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3,507 results for “Species identification”
FIGURE 48 in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURE 48. CO1 sequence alignments showing sequence polymorphisms between species in the annealing sites of primers and probes. Mismatches are shown in bold, forward primer, probe and reverse primer annealing sites are boxed, left to right respectively.
FIGURES 39–47. Trialeurodes vaporariorum. 39 in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 39–47. Trialeurodes vaporariorum. 39, third instar on E. pulcherrima from Italy; 40, fourth instar on E. pulcherrima from Italy; 41, diagrammatic representation of left compound eye of adult female; 42, upper and lower compound eyes separate; 43, mesotibia combs; 44, male abdomen with dorsal discoidal pores; 45, female antenna; 46, aedeagus; 47, female cement gland.
FIGURES 31–38. Trialeurodes spp. 31, T in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 31–38. Trialeurodes spp. 31, T. ricini, diagrammatic representation of left compound eye of adult female; T. ricini, 32, upper and lower compound eyes linked by two to four ommatidia; T. ricini, 33, male antenna; T. ricini, 34, aedeagus; T. ricini, 35, female cement gland; 36, T. vaporariorum, ovum on Euphorbia pulcherrima from Italy; 37, T. vaporariorum, first instar on E. pulcherrima from the UK; 38, T. vaporariorum, second instar on E. pulcherrima from Italy.
FIGURES 3–4 in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 3–4. General morphology of a whitefly. 3, third-larval instar; 4, fourth-larval instar (puparium).
FIGURES 25–30. Trialeurodes ricini. 25 in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 25–30. Trialeurodes ricini. 25, ovum on Ricinus communis from Gran Canaria; 26, first instar on R. communis from Gran Canaria; 27, second instar on R. communis from Gran Canaria; 28, third instar on R. communis from Gran Canaria; 29–30, fourth instar on Telfairia sp. from Nigeria showing variation in submarginal tubercles.
FIGURES 18–24. B. tabaci. 18 in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 18–24. B. tabaci. 18, third instar on E. pulcherrima; 19, fourth instar on E. pulcherrima; 20, diagrammatic representation of left compound eye of adult female; 21, upper and lower compound eyes linked by one ommatidium; 22, female antenna; 23, aedeagus; 24, female cement gland.
FIGURES 10–17. Bemisia spp. 10, B in Morphological and molecular identification of all developmental stages of four whitefly species (Hemiptera: Aleyrodidae) commonly intercepted in quarantine
FIGURES 10–17. Bemisia spp. 10, B. afer, diagrammatic representation of left compound eye of adult female; B. afer, 11, upper and lower compound eyes linked by one ommatidium; B. afer, 12, female antenna; B. afer, 13, aedeagus; B. afer, 14, female cement gland; 15, B. tabaci, ovum on Euphorbia pulcherrima; 16, B. tabaci, first larval instar on Solidago from Spain; 17, B. tabaci, second instar on E. pulcherrima.
FIGURE 2. Male. A. Total body, B. Mandible detail, C in Description of a new species of Epacanthion (Thoracostomopsidae, Nematoda) from Brazil and a modified key for species identification *
FIGURE 2. Male. A. Total body, B. Mandible detail, C. Head and the buccal cavity with mandibles, D. Anterior region, mandibles and Teeth, E. Anterior region with the esophageal glands, F. Setae in the tail region, G. Spicules, tail and
FIGURE 3. Male. A. Total body, B. Mandibles, C in Description of a new species of Epacanthion (Thoracostomopsidae, Nematoda) from Brazil and a modified key for species identification *
FIGURE 3. Male. A. Total body, B. Mandibles, C. Teeth (Mandibles), D. Buccal cavity, E. Pharynx regions, F. Somatic setae, G. Spicules, H. Tail, I. Cardia region.
FIGURES 36–45 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 36–45. Coecobrya species: 36–37, basomedian labial region chaetotaxy: 36, C. mulun, 37, C. qin (after Zhang et al. 2010 and Zhang & Dong 2014 respectively); 38–40, empodial complex III: 38, C. mulun, 39, C. qin, 40, C. neocaledonica, arrows show the median and apical teeth respectively (after Zhang et al. 2010, Zhang & Dong 2014, and Zhang et al. 2014a respectively); 41–42, chaetotaxy of inner tibiotarsi: 41, C. tenebricosa, 42, C. communis, arrows show the rows differentiated chaetae (after Chen & Christiansen 1993); 43, dorsal manubrium and proximal dens of C. aitorererere (after Bernard et al. 2015); 44–45, distal dens and mucro: 44, C. neocaledonica, 45, C. caeca (after Zhang et al. 2014a and Chen & Christiansen 1997 respectively).
FIGURES 17–20 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 17–20. Coecobrya anaguilae sp. nov.: chaetotaxy of the Abd IV and V: 17, Abd IV dorsal; 18, Abd IV lateral; 19, Abd V dorsal; 20, Abd V lateral.
FIGURES 8–11 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 8–11. Coecobrya anaguilae sp. nov.: ventral head (posterior part omitted): 8, post-labial chaetotaxy; 9, basolateral and basomedian labial fields and proximal chaetae; 10, labial palp and proximal chaetae; 11, maxillary outer lobe and sublobal plate.
FIGURE 1–2 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURE 1–2. Coecobrya anaguilae sp. nov.: 1, map of type locality, "Cango Caves", Western Cape, South Africa; 2, habitus of holotype preserved on slide.
FIGURES 12–16 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 12–16. Coecobrya anaguilae sp. nov.: dorsal chaetotaxy: 12, Th II; 13, Th III; 14, Abd I; 15, Abd II; 16, Abd III.
FIGURES 3–7 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 3–7. Coecobrya anaguilae sp. nov.: 3, habitus of holotype; 4, symbols of chaetae used in chaetotaxy; 5, dorsal chaetotaxy of the head (including clypeus) and Ant I; 6, apex of Ant. IV; 7, prelabral and labral chaetotaxy.
FIGURES 31–35 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 31–35. Coecobrya anaguilae sp. nov.: 31–33, collophore chaetotaxy: 31, anterior side; 32, posterior side; 33, lateral flap; 34, distal manubrium (ventral view); 35, distal dens and mucro (lateral view).
FIGURES 21–30 in A new cave species of Coecobrya Yosii (Collembola, Entomobryidae, Entomobryinae) from South Africa, with an identification key to the genus
FIGURES 21–30. Coecobrya anaguilae sp. nov.: structures of the legs: 21, subcoxa I; 22, subcoxa II; 23, subcoxa III; 24, trochanteral organ; 25, tibiotarsus and empodial complex I of right leg (lateral view); 26, predominant medium sized sparsely ciliate chaetae, black circle in the posterior side and empty circle in anterior side; 27, outstanding ciliated macrochaeta with smooth apex; 28, thin feathered chaetae; 29, chaetae ciliate differentiated; 30, empodial complex III.
FIGURES 50–51 in Species groups of Oriental Ptecticus Loew including descriptions of ten new species with a revised identification key to the Oriental species (Diptera: Stratiomyidae)
FIGURES 50–51. Holotype of Ptecticus okinawae James (50) and holotype of Ptecticus japonicus Thunberg (51).
FIGURES 42–49. 42–43 in Species groups of Oriental Ptecticus Loew including descriptions of ten new species with a revised identification key to the Oriental species (Diptera: Stratiomyidae)
FIGURES 42–49. 42–43. Ptecticus longipennis (Wiedemann), right wing (42) and medial part of costal margin (43). Scale: 5 mm (42); 0.5 mm (43). 44–45. Ptecticus shirakii Nagatomi, right wing (44) and medial part of costal margin (45). Scale: 2 mm (44); 0.5 mm (45). 46–47. Ptecticus japonicus (Thunberg), right wing (46) and medial part of costal margin (47). Scale: 5 mm (46); 1 mm (47). 48–49. Ptecticus tricolor van der Wulp, right wing (48) and medial part of costal margin (49). Scale: 5 mm (48); 1 mm (49).
FIGURES 34–41. 34–35 in Species groups of Oriental Ptecticus Loew including descriptions of ten new species with a revised identification key to the Oriental species (Diptera: Stratiomyidae)
FIGURES 34–41. 34–35. Ptecticus aurifer (Walker), right wing (34) and medial part of costal margin (35). Scale: 5 mm (34); 1 mm (35). 36–37. Ptecticus australis Schiner, right wing (36) and medial part of costal margin (37). Scale: 5 mm (36). 38–39. Ptecticus cingulatus Loew, right wing (38) and medial part of costal margin (39). Scale: 5 mm (38); 1 mm (39). 40–41. Ptecticus proximus Rozkošný & Kovac (histrio group), right wing (40) and medial part of costal margin (41). Scale: 5 mm (40); 0.5 mm (41). See introduction for abbreviations.
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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.