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3,249 results for “Identification Key”
FIGURE 1 in An updated identification key to the pseudoscorpions (Arachnida: Pseudoscorpiones) of the Czech Republic and Slovakia
FIGURE 1. Characters of the families Neobisiidae and Chthoniidae; A, leg I of Neobisium carcinoides (arrows on figs. A–D show tarsi); B, leg IV of N. carcinoides; C, leg I of Chthonius diophthalmus; D, leg IV of C. diophthalmus; E, pedal coxae I–IV of Mundochthonius styriacus (arrows on fig. E, F show coxal spines); F, pedal coxae I–IV of C. carinthiacus; G, carapace of M. carpaticus; H, carapace of M. styriacus; I, palpal chela of C. carinthiacus (arrow shows clearly rounded dorsum of chelal hand); J, palpal chela of C. tetrachelatus (arrow shows not rounded dorsum of chelal hand); K, palpal chela of C. tenuis; L, carapace of C. hungaricus; M, carapace of C. ischnocheles (arrow shows epistome); scale 0.5 mm: A–M.
FIGURE 5 in An updated identification key to the pseudoscorpions (Arachnida: Pseudoscorpiones) of the Czech Republic and Slovakia
FIGURE 5. Characters of the families Cheiridiidae, Atemnidae, Chernetidae and Cheliferidae; A, carapace of Apocheiridium ferum; B, carapace of Chelifer cancroides; C, carapace of Chernes hahnii; D, pedipalp of A. ferum with measurement examples (arrow shows basally widened femur); E, pedipalp Cheiridium museorum; F, chelal fingers of Atemnus politus (arrow shows venom apparatus); G, chelal fingers of Dendrochernes cyrneus (arrows show examples of accessory teeth); H, chelal fingers of Dactylochelifer latreillii (arrow shows trichobothrium it); I, tarsus IV of A. politus; J, tarsus IV of Diplotemnus insolitus; K, palpal femur of Lamprochernes chyzeri (arrow shows pointed seta); L, tarsus IV of L. chyzeri; M, palpal femur of C. hahnii (arrow shows clavate seta); N, tarsus IV of Pselaphochernes scorpioides; O, leg I of Anthrenochernes stellae; P, leg IV of A. stellae; Q, leg IV of L. nodosus (arrow shows tactile seta on palpal patella); R, palpal trochanter and femur of L. nodosus (arrows on fig. R, S show protuberance on palpal trochanter); S, palpal trochanter and femur of L. chyzeri; T, tarsus IV of Chernes similis. Scale lines 0.1 mm: L, N, T; 0.2 mm: I–K, M, R, S; 0.5 mm: A–H, O–Q.
FIGURE 1 in The orchid-bee fauna (Hymenoptera: Apidae) of a forest remnant in southern Bahia, Brazil, with new geographic records and an identification key to the known species of the area
FIGURE 1. Map showing the exact location of Parque Estadual da Serra do Conduru, state of Bahia, Brazil. Approximate location of Estação Veracel in southern Bahia is indicated by the orange square.
FIGURE 9 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 9. Uropods, illustrating the relative lengths of exo- and endopods. a, Tenagomysis robusta Tattersall, 1923; b, T. similis Tattersall, 1923 (after Tattersall 1923).
FIGURE 8 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 8. Antennal scales of a, Tenagomysis tenuipes Tattersall, 1918; b, Tenagomysis producta Tattersall, 1923 (a, after Bary 1956; b, after Tattersall 1923).
FIGURE 6 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 6. Endopod of uropod, illustrating the length of the lateral spines. a, Tenagomysis longisquama Fukuoka & Bruce, 2005 (a) and b, T. macropsis Tattersall, 1923 (after Fukuoka & Bruce (2005).
FIGURE 4 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 4. Uropods of the two species of Siriella recorded in New Zealand waters. a, Siriella denticulata (Thomson, 1880); b, S. thomsoni (Milne-Edwards, 1837) (a, after Thomson 1900; b, after Pillai 1973).
FIGURE 7 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 7. Anterior carapaces of a, Tenagomysis chiltoni Tattersall, 1923; b, T. producta Tattersall, 1923; c, T. macropsis Tattersall, 1923 (a, after Tattersall 1923; b–c, after Fukuoka & Bruce 2005).
FIGURE 1 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 1. Map of New Zealand showing the collection locales of the Mysidae species in New Zealand collections and as mentioned in literature.
FIGURE 3 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 3. Antennal scales of the three species of Euchaetomera recorded in New Zealand waters. a. Euchaetomera zurstrasseni (Illig, 1906); b, E. oculata Hansen, 1910; c, E. typica Sars 1884 (a-b, after Illig 1930; c, after Hansen 1912).
FIGURE 2 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 2. Telsons of all species of Mysidae occurring in New Zealand waters, as depicted in the literature. a, Tenagomysis thomsoni Tattersall, 1923; b, T. tenuipes Tattersall, 1918; c, T. longisquama Fukuoka & Bruce, 2005; d, T. producta Tattersall, 1923; e, T. scotti Tattersall, 1923; f, T. chiltoni Tattersall, 1923; g, T. robusta Tattersall, 1923; h, T. similis Tattersall, 1923; i, T. novaezealandia (Thomson, 1900); j, T. macropsis Tattersall, 1923; k, Siriella thompsonii (Milne-Edwards, 1837); l, S. denticulata (Thomson, 1880); m, Boreomysis rostrata Illig, 1906; n, Gastrosaccus australis, Tattersall 1923; o, Euchaetomera zurstrasseni (Illig, 1906); p, E. typica, Sars, 1884; q, E. oculata Hansen 1910. (a, e-h, j, n after Tattersall 1923; b, after Tattersall 1918; c-d, after Fukuoka & Bruce 2005; i, l, after Thomson 1900; k, after Ii 1964; m, o, q after Illig 1930; p, after Hansen 1912).
FIGURE 5 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 5. Antennal scales of the two species of Siriella recorded in New Zealand waters. a, Siriella denticulata (Thomson, 1880); b, S. thomsoni (Milne-Edwards, 1837) (a, after Thomson 1900; b, after Ii 1964).
FIGURE 1 in Phytoseiid Mites (Acari: Mesostigmata) Of Tunisian Citrus Orchards: Catalogue, Biogeography And Key For Identification
FIGURE 1: Geographical distribution of the sampled orchards in Tunisia.
FIGURE 2 in Phytophagous and predatory mites on olive trees in Tunisia. Catalogue, description of one new species and key for identification (Acari, Eriophyidae, Tetranychidae, Tenuipalpidae and Phytoseiidae)
FIGURE 2: Ventral shields of the female of Typhlodromus (Anthoseius) mathieui n. sp.
FIGURE 1 in Phytophagous and predatory mites on olive trees in Tunisia. Catalogue, description of one new species and key for identification (Acari, Eriophyidae, Tetranychidae, Tenuipalpidae and Phytoseiidae)
FIGURE 1: Dorsal shield and peritreme of the female of Typhlodromus (Anthoseius) mathieui n. sp.
FIGURE 4. Holopedium amazonicum Stingelin, 1904. A, habitus. B in Identification key of Ctenopoda (Cladocera, Holopedidae, Sididae) taxa from Brazil with remarks on taxonomy and geographic distribution
FIGURE 4. Holopedium amazonicum Stingelin, 1904. A, habitus. B, antenna, arrow showing the single branch and absence of lateral setae on it. C, postabdomen. D, idem, terminal claws. E, occurrence records in Brazil.
FIGURE 1. A in Identification key of Ctenopoda (Cladocera, Holopedidae, Sididae) taxa from Brazil with remarks on taxonomy and geographic distribution
FIGURE 1. A, Brazilian Hydrographic Regions as defined in Resolution 32 of National Council of Hydrological Resources. B, occurrence records of Ctenopoda in Brazilian Hydrographic Regions.
FIGURE 7 in Identification key of Ctenopoda (Cladocera, Holopedidae, Sididae) taxa from Brazil with remarks on taxonomy and geographic distribution
FIGURE 7. Morphological traits used for separation of Pseudosida Herrick, 1884, species. A. Pseudosida ramosa (Daday, 1904), aesthetascs in antennules inserted on the markedly long lateral prominence. B, occurrence records of Pseudosida ramosa (Daday, 1904) in Brazil. C, Pseudosida bidentata Herrick, 1894, aesthetascs in antennules inserted on the very small lateral prominence. D, occurrence records of Pseudosida bidentata Herrick, 1894 in Brazil.
FIGURE 10 in Identification key of Ctenopoda (Cladocera, Holopedidae, Sididae) taxa from Brazil with remarks on taxonomy and geographic distribution
FIGURE 10. Morphological traits used for separation of Diaphanosoma species. A, Diaphanosoma birgei Korineck, 1981, posteroventral margin of valves with groups formed by massive and thin denticles, one seta between spines groups. B, occurrence records of Diaphanosoma birgei Korineck, 1981 (Sars, 1901) in Brazil. C, Diaphanosoma fluviatile Hansen, 1899, posteroventral margin of valves with small denticles with inserted setulae. D, occurrence records of Diaphanosoma fluviatile Hansen, 1899 in Brazil.
FIGURE 6. Latonopsis australis-group. A in Identification key of Ctenopoda (Cladocera, Holopedidae, Sididae) taxa from Brazil with remarks on taxonomy and geographic distribution
FIGURE 6. Latonopsis australis-group. A, outline of antennule. B, postabdomen. C, occurrence records in Brazil.
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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.