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4,727 results for “Korea”
Fig. 3A-B in Contribution to the knowledge of Tachinidae (Diptera) of Korea
Fig. 3A-B: Male Clairvillia, abdomen, dorsal view. (A) C. nigra nov.sp. holotype; (B) C. biguttata (male from Spain: Asturias). Scale bare = 0,5 mm.
Fig. 2A-B in Contribution to the knowledge of Tachinidae (Diptera) of Korea
Fig. 2A-B: Male Clairvillia nigra nov.sp., holotype, habitus; (A) dorsal view; (B) lateral view. Scale bare = 1 mm.
Transport Starter Data Kit: Historical socio-transport data for Republic of Korea
<p>This Transport Starter Data Kit contains historical annual data (1990–2021) on passenger and freight activity, segregated by mode and fuel. Additionally, historical data on energy intensities, load factors, vehicle stock, population (total, urban, rural, growth), and GDP (total, agriculture, construction, mining, manufacturing, service, energy, growth) are included in the kit, within the 'Data' tab. The historical data can be used as a foundation for transport-energy modelling and/or to identify areas of improvement. This data was verified through consultation with relevant stakeholders before publishing. The definition used for each vehicle mode is found in the 'Definitions' tab, and the description of each data observation status is found in the 'Notes' tab. All data sources are linked where possible.</p>
Fig. 23. A in Taxonomie Study of Dorylaimoidea (Nematoda: Dorylaimida) from Korea
Fig. 23. A~ F: Enchodelus (F.) macrodorus. A. Anterior part. B. Head. C. Vulva. D. Oesophagus-intestine junction, F. Female posterior part. F~ I: Enchodelus (P.) longidens. F. Anterior part. G. Head. H. Vulva. I. Female posterior part.
Fig. 20. A in Taxonomie Study of Dorylaimoidea (Nematoda: Dorylaimida) from Korea
Fig. 20. A~ E: Enchodelus (E.) hopedorus A, B: Anterior part; C: Oesophagus-intestine junction; D: Vulva. E: Female posterior part; F~ I: Oriverutus pagarus; F: Anterior part; G: Female tail; H: Oesophagus-intestine junction; I: Male posterior part; J: Female gonad.
Fig. 22 in Taxonomie Study of Dorylaimoidea (Nematoda: Dorylaimida) from Korea
Fig. 22. Enchodelux (P.) longidens A, B: Anterior part; C: Oesophagus; D: Female tail; E: Vulva; F: Entire female.
Fig. 19 in Taxonomie Study of Dorylaimoidea (Nematoda: Dorylaimida) from Korea
Fig. 19. Enchodelus (E.) hopedorus A: Anterior part; B: Female posterior part, C* Female gonad, D: Anterior part, h. Female gonad.
Fig. 18 in Taxonomie Study of Dorylaimoidea (Nematoda: Dorylaimida) from Korea
Fig. 18. Oriverutus pagarııs A: Oesophagus, B, C" Anterior part, D: Oestiphagus-intestine junction, E, Female gonad, F' Spicule, G: Male posterior part, H: Female posterior part.
Figs 1–7. Janssoniella kawabatai Tselikh, 2020 in New data on the chalcid wasps of the family Pteromalidae (Hymenoptera: Chalcidoidea) from South Korea
Figs 1–7. Janssoniella kawabatai Tselikh, 2020, male: 1 – body, lateral view; 2 – mesosoma and petiole, dorsal view; 3 – wing; 4 – head, frontal view; 5 – head, dorsal view; 6 – body, dorsal view; 7 – antenna.
Figs 8–14 in New data on the chalcid wasps of the family Pteromalidae (Hymenoptera: Chalcidoidea) from South Korea
Figs 8–14. Miscogasteriella vladimiri Tselikh, Lee et Ku, 2023, male: 8 – body, lateral view; 9 – mesosoma and petiole, dorsal view; 10 – wing; 11– head, frontal view; 12 – antenna; 13 – head, dorsal view; 14 – body, dorsal view.
Figs 1–7 in A new species of the genus Scythropiodes Matsumura, 1931 (Lepodoptera: Peleopodidae) from Korea and Taiwan
Figs 1–7. Scythropiodes sungsookimi sp. n. 1 – adult, holotype, male; 2 – adult, paratype, female (from Mt. Gyeryongsan); 3, 4 – male genitalia, holotype: 3 – ventral view, without aedeagus, 4 – aedeagus; 5, 6 – male genitalia, paratype (SJC-1223): 5 – ventral view, without aedeagus, 6 – aedeagus; 7 – female genitalia, paratype (SJC-1417). Scale bars = 3 mm.
KF-metaweb: A trophic metaweb of freshwater ecosystems of South Korea (Version 1.0)
<p><strong>Motivation:</strong> The metaweb is a dictionary of nodes and their potential interactions developed for a particular region, focusing on a particular type of ecosystem. Based on the local biodiversity information at different spatial and temporal scales, the regional metaweb can be easily decomposed into local webs. The generated local webs are useful for understanding spatiotemporal variations in ecological interactions in a particular region. In this study, an attempt was made to develop a trophic metaweb for freshwater ecosystems in South Korea, called the KF-metaweb. The metaweb contains 23074 interactions between 446 taxa collected from 730 studies. This metaweb can be used to understand the spatiotemporal variability of different local food webs and the effects of the environment on food web properties. Furthermore, this is the first metaweb developed for any Asian ecosystem that contains information about many interactions that are unavailable in any other existing database. In addition, this metaweb study enriches our global understanding of ecological interactions.</p> <p><strong>Main types of variables contained: </strong>The data contained trophic interactions between resources (prey) and consumers (predators).</p> <p><strong>Spatial location and grain:</strong> The mainland of South Korea and Jeju Island.</p> <p><strong>Time period and grain:</strong> 2008–2021</p> <p><strong>Major taxa: </strong>Microalgae (belonging to the phyla Cyanobacteria, Bygra, Cryophyta, Myozoa, Ochrophyta, Charophyta, Chlorophyta, Euglenozoa, and Mycetozoa), zooplankton (belonging to the phyla Arthropoda and Rotifera), benthic macroinvertebrates (Platyhelmenthes, Annelida, Arthropoda, and Mollusca), and fish.</p> <p><strong>Level of measurement:</strong> Minimum taxonomic resolution was at the genus level for fish and benthic macroinvertebrates and order level for zooplankton and microalgae.</p>
National Checklists: South Korea Species List
Data from: GBIF.org (23 January 2025) GBIF Occurrence Download <a href="https://doi.org/10.15468/dl.vd2ajk" target="_blank" rel="noopener">https://doi.org/10.15468/dl.vd2ajk</a>
Figs 100–111. 100–106 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 100–111. 100–106. Dacnusa (Pachysema) reno sp. n.: 100 = head in dorsal view, 101 = head in lateral view, 102 = mandible, 103 = hind femur, 104 = distal part of right fore wing, 105 = first subdiscal cell of right fore wing, 106 = tergites 1–3 with indication of the sculpture of first tergite. – 107–109. Dacnusa (Pachysema) laeta Nixon: 107 = first tergite with indication of its sculpture, 108 = mandible, 109 = distal part of right fore wing. – 110–111. Dacnusa (Pachysema) faeroeensis (RO- MAN): = head in dorsal view, 111 = distal part of right fore wing
Figs 88–99. 88–95 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 88–99. 88–95. Dacnusa (Pachysema) luctuosa sp. n.: 88 = head in dorsal view, 89 = head in lateral view, 90 = mandible, 91 = ventral half of mesopleuron with precoxal suture, 92 = hind femur with indication of its sculpture, 93 = distal part of right fore wing, 94 = first subdiscal cell of fore wing, 95 = tergites 1–3 with indication of the sculpture of first tergite. – 96–99. Dacnusa (Pachysema) arkadii TOBIAS: 96 = head in dorsal view, 97 = distal part of right fore wing, 98 = ven- tral half of mesopleuron with precoxal suture, 99 = tergites 1–3
Figs 112–121 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 112–121. Epimicta longicaudalis TOBIAS: 112 = head in dorsal view, 113 = mandible, 114 = ventral half of mesopleuron with precoxal suture, 115 = hind femur, 116 = distal part of right fore wing, 117 = first subdiscal cell of right fore wing, 118 = subbasal cell of right hind wing with cu–a and M+CU + 1–M, 119 = tergites 1–3 with less striation, 120 = middle veins of right fore wing with m–cu (?), 121 = tergites 2–3 with more striations
Figs 78–87. 78–83 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 78–87. 78–83. Antrusa dilata sp. n.: 78 = head in dorsal view, 79 = mandible, 80 = hind femur, 81 = distal part of right fore wing, 82 = first subdiscal cell of right fore wing, 83 = tergites 1–3 with indication of the sculpture of first tergite. – 84–87. Antrusa lathyri (GRIFFITHS): 84 = head in dorsal view, 85 = tergites 1–3 with indication of the sculpture of tergites 1–2, 86 = mandible, 87 = hind femur
Figs 66–77. 66–72 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 66–77. 66–72. Antrusa bispinula sp. n.: 66 = head in dorsal view, 67 = mandible, 68 = two spinules of metanotum and fore margin of propodeum (see arrows), 69 = hind femur, 70 = distal part of right fore wing with m–cu (?), 71 = subbasal cell of right hind wing, 72 = tergites 1–3 with indication of the sculpture of first tergite. – 73–77. Antrusa interstitialis (THOMSON): 73 = head in dorsal view, 74 = metanotum and fore margin of propodeum in lateral view, 75 = tergites 1–3 with indication of the sculpture of first and second tergites, 76 = mandible, 77 = hind femur with indication of its sculpture
Figs 57–65. 57–60 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 57–65. 57–60. Aspilota deserta PAPP: 57 = head in dorsal view, 58 = mandible, 59 = distal part of right fore wing, 60 = propodeum. – 61–65. A. inflatitempus FISCHER: 61 = mandible, 62 = head in dorsal view, 63 = distal part of right fore wing, 64–65 = propodeum
Figs 12–20 in Braconidae (Hymenoptera) From Korea Xxii. Subfamily Alysiinae
Figs 12–20. Adelphenaldis correcta sp. n.: 12 = ultimate four flagellokmeres, 13 = head in dorsal view, 14 = mandible, 15 = propodeum of female, 16 = hind femur, 17 = distal part of right fore wing, 18 = first subdiscal cell of fore wing, 19 = tergites 1–3, 20 = propodeum of male
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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.