elephantis (Buisson, 1923); R. Prototapirella rwanda (Ito et al. 2016); S. Prototapirella gorillae (Ito et al. 2016); T. Prototapirella intestinalis (Anette & Van Hoven, 1980); U. Trifascicularia cycloposthium (Strelkow, 1939). AC: adoral ciliary; Cau: caudalia; Ma: macronucleus; SP: skeletal plate. Bars: 100µm.
FIGURE 1 in Checklist of Cycloposthiidae species (Ciliophora, Entodiniomorphida), with a brief review on taxonomy, morphology and hosts
FIGURE 1. Species of the genus Cycloposthium, in drawings based from descriptions and redescriptions performed by other authors. A. C. caudatum (Ito & Imai, 2000); B. C. elongatum (Ito & Imai, 2000); C. C. hydrochoeri (Ito & Imai, 2000); D. C. affinae (Hsiung, 1930); E. C. incurvum (Ito & Imai, 2000); F. C. edentatum (Strelkow, 1939); G. C. magnum (Cunha & Muniz, 1927); H. C. lenticularis (Ito & Imai, 2000); I. C. plicatocaudatum (Strelkow, 1939); J. C. compressum (Ito & Imai, 2000); K. C. piscicauda (Strelkow, 1939); L. C. bipalmatum (Ito et al. 2002); M. C. dentiferum (Strelkow, 1939); N. C. bursa (Ito & Imai, 2000); O. C. vorax (Cunha & Muniz, 1927); P. C. minutum (Ito & Imai, 2000); Q. C. scutigerum (Hsiung, 1930); R. C. ishikawai (Strelkow, 1939); S. C. corrugatum (Strelkow, 1939); T. C. cristatum (Ito & Imai, 2000). AC: adoral ciliary; Cau: caudalia; Ma: macronucleus; PVP: perivestibular polybrachykinety; SP: skeletal plate; Ve: vestíbulum. Bars: 100µm.
FIGURE 33 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURE 33: Scatter plot showing correlation between body length and body width for the three studied species. FIGURE 34: Scatter plot showing correlation between dAEAZM and body length for the three studied species.
FIGURES 12, 13 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 12, 13: A. tihanyiensis. 12: dorsal surface of protargol impregnated specimen. Arrow marks the dorsal field of scattered dikinetids; 13: schematic drawing showing general morphology of organism in lateral view.
FIGURES 14–16 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 14–16: Schematic drawings showing the observed patterns of dorsal ciliature in the 3 species (based on protargol impregnated specimens). 14: A. foissneri; 15: A. jurubatiba; 16: A. tihanyiensis. Solid lines represent kineties observed in all studied specimens; Segmented lines represent kineties observed in few specimens; Circular dots represent scattered dikinetids; Square dots represent cirri. Arrowhead marks the anterior portion of right marginal row in A. jurubatiba.
FIGURES 2, 3 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 2, 3: Apoamphisiella foissneri. 2: ventral side in vivo; 3: ventral side of protargol impregnated specimen. Arrow points to the 2 postperistomial cirri, characteristic of this species. Legend: ACV = anterior contractile vacuole; PCV = posterior contractile vacuole.
FIGURE 1 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURE 1: Apoamphisiella jurubatiba (protargol impregnation). Ventral side of anterior region to explain some features used for morphometric characterization (see Table 1).
FIGURES 8, 9 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 8, 9: A. jurubatiba. 8: dorsal surface, based on protargol impregnated specimen. Arrowhead marks the dorsal field of scattered dikinetids; 9: from life, general morphology of organism in lateral view.
FIGURES 10, 11 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 10, 11: Apoamphisiella tihanyiensis. 10: ventral side, in vivo; 11: ventral side of protargol impregnated specimen. Legend: CV = contractile vacuole.
FIGURES 6, 7 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 6, 7: Apoamphisiella jurubatiba. 6: ventral side in vivo; 6: ventral side of protargol impregnated specimen. Arrowhead points to posterior end of body, showing the terminal portion of left and right marginal rows. See text. Legend: CV = contractile vacuole; PFC = posterior frontal cirri.
FIGURES 4, 5 in Comparative morphometric study of three species of Apoam phisiella Foissner, 1997 (Ciliophora: Hypotrichea) from Brazilian locations, including a description of Apoamphisiella foissneri sp. n.
FIGURES 4, 5: A. foissneri. 4: dorsal side of protargol impregnated specimen. Arrowhead marks the dorsal field of scattered dikinetids; 5: from life, general morphology of organism in lateral view.
FIGURE 5 in Notes on a new marine peritrichous ciliate (Ciliophora: Peritrichida), Zoothamnium xuianum n. sp., with redescription of Z. paraentzii Song, 1991 from northern China
FIGURE 5. Comparison of some closely related morphotypes. (A, B) Zoothamnium chlamydis (from Hu & Song, 2001). (C, D) Z. plumula (from Song et al., 2002). (E) Z. alternans (from Greeff, 1870). (F) Z. alternans (from Claparède & Lachmann, 1858). (G) Z. alternans (from Kent, 1881). (H, I) Z. sinense (from Song, 1991b). (J, K) Z. dichotomum (after Kahl, 1935). (L, M) Zoothamnopsis mengi (from Song, 1997). (N, O) Zoothamnium paragammari (from Song, 1991b). (P) Z. marinum (after Kahl, 1935). (Q, R) Z. intermedium (from Song, 1991b). Scale bars in (H, N, Q) = 20 µm, in (A) = 30 µm, in (C) = 40 µm, in (L) = 50 µm, in (P) = 100 µm.
FIGURES 23–31 in Redescription of the marine scuticociliate Glauconema trihymene Thompson, 1966 (Protozoa: Ciliophora): life cycle and stomatogenesis
FIGURES 23–31. Transformation from trophont to tomite in Glauconema trihymene. (23) Proliferation of paroral membrane to form an anarchic field (arrows). (24) Anarchic field forming several parts and the disappearance of M3 (arrows). (25) Anarchic field divides into two primordia: primordium of paroral membrane (priPM) and primordium of membranelles (priM) which comprises 5–6 stacked fields; parental M2 partially resorbed (arrows). (26) PriPM aligning into one line (arrowheads). (27–29) Proliferation of priPM and the resorption of membranelles (arrow). (30–31) Formation of three membranelles, arrow showing the anterior end of the paroral membrane. Scale bars = 20 m.
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.