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Fig. 6 in Six newly recorded species of epilithic cyanobacteria isolated in Korea
Fig. 6. Microscopic photographs of Shackletoniella antarctica from the strain ACKU671. (A) Arrangement of filament, (B) False branching (fb), (C) Trichomes twisted into a rope, (D) Morphology of trichome, (E, F) Sheaths (sh), (G, H) Apical cell of trichomes. Scale bars = (A) 50 μm, (B-H) 10 μm.
Fig. 7 in Six newly recorded species of epilithic cyanobacteria isolated in Korea
Fig. 7. Maximum-Likelihood (ML) phylogenetic tree based on 16S rRNA gene sequences of Geminocystis papuanica, Allocoleopsis franciscana, and other cyanobacterial strains. 16S rRNA gene sequences of species (Gloeobacter violaceus PCC 7421, Pseudanabaena catenata PCC 7408) were included as the outgroups. The support values at the nodes are written as follows: ML/Bayesian. Support values are displayed at nodes for>50% ML bootstrap proportions and>0.5 Bayesian posterior probability. The branch lengths are proportional to the scale given. Bold represents data obtained in this study.
Fig. 5 in Six newly recorded species of epilithic cyanobacteria isolated in Korea
Fig. 5. Microscopic photographs of Scytolyngbya timoleontis from the strain ACKU677. (A) Arrangement of filament, (B) False branching (fb) in old culture, (C) Several trichomes within a sheath, (D) Morphology of trichome, (E) Necridic cells (nc), (F, G) Sheaths (sh), (H) Apical cell of trichome. Scale bars = (A) 50 μm, (B-H) 10 μm.
Fig. 8 in Brief description of newly recorded eight ciliate species (Protozoa, Ciliophora) collected from South Korea
Fig. 8. Uronemella filificum in vivo (A-C) and after protargol impregnation (D). A. Right side view showing body shape (arrow indicates caudal cilium). B, C. Left side views showing oral apparatus, macronucleus, and extrusomes (arrowheads). D. Ventral view showing oral, somatic infraciliature, and nuclear apparatus. Scale bar = 20 μm.
Fig. 5 in Brief description of newly recorded eight ciliate species (Protozoa, Ciliophora) collected from South Korea
Fig. 5. Loxophyllum chinense in vivo (A) and after protargol impregnation (B). A. Left side view showing body shape, warts on dorsal side, and contractile vacuoles. Asterisk indicates original body shape under low magnification. B. Right side view showing somatic kineties. Scale bars = 50 μm.
Fig. 4. Hemiamphisiella granulifera after protargol impregnation. A in Brief description of newly recorded eight ciliate species (Protozoa, Ciliophora) collected from South Korea
Fig. 4. Hemiamphisiella granulifera after protargol impregnation. A. Ventral view showing somatic, oral infraciliature and macronuclear nodules. B. Dorsal view showing dorsal kineties. Scale bars = 50 μm.
Fig. 3 in Brief description of newly recorded eight ciliate species (Protozoa, Ciliophora) collected from South Korea
Fig. 3. Protocruzia labiata in vivo (A, D-M) and after protargol impregnation (B, C, N, O). A. Typical individual showing body shape and extrusomes. B, C. Right and left side view showing somatic, oral infraciliature, and nuclear apparatus. D-G. Various body shapes, gray circles denote anterior portion of adoral membranelles, specimen in (G) slightly squashed. H. Schematic drawing of cortical and cytoplasmic granules. I-K. Various body shapes (arrows and arrowheads indicate anterior and posterior portion of AM, respectively). L, M. Right side views showing extrusomes, cortical granules (arrowheads), and cytoplasmic granules (blood cell-like shaped granules). N, O. Right and left side view showing somatic, oral infraciliature, and nuclear apparatus. AM, adoral membranelles; AMa, adoral membranelles on anterior portion; CG, cortical granules; CyG, cytoplasmic granules; EX, extrusomes; FV, food vacuoles; MA, macronuclei; MI, micronuclei; PM, paroral membrane; SK1-n, somatic kinety1-n; SKC, somatic dikinetid cilium. Scale bars: A, D, I-K = 20 μm; C, L, N, O = 10 μm; H, M = 5 μm.
Fig. 6. Trochilioides recta after protargol impregnation. A, B in Brief description of newly recorded eight ciliate species (Protozoa, Ciliophora) collected from South Korea
Fig. 6. Trochilioides recta after protargol impregnation. A, B. Ventral views showing somatic kineties, three rows of circumoral kineties, macronucleus, and the strongly curved cytopharyngeal basket. C. Dorsal view showing dorsally extended right kinety. Scale bars = 20 μm.
Figure 15 in A newly recorded species in China, Ctenothrips niger Kudô (Thysanoptera: Thripidae), and the first description of its male
Figure 15. Ctenothrips niger (female): body (not discolored). Figure 16. Ctenothrips niger (female): body (discolored). Figure 17. Ctenothrips niger (female): head and pronotum. Figure 18. Ctenothrips niger (female): meso- and metanota. Figure 19. Ctenothrips niger (female): abdominal terga VIII–X.
Figure 4 in A newly recorded species in China, Ctenothrips niger Kudô (Thysanoptera: Thripidae), and the first description of its male
Figure 4. Ctenothrips niger (male): body (not discolored). Scale bar = 30 µm for this and subsequent images. Figure 5. Ctenothrips niger (male): body (discolored). Figure 6. Ctenothrips niger (male): head and pronotum. Figure 7. Ctenothrips niger (male): antenna. Figure 8. Ctenothrips niger (male): mesoanota. Figure 9. Ctenothrips niger (male): metanota.
Figure 2 in Morphological characterization of two newly recorded ciliates Uroleptus (Caudiholosticha) stueberi (Foissner, 1987) Li et al., 2017 and Climacostomum virens (Ehrenberg, 1838) Stein, 1859 from India
Figure 2. Photomicrographs of live (A-F) and protargol-impregnated (G-J) specimens of Climacostomum virens Indian population. A. Specimen showing the body shape. B. Specimen showing the position of the contractile vacuole (arrow). C. Food vacuole. D. Cortical granules, densely placed in between somatic kineties. E. Oral apparatus of the specimen. The arrowhead in (E) denotes the peristomial field. F. Close view of somatic kineties. G. Ventral view of specimens, showing nuclear apparatus and somatic kinety rows. H. Dorsal view of the specimen showing somatic kineties. I. Oral apparatus of the specimen showing peristomial kineties. J. Enlarged view of the coiled macronucleus, arrows point to the small micronuclei.
Figure 1 in Morphological characterization of two newly recorded ciliates Uroleptus (Caudiholosticha) stueberi (Foissner, 1987) Li et al., 2017 and Climacostomum virens (Ehrenberg, 1838) Stein, 1859 from India
Figure 1. Photomicrographs ofUroleptus (Caudiholosticha) stueberi Indian population. (A-C) Live specimens (Ventral views). A. Ventral details with an arrow indicating twisted posterior end due to cover slip pressure. B. Position of contractile vacuole. C. Anterior portion depicting the oral apparatus. (D-H) Protargol impregnated specimens (Ventral views). D, E. Ventral ciliature in two different specimens. Arrows in (E) mark the right mid-ventral cirri at the rear end. F. Small section showing two frontoterminal cirri (arrows), cirrus III/2, and buccal cirrus. G. Nuclear apparatus. Arrows point to two globular micronuclei attached to the macronuclear nodules. H. Note the rounded posterior end (without tail). (I, J) Protargol impregnated specimens (Dorsal views). I. Dorsal kinety rows. J. Specimen showing the position of caudal cirri, each present at the rear ends of the first three dorsal kineties.
Figure 13 in The genus Macrocheles Latreille (Acari: Mesostigmata: Macrochelidae) from Kelkit Valley (Turkey), with three newly recorded mite species
Figure 13. Ventral views of females of the species of Macrocheles from Kelkit Valley: A. M. muscaedomesticae; B. M. glaber; C. M. perglaber; D. M. scutatus; E. M. merdarius; F. M. subbadius; G. M. robustulus.
Figure 14 in The genus Macrocheles Latreille (Acari: Mesostigmata: Macrochelidae) from Kelkit Valley (Turkey), with three newly recorded mite species
Figure 14. Ventral views to males of the species of Macrocheles from Kelkit Valley: A. M. glaber; B. M. perglaber; C. M. scutatus; D. M. subbadius; E. M. robustulus.
Figs. 1–2 in First high-altitude record of Bucculatrix mirnae Vargas and Moreira (Lepidoptera, Bucculatricidae) on a newly documented host plant: the importance of host plant distribution for conservation on the western slopes of the Andes mountains of northern Chile
Figs. 1–2. The habitats of Bucculatrix mirnae in the arid northern Chile. (1) The lowland Azapa Valley (type locality) located in the coastal Atacama Desert close sea level. (2) The highland neighborhood of Putre village at about 3500 m elevation on the western slopes of the Andes.
Fig. 7. Parameioneta bilobata Li in Three New And Four Newly Recorded Species Of Linyphiinae And Micronetinae Spiders (Araneae: Linyphiidae) From Northern Vietnam
Fig. 7. Parameioneta bilobata Li & Zhu, 1993: A, left male palp, retrolateral view; B, ditto, prolateral view; C, ditto, ventral view; D, embolic division, dorsal view; E, palpal tibia, dorsal view; F, epigynum, ventral view; G, ditto, lateral view; H, ditto dorsal view; I, vulva, dorsal view. Scale bars = 0.1 mm.
Fig. 5 in Three New And Four Newly Recorded Species Of Linyphiinae And Micronetinae Spiders (Araneae: Linyphiidae) From Northern Vietnam
Fig. 5. Nesioneta ellipsoidalis, new species: A, left male palp, retrolateral view; B, ditto, prolateral view; C, ditto, ventral view; D, embolic division, ventral view; E, ditto, dorsal view; F, epigynum, ventral view; G, ditto, dorsal view; H, ditto lateral view; I, vulva, dorsal view. Scale bars = 0.1 mm.
Fig. 4 in Three New And Four Newly Recorded Species Of Linyphiinae And Micronetinae Spiders (Araneae: Linyphiidae) From Northern Vietnam
Fig. 4. Neriene oxycera, new species: A, ocular area of male, dorsal view; B, male left chelicera, frontal view; C, left male palp, retrolateral view; D, ditto, ventral view; E, ditto, prolateral view; F, embolic division, ventral view. Scale bars = 0.1 mm.
Fig. 6 in Three New And Four Newly Recorded Species Of Linyphiinae And Micronetinae Spiders (Araneae: Linyphiidae) From Northern Vietnam
Fig. 6. Nesioneta ellipsoidalis, new species: A, embolus, dorsal view. Nesioneta benoiti (van Helsdingen, 1978): B, embolus, dorsal view; C, embolic division, ventral view; D, ditto, dorsal view. Scale bars: A-B = 0.05 mm; C-D = 0.1 mm.
Fig. 1 in Three New And Four Newly Recorded Species Of Linyphiinae And Micronetinae Spiders (Araneae: Linyphiidae) From Northern Vietnam
Fig. 1. Bathyphantes floralis, new species: A, left chelicera, frontal view; B, left male palp, retrolateral view; C, ditto, prolateral view; D, embolic division, ventral view; E, lamella characteristca, prolateral view; F, embolic membrane, retrolateral view; G, ditto, prolateral view; H, epigynum, ventral view; I, ditto, lateral view; J, vulva, dorsal view. Scale bars = 0.05 mm.
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.