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1,063 results for “western Palaearctic”
Figure 35 from: van Achterberg C, Shaw MR (2016) Revision of the western Palaearctic species of Aleiodes Wesmael (Hymenoptera, Braconidae, Rogadinae). Part 1: Introduction, key to species groups, outlying distinctive species, and revisionary notes on some further species. ZooKeys 639: 1-164. https://doi.org/10.3897/zookeys.639.10893
Figure 35 - Aleiodes angustipterus sp. n., ♀, holotype, habitus lateral.
Figure 138 from: van Achterberg C, Shaw MR (2016) Revision of the western Palaearctic species of Aleiodes Wesmael (Hymenoptera, Braconidae, Rogadinae). Part 1: Introduction, key to species groups, outlying distinctive species, and revisionary notes on some further species. ZooKeys 639: 1-164. https://doi.org/10.3897/zookeys.639.10893
Figure 138 - Aleiodes curticornis nom. n., ♀, Italy, Tyrol, near Laudes, habitus lateral.
Figure 328 from: van Achterberg C, Shaw MR (2016) Revision of the western Palaearctic species of Aleiodes Wesmael (Hymenoptera, Braconidae, Rogadinae). Part 1: Introduction, key to species groups, outlying distinctive species, and revisionary notes on some further species. ZooKeys 639: 1-164. https://doi.org/10.3897/zookeys.639.10893
Figure 328 - Aleiodes seriatus (Herrich-Schäffer) s.l., ♀, Netherlands, Wijster, habitus lateral.
Figure 285 from: van Achterberg C, Shaw MR (2016) Revision of the western Palaearctic species of Aleiodes Wesmael (Hymenoptera, Braconidae, Rogadinae). Part 1: Introduction, key to species groups, outlying distinctive species, and revisionary notes on some further species. ZooKeys 639: 1-164. https://doi.org/10.3897/zookeys.639.10893
Figure 285 - Aleiodes praetor (Reinhard), ♀, hanging from a leaf edge.
Figure 316 from: van Achterberg C, Shaw MR (2016) Revision of the western Palaearctic species of Aleiodes Wesmael (Hymenoptera, Braconidae, Rogadinae). Part 1: Introduction, key to species groups, outlying distinctive species, and revisionary notes on some further species. ZooKeys 639: 1-164. https://doi.org/10.3897/zookeys.639.10893
Figure 316 - Aleiodes ryrholmi sp. n., ♀, holotype, habitus lateral.
Figure 1 from: Peris Felipo F, Munk T, Jimenez R (2013) New western Palaearctic Dinotrema species with mesoscutal pit and only medially sculptured propodeum (Hymenoptera, Braconidae, Alysiinae). ZooKeys 260: 61-76. https://doi.org/10.3897/zookeys.260.4084
Figure 1 - Dinotrema alysiae sp. n. (female).Habitus, lateral view.
Figure 27 from: Peris Felipo F, Munk T, Jimenez R (2013) New western Palaearctic Dinotrema species with mesoscutal pit and only medially sculptured propodeum (Hymenoptera, Braconidae, Alysiinae). ZooKeys 260: 61-76. https://doi.org/10.3897/zookeys.260.4084
Figure 27 - Dinotrema tirolense sp. n. (female). 27 Habitus, lateral view.
Figure 14 from: Peris Felipo F, Munk T, Jimenez R (2013) New western Palaearctic Dinotrema species with mesoscutal pit and only medially sculptured propodeum (Hymenoptera, Braconidae, Alysiinae). ZooKeys 260: 61-76. https://doi.org/10.3897/zookeys.260.4084
Figure 14 - Dinotrema paramicum sp. n. (female). 14 Habitus, lateral view
FIGURES 5–6 in A new fossil species of Bolitophagini (Coleoptera: Tenebrionidae) from Baltic amber suggests the genus Eledonoprius Reitter is persistent in the Western Palaearctic since the Tertiary
FIGURES 5–6. Eledonoprius incoronatus sp. nov., holotype: 5 – genitalia, lateral view; 6 – forebody, lateral view. Scale bars represent 0.2 mm.
FIGURES 3–4 in A new fossil species of Bolitophagini (Coleoptera: Tenebrionidae) from Baltic amber suggests the genus Eledonoprius Reitter is persistent in the Western Palaearctic since the Tertiary
FIGURES 3–4. Eledonoprius incoronatus sp. nov., holotype: 3 – habitus, ventral view; 4 – forebody, ventral view. Scale bars represent 0.5 mm (Fig. 3) and 0.2 mm (Fig.4).
FIGURE 4 in A taxonomic revision of the Western Palaearctic genus Cacochroa Heinemann 1870 (Lepidoptera, Depressariidae, Cryptolechiinae) with description of a new genus and a new species
FIGURE 4. Female genitalia: A. Cacochroa permixtella (H.-S.), Turkey, Brussa, 1851, Mann. leg. (NHMV), gen. prep. P. Buchner. B. Rosetea rosetella (Corley), Algeria, Philippeville [now Skikda], larvae on Phillyrea latifolia, 14.v.1904, Lord Walsingham leg. (NHMUK), M. Dale gen. prep. C. Rosetea corfuella (Lvovsky), Greece, Lesvos, Keramia, 10.vi.2009, L. Kaila & J. Kullberg leg., in coll. Corley, B. Goodey gen. prep. D. Rosetea sara sp. n., Tunisia, Ain Draham area, 5−18.v.1988, leg. O. Karsholt, (ZMUC), M. Corley gen. prep. 5374.
FIGURE 8. 8a in Bryophila perloides Guenée, 1852 (Lepidoptera: Noctuidae: Bryophilinae), an overlooked member of the European Noctuidae fauna, with upgrading of Bryopsis Boursin, 1970 to generic level (Taxonomic studies on the western Palaearctic Bryophilinae, No. 1)
FIGURE 8. 8a. Female genitalia of Bryopsis muralis. Slide No.: RL9676, Sardinia. Italy. HNHM. 8b. Female genitalia of Nyctobrya simonyi. Slide No.: VM19489, Tenerife, Canary Islands, Spain. NHMW. 8c. Female genitalia of Bryophila barbaria. Female, High Atlas Mts, Morocco. Slide No.: RL12479. NHMW. 8d. Female genitalia of Bryophila katiba. Female, Morocco, Anti Atlas Mts. Slide No. RL12446f. Coll. GR
Figure 10 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 10. Differing shell shapes of Unio pictorum. A, B, Lake Trichonida, Greece. C, Thames River, UK. D, Axios River, Greece. E, Okna River (Danube), Slovakia. F, Axios River, Greece. Scale bar 2 cm.
Figure 21 in Revision of the Ropalopus ungaricus/insubricus group (Coleoptera: Cerambycidae: Callidiini) from the western Palaearctic region
Figure 21. Results of the phylogenetic analyses based on strict consensus of most parsimonious trees resulting from the morphological analysis, with mapped characters.
Figure 15. A1–F1 in Revision of the Ropalopus ungaricus/insubricus group (Coleoptera: Cerambycidae: Callidiini) from the western Palaearctic region
Figure 15. A1–F1, habitus (dorsal view). A, Ropalopus ungaricus siculus: 1–5, males, Italy (Sicily); 6, female, Italy (Sicily). B, Ropalopus ungaricus boreki: 1, male, Greece (Peloponnese). C, Ropalopus ungaricus ossae: 1 male holotype Greece (Thessaly); 2–5, male paratypes, Greece (Thessaly); 6–7, female paratypes, Greece (Thessaly). D, Ropalopus nataliyae: 1–4, males, Iran; 5–7, females, Iran. E, Ropalopus lederi: 1–2, males, Russia (north-west Caucasus). F, Ropalopus hanae: 1, male, Turkey (www.cerambyx.uochb.cz). Scale bar: 5 mm.
Figure 11. A–X, phallobases with parameres. A–E in Revision of the Ropalopus ungaricus/insubricus group (Coleoptera: Cerambycidae: Callidiini) from the western Palaearctic region
Figure 11. A–X, phallobases with parameres. A–E, Ropalopus ungaricus ungaricus, Slovakia, Slovakia, Poland, Austria and Montenegro, respectively. F–I, Ropalopus ungaricus gallicus, France. J–N, Ropalopus ungaricus insubricus, Italy, Croatia, Croatia, Croatia and Croatia, respectively. O, Ropalopus ungaricus boreki, Greece (Peloponnese). P–R, Ropalopus ungaricus siculus, Italy (Sicily). S, T, Ropalopus ungaricus ossae, Greece (Thessaly). U, V, Ropalopus nataliyae, Iran. W, X, Ropalopus lederi, Russia (north-west Caucasus).
Figure 8. A–U in Revision of the Ropalopus ungaricus/insubricus group (Coleoptera: Cerambycidae: Callidiini) from the western Palaearctic region
Figure 8. A–U, protarsi: A–M, males; N–U, females. A, Ropalopus ungaricus ungaricus, Austria. B, C, Ropalopus ungaricus gallicus, France. D, E, Ropalopus ungaricus insubricus, Croatia. F, Ropalopus ungaricus boreki, Greece (Peloponnese). G, H, Ropalopus ungaricus siculus, Italy (Sicily). I, J, Ropalopus ungaricus ossae, Greece (Thessaly). K, L, Ropalopus nataliyae, Iran. M, Ropalopus lederi, Russia (north-west Caucasus). N, O, Ropalopus ungaricus ungaricus, Poland and Slovakia, respectively. P, Ropalopus ungaricus gallicus, France. Q, Ropalopus ungaricus insubricus, Croatia. R, Ropalopus ungaricus siculus, Italy (Sicily). S, T, Ropalopus ungaricus ossae, Greece (Thessaly). U, Ropalopus nataliyae, Iran.
FIGURES 22–37 in Taxonomic revision of the Western Palaearctic bees of the subgenus Pseudomegachile (Hymenoptera, Apiformes, Megachilidae, Megachile)
FIGURES 22–37. Diagnostic traits of males. 22: inferior mandibular projection of M. nigripes. Anterior coxal spine of 23: M. nigripes, 24: M. lanata. Front legs of males of 25: M. foersteri (anterior surface), 26: M. cyanipennis (anterior surface), 27: M. ericetorum (ventral surface), 28: M. cinnamomea (ventral surface), 29: M. cyanipennis (ventral surface), 30: M. cinnamomea (dorsal surface), 31: M. farinosa (dorsal surface). T6 and T7 of 32: M. farinosa, 33: M. cinnamomea, 34: M. lanata, 35: M. seraxensis, 36: M. schnabli, 37: M. riyadhensis. IBP: inferior basal projection, ACS: anterior coxal spine, AG: anterior groove, BAM: basitarsal anterior margin, MPS: minute posterior spot, PAC: preapical carina, LS: lateral spine.
Fig. 7 in Ecological patterns strongly impact the biogeography of western Palaearctic longhorn beetles (Coleoptera: Cerambycoidea)
Fig. 7 Factor analysis by species calculated as principal component analysis with varimax rotation based on Jaccard similarity coefficients for 95 geographic regions. a–c All species, d–f broad-leaved feeders and g–i conifer feeders
Fig. 6 in Ecological patterns strongly impact the biogeography of western Palaearctic longhorn beetles (Coleoptera: Cerambycoidea)
Fig. 6 Factor analysis by regions calculated as principal components analysis with varimax rotation based on Jaccard similarity coefficients for 95 geographic regions. a, b All species, c, d broad-leaved feeders and e, f conifer feeders
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Allen Brain Atlas
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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
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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
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