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.
340
datasets available to search
ShareScore release 0.9.0
Dataset results
340 results for “Late Oligocene”
Figure 1 in New genus of the tribe Ceutorhynchini (Coleoptera: Curculionidae) from the late Oligocene of Enspel, southwestern Germany, with a remark on the role of weevils in the ancient food web
Figure 1. Igneonasus rudolphi gen. et sp. nov., holotype PE 2013/5017-LS, habitus, lateral view. Scale bar = 1.0 mm.
Figure 3 in New genus of the tribe Ceutorhynchini (Coleoptera: Curculionidae) from the late Oligocene of Enspel, southwestern Germany, with a remark on the role of weevils in the ancient food web
Figure 3. (a) Cyprinid fish Palaeorutilus enspelensis (Böhme, 1996) with digestive tract filled with weevil elytra, specimen PW 2011/5743- LS a; (b) digestive tract of counterpart specimen enlarged, PW 2011/5743-LS b; (c) coprolite made of small weevil elytra, supposedly produced by Palaeorutilus, specimen PE 2014/5144-LS.
Figure 2 in New genus of the tribe Ceutorhynchini (Coleoptera: Curculionidae) from the late Oligocene of Enspel, southwestern Germany, with a remark on the role of weevils in the ancient food web
Figure 2. Igneonasus rudolphi gen. et sp. nov., holotype PE 2013/5017-LS, contour of body, lateral view. Scale bar = 1.0 mm.
Fig. 10 in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 10 - Alcespina cf. A. berglundi (Squires & Demetrion, 1992). A) partial carapace, MHN-UABCS/Ba 7-3 (x 1.5). B) sternum, MHN-UABCS/Ba 10-10 (x 1.5).
Fig. 9 in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 9 - Alcespina berglundi (Squires & Demetrion, 1992) n. comb. A) holotype, IGM 5913 (x 1.8). B) paratype, IGM 5914 (x 4.5).
Fig. 8 in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 8 - Raninoides cf. R. pliocenicus De Angeli, Garassino & Pasini, 2009 (Ciglione): A) MPOM 288 (x 4.6). B) 137M (x 4.1).
Fig. 6 - Alcespina ovadaensis n. gen., n in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 6 - Alcespina ovadaensis n. gen., n. sp., variability in the 2nd anterolateral spine. A) MPOM 1770 (x 2.5). B) MPOM 23 (x 1.7). C) MPOM 701 (x 2.2). D) MPOM 1776 (x 2.5).
Fig. 5 - Alcespina ovadaensis n. gen., n in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 5 - Alcespina ovadaensis n. gen., n. sp. A) C3 (Ponzone), right chela (x 1.3). B) MPOM 740 (Ciglione), right and partial left chela (natural size). C) MPOM 1780, male chelae (x1.1).
Fig. 4 - Alcespina ovadaensis n. gen., n. s.p in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 4 - Alcespina ovadaensis n. gen., n. s.p., RMT (Giusvalla). A)?female sternum (x1.8). B) 3rd maxilliped with endo- and exopodites (x 1.1). C) MPOM 39 (Ciglione), female somites (natural size).
Fig. 3 - Alcespina ovadaensis n. gen., n in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 3 - Alcespina ovadaensis n. gen., n. sp, MPOM 1780 (Ciglione), mature male. A) dorsal view (natural size). B) anterolateral outline (x 1). C) pleonal view (x 1.1).
Fig. 2 - Alcespina ovadaensis n. gen., n in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 2 - Alcespina ovadaensis n. gen., n. sp., carapace in dorsal view. A) holotype, MPOM 290 (Galanti, Cassinelle) (x 1.6). B) paratype, 17MT (Rio Volpina, Ponzone) (x 1.4). C) paratype, MPOM 1770 (Ciglione) (x 1.4). D) paratype, MPOM 1779 (Ponzone) (x 1.5).
Fig. 1 in A new raninoid crab (Decapoda, Brachyura, Raninidae) from the early Oligocene (late Rupelian) of Italy
Fig. 1 - Map of studied area depicting main fossiliferous localities in Alessandria province. (after Allasinaz, 1987).
Text-fig. 11. Geological map south of the Nel'ma Bay. 1 - granodiorite (Early Palaeogene); 2 – Eocene andesitic and dacitic tuff with plant-bearing argillitic lenses; 3 – Late Eocene to Early Miocene andesite-basalt (Kizi Volcanic Group); 4 – tuffogenous sedimentary plant-bearing lenses with plant fossils; 5 – Dacite neck (Early Oligocene) 1 km south of the Dembi Bay; 6 – Pliocene pebbles and conglomerates; 7 – Plateaubasalts (Sovgavan' Formation, Late Neogene–Quaternary); 8 – Quaternary alluvial deposits; 9 – localities with fossil plants: a – Sonje, b – Bui, c – Dembi. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)
Text-fig. 11. Geological map south of the Nel'ma Bay. 1 - granodiorite (Early Palaeogene); 2 – Eocene andesitic and dacitic tuff with plant-bearing argillitic lenses; 3 – Late Eocene to Early Miocene andesite-basalt (Kizi Volcanic Group); 4 – tuffogenous sedimentary plant-bearing lenses with plant fossils; 5 – Dacite neck (Early Oligocene) 1 km south of the Dembi Bay; 6 – Pliocene pebbles and conglomerates; 7 – Plateaubasalts (Sovgavan' Formation, Late Neogene–Quaternary); 8 – Quaternary alluvial deposits; 9 – localities with fossil plants: a – Sonje, b – Bui, c – Dembi.
Fig. 8 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 8. Dentary of castoroidine beaver Hystricops venustus Leidy, 1858, UNSM 75995 (cast) from Barstovian (middle Miocene) Valentine Formation, southeastern Nebraska, USA, in dorsal (A), lateral (B), medial (C), and posterior (D) views.
Fig. 7 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 7. Maxilla and dentary of castoroidine beaver Hystricops venustus Leidy, 1858, from Clarendonian (late Miocene) Ash Hollow Formation, Nebraska, USA. A. F:AM 64041, left maxilla with P4–M3 in occlusal (A1) and lateral (A2) views. B. F:AM 64049, left dentary with i1, p4–m3 in occlusal (B1) and lateral (B2) views.
Fig. 6 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 6. Occlusal views of upper cheek teeth of castoroidine beaver Hystricops venustus Leidy, 1858, from Clarendonian (late Miocene) Ash Hollow Formation, Nebraska, USA. A. F:AM 64041, left P4–M3. B. F:AM 65026, left P4–M1.
Fig. 5 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 5. Lower incisors of castoroidine beaver Priusaulax and Anchitheriomys in anterior views. A. Priusaulax wilsoni sp. nov., UNSM 119711 (holotype) from early Hemingfordian (early Miocene) Pawnee Creek Formation, Colorado, USA. B. Priusaulax senrudi (Wood, 1945), AMNH 39415 (holotype) from Barstovian (middle Miocene) Chalky Buttes, Montana, USA. C. Anchitheriomys stouti Korth, 2001a, AMNH 64017 (holotype) from Hemingfordian (early Miocene) Running Water Formation, Nebraska, USA.
Fig. 4 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 4. Holotype of castoroidine beaver Priusaulax senrudi (Wood, 1945), AMNH 39415 (cast) from Barstovian (middle Miocene) Chalky Buttes, Montana, USA. Dentary in lateral view (A) and dorsal view with p4–m3 in occlusal view (B).
Fig. 2 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 2. Cheek teeth of castoroidine beaver Priusaulax wilsoni sp. nov. A. KU 10173 (holotype) from early Hemingfordian (early Miocene) Pawnee Creek Formation, Colorado, USA, right P4–M3 in occlusal view. B. UNSM 26599 from Hemingfordian (early Miocene) Upper Arikaree Group, Nebraska, USA, p4 (in crypt)–m3 (B1) and dp4 (B2) in occlusal views.
Fig. 1 in A new tribe of castoroidine beavers from the late Arikareean to Hemphillian (Oligocene-Miocene) of western North America
Fig. 1. Crania of castoroidine beavers Priusaulax spp. A. Priusaulax wilsoni sp. nov., KU 10173 (holotype) from the early Hemingfordian (early Miocene) of Colorado, USA, in dorsal (A1), ventral (A2), and right lateral (A3) views. B. Priusaulax browni Korth and Bailey, 2006, UNSM 119707 from the late Arikareean (earliest Miocene) of Nebraska, USA, in right lateral view.
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.