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412 results for “1952”
Fig. 5 in Two new species of shrimp of the Indo-West Pacific genus Hamodactylus Holthuis, 1952 (Crustacea: Decapoda: Palaemonidae)
Fig. 5. Hamodactylus paraqabai sp. nov., Ƌ (PoCL 1.1 mm, Lizard Is., Australia, MTQ-33218). A. Carapace and rostrum, lateral. B. First pleopod. C. Same as previous, endopod. D. Second pleopod. E. Same as previous, appendices interna and masculina.
Fig. 3 in Two new species of shrimp of the Indo-West Pacific genus Hamodactylus Holthuis, 1952 (Crustacea: Decapoda: Palaemonidae)
Fig. 3. Hamodactylus paraqabai sp. nov., ovigerous ♀, holotype (PoCL 1.5 mm; Madang, Papua New Guinea). A. Right first pereiopod. B. Same as previous, chela and carpus. C. Same as previous, fingers. D. Same as previous, detail of denticulations. E. Second pereiopod, lateral. F. Same as previous, dactylus and distal propodus. G. Third pereiopod. H. Same as previous, dactylus and distal propodus. I. Fifth pereiopod, dactylus and distal propodus.
Fig. 7 in Revision of the palm-pollinating weevil genus Elaeidobius Kuschel, 1952 (Curculionidae, Curculioninae, Derelomini) with descriptions of two new species
Fig. 7. Adults of Elaeidobius plagiatus (Fåhraeus, 1844) comb. nov. (left) and E. subvittatus (Faust, 1898) (right) feeding on male inflorescence of Elaeis guineensis Jacq.
Fig. 3 in Revision of the palm-pollinating weevil genus Elaeidobius Kuschel, 1952 (Curculionidae, Curculioninae, Derelomini) with descriptions of two new species
Fig. 3. Head and prothorax in lateral view of species of Elaeidobius Kuschel, 1952 (Part 2). A. E. pilimargo Haran & Kuschel sp. nov. (JHAR00409). B. E. piliventris Haran & Kuschel sp. nov. (JHAR02182). C. E. plagiatus (Fåhraeus, 1844) comb. nov. (JHAR00272). D. E. singularis (Faust, 1898) comb. nov. (JHAR00283). Not to scale.
Fig. 6 in Revision of the palm-pollinating weevil genus Elaeidobius Kuschel, 1952 (Curculionidae, Curculioninae, Derelomini) with descriptions of two new species
Fig. 6. Preliminary phylogenetic tree of the genus Elaeidobius Kuschel, 1952 inferred from COII fragment sequences (730 bp). Bootstrap support values were obtained for 1000 replicates. * = bootstrap values above 70; ** = bootstrap values above 90.
FIGURE 52. Ascarophis arctica Polyanski, 1952. A in Guide to the Parasites of Fishes of Canada Part V: Nematoda
FIGURE 52. Ascarophis arctica Polyanski, 1952. A. male, anterior end, lateral view; B. male, posterior end, ventral view, arrows indicate the 5 th and 6 th pairs of post-caudal papillae; C. female, vulvar region, lateral view [NB: for presentational reasons, polar filaments have been omitted from in utero eggs to avoid clutter]; D. egg from uterus. (Redrawn from Appy 1981)
FIGURE 54. Ascarophis filiformis Polyanski, 1952. A in Guide to the Parasites of Fishes of Canada Part V: Nematoda
FIGURE 54. Ascarophis filiformis Polyanski, 1952. A. male, anterior end, lateral view; B. male, posterior end, lateral view, arrow indicates left-hand pair 5 th and 6 th post-caudal papillae; C. female, posterior end, lateral view; D. egg from uterus. (Redrawn from Appy 1981)
FIGURE 56. Ascarophis sebastodis Olsen, 1952. A in Guide to the Parasites of Fishes of Canada Part V: Nematoda
FIGURE 56. Ascarophis sebastodis Olsen, 1952. A. male, anterior end, lateral view; B. female, posterior end, lateral view; C. egg showing two polar filaments. (Redrawn from Ko 1986).
- Wings yellowish with apex blackish and an additional subapical transverse blackish band on fore wing (a); epicnemial carina very short, hardly extending onto mesopleuron (b) ………E. maynei Benoit, 1952 in A review of the Afrotropical Rhyssinae (Hymenoptera: Ichneumonidae) with the descriptions of five new species
- Wings yellowish with apex blackish and an additional subapical transverse blackish band on fore wing (a); epicnemial carina very short, hardly extending onto mesopleuron (b) ………E. maynei Benoit, 1952
Figs 4–6 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Figs 4–6. Perissana dlabolai Gnezdilov et Wilson, 2006, male, southern Iran (Kerman Province): 4 = dorsal view; 5 = lateral view; 6 = front view. Scale bar = 1 mm
Figs 16–23 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Figs 16–23. Perissana ardua sp. n., holotype, male genitalia: 16 = pygofer, lateral view; 17 = anal tube, dorsal view; 18 = anal tube, lateral view; 19 = penis (phallobase and aedeagus) and connective, lateral view; 20 = penis, dorsal view; 21 = penis, ventral view; 22 = style, lateral view; 23 = capitulum of style, dorsal view. Abbreviations: aed = aedeagus; aedp = processes of aedeagus; cc = connective cup; dl = dorsal phallobase lobe; lap = lateroapical phallobase lobe; phbp = phallobase processes covering ventral aedeagal hooks; vl = ventral phallobase lobe. Not to scale
Figs 13–15 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Figs 13–15. Perissana ardua sp. n., holotype: 13 = dorsal view; 14 = lateral view; 15 = front view. Scale bar = 1 mm
Figs 24–27 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Figs 24–27. Distribution of Perissana species: 24 = P. bispinata (Dlabola, 1980); 25 = P. dlabolai Gnezdilov et Wilson, 2006; 26 = P. jakowleffi (Puton, 1890); 27 = P. ardua sp. n.
Figs 10–12 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Figs 10–12. Perissana jakowleffi (Puton, 1890): 10 = male, central Iran (Zanjan Province), dorsal view; 11= female, northeastern Iran (W Azarbaijan Province), dorsal view; 12 = same,
Figs 2–3 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Figs 2–3. Perissana bispinata (Dlabola, 1980), female, northern Iraq (after GNEZDILOV & WIL SON 2006): 2 = dorsal view; 3 = front view. Scale bar = 1 mm
Fig. 1 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Fig. 1. Type locality (Iran, Fars Province, Khanekhoreh, 2440 m, 12.VI.2019) of Perissana ardua sp. n.
Figure 3. Eremaeus translamellatus Hammer, 1952. a in Contributions to the Turkish oribatid mite fauna (Acari: Oribatida) from Sakarya and Yozgat provinces
Figure 3. Eremaeus translamellatus Hammer, 1952. a- Dorsal view; b- Prodorsum; c- Sensillus; d- Notogaster; e- seta lm; f- Ventral view; g- Subcapitulum; h- Anal region.
Fig. 5. Microporella cribrosa Osburn, 1952 in Diversity and distribution of intertidal Microporella (Bryozoa: Cheilostomatida) from California
Fig. 5. Microporella cribrosa Osburn, 1952, holotype (SBMNH 668403) (previously AHF 80), Corona del Mar (36°31′59.998169″ N, 121°56′59.989014″ W), Newport Harbor, Orange County, California, USA. A. Group of ovicellate zooids with two oral spines visible and paired avicularia with setiform mandibles. B. Group of zooids, most ovicellate, with umbones hiding the ascopore; one zooid showing five robust oral spines. C. Close-up of frontal shield and ovicells showing the simple (i.e., nonreticulate) pseudopores. D–E. Close-ups of ascopore showing well-developed distal projections and radial denticulations converging towards the centre giving to the lunate aperture a reticulate appearance. F. Tatiform ancestrula, seemingly regenerated as a kenozooid with adventitious avicularium, and early astogeny with zooids showing up to 7 oral spines. Scale bars: A–B, F = 500 µm; C = 200 µm; D = 100 µm; E = 50 µm.
Europäischer Wirtschafts- und Sozialausschuss 1952-2017
<p><strong>Europäischer Wirtschafts- und Sozialausschuss (EWSA)</strong></p> <p>Inhalt:</p> <ul> <li>Vertragliche Verankerung Europäischer Wirtschafts- und Sozialausschuss und Beratender Ausschuss der EGKS 1952 bis 2007</li> <li>Vertragliche Verankerung Ausschuss der Regionen in EUV/AEUV 2007</li> <li>Reale Mitwirkung EWSA an Gesetzgebungsverfahren 2003 bis 2017 (obligatorische Stellungnahmen)</li> <li>Treffen zwischen EWSA und EK/EP/AdR gemäß Kooperationsabkommen</li> <li>Anzahl Sondierungsstellungnahmen EWSA 2002 bis 2016</li> </ul> <p> </p> <p>Siehe auch:</p> <p>Walli, Thomas (2020): <a href="https://portal.dnb.de/opac.htm?method=simpleSearch&cqlMode=true&query=idn%3D120674216X">Die Strategie der Vernetzung. Die interinstitutionellen und externen Beziehungen des Europäischen Wirtschafts- und Sozialausschusses</a>, Baden-Baden: <a href="https://www.nomos-shop.de/titel/die-strategie-der-vernetzung-id-87244/">Nomos Verlag</a>.</p> <p> </p> <p>Die Tabellen entstanden im Rahmen einer Forschungsarbeit zum EWSA im Jahre 2018 am <a href="https://www.icer.at/research/data/ewsa/">Innsbruck Center for European Research</a> der Universität Innsbruck und stehen zum freien Download zur Verfügung (unter Angabe der Autorenschaft). </p> <p> </p> <p><em>Zitiervorschlag:</em></p> <p>Thomas Walli (2020), Die Strategie der Vernetzung. Die interinstitutionellen und externen Beziehungen des Europäischen Wirtschafts- und Sozialausschusses. Appendix: Daten und Tabellen, Innsbruck.</p> <p> </p> <p><em>Diese Publikation wurde mit finanzieller Unterstützung der Europäischen Kommission im Rahmen des Projekts Democracy and Parliamentary Involvement in EU Trade policies, kurz DEPATRA, (Projektnummer 600517-EPP-1-2018-1-AT-EPPJMO-Chair) des Jean-Monnet-Chairs von Prof. Dr. Andreas Maurer (Universität Innsbruck), der Fakultät für Soziale und Politische Wissenschaften der Universität Innsbruck sowie des Vizerektorats für Forschung der Universität Innsbruck gedruckt.</em></p> <p><em>The European Commission's support for the production of this publication does not constitute an endorsement of the contents, which reflect the views only of the authors, and the Commission cannot be held responsible for any use which may be made of the information contained therein.</em></p>
Text-fig. 2. Tectocarya spp. a–n: Tectocarya grandis (E.REID et M.CHANDLER) comb. n. Holotype V.22968. a: Lateral view of broken endocarp, reflected light. b–d: Longitudinal views, surface renderings from micro-CT data. e: Translucent volume renderings. f: Apical view, surface rendering. g: View of transversely broken surface showing curved locule, reflected light. h–n: Successive digital transverse sections. Note septum in the dorsal infold (arrows). o, p: Tectocarya rhenana KIRCHH., Miocene of Germany, dorsal view and transverse section [Holotype of Mastixoidea tectocaryoides KIRCHH., Alfred Mine near Konzendorf, photo by Dieter Mai] (Synonym of T. rhenana MAI, 1993). q: T. rhenana transverse section. from Mine Alfred, Düren, Germany, coll. Claire A. Brown 1952, USNM 355632. r, s: Tectocarya sp. from late Eocene of Post, Oregon, USA, physical transverse section, reflected light. UF279-50014. [Surface views of same specimen shown in Manchester and McIntosh 2007: figs 62, 63]. Scale bars 1 cm in (a–r), 0.5 cm in (s). in Mastixioid Fruits (Cornales) From The Early Eocene London Clay Flora: Morphology, Anatomy And Nomenclatural Revision
Text-fig. 2. Tectocarya spp. a–n: Tectocarya grandis (E.REID et M.CHANDLER) comb. n. Holotype V.22968. a: Lateral view of broken endocarp, reflected light. b–d: Longitudinal views, surface renderings from micro-CT data. e: Translucent volume renderings. f: Apical view, surface rendering. g: View of transversely broken surface showing curved locule, reflected light. h–n: Successive digital transverse sections. Note septum in the dorsal infold (arrows). o, p: Tectocarya rhenana KIRCHH., Miocene of Germany, dorsal view and transverse section [Holotype of Mastixoidea tectocaryoides KIRCHH., Alfred Mine near Konzendorf, photo by Dieter Mai] (Synonym of T. rhenana MAI, 1993). q: T. rhenana transverse section. from Mine Alfred, Düren, Germany, coll. Claire A. Brown 1952, USNM 355632. r, s: Tectocarya sp. from late Eocene of Post, Oregon, USA, physical transverse section, reflected light. UF279-50014. [Surface views of same specimen shown in Manchester and McIntosh 2007: figs 62, 63]. Scale bars 1 cm in (a–r), 0.5 cm in (s).
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International Brain Laboratory public data
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OpenNeuro
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