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1,063 results for “western Palaearctic”
Figure 85 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 85. Atractides pavesii; A–D, ♂, Germany, SMF 5875. A, coxal field; B, genital and postgenital area; C, I-L-5 and -6; D, gnathosoma with palps in situ; E–I ♀, Italy, SMF 7199. E, chelicera; F, IV-L-5 and -6; G, genital field; H, palp, lateral view, I I-L-5 and -6, partial view. Scale bars = 100 µm.
Figure 79 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 79. Atractides ubinicus, holotype ♀, coll. Tuzovskij 1506. A, I-L-5 and -6; B, palp, medial view; C, dorsum; D, coxal field, E, genital and postgenital field. Scale bars = 100 µm.
Figure 66. Atractides rivalis. A, B in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 66. Atractides rivalis. A, B, holotype ♀ SMNH 4989, C–F, ♂ SMNH 5011. A, ♀ palp, medial view; B, ♀ genital and postgenital field; C, ♂ I-L-5 and -6; D, ♂ coxal field, E, ♂ palp; F, ♂ genital field. Scale bars = 100 µm.
Figure 94. Atractides hystricipes. A, D, G, H in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 94. Atractides hystricipes. A, D, G, H, holotype ♂ SMNH 2898; B, C, E, F, paratype ♀ SMNH 2899. A, ♂ I-L; B, ♀ I-L; C, ♀ palp, medial view; D, ♂ palp, medial view; E, ♀ Vgl-1/2 and excretory pore; F, ♀ genital field; G, ♂ coxal field; H, ♂ genital field. Scale bars = 100 µm.
Figure 34. Atractides valencianus, type series. A–C in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 34. Atractides valencianus, type series. A–C, paralectotype ♀, D–G, lectotype ♂. A, ♀ I-L-5 and -6; B, ♀ palp, medial view; C, ♀ genital field without right genital plate; D, ♂ genital field, E, ♂ palp, medial view; F, ♂ palp, lateral view; G, ♂ I-L-5 and -6. Scale bars = 100 µm.
Figure 40 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 40. Atractides latipes, specimens from Bavaria (D 448). A, B, E, F, ♂ C, D, G, ♀. A, ♂ coxal field; B, ♂ genital and postgenital field; C, ♀ genital field; D, ♀ palp, medial view (with sword seta P-4 lacking); E, ♂ palp, medial view; F, ♂ I- L-5 and -6 (with S-1 slightly dislocated); G, ♀ I-L-5 and -6. Scale bars = 100 µm.
Figure 43. A–G, Atractides maderensis. A–C in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 43. A–G, Atractides maderensis. A–C, paratype ♀ SMNH 2919; D–F, holotype ♂ SMNH 2918; G, paratype ♂ SMNH prep. Gerecke. A, ♀ I-L-5 and -6; B, ♀ palp, medial view; C, ♀ genital field (without right genital plate); D, ♂ genital field, E, ♂ excretory pore and Vgl-1/2; F, ♂ coxal field; G, ♂ palp, medial view. H, Atractides robustus lectotype ♂ ZISP 1/ 889 IV-L-3–5; I (for comparison) A. nodipalpis, S Germany; D, 459, IV-L-3–5. Scale bars = 100 µm.
Figure 36 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 36. Atractides adenophorus, holotype ♀ SMF 3973. A, I-L-5 and -6; B, gnathosoma and palps lateral view; C, coxal field; D, genital and postgenital field, E, dorsal idiosoma. Scale bars = 100 µm.
Figure 3 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 3. General idiosoma morphology and terminology of Atractides, ventrum. See 'Anatomical abbreviations'.
Figure 5 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 5. Idiosoma morphology of Atractides, SEM photographs, all scale bars = 100 µm. A, anterior view of the dorsum of A. walteri ♂ (Berchtesgaden), soft-skinned muscle insertions are visible as shallow pits; B, anterior view of the dorsum of A. macrolaminatus ♂ (Berchtesgaden), with sclerotized muscle insertions visible as enlarged plates partly covered by membranous integument; C, ventrum of A. nodipalpis ♂ (Goldersbach), showing extension of soft membrane and coxal sclerites; note the presence of a sclerified bridge between anteromedial margin of Cx-1 and gnathosomal base; D, coxal field and gnathosoma of A. panniculatus ♀ (Berchtesgaden); E, posterodorsal view of A. panniculatus ♀ (Berchtesgaden); note the long setae of Dgl-3 and Dgl-4; F, genital area of A. panniculatus ♂ (Berchtesgaden) – Vgl-1 not fused with Vgl-2, excretory pore unsclerified.
Figure 4 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 4. Types of integument morphology in Atractides, SEM photographs. A, finely striated (A. macrolaminatus ♂, Berchtesgaden), scale bar = 4 µm; B, lineated (with slit organ and glandulare) (A. panniculatus ♀, Berchtesgaden), scale bar = 40 µm; C, ditto, detail (with glandulare), scale bar = 10 µm; D, papillate (A. walteri ♀, Berchtesgaden), transition area between striated (at right, upper margin) and papillate (at left lower margin), scale bar = 40 µm; E, ditto, detail, scale bar = 2 µm; F, porosity of sclerified surface of Cx-4 (A. nodipalpis ♂, Goldersbach, SW Germany).
Figure 8 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 8. Morphology and terminology of Atractides. First leg, terminal segments, schematic view. See 'Anatomical abbreviations'.
Figs 331-338 in A revision of the Bracon (subgenera Bracon s.str., Cyanopterobracon, Glabrobracon, Lucobracon, Osculobracon subgen. n., Pigeria) species described by SZÉPLIGETI from the western Palaearctic Region (Hymenoptera: Braconidae, Braconinae)
Figs 331-338. Bracon subrugosus SZÉPLIGETI 1901: (331) tergites 2-3:, (332) tergites 1-3:. - Bracon intercessor NEES 1834: (333) head in dorsal view:, (334) temple in dorsal view:, (335) tergites 1-3:, (336-337) first tergite: (336) and (337). - Bracon trucidator MARSHALL 1888: (338 = head in dorsal view.
Figs 1-14. Bracon abbreviator NEES 1834 in A revision of the Bracon (subgenera Bracon s.str., Cyanopterobracon, Glabrobracon, Lucobracon, Osculobracon subgen. n., Pigeria) species described by SZÉPLIGETI from the western Palaearctic Region (Hymenoptera: Braconidae, Braconinae)
Figs 1-14. Bracon abbreviator NEES 1834 (neotype: Figs 1-10): (1) flagellum: first two and penultimate flagellomeres, (2) head in dorsal view, (3) head in lateral view, (4) ventral half of head in frontal view, (5) hind femur, (6) claw, (7) distal part of right fore wing, (8) first discal cell, (9) tergites 1-3, (10) posterior half of metasoma with ovipositor apparatus, (11) hind femur:, (12) first tergite:, (13) right half of first tergite:, (14) first tergite:.
Figs 163-174 in A revision of the Bracon (subgenera Bracon s.str., Cyanopterobracon, Glabrobracon, Lucobracon, Osculobracon subgen. n., Pigeria) species described by SZÉPLIGETI from the western Palaearctic Region (Hymenoptera: Braconidae, Braconinae)
Figs 163-174. Bracon maroccanus SZÉPLIGETI 1906 (lectotype: 163-170): (163) head in dorsal view, (164) head in lateral view, (165) ventral half of head in frontal view, (166) propodeum, (167) hind femur, (168) claw, (169) tergites 1-3, (170) hind end of female metasoma, (171) flagellum: flagellomeres 1-2 and 26-28:, (172) distal part of right fore wing:, (173) first discal cell:, (174) first tergite:.
Figs 108-121 in A revision of the Bracon (subgenera Bracon s.str., Cyanopterobracon, Glabrobracon, Lucobracon, Osculobracon subgen. n., Pigeria) species described by SZÉPLIGETI from the western Palaearctic Region (Hymenoptera: Braconidae, Braconinae)
Figs 108-121. Bracon fallax SZÉPLIGETI 1901 (holotype: 108-116): (108) scape + pedicel in lateral view, (109) flagellum: first two and ultimate two flagellomeres, (110) head in dorsal view, (111) head in lateral view, (112) ventral half of head in frontal view, (113) hind femur, (114) claw, (115) first discal cell, (116) tergites 1-3, (117) temple in dorsal view:, (118) head in dorsal view:, (119) hind femur:, (120) head in dorsal view:, (121) hypopygium and ovipositor apparatus.
Figure 8 in Stenotaenia Koch, 1847: a hitherto unrecognized lineage of western Palaearctic centipedes with unusual diversity in body size and segment number (Chilopoda: Geophilidae)
Figure 8. Relationship between the adult body size, as measured by the maximum width of the head, and the number of leg-bearing segments in different species of Stenotaenia. We considered only specimens with fully developed gonopods, and only species for which at least five adults were available. Distinction between Stenotaenia sorrentina and Stenotaenia linearis is only tentative for some specimens, as it is based on a conventional threshold in the number of leg-bearing segments (see Table 3, and remarks under S. sorrentina).
FIGURES 19–21 in Two new species of Lathrolestes (Hymenoptera, Ichneumonidae) from Norway, northern Russia and Finland with a key to western Palaearctic species
FIGURES 19–21. Holotype, female, Lathrolestes nornae sp. nov. 19 face; 20 propodeum; 21 habitus.
Figure 3 from: Schuldt A, Assmann T (2011) Belowground carabid beetle diversity in the western Palaearctic – effects of history and climate on range-restricted taxa (Coleoptera, Carabidae). ZooKeys 100: 461-474. https://doi.org/10.3897/zookeys.100.1540
Figure 3 - Partitioning of variation from regression modelling for species richness of belowground carabids. Values give the % of the total variation independent and shared effects of spatial (S), topographic (T) and climate (C) models account for in the explanation of richness patterns. U is the unexplained variation.
Figure 2 from: Schuldt A, Assmann T (2011) Belowground carabid beetle diversity in the western Palaearctic – effects of history and climate on range-restricted taxa (Coleoptera, Carabidae). ZooKeys 100: 461-474. https://doi.org/10.3897/zookeys.100.1540
Figure 2 - Relationship between species richness of belowground carabid beetles (log10-transformed) and a latitude (R²adj.=0.51; p=0.012), b range in elevation (i.e., topograohic variability; R²adj.=0.52; p<0.001) and c annual potential evapotranspiration (R²adj.=0.38; p=0.020) in the western Palaearctic.
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OpenNeuro
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