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356 results for “Western Palaearctic Region”
Figure 5 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 5. Lateral aspect of genitalia (females).(A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius phalangomyzi; (D) Binodoxys centaureae; (E) Ephedrus niger; (F) Lysiphlebus fabarum; (G) Praon absinthii; (H) Praon unitum; (I) Praon volucre; (J) Trioxys pannonicus. Scale bars = 100µ.
Figure 7 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 7. Macrosiphoniella tanacetaria Kaltenbach mummies, by Aphidius stigmaticus Rakhshani and Tomanović sp. nov., on Tanacetum polycephalum.
Figure 6 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 6. Aphidius stigmaticus Rakhshani and Tomanović sp. nov. (female). (A) Frontal aspect of head and mouthparts; (B) antenna; (C) first, second, pre-apical and apical flagellomeres; (D) dorsal aspect of mesoscutum; (E) fore wing; (F) dorsal aspect of propodeum; (G) dorsal aspect of petiole; (H) lateral aspect of petiole; (I) lateral aspect of genitalia.
Figure 1 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 1. Head and lateral mesonotal lobe (females). (A) Head of Aphidius absinthii; (B) head of Lysiphlebus fabarum; (C) lateral mesonotal lobe of Praon absinthii; (D) lateral mesonotal lobe of Praon volucre. Scale bars = 150 µ.
Figure 4 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 4. Dorsal aspect of petiole (females). (A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius asteris; (D) Aphidius phalangomyzi; (E) Binodoxys centaureae; (F) Lysiphlebus fabarum; (G) Praon absinthii; (H) Praon volucre; (I) Trioxys pannonicus. Scale bars = 100µ.
Figure 3 in Aphidiinae parasitoids (Hymenoptera: Braconidae) of Macrosiphoniella aphids (Hemiptera: Aphididae) in the western Palaearctic region
Figure 3. Dorsal aspect of propodeum (females). (A) Aphidius absinthii; (B) Aphidius artemisicola; (C) Aphidius phalangomyzi; (D) Lysiphlebus fabarum; (E) Praon absinthii; (F) Praon volucre. Scale bars = 100µ.
Figure 2 in Hidden diversity in bent-winged bats (Chiroptera: Miniopteridae) of the Western Palaearctic and adjacent regions: implications for taxonomy
Figure 2. Maximum likelihood tree demonstrating phylogeny of Miniopterus as inferred from mitochondrial ND2 (based on different haplotypes only). Numbers at the nodes represent bootstrap support or posterior probability values for maximum likelihood (ML), bayesian approach (BA), and neighbour joining (NJ) analyses. An asterisk (*) indicates full support (100 or 1.00) for a particular clade and analysis, 100* indicates full support in all analyses, – = clade not inferred in the respective analysis, // = branch length shortening in respect to outgroup. Capital letters and letters in circles represent respective clade/lineages/sublineage, as discussed in the text. Vertical bars indicate Western Palaearctic species that are the subject of this study (M. fuliginosus is represented only by sequences originating outside the Western Palaearctic retrieved from GenBank). Haplotype codes are identical to those listed in Table 1. Colours correspond to those in Figures 1B and 3.
Figure 4. A, B in Hidden diversity in bent-winged bats (Chiroptera: Miniopteridae) of the Western Palaearctic and adjacent regions: implications for taxonomy
Figure 4. A, B. Results of discriminant function analysis based on linear morphometric data of skull dimensions – first two canonical axes. Polygons follow marginal points of particular groups, with coloured dots as centroids. A – all specimens; B – separate analysis excluding individuals from marginal areas (i.e. Eastern Afghanistan, Arabia and Ethiopia). C. Results of discriminant function analysis based on relative warp scores obtained from geometric morphometric analysis of 11 landmarks on the ventral view of the skull – first two canonical axes. Polygons and coloured dots are as in Figure 4A. D. Polygon plot of the first and second axes from factor analysis of all non-metric traits. Polygons and coloured dots are as in Figure 4A.
Figure 3 in Hidden diversity in bent-winged bats (Chiroptera: Miniopteridae) of the Western Palaearctic and adjacent regions: implications for taxonomy
Figure 3. Graphic illustration of relationships between ND2 haplotypes of M. schreibersii s.str. (green, light blue, purple) and M. pallidus (dark blue), as inferred through the maximum parsimony network approach. Size of circles corresponds to the number of samples within a particular haplotype (1, 2, 4 or 7 samples). Small dots between haplotypes indicate hypothetical haplotypes (or number of substitutions between them). Geographic abbreviations: MO – Morocco, Agadir (coast); MA – Morocco, Atlas Mts.; ES – Spain; SI – Sicily (Italy); SK – Slovakia; RO – Romania; BG – Bulgaria; CR – Crete (Greece); CY – Cyprus; NT – northern Turkey; ST – southern Turkey; GE – Georgia; AZ – Azerbaijan; LB – Lebanon; SY – Syria; JO – Jordan; IR – Iran. Colours correspond to those in Figures 1B and 2. Haplotype codes are identical to those listed in Table 1.
Figure 1. A in Hidden diversity in bent-winged bats (Chiroptera: Miniopteridae) of the Western Palaearctic and adjacent regions: implications for taxonomy
Figure 1. A. Map showing the origin of specimens investigated in this study and their sorting to nine groups defined for morphometric analysis. (1) Morocco = purple, (2) Western Europe = bluish green, (3) Pannonia = red, (4) Balkans = violet, (5) Crete = brown, (6) Levant = light blue, (7) Middle East = light green, (8) Eastern Afghanistan (Jalalabad) = dark blue, (9) Yemen and Ethiopia = yellow. Colours correspond to those in Figures 4A–4D, S4 and S5. Circles with any colour except white = samples used for morphometric analysis, white circles = samples used for molecular analysis, two-coloured circles = samples using both methods; grey shading delimits the distribution of Miniopterus spp.; black cross = type locality of M. schreibersii, white cross = type locality of M. pallidus. B. Geographic representation of the Western Palaearctic and Yemeni-Ethiopian lineages/sublineages, and approximate distribution of the respective species. Species and type localities (t.l.) are represented by different symbols (circles = M. schreibersii s.str.; squares = M. pallidus; triangles = M. cf. arenarius; diamond = M. cf. fuliginosus; black cross = t.l. of M. schreibersii; white cross = t.l. of M. pallidus). Coloured symbols indicate genetic, or both genetic and morphological, approaches used; white symbols represent morphological approach only used (colours of symbols correspond to different species/lineage/sublineage as indicated in Fig. 2 and to haplotypes presented in the haplotype network in Fig. 3). Coloured shading delimits the approximate distribution of species occurring in the Western Palaearctic and adjacent regions: grey = M. schreibersii s.str.; blue = M. pallidus; yellow = M. cf. arenarius; brown = M. cf. fuliginosus.
FIGURE 11 in Paraneseuthia Franz in the Indian Himalayan Region and Western Palaearctic (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURE 11. Distribution of Paraneseuthia (including undescribed species).
FIGURE 51 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 51. Cerochiton bernardi Hodgson & Williams, sp. nov. Adult female.
FIGURE 48 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 48. Antecerococcus yemenicus Hodgson & Williams, sp. nov. Adult female.
FIGURE 47 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 47. Antecerococcus theydoni (Hall). Adult female.
FIGURE 54 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 54. Cerococcus catenarius (Fonseca). Adult female.
FIGURE 46 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 46. Antecerococcus thesii Hodgson & Williams, sp. nov. Adult female.
FIGURE 45 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 45. Antecerococcus steppicus (Balachowsky). Adult female.
FIGURE 44 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 44. Antecerococcus sparsiporus Hodgson & Williams, sp. nov. Adult female.
FIGURE 42 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 42. Antecerococcus royenae (Brain). Adult female.
FIGURE 50 in (Hemiptera: Sternorrhyncha, Coccomorpha) with particular reference to species from the Afrotropical, western Palaearctic and western Oriental Regions, with the revival of Antecerococcus Green and description of a new genus and fifteen new species, and with ten new synonomies
FIGURE 50. Asterococcus ramakrishnai (Ramakrishna Ayyer). Adult female.
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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.