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Fig. 3. Anonyx gurjanovai Steele, 1986 in Two new record of the genus Anonyx (Crustacea: Amphipoda: Uristidae) from Korean waters
Fig. 3. Anonyx gurjanovai Steele, 1986, adult male, 8.50 mm. A, pereopod 5; B, pereopod 6; C, pereopod 7; D, uropod 1; E, uropod 2; F, uropod 3; G, telson. Scale bars: A-C, G = 0.5 mm, D-F = 0.2 mm.
Fig. 5 in A new species and new record of Pacificincolidae (Bryozoa: Cheilostomata) from Korea
Fig. 5. Neighbor-Joining (NJ) phylogenetic tree based on approximately 480 bp of 16S rRNA gene from four Schizoporelloids species, based on the kimura-2 parameter distance model. Bootstrap values indicated on each node. Species is provided with both serial number of material and GenBank accession number.
Fig. 8. Scepanotrocha corniculata Bryce, 1910. A in New records of three monogonont and seven bdelloid rotifers from Korea
Fig. 8. Scepanotrocha corniculata Bryce, 1910. A. feeding, dorsal view; B, C. feeding, in different focal planes, dorsal view (Scales: A-C = 25 μm).
Fig. 3. Testudinella brevicaudata Yamamoto, 1951. A, B in New records of three monogonont and seven bdelloid rotifers from Korea
Fig. 3. Testudinella brevicaudata Yamamoto, 1951. A, B. lorica in different focal planes (Scales: A, B = 50 μm).
Fig. 4 in New records of three monogonont and seven bdelloid rotifers from Korea
Fig. 4. Habrotrocha scepanotrochoides De Koning, 1947. A. feeding habitus; B-D. feeding head, dorsal view; E. creeping habitus (Scales: A, E = 50 μm; B-D = 20 μm).
Fig. 7. Otostephanos torquatus amoenus Milne, 1916. A in New records of three monogonont and seven bdelloid rotifers from Korea
Fig. 7. Otostephanos torquatus amoenus Milne, 1916. A. feeding, dorsal view; B. feeding, dorsal view; C. creeping, ventral view (Scales: A-C = 50 μm).
Fig. 2 in A new species and new record of Pacificincolidae (Bryozoa: Cheilostomata) from Korea
Fig. 2. Pacificincola perforata. (A) Baengnyeongdo Island, 27 Nov. 2008; (B, C) Sinjindo Island, 26 Jul. 2009; (D) Cheongpodae Beach, 12 Jul. 2010. A, zooids; B, orifice; C, ovicells; D, ancestrula and daughter zooids. Scale bars: A-D = 0.10 mm.
Fig. 19 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 19. Photomicrograph of Histiobalantium natans viridis after protargol impregnation, left side showing body outline, ciliature, nuclear apparatus, and oral apparatus. M1-3, adoral membranelles; MA, macronuclei; MI, micronucleus; PM, paroral membrane. Scale bar = 20 μm.
Fig. 11 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 11. Photomicrographs of Metopus es from life (A) and after protargol impregnation (B). A. Ventral view showing the torsion of the body and the adoral zone of membranelles. B. Ventral view showing the somatic and oral ciliature, the perizonal ciliary stripe, and the nuclear apparatus. AZP, adoral zone of polykinetids; MA, macronucleus; PM, paroral membrane; PS, perizonal ciliary stripe. Scale bars = 20 μm.
Fig. 8 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 8. Photomicrographs of Steinia sphagnicola from living specimens (A, B) and after protargol impregnation (C, D). A, B. Ventral (A) and dorsal (B) view showing body outline. C. Ventral ciliature. D. Dorsal kineties. 1-6, dorsal kineties; AZM, adoral zone of membranelles; CC, caudal cirri; LMR, left marginal row; MA, macronucleus; MI, micronucleus; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri. Scale bars = 50 μm.
Fig. 14 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 14. Photomicrographs of Podophrya bivacuolata from life (A-D), after protargol impregnation (E), and scanning electron microscope (F, G). A, B. Lateral views of swarmers showing the clavate tentacles and the ciliary stripes. C, D. Adult cells with long tentacles and stalk. E. Swarmer showing the cell shape and the ciliary pattern. F, G. Swarmers showing the cell shape and the precursor of the stalk. CV, contractile vacuole; MA, macronucleus; P, stalk precursor; S, stalk; T, tentacles. Scale bars = 30 μm (A-D), 20 μm (E, F), and 10 μm (G).
Fig. 7 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 7. Photomicrographs of Oxytricha paragranulifera from life (A) and after protargol impregnation (B, C). A. Dorsal view showing the body shape, and the arrangement of the cortical granules. B, C. Ventral (B) and dorsal (C) view showing the ciliature, and the nuclear apparatus. AZM, adoral zone of membranelles; CC, caudal cirri; LMR, left marginal row; MA, macronucleus; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri. Scale bars = 20 μm.
Fig. 2 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 2. Photomicrographs of Birojimia terricola from life (A) and after protargol impregnation (B, C). A. Dorsal view showing the body shape, and the arrangement of the cortical granules. B, C. Ventral (B) and dorsal (C) view showing the ciliature, and the nuclear apparatus. 1-4, right marginal rows; AZM, adoral zone of membranelles; BC, buccal cirrus; CG, cortical granules; CV, contractile vacuole; FC, frontal cirri; LMR, left marginal row; MA, macronuclei; MP, midventral pairs; PTC, pretransverse cirri; TC, transverse cirri. Scale bars = 50 μm.
Fig. 10 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 10. Photomicrographs of Tetmemena bifaria minima from life (A, B) and after protargol impregnation (C). A, B. Ventral views showing the body shape and the transverse and caudal cirri projecting from posterior body end. C. Ventral view showing the ventral ciliature. AZM, adoral zone of membranelles; BC, buccal cirrus; CC, caudal cirri; FC, frontal cirri; LMR, left marginal row; MA, macronucleus; MI, micronucleus; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri. Scale bars = 30 μm.
Fig. 6 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 6. Photomicrographs of Stichotricha aculeata from life (A) and after protargol impregnation (B, C). A. Ventral view showing body outline and the narrow, curved anterior portion containing the adoral zone of membranelles. B, C. Ventral (B) and dorsal (C) view showing the body shape and the somatic ciliature. Scale bars = 30 μm.
Fig. 9 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 9. Photomicrographs of Stylonychia cf. notophora after protargol impregnation (A, B). Ventral (A) and dorsal (B) view showing the body shape somatic and oral ciliature. AZM, adoral zone of membranelles; BC, buccal cirrus; CC, caudal cirri; FC, frontal cirri; LMR, left marginal row; MA, macronucleus; MI, micronucleus; PTC, pretransverse cirri; RMR, right marginal row; TC, transverse cirri. Scale bars = 30 μm.
Fig. 20 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 20. Photomicrographs of Opisthonecta minima from life (A, B), after silver nitrate (C), and after protargol impregnation (D, E). A, B. Lateral views showing the body shape, the aboral wreath, the single contractile vacuole, and the food vacuoles. C. Lateral view showing the ciliature and silverline pattern. D, E. Lateral views of the same specimen showing the myoneme strands, the macronucleus, and the oral polykinetids. AW, aboral ciliary wreath; CP, cortical pores; CV, contractile vacuole; EM, epistomial membrane; MA, macronucleus; MY, myonenes; P1-3, oral polykinetids; S, scopula; V, vestibulum. Scale bars = 30 μm.
Fig. 16 in New record of 21 ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 16. Photomicrographs of Dexiostoma campylum after protargol impregnation (A, B). Ventral (A) and dorsal (B) view of the same specimen showing somatic ciliature, oral ciliature, and nuclear apparatus. Scale bar = 20 μm.
Fig. 1 in New record of five anaerobic ciliate species from South Korea
Fig. 1. Brachonella contorta in life (A) and after protargol impregnation (B, C). A. Ventral view showing the body shape, the adoral zone of polykinetids, which extends to posterior body end and spirals 360° around long body axis, and the long preoral dome. B, C. Ventral and dorsal view showing the somatic and oral ciliature, the perizonal ciliary stripe, and the nuclear apparatus. AZP, adoral zone of polykinetids; MA, macronucleus; MI, micronucleus; PS. Perizonal ciliary stripe. Scale bars 20 μm.
Fig. 3 in New record of five anaerobic ciliate species from South Korea
Fig. 3. Metopus setosus in life (A-C), in the scanning electron microscope (D-F), and after protargol impregnation (G, H). A-C. Ventral (A) and ventrolateral (B, C) views showing the torsion of the body, the adoral zone of membranelles, the very long caudal cilia, and the large, terminal contractile vacuole. D-F. Dorsal (D, E) and ventrolateral (F) view, showing the body shape, the somatic ciliature, and the very long caudal cilia. G, H. Ventral and dorsal view showing the somatic and oral ciliature, the perizonal ciliary stripe, and the nuclear apparatus. AZP, adoral zone of polykinetids; CC, caudal cilia; CV, contractile vacuole; MA, macronucleus; PM, paroral membrane; PS, perizonal ciliary stripe. Scale bars 30 μm (A-D) and 20 μm (E-H).
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.