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21,842 results for “Three new species”
FIGURE 2 in Taxonomic revision of the genus Nychiodes Lederer, 1853 (Geometridae: Ennominae: Boarmiini) with description of three new species-an integrative approach
FIGURE 2. Wing venation of male specimen of genus Nychiodes: Nychiodes obscuraria (type species for the genus).
FIGURES 135-144 in Taxonomic revision of the genus Nychiodes Lederer, 1853 (Geometridae: Ennominae: Boarmiini) with description of three new species-an integrative approach
FIGURES 135-144. Female genitalia of Nychiodes species. 135: Paratype of N. admirabila (Iran, Fars, g.prep. 10921); 136: Paratype of N. subfusca (Iran, Fars, g.prep. 10933); 137: Paratype (labeled as Allotype) of N. leviata (Iran, Fars, g.prep. 10927); 138: Paratype (labeled as Allotype) of N. subvirida (Iran, Fars, g.prep. 10935); 139: N. subvirida (Iran, Fars, g.prep. 0169/2018 D. Wanke); 140: Paratype (labeled as Allotype) of N. agatcha syn. nov. of N. subvirida (Iran, Laristan, g.prep. 10923); 141: Paratype (labeled as Allotype) of N. variabila syn. nov. of N. divergaria (Iran, Fars, g.prep. 10931; according to morphological examination this specimen belongs to N. divergaria); 142: Paratype (labeled as Allotype) of N. variabila opulenta syn. nov. of N. divergaria (Iran, Baloutchistan, g.prep. 10929), 143: Paratype of N. eberti sp. nov. (Turkey, Ascale, g.prep. 0263/2019 D. Wanke); 144: Paratype of N. mirzayansi sp. nov. (Iran, Kerman, a: whole genitalia; b: close up; g.prep. 2252/2019 H. Rajaei). Scale-bar 1 mm.
FIGURES 1–3 in Three new species of Pseudoceraphron from Japan and New Zealand (Hymenoptera: Chalcidoidea: Pteromalidae)
FIGURES 1–3. Pseudoceraphron belissimus sp. n., holotype female. Habitus photographed in ethanol in lateral (1), ventral (2) and dorsal (3) views.
FIG. 2 in A review of the genera Myotis, Ia, Pipistrellus, Hypsugo, and Arielulus (Chiroptera: Vespertilionidae) from Myanmar (Burma), including three species new to the country
FIG. 2. Bacula of four species of Pipistrellus. Lateral (above) and dorsal (below) views of: A — P. paterculus. MDI 12, Myanmar; B — P. javanicus. B50, Myanmar; C — P. abramus. HZM.3.32167, Vietnam; D — P. ceylonicus. HZM.3.31458, Sri Lanka, which is included to facilitate size comparisons with Fig. 1. Scale = 2 mm
FIGURE 34 in Revision of the species-group of Mischocyttarus (Omega) filiformis (de Saussure 1854), with description of three new species (Hymenoptera, Vespidae)
FIGURE 34. Partial truncated map of South America with distributions of species of the M. filiformis group. Embedded frame box shows enlarged area representation with the records of M. filiformis, M. omicron, M. asahi sp. nov., M. kallindusfloren sp. nov. and M. nazgul sp. nov. within the Carajás National Forest (FLONA) in southeastern Pará state.
FIGURES 22–27 in Revision of the species-group of Mischocyttarus (Omega) filiformis (de Saussure 1854), with description of three new species (Hymenoptera, Vespidae)
FIGURES 22–27. Anterior dorsal view of mesosoma (females, except 27; all from Brazil). 22: M. filiformis (Pará, Belém, Utinga; MPEG); 23: M. buyssoni (R. de Janeiro; MPEG); 24: M. omicron (Pará, Carajás; MPEG); 25: holotype of M. asahi sp. nov. (Pará, Carajás; MPEG); 26: holotype of M. kallindusfloren sp. nov. (Pará, Carajás; MPEG); 27: holotype of M. nazgul sp. nov. (Pará, Carajás; MPEG); all scales = 0.50 mm.
FIGURES 6–13 in Revision of the species-group of Mischocyttarus (Omega) filiformis (de Saussure 1854), with description of three new species (Hymenoptera, Vespidae)
FIGURES 6–13. General dorsal or lateral body views (females; all from Brazil, except 10 and 11). 6 a-b: holotype of M. filiformis (NHM); 7: same species (Pará, Belém, Utinga; MPEG); 8: holotype of M. omicron (NHM); 9: M. buyssoni (R. de Janeiro; MPEG); 10–11: holotype of M. napoensis (Ecuador; NHM); 12: holotype of M. kallindusfloren sp. nov. (Pará, Carajás; MPEG); 13: holotype of M. asahi sp. nov. (Pará, Carajás; MPEG). all scales = 1.00 mm.
FIGURES 1–5. Body measurements. 1 in Revision of the species-group of Mischocyttarus (Omega) filiformis (de Saussure 1854), with description of three new species (Hymenoptera, Vespidae)
FIGURES 1–5. Body measurements. 1 (head): clypeus height (HCLP) and width (WCLP), head width between eyes at ocular sinus (INTOW), and height (FHH); 2 (mesosoma part.): width of pronotal carina (WCAR), and mesoscutum length (LMS) and width (WMS); 3: mesopleuron height (HMP); 4: first metasomal tergum length (LSI), and apical width (WSI); 5: fore wing discal cell length (LDIS).
Revalidation of Platystigma Kennedy, 1920, with a synopsis of the quadratum species group and the description of three new species (Odonata: Pseudostigmatidae)
This dataset contains the digitized treatments in Plazi based on the original journal article Machado, Angelo B. M., Soldati Lacerda, Déborah S. (2017): Revalidation of Platystigma Kennedy, 1920, with a synopsis of the quadratum species group and the description of three new species (Odonata: Pseudostigmatidae). Zootaxa 4242 (3): 493-516, DOI: https://doi.org/10.11646/zootaxa.4242.3.4
Figure 2 in Integrative taxonomy resolves three new cryptic species of small southern African horseshoe bats (Rhinolophus)
Figure 2. Bayesian tree of partial Cytb sequences, with nodal support values based on Bayesian probabilities and bootstrap values for Maximum Likelihood and Maximum Parsimony. Samples included in all analyses (molecular, morphometric and bacular) are underlined.
Figure 14 in Integrative taxonomy resolves three new cryptic species of small southern African horseshoe bats (Rhinolophus)
Figure 14. Colony of R. lobatus showing present of orange apical tuft in flying males (Photographs by P. Naskrecki.)
Figure 5. Biplot showing the first and second principal components from a in Integrative taxonomy resolves three new cryptic species of small southern African horseshoe bats (Rhinolophus)
Figure 5. Biplot showing the first and second principal components from a PCA of 2D landmark data for small southern Africa Rhinolophus spp., including data from type specimens of R. swinnyi and R. s. rhodesiae. Deformation grids illustrate cranial shape changes associated with each PC.
Figure 7. Biplot showing the first and second principal components from a in Integrative taxonomy resolves three new cryptic species of small southern African horseshoe bats (Rhinolophus)
Figure 7. Biplot showing the first and second principal components from a PCA of eight bacular measurements for small southern Africa Rhinolophus taxa. Numbers indicate the position of taxa referred to in Table 5.
Figure 4 in Integrative taxonomy resolves three new cryptic species of small southern African horseshoe bats (Rhinolophus)
Figure 4. PCA variation for five log-transformed cranial variables for six proposed small southern Africa Rhinolophus spp. defined on molecular and morphological grounds.
Figure 3 in Integrative taxonomy resolves three new cryptic species of small southern African horseshoe bats (Rhinolophus)
Figure 3. Haplotype network using minimum-spanning inference method based on 667 base pairs of Cytb.
FIGURE 5 in Three new species and new records of Clastobasis Skuse (Diptera: Mycetophilidae) from Japan and the Kuril Islands
FIGURE 5. Male terminalia of East Palaearctic Clastobasis species, lateral view. A. C. menguali sp. n. B. C. kanabo sp. n. C. C. ainuorum sp. n. D. C. subalternans Zaitzev, 2017. E. C. loici Chandler, 2001. F. C. loici, gonostylus. G. C. loici, quadrangular appendage with apical comb. Abbreviations: aed gd = aedeagal guide; cerc = cercus; gc = gonocoxite; gc vmf = medioventral flange of gonocoxite; gc pll = posterolateral lobe of gonocoxite; gst = gonostylus; tg 9 = tergite 9. Scale bar = 0.1 mm.
FIGURE 4 in Three new species and new records of Clastobasis Skuse (Diptera: Mycetophilidae) from Japan and the Kuril Islands
FIGURE 4. Clastobasis menguali sp. n., male terminalia. A. Dorsal view of gonocoxite and tergite 9. B. Ventral view of apical half, left gonostylus detached. C. Ventral view, left gonostylus detached. D. Gonostylus, ventral view. E. Gonostylus, interior view. Scale bar = 0.1 mm (A, B, C) and 0.05 mm (D, E).
FIGURE 3 in Three new species and new records of Clastobasis Skuse (Diptera: Mycetophilidae) from Japan and the Kuril Islands
FIGURE 3. Clastobasis kanabo sp. n., male terminalia. A. Dorsal view of gonocoxite and tergite 9. B. Ventral view of apical half, left gonostylus detached. C. Ventral view, left gonostylus detached. D. Gonostylus, ventral view. E. Gonostylus, interior view. Abbreviations: aed gd = aedeagal guide; cerc = cercus; tg 9 = tergite 9. Scale bar = 0.1 mm (A, B, C) and 0.05 mm (D, E).
FIGURE 1 in Three new species and new records of Clastobasis Skuse (Diptera: Mycetophilidae) from Japan and the Kuril Islands
FIGURE 1. Habitus of Clastobasis species. A. C. ainuorum sp. n., holotype, terminalia detached. B. C. kanabo sp. n., paratype, legs of one side absent. C. C. kanabo sp. n., lateral view of male terminalia. Abbreviations: aed gd = aedeagal guide; gc = gonocoxite; tg 9 = tergite 9. Scale bar = 1 mm (A, B) and 0.2 mm (C).
FIGURES 48–54 in Indian Hecalina (Hemiptera: Cicadellidae: Deltocephalinae: Hecalini) with description of three new species
FIGURES 48–54. Genitalia male Thomsonia asymmetrica sp. nov. 48. Pygofer; 49. Subgenital plate; 50. Style; 51. Aedeagus dorsal view; 52. Aedeagus, lateral view; 53. Aedeagus, ventral view; 54. Connective.
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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.