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.
136
datasets available to search
ShareScore release 0.9.0
Dataset results
136 results for “European fauna”
Fig. 9 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 9. Spicule morphotypes from south-central Ukraine (A–V, X–Z) and Lithuania (W); Markovka, middle Eocene (A, D, E), Verhnee, lower Eocene (B, Z), Glâdov Âr, Upper Creatceous (C, J, K, P, Q, T, U, V, Y), Pesčanoe, upper Eocene (F, O), Kiselevka, middle Eocene (G, L, R), Markovka, upper Eocene (H, X), Nikol'skoe, upper Eocene (I, S), Lipcy, middle Eocene (M), Monastyrek, lower Eocene (N), and Neravai borehole, Paleocene (W). A, C, E, H, L, O, P, R. Phyllotriaenes. B. Sphaeroclone. D, F, G. Discotriaenes. I. Anchorate spicule. J, K, N, Q, S–W, Y. Megaclones. M. Siliceous plate. X, Z. Tetracrepid desmas. After Ivanik (2003); modified.
Fig. 10 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 10. Spicule morphotypes from south-central Ukraine; Kiselevka, middle Eocene (A, F, H, I, L), Staroverovka, middle Eocene (B), Nikol'skoe, upper Eocene (C, D, E, J, M), Russkie Tiŝki, upper Eocene (G), and Russkie Tiŝki, middle Eocene (K). A, B. Pentactines. C–F, H, I. Pinnular hexactines. G. Smooth hexactine. J. Tautactine. K, L, Hexactines. M. Stauractine. After Ivanik (2003); modified.
Fig. 6 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 6. Spicule morphotypes from south-central Ukraine; Russkie Tiŝki, Middle Eocene (A, H, O, Y, Z), Kiselevka, upper Eocene (B, C), Markovka, middle Eocene (D), Russkie Tiŝki, upper Eocene (E), Kiselevka, upper Eocene (F, G, M), Pogonovka borehole, upper Eocene (I), Markovka, upper Eocene (J, K, N), Nikol'skoe, upper Eocene (L, P), Grigorevka borehole, upper Eocene (Q, R, S, T), Melovoe, upper Eocene (U, V), and Kiselevka, middle Eocene (W, X). A. Spherostyle. B–D. Tylostyles. E, F, I–K, M. Acanthostyles. G, H. Exotyles. L. Clavidisc. N, O. Acanthoxeas. P–R. Acanthostrongyles. S, T. Sigmas. U, V. Anisochelae. W. Isochela. X. Spheraster. Y, Z. Tylotes. After Ivanik (2003); modified.
Fig. 8 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 8. Spicule morphotypes from south-central Ukraine; Verhnee, lower Eocene (A, K, L, P), Russkie Tiŝki, middle Eocene (B, D, N, Q), Nikol'skoe, upper Eocene (C, E, G, J), Markovka, upper Eocene (F, O), Lipcy, middle Eocene (H), Melovoe, upper Eocene (I), and Kantemirovka, upper Eocene (M). A.?Fragment of dictional skeleton. B. Pentactine. C. Hexactine. D, E.?Oxeas. F, G, O. Amphiclads. H. Broken lophodiactine. I, J. Lophocalthrops. K.?Lophocalthrop. L. Spicule fragment. M.?Spicule fragment. N. Dichotriaene. P. Calthrop. Q. Fragment of a diatom. After Ivanik (2003); modified.
Fig. 5 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 5. Spicule morphotypes from south-central Ukraine; Kiselevka, upper Eocene (A, E, N, V, X), Russkie Tiŝki, middle Eocene (B, C, F, G, I, J, M, AA), Markovka, middle Eocene (D, H, Q, R, W), Melovoe, upper Eocene (K), Nikol'skoe, upper Eocene (L, P, AF), Staroverovka, middle Eocene (O, Y, AI), Markovka, upper Eocene (S, U, AD, AE, AG), Pesčanoe, upper Eocene (T), Harkov region, middle Eocene (Z), Kantemirovka, upper Eocene (AB), Russkie Tiŝki, upper Eocene (AC), and Kiselevka, middle Eocene (AH). A–D, V–X. Strongyles. E. Exotyle. F–K. Acanthostrongyles. L–N. Acanthostyles. O, P. Ophirhabds. Q–T. Flexuous oxeas. U. Acanthostrongyle. Y. Oxyspheraster. Z. Oxyaster. AA–AD. Microstrongyles. AE, AG. Oxyasters. AF. Oxyaster. AH, AI. Spherasters. After Ivanik (2003); modified.
Fig. 3 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 3. Spicule morphotypes from south-central Ukraine; Černoleska, upper Eocene (A), Pesčanoe, upper Eocene (B), Russkie Tiŝki, middle Eocene (C, I, Q), Verhnee, lower Eocene (D, F, H, J, K, O, P), Nikol'skoe, upper Eocene (E, L), Staroverovka, middle Eocene (G), Markovka, upper Eocene (M), Kiselevka, lower Eocene (N), Grigorevka, middle Eocene (R), Kiselevka, middle Eocene (S), Markovka, middle Eocene (T), and Pesčanoe, upper Eocene (U). A, C. Anatriaenes. B. Orthodichotriaene. D, I–K, O, P. Mesotriaenes. E. Prodichotriaene. F, T. Calthrops. G, H. Dichotriaenes. L. Tylostyle. M, N. Mesodichotriaenes. Q, R. Triods. S.?Plesiaster. U. Oxyaster. After Ivanik (2003); modified.
Fig. 1 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 1. Spicule morphotypes from south-central Ukraine; Grigorevka borehole, upper Eocene (B), Glâdov Âr, Upper Cretaceous (A, G, J), Pogonovka borehole, upper Eocene (C), Russkie Tiŝki, middle Eocene (D, F, I, O, W, X, Z, AA), Markovka, upper Eocene (E, H, N), Nikol'skoe, upper Eocene (K, L, Q, T, U, V), Pesčanoe, upper Eocene (M, AB), Kantemirovka, upper Eocene (P), Harkov region, middle Eocene (S), Verhnee, lower Eocene (R), and Staroverovka, middle Eocene (Y). A, G, H. Aspidasters. B. Spheraster. C, E, J, N. Sterrasters. D, F. Selenasters. I. Triaene. K, X. Mesotriaene. L, O. Anatriaenes. M, AB. Dichotriaenes. Q. Centrotylote?oxea. R.?Triaene. S. Plagiotriaene. P, T, U. Triaenes. V. Irregular triaene. W. Style. Y– AA. Diaenes. After Ivanik (2003); modified.
Fig. 2 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 2. Spicule morphotypes from south-central Ukraine; Čečva, lower Oligocene (A, B), Staroverovka, middle Eocene (C, L), Verhnee, lower Eocene D), Russkie Tiŝki, middle Eocene (E, H, R, Z), Nikol'skoe, upper Eocene (F, I, J, K, M, T), Černoleska, upper Eocene (G), Markovka, upper Eocene (N), Melovoe, middle Eocene (O), Glâdov Âr, Cretaceous (P), Markovka, lower Oligocene (Q), Lipcy, middle Eocene (S), Pogonovka, upper Eocene (U), Melovoe, upper Eocene (V), Pesčanoe, upper Eocene (W, Y), and Kiselevka, upper Eocene (X). A–E, G. Protriaenes. F, H, J, K, M, U, V. Anatriaenes., L, P. Prodichotriaenes. N, O. Oxeas. Q. Orthotriaene. R. Diaene. S.?Triaene. T. Orthodichotriaene. W–Y. Pinakids. Z. Dichotriaene. After Ivanik 2003); modified.
Fig. 7 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 7. Spicule morphotypes from south-central Ukraine; Markovka, upper Eocene (A, E, K), Kiselevka, middle Eocene (B, U), Lipcy, middle Eocene (C), Russkie Tiŝki, middle Eocene (D, J, P, R, V, W, X, AB), Nikol'skoe, upper Eocene (F, H, Y), Kantemirovka, upper Eocene (G, L, AA), Kiselevka, upper Eocene (I, O, Z), Pogonovka, upper Eocene (M, N), Melovoe, upper Eocene (Q, T), Černoleska, upper Eocene (S), and Staroverovka, middle Eocene (AC). A–E. Oxeas. F, H. Acanthoxeas. G. Acanthorhabd. I, J. Acanthostrongyles. K, M, N. Acanthostyles. L, O–Q. Styles. R. Reduced triaene. S. Anatriaene. T, U. Unknowns spicule. V. Orthotriaene. W, X. Tylostyles. Y. Spicule fragment. Z. Exotyle. AA.?Fragment of a triaene. AB. Amphiaster. AC. Spheraster. After Ivanik (2003); modified.
Fig. 4 in Uncovering the hidden diversity of Paleogene sponge fauna of the East European Platform through reassessment of the record of isolated spicules
Fig. 4. Spicule morphotypes from south-central Ukraine; Russkie Tiŝki, middle Eocene (A, O), Nikol'skoe, upper Eocene (B, C), Kantemirovka, middle Eocene (D), Melovoe, upper Eocene (E), Staroverovka, middle Eocene (F), Kantemirovka, upper Eocene (G, I), Markovka, upper Eocene (H, N), Pogonovka borehole, upper Eocene (J, L, M), Markovka, middle Eocene (K, P, T), Kiselevka, middle Eocene (Q), Lipcy, middle Eocene (R), and Kiselevka, upper Eocene (S). A. Protriaene. B, C. Anatriaenes. D. Centrotylote oxea. E–H. Amphitriaenes. I–K. Acanthotriods. L, M. Verticillate oxeas. N. Verticillate style. O–R, T. Acanthoxeas. S. Sanidaster. After Ivanik (2003); modified.
Fig. 3 in Boine SnakeBavarioboafrom the Oligocene/Miocene of Eastern Turkey with Comments on Connections Between European and Asiatic Snake Faunas
Fig. 3. Two vertebrae of boine snake Bavarioboa sp. from the Mendikdere Formation, Kurucan, Turkey, Oligocene/Miocene. A. AUNHL IZ100401a, anterior trunk vertebra in right lateral view. B. AUNHL IZ100401b, middle trunk vertebra, in right lateral (B1), ventral (B2), anterior (B3), posterior (B4), and dorsal (B5) views.
Fig. 1 in Boine SnakeBavarioboafrom the Oligocene/Miocene of Eastern Turkey with Comments on Connections Between European and Asiatic Snake Faunas
Fig. 1. Map of the Eastern Anatolia subbasins, and the location of snake fossil site (modified from Şenel et al. 1984; Bozkurt 2001; Sancay et al. 2006).
Linked collectors and determiners for: Macaronesian Muscidae (Diptera). I. The genus Hebecnema Schnabl with description of a new Canarian endemic species and a review of the European fauna.
Natural history specimen data linked to collectors and determiners held within, "Macaronesian Muscidae (Diptera). I. The genus Hebecnema Schnabl with description of a new Canarian endemic species and a review of the European fauna". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="http://bionomia.net/dataset/a7a5a68c-6084-4cf9-b941-d80718973a7d">https://bionomia.net/dataset/a7a5a68c-6084-4cf9-b941-d80718973a7d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/a7a5a68c-6084-4cf9-b941-d80718973a7d">https://gbif.org/dataset/a7a5a68c-6084-4cf9-b941-d80718973a7d</a>. Formatted as a Frictionless Data package.
Figure 1 in Notes on diversity and conservation of the European fauna of Plecoptera (Insecta)
Figure 1. Number (left) and cumulative number (right) of Plecoptera taxa described or cited for Europe from 1758 to present.
FIG. 5 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 5. — aff. Palaeocordylus bohemicus Roček, 1984; detail of the 6th-12th tooth in posterolingual view. Scale bar: 500 µm.
FIG. 4 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 4. — aff. Palaeocordylus bohemicus Roček, 1984; detail of the tooth from the medial region of the dentary tooth row in lingual view (terms after Richter 1994). Scale bar: 200 µm.
FIG. 3 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 3. — aff. Palaeocordylus bohemicus Roček, 1984; detail of the region with intramandibular septum. Scale bar: 2 mm.
FIG. 6 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 6. —? Cordylidae indet.; the left maxilla Ah-939 SGDB:A, labial view; B, C, D, lingual views with the details of the tooth crowns. Scale bars: A, B, 2.5 mm; C, 1 mm; D, 500 µm.
FIG. 2 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 2. — aff. Palaeocordylus bohemicus Roček, 1984 from the locality Merkur-North; right dentary (Ah-1088 SGDB) in lingual view. Scale bar: 5 mm.
Figure 7 in The European Tertiary Neritiliidae (Mollusca, Gastropoda, Neritopsina): indicators of tropical submarine cave environments and freshwater faunas
Figure 7. Location of the Peyrère outcrop in the late Oligocene to mid Miocene fill of the Saubrigues palaeocanyon (from Kieken, 1973; Cahuzac et al., 1995).
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.