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1,063 results for “western Palaearctic”
Figure 3d. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 3d. - Molophilus serpentiger Edwards, 1938 Figure 3a. male habitus Figure 3b. male hypopygium, ventral (tergal) view Figure 3c. male hypopygium, lateral view Figure 3d. aedeagal complex, lateral view <br> aedeagal complex, lateral view
Figure 2b. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 2b. - Molophilus variispinus Stary, 1971 Figure 2a. male habitus Figure 2b. male hypopygium, ventral (tergal) view Figure 2c. male hypopygium, ventral (tergal) view Figure 2d. aedeagal complex, lateral view <br> male hypopygium, ventral (tergal) view
Figure 2c. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 2c. - Molophilus variispinus Stary, 1971 Figure 2a. male habitus Figure 2b. male hypopygium, ventral (tergal) view Figure 2c. male hypopygium, ventral (tergal) view Figure 2d. aedeagal complex, lateral view <br> male hypopygium, ventral (tergal) view
Figure 3a. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 3a. - Molophilus serpentiger Edwards, 1938 Figure 3a. male habitus Figure 3b. male hypopygium, ventral (tergal) view Figure 3c. male hypopygium, lateral view Figure 3d. aedeagal complex, lateral view <br> male habitus
Figs 22-33 in A revision of Geostiba of the Western Palaearctic region. XX. Four new species from Turkey and Albania, and additional
Figs 22-33: Geostiba polisitica nov.sp. (22-24: holotype): (22) male habitus; (23) male forebody; (24) head in lateral view; (25) male abdominal segments VI-VII in dorsal view; (26) male tergite VIII; (27) male sternite VIII; (28-29) median lobe of aedeagus in lateral and in ventral view; (30) female tergite VIII; (31) female sternite VIII; (32) spermatheca; (33) distal portion of spermathecal capsule. Scale bars: 22: 1.0 mm; 23-25: 0.5 mm; 26-27, 30-31: 0.2 mm; 28-29, 32-33: 0.1 mm.
Figs 7-14 in A revision of Geostiba of the Western Palaearctic region. XX. Four new species from Turkey and Albania, and additional
Figs 7-14: Geostiba kazica nov.sp. (7-8, 10-11: holotype): (7) male habitus; (8-9) male forebody; (10) head in lateral view; (11) male abdominal segments VI-X in lateral view; (12-13) median lobe of aedeagus in lateral view; (14) spermatheca. Scale bars: 7: 1.0 mm; 8-11: 0.5 mm; 12-14: 0.1 mm.
Figs 15-21 in A revision of Geostiba of the Western Palaearctic region. XX. Four new species from Turkey and Albania, and additional
Figs 15-21: Geostiba extensicollis nov.sp. (15-19: holotype): (15) male habitus; (16) male forebody; (17) head in lateral view; (18) male abdominal segments VI-VIII in lateral view; (19-20) median lobe of aedeagus in lateral view; (21) spermatheca. Scale bars: 15: 1.0 mm; 16-18: 0.5 mm; 19-21: 0.1 mm.
Figs 1-5 in A revision of Geostiba of the Western Palaearctic region. XX. Four new species from Turkey and Albania, and additional
Figs 1-5: Geostiba devia nov.sp. (1-4: holotype): (1) male habitus; (2) male forebody; (3) male abdominal segments VI-VIII in dorsal view; (4) median lobe of aedeagus in lateral view; (5) spermatheca. Scale bars: 1: 1.0 mm; 2-3: 0.5 mm; 4-5: 0.1 mm.
Figure 3 in Butterfly-parasitoid-hostplant interactions in Western Palaearctic Hesperiidae: a DNA barcoding reference library
Figure 3. Mounted specimens illustrating the species of Microgastrinae recovered in this study. A, Cotesia glabrata Telenga ex Carcharodus alceae, Italy. Adult plus cocoons. Gregarious parasitoid; brood sizes vary considerably, host usually well grown or prepupal when killed. The other Cotesia species (near glabrata) look similar and behave in the same way. B, Dolichogenidea sp. near sicaria Marshall, ex Carcharodus alceae, Spain. Adult plus cocoon. Solitary parasitoid, killing the host while still quite young. C, Microgaster australis Thomson, ex Muschampia stauderi, Greece. Adult plus cocoon. Solitary parasitoid, usually killing the host as a prepupa. D, Microgaster nobilis Reinhard, ex Carcharodus alceae, Spain. Adult plus cocoon. Solitary parasitoid, usually killing the host as a prepupa. All specimens are in the collection of the National Museums of Scotland.
Figure 4 in Butterfly-parasitoid-hostplant interactions in Western Palaearctic Hesperiidae: a DNA barcoding reference library
Figure 4. Interaction matrices showing the recorded interactions of Hesperiidae and their hostplants (A), Hesperiidae and their parasitoids (B) and parasitoids and hostplants of Hesperiidae (C). White squares indicate recorded interactions between the taxa in the corresponding row and column, while blue squares indicate lack of interaction.
Figure 2 in Butterfly-parasitoid-hostplant interactions in Western Palaearctic Hesperiidae: a DNA barcoding reference library
Figure 2. Circular cladogram showing ecological interactions among European and North African Hesperiidae, their hostplants, and their microgastrine parasitoids, recovered through DNA barcoding for Hesperiidae and/or parasitoids. Hesperiid, parasitoid and plant cladograms are coloured in orange, blue and green, respectively. Lines representing interactions with parasitoids are coloured in blue, while lines involving hostplant interactions are coloured in green.
Figure 1 in Butterfly-parasitoid-hostplant interactions in Western Palaearctic Hesperiidae: a DNA barcoding reference library
Figure 1. Representation of the study system. Hesperiid larvae feeding on their hostplants can be attacked by a number of parasitoids, which can in turn be attacked by various hyperparasitoids. A, Spialia rosae on its hostplant Rosa sicula. B, third instar larva of Sp. rosae on a silk shelter. C, Microgaster australis parasitizing an L3 Sp. rosae larva. D, Gelis sp. parasitizing M. australis on its cocoon after emerging from the Sp. rosae larva. Drawings by Martí Franch.
Figs 7–12 in Two New Species Of Macrorrhyncha Winnertz (Diptera: Keroplatidae) From Turkey, With Redescription Of Macrorrhyncha Thracica Bechev, Stat. N. And A Key To The Western Palaearctic Species Of The Genus
Figs 7–12. Male terminalia, setae are shown on gonostyles only: 7 = Macrorrhyncha thracica, form of tergite 9 and cerci, dorsal view; 8 = M. thracica, ventral view; 9 = M. thracica – lateral view; 10 = M. geranias, dorsal view; 11 = M. geranias, ventral view; 12 = M. geranias, lateral view
Figs 1–6 in Two New Species Of Macrorrhyncha Winnertz (Diptera: Keroplatidae) From Turkey, With Redescription Of Macrorrhyncha Thracica Bechev, Stat. N. And A Key To The Western Palaearctic Species Of The Genus
Figs 1–6. Male terminalia, setae are shown on gonostyles only: 1 = Macrorrhyncha anatolica, form of tergite 9 and cerci, dorsal view; 2 = M. anatolica, ventral view; 3 = M. anatolica, lateral view; 4 = M. muglensis, form of tergite 9 and cerci, dorsal view; 5 = M. muglensis, ventral view; 6 = M. muglensis, lateral view. Abbreviations: lf = lateral fold of tergite 9, ip = inner process of gonocoxite,
Fig. 6 in Evolution and systematics of Green Bush-crickets (Orthoptera: Tettigoniidae: Tettigonia) in the Western Palaearctic: testing concordance between molecular, acoustic, and morphological data
Fig. 6 Comparison of the duty cycle in the songs of the T. armeniaca complex and T. caudata (left panel) and the Tettigonia viridissima group (right panel)
Fig. 2 in Evolution and systematics of Green Bush-crickets (Orthoptera: Tettigoniidae: Tettigonia) in the Western Palaearctic: testing concordance between molecular, acoustic, and morphological data
Fig. 2 Oscillograms of the song of the Tettigonia viridissima group (1–9) and T. cantans (10) recorded at two speeds: 1 T. cf. longealata (MO: Ajabo, T = 20 °C), 2 T. cf. vaucheriana (MO: N Fes, T = 20 °C), 3 T. cf. vaucheriana (MO: Bouchfaa W of Taza, T = 21 °C), 4 T. cf. vaucheriana (MO: Tilougguite Pass, T = 23 °C), 5 T. cf. vaucheriana and cf. longealata (MO: El Kebab, T = 25 °C), 6 T. cf. vaucheriana (MO: El Kebab, T = 28–30 °C), 7 T. cf. viridissima (MO: S Aïn Zora, T = 22 °C), 8 T. cf. viridissima (MO: S Aïn Zora, T = 25 °C), 9 T. viridissima (BG: Sofia, T = 27 °C), and 10 T. cantans (IT: Val Malene; from Massa et al. 2012, T = 15 °C)). Scale bar for A is 10 s and for B 2 s
Fig. 5 in Evolution and systematics of Green Bush-crickets (Orthoptera: Tettigoniidae: Tettigonia) in the Western Palaearctic: testing concordance between molecular, acoustic, and morphological data
Fig. 5 Appearance of some taxa of Western Palaearctic Tettigonia (relative size proportions between photos not retained). a T. cantans, male, Germany, Gunzenhausen; b T. cantans, female, Germany, Gunzenhausen; c T. uvarovi Ebner, 1946—male, holotype, Siberia (NHMW), lateral view; d same, dorsal view; e T. caudata, male, Bulgaria, Russe district, Byala; f T. acutipennis Ebner, 1946—male, holotype, "Kleinasien 1914 | Marasch, Tölg. | coll. R. Ebner" (NHMW), dorsal view; g same, lateral view; h T. armeniaca, male, Armenia, Djermuk; i T. armeniaca, male, Turkey, Ispir; j T. viridissima morphotype of longealata, male, Morocco, El Kebab; k T. viridissima morphotype of longealata, female, Morocco, El Kebab; l T. viridissima morphotype of vaucheriana, male, Morocco, El Kebab; and m T. viridissima, male and female in copula, Bulgaria, Haskovo district, Kostilkovo village
Fig. 4 in Evolution and systematics of Green Bush-crickets (Orthoptera: Tettigoniidae: Tettigonia) in the Western Palaearctic: testing concordance between molecular, acoustic, and morphological data
Fig. 4 Phylogenetic tree of the genus Tettigonia based on BI analysis of concatenated COI-ITS1-ITS2 sequences. BI posterior probability (PP) values are shown near resolved branches (only support values above 0.50). Species groups, as defined by genetic and morpho-acoustic data, are distinctly shaded, and the respective branches are marked with an open circle and a capital letter as follows: "A"—T. viridissima group, "B"—T. caudata group, and "C"—T. cantans group. Haplotype codes correspond to Table 1 in the Supplement, followed by morphological identification. Squares on the right side of names correspond to relative wing length: filled squares short wings and open squares long wings;
Fig. 7 in Evolution and systematics of Green Bush-crickets (Orthoptera: Tettigoniidae: Tettigonia) in the Western Palaearctic: testing concordance between molecular, acoustic, and morphological data
Fig. 7 Relationship between the duration of chirps and inter-chirp intervals in T. caudata and the Tettigonia armeniaca complex. Green triangles mark recordings from Ispir, Turkey, where monosyllabic, disyllabic, and polysyllabic songs of T. armeniaca were recorded, as well as a song of T. caudata (Color figure online)
Figs 203-206 in A revision of the Sunius species of the Western Palaearctic region and Middle Asia (Coleoptera: Staphylinidae: Paederinae)
Figs 203-206: Sunius pennatus nov.sp. (203-205) and S. basalis (REITTER), syntype (206): (203, 206) forebody; (204) aedeagus in lateral view; (205) internal structures of aedeagus in lateral view. Scale bars: 206: 0.5 mm; 203: 0.2 mm; 204-205: 0.1 mm.
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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)
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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.