Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
333
datasets available to search
ShareScore release 0.9.0
Dataset results
333 results for “Slovakia”
Fig. 1 in Range extension and highest elevational populations of Natrix tessellata in Slovakia
Fig. 1. Distribution and range extension of Natrix tessellata in Slovakia. (A) Locations surveyed in the vicinity of Ružomberok and Liptovská Basin. (B) Records of the species in the country. Black line shows cut out area of new locations while (A) is the same area but enlarged. 1 – Ružomberok, 2 – Lisková, 3 – Ružomberok – Rybárpole, 4 – Liptovská Teplá, 5 – Liptovská Mara, 6 – Ružomberok, 7 – Hrboltová, 8 – Hubová, 9 – Stankovany, 10 – Kraľovany, 11 – Vyšné Matejkovo.
Fig. 2 in Range extension and highest elevational populations of Natrix tessellata in Slovakia
Fig. 2. Locations and habitat of Natrix tessellata near Ružomberok. (A) Location in Ružomberok where the first individuals were observed. (B) (C) (D) View on the habitat near Lisková village.
Fig. 7 in Deep-water chondrichthyans from the Early Miocene of the Vienna Basin (Central Paratethys, Slovakia)
Fig. 7. Miocene squaliform sharks Etmopterus and aff. Miroscyllium teeth from Cerová section in Malé Karpaty, Slovakia. A–G. Etmopterus sp. A. SNM Z 27463, bed 17–18, lower tooth in labial (A1) and lingual (A2) views. B. SNM Z 27464, bed 17–18, lower tooth in labial (B1) and lingual (B2) views. C. SNM Z 27465, bed 17–18, lower posterior tooth in labial (C1) and lingual (C2) views. D. SNM Z 27465, bed 21–22, lower tooth in labial (A1) and lingual (A2) views. E. SNM Z 27466, bed 17–18, lower tooth in labial (E1) and lingual (E2) views. F. SNM Z 27467, bed 17–18, lower tooth in labial view. G. SNM Z 27468, bed 8–9, upper tooth in labial (G1) and lingual (G2) views. H–K. aff. Miroscyllium sp. H. SNM Z 27469, bed 17–18, lower symphyseal tooth in labial (H1) and lingual (H2) views. I. SNM Z 27470, bed 17–18, lower tooth in labial (I1) and lingual (I2) views. J. SNM Z 27471, bed 21–22, lower lateral tooth in labial (J1) and lingual (J2) views. K. SNM Z 27472, bed 17–18, lower tooth in labial (K1) and lingual (K2) views.
Fig. 5 in Deep-water chondrichthyans from the Early Miocene of the Vienna Basin (Central Paratethys, Slovakia)
Fig. 5. Miocene squaliform shark Squaliolus cf. schaubi (Casier, 1958) teeth from Cerová section in Malé Karpaty, Slovakia. A. SNM Z 27443, bed 20–21, lower tooth in labial (A1) and lingual (A2) views. B. SNM Z 27444, bed 13, lower tooth in labial (B1) and lingual (B2) views. C. SNM Z 27465a, bed 20–21, lower posterior tooth in labial (C1) and lingual (C2) views. D. SNM Z 27465b, bed 5,?male lower tooth in labial view. E. SNM Z 27447, bed 5, lower symphyseal tooth in labial (E1) and lingual (E2) views. F. SNM Z 27448, bed 8–9, lower tooth in labial (F1) and lingual (F2) views. G. SNM Z 27449, bed 20–21, upper toot in labial (G1) and lingual (G2) views. H. SNM Z 27450, bed 20–21, upper tooth in labial (H1) and lingual (H2) views. I. SNM Z 27451, bed 20–21, upper tooth in labial (I1) and lingual (I2) views. J. SNM Z 27452, bed 17–18, upper tooth in labial view. K. SNM Z 27453, bed 8–9, upper tooth in labial (K1) and lingual (K2) views. L. SNM Z 27454, bed 21–22, upper posterior tooth in labial (L1) and lingual (L2) views.
Fig. 3 in Deep-water chondrichthyans from the Early Miocene of the Vienna Basin (Central Paratethys, Slovakia)
Fig. 3. Microborings in the Miocene shark teeth from Cerová section in Malé Karpaty, Slovakia. A. SNM Z 27430, bed 20–21. Two different sizes of Abeliella riccioides Mägdefrau, 1937 and an unnamed boring in a tooth root (Squaliolus) (A1). Detail of unnamed boring from A1 (A2). B. SNM Z 27431, bed 8–9. Mycelites ossifragus Roux, 1887 at a tooth crown−root junction (Paraetmopterus). Scale bars 0.1 mm.
Fig. 1. A, B in Deep-water chondrichthyans from the Early Miocene of the Vienna Basin (Central Paratethys, Slovakia)
Fig. 1. A, B. Geographic position of the Cerová section at the eastern border of the Vienna Basin. Abbreviations: B, Bükk; NCA, Northern Calcareous Alps; TCR, Transdanubian Central Range. C. Lithology of the section; numbers indicate the position of the foraminiferal samples as mentioned in the text.
Fig. 9 in Deep-water chondrichthyans from the Early Miocene of the Vienna Basin (Central Paratethys, Slovakia)
Fig. 9. Miocene neoselachian and myliobatiform sharks of Nannocetorhinus and Gymnura teeth respectively, from Cerová section in Malé Karpaty, Slovakia. A–H. Nannocetorhinus tuberculatus gen. et sp. nov. A. Holotype, SNM Z 27485, bed 21–22, in labial (A1) and lingual (A2) views. B. SNM Z 27486, bed 8–9, in labial (B1) and lingual (B2) views. C. SNM Z 27487, bed 17–18, in labial (C1) and lingual (C2) views. D. SNM Z 27488, bed 8–9, in labial (D1) and lingual (D2) views. E. SNM Z 27489, bed 13, in labial (E1) and lingual (E2) views. F. SNM Z 27490, bed 17–18, in labial (F1) and lateral (F2) views. G. SNM Z 27491, bed 20–21, in labial (G1) and lingual (G2) views. H. SNM Z 27492, bed 20–21, in labial (H1) and lingual (H2) views, detail (H3). I. Gymnura sp., SNM Z 27484, bed 14, in occlusal (I1) and basal (I2) views.
Fig. 1. Liver showing a in First report of infection with metacestode stages of Echinococcus multilocularis in a kulan (Equus hemionus kulan) from Slovakia
Fig. 1. Liver showing a single nodular encapsulated mass of about 6 cm in diameter. The mainly solid cut surface reveals several small cystic areas (arrows).
Fig. 3 in First report of infection with metacestode stages of Echinococcus multilocularis in a kulan (Equus hemionus kulan) from Slovakia
Fig. 3. Phylogenetic analysis of the herein obtained sequence (Donkey_Slovakia) and exemplary sequences from GenBank (e.g., OK268248.1; OP277525.1) using the Neighbor-Joining method, bootstraps consensus tree inferred from 1000 replicates. A sequence of E. granulosus was used as an outgroup (OR166778.1).
Fig. 2 in First report of infection with metacestode stages of Echinococcus multilocularis in a kulan (Equus hemionus kulan) from Slovakia
Fig. 2. Photomicrograph of the hepatic nodular lesion showing a pyogranulomatous to necrotizing inflammation with intralesional fragments of amorphous band-like eosinophil and strongly PAS-positive (inset) structures, consistent with the laminated layer of the larval stage of Echinococcus multilocularis. Hematoxylin-eosin stain and Periodic acid-Schiff stain (inset), respectively.
Linked collectors and determiners for: EDIT - ATBI in Gemer area (Slovakia).
Natural history specimen data linked to collectors and determiners held within, "EDIT - ATBI in Gemer area (Slovakia)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/95d7ab9a-f762-11e1-a439-00145eb45e9a">https://bionomia.net/dataset/95d7ab9a-f762-11e1-a439-00145eb45e9a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/95d7ab9a-f762-11e1-a439-00145eb45e9a">https://gbif.org/dataset/95d7ab9a-f762-11e1-a439-00145eb45e9a</a>. Formatted as a Frictionless Data package.
Figs. 4–6. Aedeagus. 4 in A new species of Ceutorhynchus (Coleoptera: Curculionidae: Ceutorhynchinae) from the Tatra Mountains in Slovakia
Figs. 4–6. Aedeagus. 4 – Ceutorhynchus tatricus sp. nov., holotype; 5 – C. merkli Korotyaev, 2001 from Slovakia, Štúrovo (coll. JKHC); 6 – C. ignitus Germar, 1824 from Bohemia, Kunětická hora (coll. JKHC).
Perseids 2020 over Dark Sky Park Poloniny, by Tomáš Slovinský, Slovakia
<p>Second place in the 2021 IAU OAE Astrophotography Contest, category Meteor showers.</p> <p>A meteor shower occurs when the debris originated from comets or, on rare occasions, from asteroids enter the Earth’s atmosphere at high speed, leaving behind beautiful tracks in the sky due to friction with the atmosphere. This all-sky image taken in Slovakia in 2020 shows the Perseid meteor shower in a vivid way so one can really see the Perseids appearing all over the sky. This meteor shower is named so because the radiant point (the point on the sky where the meteors misleadingly seem to originate from) of the Perseid meteor shower is located in the constellation Perseus. This is a very prolific meteor shower, and a very popular phenomenon that can be observed from mid-July until mid-August, when the peak of activity happens. This is associated with the comet 109P/Swift–Tuttle, as Earth's orbit around the Sun crosses the debris left behind by this comet. This kind of image is very useful for full dome projections in planetariums, beautifully showing the Milky Way, our home Galaxy.</p> <p>Credit: Tomáš Slovinský/IAU OAE</p>
Real Light Pollution Panorama, by Tomáš Slovinský, Slovakia
<p>Second place in the 2021 IAU OAE Astrophotography Contest, category Light pollution.</p> <p>This composite image taken in Slovakia in 2020 illustrates the effect due to artificial illumination of light polluted areas. The higher the level of light pollution, the less we can observe in the sky, notice how the number of stars visible even to a sensitive digital camera decreases from right to left. Light pollution not only affects the visibility of objects in the night sky, but also significantly impacts ecosystems, negatively affecting many animals, such as migratory night birds, which may encounter difficulties to find the direction to where they should migrate to, or the sea turtles, which may be confused by the lights from coastal cities located near the beaches where they are supposed to spawn. Light pollution can also negatively impact some human health. Therefore, it is important to preserve the dark and quiet night sky for the benefit of the entire planet and all the diverse life it supports.</p> <p>Credit: Tomáš Slovinský/IAU OAE</p>
Text-fig. 1. Location of Ivanovce Pliocene primate site in Slovakia within the wider area of the Carpathians-Pannonian Basin (white circle). The northern wall of the former limestone quarry at Ivanovce near Trenčín in western Slovakia. Several karst fillings provided a rich early Pliocene vertebrate assemblage. a: schematic sketch of the site showing the location of different karst fillings, b: photo of the same site during the palaeontological research in 1960s. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 1. Location of Ivanovce Pliocene primate site in Slovakia within the wider area of the Carpathians-Pannonian Basin (white circle). The northern wall of the former limestone quarry at Ivanovce near Trenčín in western Slovakia. Several karst fillings provided a rich early Pliocene vertebrate assemblage. a: schematic sketch of the site showing the location of different karst fillings, b: photo of the same site during the palaeontological research in 1960s.
Text-fig. 1. a – Discosauriscidae indet., DE K 396, skull in dorsal view. b – reconstruction of skull of DE K 396 in dorsal view. c – reconstruction of skull of Discosauriscus austriacus in dorsal view (on the basis of specimen Z 15529 from the locality Kochov-Horka, Boskovice Basin, deposited in the Slovak National Museum, Bratislava, Slovakia; Klembara 1997). in A New Find Of Discosauriscid Seymouriamorph From The Lower Permian Of Boskovice Basin In Moravia (The Czech Republic)
Text-fig. 1. a – Discosauriscidae indet., DE K 396, skull in dorsal view. b – reconstruction of skull of DE K 396 in dorsal view. c – reconstruction of skull of Discosauriscus austriacus in dorsal view (on the basis of specimen Z 15529 from the locality Kochov-Horka, Boskovice Basin, deposited in the Slovak National Museum, Bratislava, Slovakia; Klembara 1997).
Text-fig. 1. Geographical position and stratigraphic context of the Pleistocene sites from the Czech Republic and Slovakia containing Apodemus material analyzed in this paper. in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 1. Geographical position and stratigraphic context of the Pleistocene sites from the Czech Republic and Slovakia containing Apodemus material analyzed in this paper.
Text-fig. 1. Location of Gánovce-Hrádok Neanderthal site in northern Slovakia and the rest of the travertine mound (map source: https://commons.wikimedia.org and Google Earth; 2017). in Revised Floral And Faunal Assemblages From Late Pleistocene Deposits Of The Gánovce-Hrádok Neanderthal Site -Biostratigraphic And Palaeoecological Implications
Text-fig. 1. Location of Gánovce-Hrádok Neanderthal site in northern Slovakia and the rest of the travertine mound (map source: https://commons.wikimedia.org and Google Earth; 2017).
Fig. 5 in Distribution and ecology of Ruspolia nitidula (SCOPOLI 1786) and Aiolopus thalassinus (FABRICIUS 1781) (Orthoptera) in Slovakia
Fig. 5. Distribution of Aiolopus thalassinus at different altitudes and in different habitats in Slovakia.
Fig. 3 in Distribution and ecology of Ruspolia nitidula (SCOPOLI 1786) and Aiolopus thalassinus (FABRICIUS 1781) (Orthoptera) in Slovakia
Fig. 3: Seasonal changes in occurrence of Ruspolia nitidula in Slovakia (locality Kirť, 2001, black = adult females, white = adult males, dark grey = females nymphs, light grey = males nymphs).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.