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174 results for “Eastern Asia”
Figure 1 from: Wang C-B, Perreau M, Růžička J, Nishikawa M (2017) Revision of the genus Ptomaphagus Hellwig from eastern Asia (Coleoptera, Leiodidae, Cholevinae). ZooKeys 715: 69-92. https://doi.org/10.3897/zookeys.715.20497
Figure 1 - Habitus of Ptomaphagus (s. str.) spp. (dorsal view). A–B P. (s. str.) nepalensis Perreau, 1988 A ♂ (paratype; Nepal) B ♀ (paratype; Nepal) C–D P. (s. str.) masumotoi Nishikawa, 2011 C ♂ (paratype; Thailand) D ♀ (holotype; Thailand) E P. (s. str.) piccoloi Wang, Růžička, Nishikawa, Perreau & Hayashi, 2016 ♂ (China: Zhejiang) F–G P. (s. str.) funiu sp. n. F ♂ (holotype; China: Henan) G ♀ (paratype; China: Henan) H–I P. (s. str.) haba sp. n. H ♂ (holotype; China: Yunnan) I ♀ (paratype; China: Yunnan). Scale bar: 1 mm.
Figure 2 from: Wang C-B, Perreau M, Růžička J, Nishikawa M (2017) Revision of the genus Ptomaphagus Hellwig from eastern Asia (Coleoptera, Leiodidae, Cholevinae). ZooKeys 715: 69-92. https://doi.org/10.3897/zookeys.715.20497
Figure 2 - Ptomaphagus (s. str.) nepalensis Perreau, 1988 (♂: paratype; ♀: paratype). A antenna ♂ (dorsal view) B pronotum ♂ (dorsal view) C protarsus ♂ (dorsal view) D protarsus ♀ (dorsal view) E protibia and profemur ♂ (ventral view) F protibia and profemur ♀ (ventral view) G elytral apex ♂ (dorsoapical view) H elytral apex ♀ (dorsoapical view) I ventrite VIII ♂ (ventral view) J genital segment ♂ (ventral view). Scale bars: 0.1 mm.
Figure 10 from: Wang C-B, Perreau M, Růžička J, Nishikawa M (2017) Revision of the genus Ptomaphagus Hellwig from eastern Asia (Coleoptera, Leiodidae, Cholevinae). ZooKeys 715: 69-92. https://doi.org/10.3897/zookeys.715.20497
Figure 10 - Aedeagi of Ptomaphagus (s. str.) spp. (A–F dorsal view G–L lateral view) A, G P. (s. str.) piccoloi Wang, Růžička, Nishikawa, Perreau & Hayashi, 2016 (China: Zhejiang) B, H P. (s. str.) sp.4 (China: Sichuan) C, I P. (s. str.) sp.5 (China: Shaanxi) D, J P. (s. str.) sp.6 (China: Sichuan) E, K P. (s. str.) sp.7 (China: Shaanxi) F, L P. (s. str.) sp.8 (China: Shaanxi). Scale bar: 0.1 mm.
Figure 5 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 5 Mandible width (left) and index clypeus length / mandible width in males of the five species of the Trachusa pubescens complex. Abbreviations: bal = T. balcanica sp. n.; hak = T. hakkariensis sp. n.; max = T. maxima; pub = T. pubescens; ver = T. verhoeffi.
Figure 9 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 9 Male genitalia of the five species of the Trachusa pubescens complex. A Trachusa balcanica sp. n. (FYR of Macedonia) B–C T. pubescens (two different specimens from Greece) D T. maxima (Armenia) E T. verhoeffi (SW Turkey) F T. verhoeffi (Israel).
Figure 2 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 2 Principal Component Analysis (PCA) of 26 morphometric variables of males of Trachusa pubescens s. l. (N = 132). Individuals subsequently assigned to T. balcanica sp. n. and T. maxima are shown here in a different colour. All other OUs are shown here in the same colour. One specimen from central Iran is significantly different from all other specimens of the group. The confidence ellipses show a confidence interval of 80%.
Figure 15 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 15 The two apical terga (T6–T7) of males of the five species of the Trachusa pubescens complex.
Figure 11 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 11 Males of the five species of the Trachusa pubescens complex in dorsal view: A T. balcanica sp. n. B T. hakkariensis sp. n. C T. maxima D T. pubescens E T. verhoeffi.
Figure 17 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 17 Distribution of the species of the Trachusa pubescens complex. The red circle shows the locus typicus of T. pubescens s. str. A locality of T. pubescens s. str. in Turkmenistan is not shown as it is beyond the limits of the map.
Figure 10 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 10 Apices of the penis valves in the Trachusa pubescens complex. Hook-shaped apices (left) are found in Trachusa balcanica sp. n., T. maxima, T. hakkariensis sp. n., and T. verhoeffi. The apices of the penis valves are straight only in T. pubescens (right).
Figure 1 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 1 Measurements taken for the morphometric analysis. Note that the measurements were taken from positions in which both points of reference become equidistant from the lens of the microscope. This is not necessarily the perspective shown in the drawing.
Figure 4 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 4 Results of a Discriminant Analysis of the Operational Units (OU) assigned to Trachusa pubescens s. str. based on 26 morphometric characters of the male.
Figure 16 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 16 Discriminant Analysis (DA) of the 26 morphometric characters of males of Trachusa balcanica sp. n., T. hakkariensis sp. n., and T. maxima. Members of these OUs are characterised by an emarginate clypeus and subacute lateral projections of T6. Trachusa maxima is subdivided into the Armenian OU (including one specimen from central Iran) and the Anatolian OU.
Figure 7 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 7 Dorsal view of the apical margin of T6 in the five species of the Trachusa pubescens complex. The dotted line is added to show the relative length of the median projection in relation to the lateral projections. Arrows indicate distinguishing features.
Figure 8 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 8 Dorsal view of the apex of the median projection of T7 in the five species of the Trachusa pubescens complex.
Figure 3 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 3 Principal Component Analysis (PCA) of 26 morphometric characters (males) of those OUs of the Trachusa pubescens complex whose members are characterised by an emarginate clypeus and subacute lateral projections on T6.
Figure 6 from: Kasparek M (2018) Taxonomic revision proves Trachusa pubescens (Morawitz, 1872) sensu lato to be a complex of allopatric and sympatric species in South-Eastern Europe and Western Asia (Hymenoptera, Apoidea, Anthidiini). ZooKeys 764: 111-144. https://doi.org/10.3897/zookeys.764.24581
Figure 6 Comparison of the clypeus index (clypeus width / clypeus length) in males of the five species of the Trachusa pubescens complex. Abbreviations: bal = T. balcanica sp. n.; hak = T. hakkariensis sp. n.; max = T. maxima; pub = T. pubescens; ver = T. verhoeffi.
Figs. 1-5. 1-3 in New taxa of the subfamily Cantharinae (Coleoptera: Cantharidae) from south-eastern Asia with notes on other species II
Figs. 1-5. 1-3 – Rhagonycha bimucronata sp. nov. 1 – aedeagus, ventral view; 2 – dorsal part of aedeagus; 3 – aedeagus, lateral view. 4 – Micropodabrus semifumatoides sp. nov., dorsal part of aedeagus. 5 – M. fissiformis sp. nov., dorsal part of aedeagus.
Figure 7 in Revision of Acanthocyrtus (Collembola: Entomobryidae), with description of a new genus from eastern Asia
Figure 7. Acanthocyrtus yolngui sp. nov. A, colour pattern. B, lateral process of labial palp. C, maxillary outer lobe. D, labial triangular setae. E, cephalic dorsal chaetotaxy. F, thoracic chaetotaxy. G, abdominal chaetotaxy. H, trochanteral organ. I, hind claw. J, bothriotrichial complex on abdominal segment (Abd.) II centrally. K, anterior face of ventral tube. L, dental spines. M, mucro. N, body scales. O, scales on dens. Scale bars: A = 1 mm; B–D, H–O = 25 Mm; E–G = 100 Mm.
Figure 6. Acanthocyrtus lineatus Womersley. A, habitus. B, interocular setae. C, dorsal body chaetotaxy. D, hind claw. E, dental spines. F, mucro. G, I, body scales. H in Revision of Acanthocyrtus (Collembola: Entomobryidae), with description of a new genus from eastern Asia
Figure 6. Acanthocyrtus lineatus Womersley. A, habitus. B, interocular setae. C, dorsal body chaetotaxy. D, hind claw. E, dental spines. F, mucro. G, I, body scales. H, scales on dens. Scale bars: A and C = 0.5 mm; B, D–I = 25 Mm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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