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58 results for “North Korea”
Subspecies and Distribution. S.g.gracillimusThomas,1907—SakhalinandKunashirIs. S.g.grantiOkhotina,1991—SKurilIs(HabomaiandShikotan). S. g. minor Okhotina, 1991 — Russian Far East (from S Magadan S to Primorsky Krai), NE China, and North Korea. Also present on Hokkaido and many small offshore islands, N Japan, but subspecies involved not known. in Soricidae
Subspecies and Distribution. S.g.gracillimusThomas,1907—SakhalinandKunashirIs. S.g.grantiOkhotina,1991—SKurilIs(HabomaiandShikotan). S. g. minor Okhotina, 1991 — Russian Far East (from S Magadan S to Primorsky Krai), NE China, and North Korea. Also present on Hokkaido and many small offshore islands, N Japan, but subspecies involved not known.
Subspecies and Distribution. S.d.daphaenodonThomas,1907—RussianFarEast(KhabarovskKrai,AmurRegion,andSakhalinI). S.d.oriiKuroda,1933—ParamushirI(NKurilIs). S.d.sanguinidensG.M.Allen,1914—C&ESiberiaandChukchiandKamchatkapeninsulasStoNAmurRegion. S. d. scaloni Ognev, 1933 — W Siberia. Also present in N Mongolia, NE China, S Russian Far East (Primorsky Krai), and NE North Korea, but subspecies involved not known. in Soricidae
Subspecies and Distribution. S.d.daphaenodonThomas,1907—RussianFarEast(KhabarovskKrai,AmurRegion,andSakhalinI). S.d.oriiKuroda,1933—ParamushirI(NKurilIs). S.d.sanguinidensG.M.Allen,1914—C&ESiberiaandChukchiandKamchatkapeninsulasStoNAmurRegion. S. d. scaloni Ognev, 1933 — W Siberia. Also present in N Mongolia, NE China, S Russian Far East (Primorsky Krai), and NE North Korea, but subspecies involved not known.
Three-Dimensional Surface Deformation Field Related to the 2017 North Korea Nuclear Test
<p>Three-dimensional (3D) surface deformation field was retrieved by using the two ALOS PALSAR-2 stripmapinterferometric pairs that acquired from the ascending (20170829_20170912) and descending (20170831_20170928) orbits. For this, the ascending and descending LOS and AT deformations were created from the pairs by the multi-kernel offset tracking method, and then 3D deformation field was retrieved from the ascending and descending LOS and AT deformations. </p> <p>For the 3D deformation field, the unit is centimeter and the coordinate system is geodetic with the WGS84 ellipsoid.</p>
FIGURES 2–7 in A new Cleotomiris species (Hemiptera: Heteroptera: Miridae: Phylinae) from North Korea
FIGURES 2–7. Scanning electron micrographs of Cleotomiris josifovi sp.n. 2—head and pronotum; 3—evaporatory area of metathoracic scent gland; 4—evaporatory area of metathoracic scent gland under bigger magnification; 5—vestiture on hemelytron. 6—pretarsus, ventral view. 7—pretarsus, lateral view.
FIGURES 14–18 in A new Cleotomiris species (Hemiptera: Heteroptera: Miridae: Phylinae) from North Korea
FIGURES 14–18. Cleotomiris josifovi sp.n. 15—male genital segment in caudal view. 16—male genital segment in lateral view. 17—vestibulum in lateral view. 18—dorsal labiate plate.
FIGURES 8–14 in A new Cleotomiris species (Hemiptera: Heteroptera: Miridae: Phylinae) from North Korea
FIGURES 8–14. Cleotomiris josifovi sp.n. 8—phallotheca. 9—right paramere. 10—left paramere. 11–12—vesica. 13–14— apex of vesica and secondary gonopore.
FIGURE 9 in Tanytarsini (Diptera: Chironomidae) collected during Polish expeditions to North Korea
FIGURE 9. Stempellina radoszkowskii sp. nov., male. A: antenna; B: hypopygium, C: anal point, D: superior volsella; E: hypopygial volsellae, arrangement (C–E magnified × 2–3 relative to B).
FIGURE 8. Tanytarsus tamadecimus Sasa, 1980 in Tanytarsini (Diptera: Chironomidae) collected during Polish expeditions to North Korea
FIGURE 8. Tanytarsus tamadecimus Sasa, 1980 (A–C) and T. tamaundecimus Sasa, 1980 (D–F); males, hypopygial diagnostic structures. A, D: anal point, variations; B, E: superior volsella and digitus, variations; C, F: median volsella.
FIGURE 6 in Tanytarsini (Diptera: Chironomidae) collected during Polish expeditions to North Korea
FIGURE 6. Tanytarsus iriolemeus Sasa et Suzuki, 2000 (A–D) and T. oyamai Sasa, 1979 (E–H), males. A, F: anal tergite and anal point in dorsal view, variations; B: anal tergite, lateral view; C, G: superior volsella and digitus, variations; D, H: median volsella; E: hypopygium (F–H magnified × 1.5 relative to E).
FIGURE 4 in Tanytarsini (Diptera: Chironomidae) collected during Polish expeditions to North Korea
FIGURE 4. Micropsectra jokatertia Sasa et Ogata, 1999, male. A: hypopygium; B: median volsella, distal part (B magnified × 2 relative to A).
FIGURE 3 in A new species of Monstrilla Dana, 1849 (Copepoda: Monstrilloida: Monstrillidae) from Korea, including a key to species from the north-west Pacific
FIGURE 3. Monstrilla ilhoii sp. nov. (female). A, leg 2; B, leg 3; C, leg 4. Scale bar = 100 µm.
FIGURE 14 in New Dicranoptycha Osten Sacken, 1859 Crane flies (Diptera: Limoniidae) of North and South Korea
FIGURE 14. Dicranoptycha venosa, male genitalia, dorsal view. Specimen from Kunashir Island.
FIGURE 1 in New Dicranoptycha Osten Sacken, 1859 Crane flies (Diptera: Limoniidae) of North and South Korea
FIGURE 1. General view of Dicranoptycha prolongata male.
Distribution. China, Japan (Hokkaido), Mongolia, North Korea, and Russia. in Mustelidae
Distribution. China, Japan (Hokkaido), Mongolia, North Korea, and Russia.
Fig. 1 in A report of 22 unrecorded bacterial species in Korea, isolated from the North Han River basin in 2017
Fig. 1. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences showing the relationship between the strains isolated in this study and their closest relatives. Bootstrap values (expressed as percentages of 1000 replications) over 70% are shown at nodes for neighbor-joining, maximum parsimony, and maximum likelihood methods, respectively. Filled circles indicate that the corresponding nodes were also recovered in the trees generated with the maximum-likelihood and maximum-parsimony algorithms, while open circles indicate that the corresponding nodes were also recovered in the tree generated with one of these algorithms. Bar, 0.05 substitutions per nucleotide position.
Figs. 7-11 in Rediscovery of Zubovskya morii (Bey-Bienko, 1931) (Orthoptera: Acrididae), the nearly forgotten endemic grasshopper in North Korea with revised checklist from its type locality, Mount Baekdusan
Figs. 7-11. Spination on hind tibiae. 7-10. Zubovskya morii (Bey-Bienko, 1931) in Melanoplini; 11. Oxya sinuosa Mistshenko, 1952 in Oxyini.
Subspecies and Distribution. N.a.asiaeorientalisPilleri&Gihr,1972—middleandlowerreachesoftheYangtze River,CChina. N. a. sunameri Pilleri & Gihr, 1975 — shallow marine waters of E Asia; records are known from Japan, South Korea, China, and Taiwan. Occurrence in North Korea is not documented butis strongly suspected, and a stranding record from the island of Okinawa, S Japan, is considered to be extralimital. in Phocoenidae
Subspecies and Distribution. N.a.asiaeorientalisPilleri&Gihr,1972—middleandlowerreachesoftheYangtze River,CChina. N. a. sunameri Pilleri & Gihr, 1975 — shallow marine waters of E Asia; records are known from Japan, South Korea, China, and Taiwan. Occurrence in North Korea is not documented butis strongly suspected, and a stranding record from the island of Okinawa, S Japan, is considered to be extralimital.
FIGURE 7 in Tanytarsini (Diptera: Chironomidae) collected during Polish expeditions to North Korea
FIGURE 7. Tanytarsus takahashii Kawai et Sasa, 1985, male. A: hypopygium; B: superior volsella and digitus, variations; C: median volsella (magnified × 1.5 relative to A).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.