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.
558
datasets available to search
ShareScore release 0.9.0
Dataset results
558 results for “Austria”
Fig. 4 in A taxonomic and morphological re-evaluation of "Halitherium" cristolii Fitzinger, 1842 (Mammalia, Sirenia) from the late Oligocene of Austria, with the description of a new genus
Fig. 4. Cranium of Lentiarenium cristolii (Fitzinger, 1842) (OLL 1926/394). A. In caudal view. B. In right lateral view. Shaded area indicates either missing or reconstructed part. Scale bars = 2 cm.
Fig. 3 in A taxonomic and morphological re-evaluation of "Halitherium" cristolii Fitzinger, 1842 (Mammalia, Sirenia) from the late Oligocene of Austria, with the description of a new genus
Fig. 3. Cranium of Lentiarenium cristolii (Fitzinger, 1842) (OLL 1926/394) in ventral view. A. Photograph. B. Drawing. White areas indicate either missing or reconstructed parts. Scale bar = 2 cm.
Analysis of public transport in Vienna with Co2 emissions in Austria's households
<p>This repository serves as a backup and longterm storage for the datasets and plots resulting from the analysis on means of transport in Vienna in the time period 2010 - 2021 together with the Co2 emissions of Austria's households.</p>
Fig. 1 A in The first autochthonous case of feline ocular thelaziosis in Austria
Fig. 1 A map showing the distribution of known cases of Thelazia callipaeda infections in Europe. Black star indicates the location where the infected cat in Austria was found
LTER Site Oberes Stubachtal (Austria) - Boundary (polygon, shp)
<p>LTER Site Oberes Stubachtal - Boundary (polygon, shp)</p>
Fig. 11 in Pliensbachian, Early Jurassic radiolarians from Mount Rettenstein in the Northern Calcareous Alps, Austria
Fig. 11. Combined radiolarian and ammonite dating of Lower Jurassic deposits on Mount Rettenstein. The upper age limit of the grey marly limestone is constrained with ammonites, determined in the overlying red nodular limestone, numerical age after Gradstein et al. (2012). Revised radiolarian dating of samples from the Dürrnberg Formation is shown for comparison.
Fig. 6 in Pliensbachian, Early Jurassic radiolarians from Mount Rettenstein in the Northern Calcareous Alps, Austria
Fig. 6. Radiolarians from Mount Rettenstein, Austria, Pliensbachian, Early Jurassic. A. Empirea sp. 1, sample Rö416. B. Acaeniotylopsis ghostensis (Carter in Carter et al., 1988); sample Rö416. C, D. Liassobetraccium bavaricum (Kozur and Mostler, 1990); sample Rö37. E, F. Liassobetraccium verticispinosum (Kozur and Mostler, 1990); sample Rö37. G–J. Tozerium filzmoosense Cifer sp. nov. G. Holotype, sample Rö416: 170717. H. Paratype, sample Rö416: 170503. I. Paratype, sample Rö416: 170739. J. Paratype, sample Rö37: 171105. K–O. Loupanus pliensbachicus Cifer sp. nov. K. Holotype, sample Rö416: 170562. L. Paratype, sample Rö416: 170559. M. Paratype, sample Rö416: 170757. N. Paratype, sample Rö416: 170704. O. Paratype, sample Rö416: 170560. P, Q. Loupanus sp. 1; sample Rö417. R, S. Thurstonia? timberensis Whalen and Carter in Carter et al., 1998; sample Rö416. T. Thurstonia? minutaglobus Whalen and Carter in Carter et al., 1998; sample Rö416. U–W. Thurstonia? robusta Cifer sp. nov. U. Holotype, sample Rö417: Rö417_093.V. Paratype, sample Rö417: Rö417_090. W. Paratype, sample Rö417: Rö417_098.
Fig. 5 in Pliensbachian, Early Jurassic radiolarians from Mount Rettenstein in the Northern Calcareous Alps, Austria
Fig. 5. Microfacies of grey marly limestone with high abundance of radiolarians and sponge spicules in micritic matrix. Bioturbation is indicated by brighter and darker areas. A. Sample Rö416. B. Sample Rö417.
Fig. 3. A in Pliensbachian, Early Jurassic radiolarians from Mount Rettenstein in the Northern Calcareous Alps, Austria
Fig. 3. A. View of the complete Mount Rettenstein complex from the southwest. B. Position of the studied section in the Weitenhaus cirque, the oval indicates the location where the studied samples were collected. C. Schematic sketch of the structural build of Mount Rettenstein with the three main tectonic units (from Auer et al. 2006). Structural Unit I: The primary part of the Tirolic mega-unit which, in contrast to the higher structural units, stayed ( more or less) in place relative to the basis of the Upper Tirolic thrust sheet. In the Mount Rettenstein region, Permian to early Middle Triassic strata make up the succession above the Greywacke Zone basement (Ganss et al. 1954). Structural Unit II: This intermediate, rather thin sheet is mainly made up of a laterally variable mega-slide succession of the Middle Jurassic Hallstatt Mélange. It is thought to have achieved its present position in the hangingwall of a normal fault (Auer et al. 2006). Structural Unit III: The topmost Mount Rettenstein unit corresponds to the Lower to Upper Jurassic Mount Rettenstein succession sensu stricto in the sense of Auer et al. (2009). It is suggested to have been emplaced along a thrust fault (Auer et al. 2006).
Fig. 2 in Pliensbachian, Early Jurassic radiolarians from Mount Rettenstein in the Northern Calcareous Alps, Austria
Fig. 2. Stratigraphic table with lithostratigraphic names and main tectonic events of the Jurassic of the Northern Calcareous Alps with their variations depending on the palaeogeographic position (after Gawlick et al. 2009). The different facies belts and therefore also the formations belong to depositional realms, which roughly correspond to the later formed tectonic units. The outer shelf region can only be reconstructed from blocks in Middle to Upper Jurassic mélanges and is, therefore, not completely understood in all details. The grey limestone succession from Mount Rettenstein shows characteristics of both the Scheibelberg and the Dürrnberg formations (in bold). Estimated palaeogeographic positions of the studied section are indicated. Abbreviations: Cret., Cretaceous; Fm., Formation; Lst., Limestone.
Fig. 1. A in Pliensbachian, Early Jurassic radiolarians from Mount Rettenstein in the Northern Calcareous Alps, Austria
Fig. 1. A. Structural overview maps of the Alpine orogen, showing the situation of the central Northern Calcareous Alps. B. The middle sector of the central Northern Calcareous Alps with locations mentioned in the text indicated (modified from Frisch and Gawlick 2003). Abbreviations: Re, Mount Rettenstein; BD, Bad Dürrnberg; Te, Teltschengraben.
Fig. 1 in First records of Aedes pulcritarsis (Rondani, 1872) (Diptera: Culicidae) in Austria
Fig. 1 Locations sampled in the framework of the mosquito monitoring programmes. While the sites were sampled irregularly (depending on flood situation) in monitoring A, regular checks were carried out at weekly intervals in monitoring B. Map tiles by Stamen Design, under CC BY 3.0. Data by OpenStreetMap, under ODbL. Data source borders: NUTS units, Statistik Austria—data.statistik.gv.at
Fig. 2 in Occurrence of pathogens in populations of Ips typographus, Ips sexdentatus (Coleoptera, Curculionidae, Scolytinae) and Hylobius spp. (Coleoptera, Curculionidae, Curculioninae) from Austria, Poland and France
Fig. 2. Pathogens in I. typographus from different bio-geographic regions in Europe: n Northern continental – Baltic, o North-eastern Alps (transitional Atlantic – continental), p South-eastern Alps (transitional Alpine – Illyric), Q Western Alps and R Atlantic.
FIGURE 2 in An intriguing new species of dabbling duck (Aves: Anseriformes) from the middle Miocene of Austria
FIGURE 2. Lavanttalornis hassleri gen. et sp. nov., holotype, specimen LMK-Pal 7453c+d from Lavanttal, Austria, middle Miocene. A, slab C; B, slab D (counterslab of slab C). Abbreviations: lcm, left carpometacarpus; lfe, left femur; ltb, left tibiotarsus; pel, pelvis; rfe, right femur; rtb, right tibiotarsus; sku, skull; ver, vertebrae. Scale bar equals 10 mm.
FIGURE 5 in An intriguing new species of dabbling duck (Aves: Anseriformes) from the middle Miocene of Austria
FIGURE 5 (to right). Comparison of the right phalanx proximalis digiti majoris in dorsal view. A, Lavanttalornis hassleri gen. et sp. nov., holotype, specimen LMK-Pal 7453b from Lavanttal, Austria, middle Miocene (preserved on slab B); B, Dendrocygna bicolor (Dendrocygninae); C, Oxyura jamacensis (Oxyurinae); D, Melanitta nigra (Anatinae: Mergini); E, Tadorna ferruginea (Anatinae: Tadornini); F, Aythya ferrina (Anatinae: Aythyni); G, Anas platyrhynchos (Anatinae: Anatini); H, Spatula clypeata (Anatinae: Anatini); I, Aix galericulata (incerte sedis). The phalanges of extant species are shown in the same size as the fossil phalanx to facilitate comparison. Abbreviations: pcr, pila cranialis. Scale bars equal 10 mm.
FIGURE 1 in An intriguing new species of dabbling duck (Aves: Anseriformes) from the middle Miocene of Austria
FIGURE 1. Lavanttalornis hassleri gen. et sp. nov., holotype, specimen LMK-Pal 7453a+b from Lavanttal, Austria, middle Miocene. A, slab A after exposing all the bones and removing the coracoid; B, slab B (counterslab of the wing bones visible on slab A); C, fragment of slab A before removal of the coracoid. Abbreviations: lcs, left scapula; lhu, left humerus; rcm, right carpometacarpus; rco, right coracoid; rcs, right scapula; rhu, right humerus; rmin, right phalanx digiti minoris; rpda, right phalanx digiti alulae; rpdm, right phalanx proximalis digiti majoris; rra, right radius; rul, right ulna. Scale bar equals 10 mm.
FIGURE 6. A in An intriguing new species of dabbling duck (Aves: Anseriformes) from the middle Miocene of Austria
FIGURE 6. A, skull and pelvis of Lavanttalornis hassleri gen. et sp. nov., holotype, specimen LMK-Pal 7453c from Lavanttal, Austria, middle Miocene (preserved on slab C); B, pelvis of Anas platyrhynchos (Anatinae: Anatini); C, pelvis of Aythya fuligula (Anatinae: Aythyni). Abbreviations: ant, antitrochanter; fin, foramina intertransversaria; isc, ala ischii; nos, nostril; poi, ala postacetabularis ilii; pri, ala preacetabularis ilii; ram, ramus mandibulae (inside surface of right branch). Scale bars equal 10 mm.
FIGURE 3 in An intriguing new species of dabbling duck (Aves: Anseriformes) from the middle Miocene of Austria
FIGURE 3. Comparison of the right coracoid. A–E, Lavanttalornis hassleri gen. et sp. nov., holotype, specimen LMKPal 7453a' from Lavanttal, Austria, middle Miocene (removed from slab A) in ventral, dorsal, lateral, medial and dorsomedial views; F–G, Dendrocygna bicolor (Dendrocygninae); H–I, Oxyura jamacensis (Oxyurinae); J–K, Melanitta nigra (Anatinae: Mergini); L–M, Aix galericulata (incerte sedis); N–O, Aythya fuligula (Anatinae: Aythyni); P–R, Anas platyrhynchos (Anatinae: Anatini); S–T, Tadorna tadorna (Anatinae: Tadornini). Extant specimens are shown in ventral (left) and dorsal (right) views. Abbreviations: agm, angulus medialis; csc, cotyla scapularis; car, crista acrocoracoidea; fah, facies articularis humeralis; fas, facies articularis sternalis; pac, processus acrocoracoideus; ppc, processus procoracoideus; sac, sulcus m. acrocoracoidei; tbr, tuberculum brachiale. Scale bars equal 10 mm.
FIGURE 4 in An intriguing new species of dabbling duck (Aves: Anseriformes) from the middle Miocene of Austria
FIGURE 4. Lavanttalornis hassleri gen. et sp. nov., holotype, specimen LMK-Pal 7453a+b+d from Lavanttal, Austria, middle Miocene. A, proximal left humerus in cranial view and proximal left scapula in medial view (preserved on slab A); B, proximal right humerus in dorsocaudal view (preserved on slab B); C, distal left humerus in cranial view (preserved on slab A); D, right carpometacarpus in dorsal view (preserved on slab B); E, distal right tibiotarsus in anterolateral view (preserved on slab D); F, right proximal radius in anterior view (preserved on slab B); G, right distal radius in posterior view (preserved on slab A). Abbreviations: acr, acromion; cdd, condylus dorsalis; cdv, condylus ventralis; cla, condylus lateralis; cme, condylus medialis; ctu, capital tuberosity; fbr, fossa m. brachialis; fts - facet of the tuberculum supracondylare ventrale (attachment of the anterior articular ligament); ica, incisura capitis; ini, incisura intercondylaris; oma, os metacarpale majus; pal, processus alularis; pex, processus extensorius; pfl, processus flexorius; psu, pons supratendineus; se, sharp edge; syd, symphysis metacarpalis distalis; tav, tuberculum aponeurosis ventralis; tdo, tuberculum dorsale; tve, tuberculum ventrale. Scale bar equals 10 mm.
Figure 5. Anthrenus pimpinellae. A in Anthrenus (Anthrenus) querneri (Coleoptera: Dermestidae: Megatominae), a new species from Austria
Figure 5. Anthrenus pimpinellae. A) Aedeagus dorsal aspect. B) Sternite IX. Scale bar = 100 µm in both cases.
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.