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561 results for “Carpathians”
Fig. 4 in Diagnostic Criteria For Identification Of Microtus S. L. Species (Rodentia, Arvicolidae) Of The Ukrainian Carpathians
Fig. 4. Diagnostic characters of the region of frontal bones of Microtus s. str. species, photo (a) and scheme (b).
Fig. 1 in New Data On The Genus Dolichomitus Hymenoptera, Ichneumonidae, Pimplinae) In The Ukrainian Carpathians
Fig. 1. Dolichomitus sirenkoi, Ơ: 1 — propodeum (dorsal view); 2 — fore trochanter and trochantellus (ventral view); 3 — valve (lateral view); 4 — head and mesosoma (lateral view); 5 — first and second tergite of metasoma (dorsal view).
Fig. 1 in A Case Study Of The Herb-Dwelling Spider Assemblages (Aranei) In A Meadow Under The Power Transmission Lines In Ukrainian Carpathians
Fig. 1. Number of individuals collected at the different distances from high voltage power line near Irliava village, August 2012 (SD — standard deviation).
Fig. 2 in A Case Study Of The Herb-Dwelling Spider Assemblages (Aranei) In A Meadow Under The Power Transmission Lines In Ukrainian Carpathians
Fig. 2. Total eudominants and dominants, recedents and subrecedents relative abundance, Shannon and Pielou indexes values at the different distances from high voltage power line near Irliava village (according to the two year samples).
Bias-corrected CORDEX daily precipitation dataset for the Carpathian Region
<p>This dataset contains bias-corrected regional climate model (RCM) daily outputs for daily precipitation under the RCP8.5 scenario.</p> <p><br> The reference dataset is CARPATCLIM (Szalai et al., 2013) which covers the the Carpathian Region for the period 1961-2010.</p> <p>The dataset contains bias corrected daily outputs of the following high-resolution (0.11o) RCMs from the framework of EURO-CORDEX (Jacob et al., 2014) and Med-CORDEX (Ruti et al., 2016):<br> - ALADIN<br> - CCLM<br> - HIRHAM<br> - RACMO<br> - RCA4<br> - RegCM<br> - REMO<br> - WRF</p> <p> </p> <p>The dataset covers the following periods with grid spacing of 0.11o on a regular lon/lat grid (between latitudes 44°N and 50°N, and longitudes 17°E and 27°E):</p> <p>- 1976-2005</p> <p>- 2021-2050</p> <p>- 2070-2099</p> <p> </p> <p>File format: NetCDF</p> <p>All data have been created following the work of Mezghani et al. (2017).</p> <p>Using the dataset please cite the following reference paper (also further details are given there): <a href="https://doi.org/10.28974/idojaras.2020.1.2">https://doi.org/10.28974/idojaras.2020.1.2</a>.</p> <p> </p> <p>References:<br> Jacob, D., Petersen, J., Eggert, B., Alias, A., Christensen, O.B., Bouwer, L.M., Braun, A., Colette, A., Déqué, M., Georgievski, G., Georgopoulou, E., Gobiet, A., Menut, L., Nikulin, G., Haensler, A., Hempelmann, N., Jones, C., Keuler, K., Kovats, S., Kröner, N., Kotlarski, S., Kriegsmann, A., Martin, E., van Meijgaard, E., Moseley, C., Pfeifer, S., Preuschmann, S., Radermacher, C., Radtke, K., Rechid, D., Rounsevel, M., Samuelsson, P., Somot, S., Soussana, J.-F., Teichmann, C., Valentini, R., Vautard, R., Weber, B. and Yiou, P. (2014) EURO-CORDEX New high resolution climate change projections for European impact research. Reg. Environ. Change, 14, 563–578. https://doi.org/10.1007/s10113-013-0499-2</p> <p><br> Mezghani, A., Dobler, A., Haugen, J.E., Benestad, R.E., Parding, K.M., Piniewski, M., Kardel, I. and Kundzewicz, Z.W. (2017) CHASE-PL Climate Projection dataset over Poland – bias adjustment of EURO-CORDEX simulations. Earth Syst. Sci. Data, 9, 905–925. https://doi.org/10.5194/essd-9-905-2017</p> <p><br> Ruti, P.M., Somot, S., Giorgi, F., Dubois, C., Flaounas, E., Obermann, A., Dell'Aquila, A., Pisacane, G., Harzallah, A., Lombardi, E., Ahrens, B., Akhtar, N., Alias, A., Arsouze, T., Aznar, R., Bastin, S., Bartholy, J., Béranger, K., Beuvier, J., Bouffies-Cloché, S., Brauch, J., Cabos, W., Calmanti, S., Calvet, J.-C., Carillo, A., Conte, D., Coppola, E., Djurdjevic, V., Drobinski, P., Elizalde-Arellano, A., Gaertner, M., Galán, P., Gallardo, C., Gualdi, S., Goncalves, M., Jorba, O., Jordi, G., L'Heveder, B., Lebeaupin-Brossier, C., Li, L., Liguori, G., Lionello, P., Maciás, D., Nabat, P., Onol, B., Raikovic, B., Ramage, K., Sevault, F., Sannino, G., Struglia, M.V., Sanna, A., Torma, C. and Vervatis, V. (2016) MED-CORDEX initiative for Mediterranean climate studies. Bulletin of the American Meteorological Society, 97, 1187–1208. https://doi.org/10.1175/BAMS-D-14-00176.1</p> <p><br> Szalai, S., Auer, I., Hiebl, J., Milkovich, J., Radim, T., Stepanek, P., Zahradnicek, P., Bihari, Z., Lakatos, M., Szentimrey, T., Limanowka, D., Kilar, P., Cheval, S., Deak, Gy., Mihic, D., Antolovic, I., Mihajlovic, V., Nejedlik, P., Stastny, P., Mikulova, K., Nabyvanets, I., Skyryk, O., Krakovskaya, S.,Vogt, J., Antofie, T. and Spinoni, J. (2013) Climate of the Greater Carpathian Region. Final Technical Report. http://www.carpatclim-eu.org<br> </p>
Fig. 1 in The Genus Atheta (Coleoptera, Staphylinidae, Aleocharinae) In The Ukrainian Carpathians
Fig. 1. Habitus: a — Atheta coriaria (Kraatz, 1856); b — A. divisa (Märkel, 1844); c — A. graminicola (Gravenhorst, 1806); d — A. oblita (Erichson, 1839); e — A. ravilla (Erichson, 1839); f — A. macrocera (Thomson, 1856); g — A. occulta (Erichson, 1837); h — A. longicornis (Gravenhorst, 1802); i — A. melanaria (Mannerheim, 1830); j — A. zosterae (Thomson, 1856); k — A. atramentaria (Gyllenhal, 1810); l — A. marcida (Erichson, 1837); m — A. subtilis (Scriba, 1866); n — A. amicula (Stephens, 1832); o — A. laticollis Stephens, 1832; p — A. liturata (Stephens, 1832); q — A. nigritula (Gravenhorst, 1802).
Fig. 7 A–D in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 7 A–D, Mojsisovicsteuthis boeckhi (StÜrzenbaum, 1875), Bakony (Hungary), Anisian, Reitzi Zone. A Specimen No. T.3206 with preserved final chamber in lateral view. B Specimen No. T.81 with preserved final chamber in lateral view. The constriction of the last septum prior the final chamber is well seen in both specimens. C–D Specimen No. T.255. C lateral view; D detail of the septum attachment to the phragmocone wall. E–L Breviconoteuthis aff. breviconus, upper Anisian, lower Illyrian, Podhradie, Slovakia. E Ventral view; F, G lateral views demonstrating backwards inclined septa; H dorsal view; I, J cross section at the apical part; J position of the siphuncle; K, L micro-CT imaginations; K longitudinal section in lateral view; L longitudinal section in dorso-ventral view. Specimen No. KGP-PO-001. M Breviconoteuthis breviconus (Reis, 1907), original of Rieber (1974: Fig. 3), upper Anisian, Besano Formation, Monte San Giorgio, Switzerland. N, O. Zugmontites mojsisovicsi Reis, 1907, holotype, No. 1901-II-508, upper Anisian, Wettersteinkalk, Austria. N Lateral view; O dorso-ventral view. Scale bar equals 1 cm
Fig. 2 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 2 Associated ammonoid fauna recorded at the locality Podhradie. A Paraceratites trinodosus (Mojsisovics, 1882), Bed 3, lower part. B Paraceratites trinodosus (Mojsisovics, 1882), Bed 3, lower part. C Paraceratites trinodosus (Mojsisovics, 1882), Bed 3. D Paraceratites trinodosus (Mojsisovics, 1882), Bed 3, lower part. E Ptychites cf. oppeli Mojsisovics, 1882, Bed 3. F, G Lardaroceras? sp., Bed 3, lower part. H, I Kellnerites cf. bispinosus (Hauer, 1896), Bed 3, upper part
Fig. 6 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 6 Mojsisovicsteuthis boeckhi (StÜrzenbaum, 1875)—the size reconstruction based on the phragmocone angle and size extrapolation. The largest specimen does not possess a "body chamber", therefore, the approximated size may exceed 35 cm
Fig. 3 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 3 Associated ammonoid fauna recorded at the locality Harmanecká Cave—Kozelník. A–C Lardaroceras sp. aff. krystyni Balini, 1992a
Fig. 10 A in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 10 A Reconstruction of cephalopod habitat within Western Carpathian Ráztoka Limestone, Illyrian Trinodosus—Reitzi Zones. Reconstruction: Petr Modlitba, with courtesy of author. B 1. Nautiloids. 2. Diverse ammonoids. 3. Aulacoceratids. 4. Mojsisovicsteuthis. 5. Breviconoteuthis. The benthic fauna is composed by abundant crinoids, echinoids, bivalves and brachiopods. Algae meadows are supposed based on geochemical data. C Fragment of partly tectonically deformed phragmocone of undetermined aulacoceratid; scale bar equals 1 cm
Fig. 1 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 1 Geographical position of the areas of interest (A, B) and close-up views of the satellite photo with precise localization of the studied outcrops in the village Podhradie (C), and near Dolný Harmanec (D). E Outcrop in the roadcut in the village Podhradie. The fossiliferous Bed 3 is outlined. Orange circles with acronyms TO represent the sampling points for the organic geochemistry
Fig. 9 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 9 Plot of Pr/n-C17 versus Ph/n-C18 cross plot showing the source and depositional environments of the natural samples (from Beds 3, 6 and 7, locality Podhradie)
Fig. 11 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 11 Detailed reconstruction of the sea-bottom rich in algae, sponges and crinoid meadows, showing also the common presence of conodonts and a representative of coleoid cephalopod. Petr Modlitba, with courtesy of author
Fig. 8 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 8 Palaeobiogeographic distribution of genera Mojsisovicsteuthis and Breviconoteuthis (Anisian–Carnian). While Mojsisovicsteuthis (larger straight phragmocone) shows large geographic distribution, the genus Breviconoteuthis (smaller phragmocone) is known only from few sites in the Alpine-Carpathian system
Fig. 4 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 4 Associated conodont fauna recorded at the locality Podhradie. All specimens come from the Bed 3. A Paragondolella trammeri (Kozur, 1972). B Paragondolella cf. alpina (Kozur & Mostler, 1982). C Paragondolella slugovensis (Ramovš, 1996). D Paragondolella ex gr. praeszaboi (Kovács et al., 1996). E, F Neogondolella constricta (Mosher & Clark, 1965). G Paragondolella praeszaboi (Kovácset al., 1996). H Paragondolella cf. praeszaboi (Kovács et al., 1996). I–K Paragondolella bifurcata Budurov & Stefanov, 1972. Scale bar 200 μm (A) and 200 μm (B–K)
Fig. 5 in Rare Middle Triassic coleoids from the Alpine-Carpathian system: new records from Slovakia and their significance
Fig. 5 Mojsisovicsteuthis boeckhi (StÜrzenbaum, 1875). A–D Specimen No. KGP-KO-001, upper Anisian, lower Illyrian, Harmanecká Cave—Kozelník, Slovakia. A Dorso-ventral view; B lateral view; C cross-section; D position of the siphuncle (s). E–H Specimen No. T.3593. E Dorso-ventral view; F lateral view; G, H Cross-section with position of the siphuncle (H. enlarged); I Cross-section of the apical part. J–P. Holotype No. T.829. Bakony (Hungary), Anisian, Reitzi Zone. J Original figure of StÜrzenbaum (1875), lateral view; K lateral view; L dorso-ventral view; M cross-section; N original figure of StÜrzenbaum (1875) with missinterpreted position of the siphuncle; O, P longitudinal section of the phragmocone with septa arrangement (partly seen). Q The largest specimen No. T.3137 in the lateral view. Scale bar equals 1 cm
Fig. 4 in Parmalean and other siliceous nannofossils from the Oligocene of Polish Flysch Carpathians
Fig. 4. Parmales from Oligocene diatomites of Poland: Parmoligocena janusii gen. et sp. nov. (DMF SEM stub 333-10 from Rupelian; Łubno, Poland). SEM images of a cell tilted and rotated into positions focusing on different A1–A4 external and internal sides of the wall. White crosses mark the same feature in each image as an aid to determining relative tilt and rotation between images. Inner surface of the partially dislodged vp can be seen in the far background in A1 and in external profile in A4. Abbreviations: s1–3, arbitrarily numbered dorsal shield plates/openings; vp, ventral plate. Scale bars 1 µm.
Fig. 8 in Parmalean and other siliceous nannofossils from the Oligocene of Polish Flysch Carpathians
Fig. 8. Palaeomorphotaxa related or similar to parmaleans from Rupelian (lower Oligocene) diatomites of Łubno (A–C) and Futoma (D) Poland.A. Pentalaminamorpha radiata gen. et sp. nov. (DMF SEM stub 333-18), external surface of dorsal shield plate (arrow) and fragmented girdle plate (arrowheads). B. Pentalaminamorpha radiata gen. et sp. nov. (DMF SEM stub 333-10), internal view of the top of the central part of dorsal shield plate. C. Unnamed palaeomorphotaxon (DMF SEM stub 333-10), fragment of a cell wall containing a parmalean-like circular plate with heart-shaped depressions. D. Unnamed palaeomorphotaxon (DMF SEM stub 342-8), fragment of cell wall containing a plate with circular depressions. Scale bars 1 µm.
Fig. 3 in Parmalean and other siliceous nannofossils from the Oligocene of Polish Flysch Carpathians
Fig. 3. Parmales from Oligocene diatomites of Poland: Parmoligocena janusii gen. et sp. nov. (DMF SEM stub 342-13) from Rupelian; Łubno, Poland. A. SEM images of one cell tilted and rotated into positions focusing on different external and internal sides of the wall. White crosses mark the same feature in each image as an aid to determining relative tilt and rotation between images; A1, dorsal cup with partially eroded areas between the rims of dorsal shield plates yet no indication of seams at junctions between the sections corresponding to dorsal plate and ventral girdle plates as would be expected in Triparma and Tetraparma; A2, another area of erosion between s1 and s3 openings with no breakage where a seam would be expected. B. A cup with greater degree of damage yet no detectable disarticulation along expected seam locations. C. A better-preserved cup with no sign of seams. Abbreviations: s1–3, arbitrarily numbered dorsal shield plates/openings; ucb, upended dorsal cup bottom; vo, ventral opening. Scale bars 1 µm.
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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)
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
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.