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1,085 results for “Ciliophora”
Fig. 1 in New records of two pleurostomatids (Ciliophora: Litostomatea) from Korea
Fig. 1. Morphology of Amphileptus litonotiformis from live (A, EG) and protargolimpregnated (BD, HJ) specimens. A, E, Appearance of a typical live individual; B, H, Nuclei, extrusomes, and nematodesmata with protargolimpregnation. C, D, Ciliary pattern after protargolimpregnation, left (C) and right (D) sides; F, Right view of live specimen, beaklike anterior region (arrowhead) and suture (arrows); G, Posterior region, contractile vacuole (arrowhead) and somatic kineties (arrows); I, Anterior region, extrusomes (arrows); J, Inside body, membranelles of feeding hypotrichs (arrows). Scale bars: 100 μm.
Fig. 6 in First description of three ciliates (Ciliophora: Stichotrichia) from Korea
Fig. 6. Photomicrographs of Lamtostyla granulifera from life (AF) and after protargol impregnation (GK). A, B, E, G, H, J, ventral view of the specimen; C, D, F, I, K, dorsal views; E, distribution of cortical granules; F, arrows indicate dorsal cilia; G, anterior region of stained specimen, arrow marks amphisiellid median cirral row, arrowhead indicates ventral cirri; J, distribution of cortical granules on ventral surface; K, distribution of cortical granules on dorsal surface; AZM, adoral zone of membranelles; BC, buccal cirrus; DK, dorsal kineties; FC, frontal cirri; LMR, left marginal row; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri; 13, dorsal kineties 13. Scale bars: 100 μm.
Fig. 5 in First description of three ciliates (Ciliophora: Stichotrichia) from Korea
Fig. 5. Morphology of Lamtostyla granulifera drawn from life (A) and after protargol impregnation (B, C). A, B, ventral views; C, dorsal view; ACR, amphisiellid median cirral row; AZM, adoral zone of membranelles; BC, buccal cirrus; CV, contractile vacuole; DK, dorsal kineties; EM, endoral membrane; FC, frontal cirri; LMR, left marginal row; Ma, macronuclear nodules; Mi, micronuclei; PM, paroral membrane; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri; VC, ventral cirri, left of ACR; 13, dorsal kineties 13. Scale bar: 100 μm.
Fig. 4 in First description of three ciliates (Ciliophora: Stichotrichia) from Korea
Fig. 4. Photomicrographs of Gonostomum strenuum from life (AF) and after protargol impregnation (GI). A, B, G, ventral views; C, D, H, dorsal views, arrows indicate contractile vacuole; E, arrows indicate cortical granules; F, dorsal cilia (arrow) and caudal cirri (arrowhead); I, macronuclear nodules (arrows) and micronuclei (arrowheads); AZM, adoral zone of membranelles, BC, buccal cirrus; DK, dorsal kineties; EM, endoral membrane; FC, frontal cirri; FT, frontoterminal cirri; LMR, left marginal row; Ma, macronuclear nodules; Mi, micronuclei; PM, paroral membrane; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri; CC, caudal cirri. Scale bar: 50μm.
Fig. 1. Cyrtohymena australis Foissner, 1995 in Morphological redescriptions of three Cyrtohymena ciliates (Ciliophora: Sporadotrichida: Oxytrichidae) new to Korea
Fig. 1. Cyrtohymena australis Foissner, 1995 from live (A, D, E, F) and protargol-impregnated specimens (B, C, G). A, D. Ventral view of a typical individual. B, G. Ventral view of general infraciliature and nuclear apparatus. C. Showing dorsal kineties and caudal cirri. E. Flexible body. F. Cortical granules on dorsal side. Scale bar=100 µm.
Fig. 3 in First description of three ciliates (Ciliophora: Stichotrichia) from Korea
Fig. 3. Morphology of Gonostomum strenuum drawn from life (A) and after protargol impregnation (B, C). A, B, ventral views of representative individuals; C, dorsal view; AZM, adoral zone of membranelles; BC, buccal cirrus; CV, contractile vacuole; DK, dorsal kineties; EM, endoral membrane; FC, frontal cirri; FT, frontoterminal cirri; LMR, left marginal row; Ma, macronuclear nodules; Mi, micronuclei; PM, paroral membrane; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri; CC, caudal cirri. Scale bar: 50μm.
Fig. 3 in Morphological redescriptions of three Cyrtohymena ciliates (Ciliophora: Sporadotrichida: Oxytrichidae) new to Korea
Fig. 3. Cyrtohymena muscorum (Kahl, 1932) from live (A, D, E, F) and protargol-impregnated specimens (B, C, G). A and D. Ventral view of a typical individual. B and G. Ventral view of general infraciliature. C and E. Dorsal kineties. F. Red cortical granules. Scale bar=50 µm.
Fig. 2 in Morphological redescriptions of three Cyrtohymena ciliates (Ciliophora: Sporadotrichida: Oxytrichidae) new to Korea
Fig. 2. Cyrtohymena citrina (Berger and Foissner, 1987) from live (A, D, E, F) and protargol-impregnated specimens (B, C, G, H, I). A and D. Ventral view of a typical individual. B, G and I. Ventral view of general infraciliature and nuclear apparatus. C. Dorsal kineties. E and F. Cortical granules on dorsal side. Scale bar=50 µm.
Fig. 18 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 18. Pseudovorticella vestita from life (A), after protargol impregnation (B, C). A. Body shape in vivo to show pellicular vesicles. B. Two kinds of macronuclear pattern (globular type and longitudinal J-shaped type). C. Infundibular polykineties 1-3. MA, macronuclear nodules; P1-3, infundibular polykineties. Scale bar = 30 μm.
Fig. 17 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 17. Epistylis pygmaeum from life (A-C) and after protargol impregnation (D, E). A. Epibiotic habitat of E. pygmaeum. B. Body shape and contractile vacuole in vivo. C. Dichotomously branched stalk. D. Infundibular polykinety 1-3. E. Macronucleus and silverline systems. Scale bars = 200 μm (A); 50 μm (B); 20 μm (D); 10 μm (E).
Fig. 15. Bryometopus triquetrus after protargol impregnation. A in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 15. Bryometopus triquetrus after protargol impregnation. A. Somatic ciliature and contractile vacuole pore (arrow). B. Triangular oral cavity. C. Single macronucleus. LF, left oral ciliary field; MA, macronucleus; RF, right oral ciliary field. Scale bars = 20 μm.
Fig. 16 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 16. Cyclidium glaucoma from life (A) and after protargol impregnation (B, C). A. Body shape in vivo. B. Details of oral ciliatures. C. Somatic ciliature on dorsal side. M1-3, membranelles; MA, macronucleus; PM, paroral membrane; SC, scutica. Scale bars = 10 μm.
Fig. 12 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 12. Paraenchelys wenzeli from life (A-C) and after protargol impregnation (D-F). A. Typical body shape in vivo. B. Details of cytoplasmic structures including macronucleus, extrusomes and contractile vacuoles. C. Peculiar large, teardrop shape extrusomes. D. Macronucleus with micronucleus and weakly impregnated large extrusomes. E. Somatic and oral ciliature (arrow indicates micronucleus). F. Details of fragmented dorsal brush rows. B, brush rows; E, extrusomes; MA, macrnucleus; MI, micronucleus. Scale bars = 30 μm (A, B, D, E); 10 μm (C).
Fig. 14 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 14. Drepanomonas revoluta from life (A-C) and after protargol impregnation (D). A. Body outline in vivo. B. Note the deep wide furrow on the left side. C. Left side in vivo. D. Somatic and oral ciliature on right side. CV, contractile vacuole; CY, cytopyge; F, furrow; K1- 9, somatic kineties; MA, macronucleus; MI, micronucleus; PC, postoral complex; PO, preoral kineties. Scale bars = 10 μm.
Fig. 13 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 13. Rimaleptus similis from life (A, B, E) and after protargol impregnation (C, D). A. Typical body shape in vivo. B. Distribution of contractile vacuoles. C. Somatic and oral ciliature. D. Details of oral ciliature. E. Single spherical micronucleus between two macronuclear nodules and two kinds of oral extrusomes. CK, circumoral kinety; CV, contractile vacuoles; MA, macronuclear nodule; MI, micronucleus; PR, preoral kinety. Scale bars = 100 μm (A); 50 μm (C, E).
Fig. 11 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 11. Phialinides australis from life (A, B) and after protargol impregnation (C, D). A. Cortical granulation. B. Oral and cytoplasmic extrusomes. C, D. Details of oral and somatic ciliature and the phialinid ciliary wreath (arrowheads). Scale bars = 30 μm (A, B); 20 μm (C, D).
Fig. 10 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 10. Protospathidium muscicola from life (A, B) and after protargol impregnation (C-E). A. Typical body shape to show oral and cytoplasmic extrusomes with one terminal contractile vacuole. B. Cortical granules and apparatus of dorsal brush rows. C, D. Somatic and circumoral kineties with macronuclear nodules. E. Details of dorsal brush rows. B, brush rows; CV; contractile vacuole; E, extrusomes; MA, macronuclear nodule; OF, oral kinetofragment. Scale bars = 30 μm.
Fig. 6 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 6. Anteholosticha brachysticha from life (A, B) and after protargol impregnation (C, D). A. Cortical granulation on ventral side (arrowheads). B. Cortical granulation on dorsal side (arrowheads) and contractile vacuole. C. Somatic and oral ciliature on ventral side with distribution of macronuclear nodules. Arrow marks last midventral cirrus. D. Dorsal kineties. 1-3 dorsal kineties; BC, buccal cirrus; CV, contractile vacuole; FC, frontal cirri; FT, frontoterminal cirri; LMR, left marginal row; MA, macronucleus nodule; RMR, right marginal row; TC, transverse cirri. Scale bars = 30 μm (A, B); 20 μm (C).
Fig. 3 in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 3. Lamtostyla decorata from life (A, B) and after protargol impregnation (C-E). A. Typical body shape in vivo. B. Dorsal bristles and cortical granules (arrowheads). C, D. Somatic and oral ciliature of ventral sides. E. Dorsal kineties. 1-3, dorsal kineties; ACR, amphisiellid median cirral row; BC, buccal cirrus; CV, contractile vacuole; DB, dorsal bristles; FC, frontal cirri; FT, frontoterminal cirri; MA, macronucleus; MI, micronucleus; PTC, pretransverse cirri; TC, transverse cirri. Scale bars = 30 μm.
Fig. 9. Epispathidium amphoriforme after protargol impregnation. A in Brief description of 18 newly recorded ciliate species from soil and inland waters (Protozoa, Ciliophora) in South Korea
Fig. 9. Epispathidium amphoriforme after protargol impregnation. A. Right side view to show circumoral kinety and somatic kineties. B, C. Left side views to show dorsal brush rows, ribbon-like macronucleus and spherical inclusions. B, brush rows; CK, circumoral kinety; MA, macronucleus. Scale bars = 30 μm.
ScienceDex guides
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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.