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.
364
datasets available to search
ShareScore release 0.7.1
Dataset results
364 results for “Late Pleistocene”
FIGURE 5 in Late Pleistocene-Holocene amphibians from Okinawajima Island in the Ryukyu Archipelago, Japan: Reconfirmed faunal endemicity and the Holocene range collapse of forest-dwelling species
FIGURE 5. Fossils referred to Rana ulma (1–7) and Microhyla okinavensis (8). 1–3, right female humerus (one of 176 registered as RUMF-GF-04019) in ventral (1), medial (2), and dorsal (3) views; 4–6, right male humerus (one of 87 registered as RUMF-GF-04020) in ventral (4), medial (5), and dorsal (6) views; 7, right ilium (one of 93 registered as RUMF-GF-04021) in lateral view; and 8, right ilium (one of two registered as RUMF-GF-04023) in lateral view. Abbreviations are the same as Figure 3. Arrows indicate the proximal ends of the crista paraventralis. Scale bars equal 1 mm.
FIGURE 9 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 9. (1-2) cf. Asoriculus sp. from Popovo 3: 1, fragment of right mandible with coronoid process, buccal view (c.n. 29/III/9/1). 2, fragment of right mandible with m2-m3, lingual view (c.n. 29/III/9/2). (3) Neomysorex alpinoides from Verkhnya Krynitsa 2, fragment of right mandible with p4–m3, lingual view (c.n. 29/2/10/1), (4-6) Neomys newtoni from Medzhybozh: 4, left condyloid process, posterior view (c.n. 29/4/11/2); fragment of left mandible with m1–m2, in 5, lingual, and 6, occlusal view (c.n. 29/4/11/1).
FIGURE 10. 1, Beremendia fissidens from Popovo 1, right I1 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 10. 1, Beremendia fissidens from Popovo 1, right I1, in anterior view (c.n. 29/I/12/1); 2, cf. Beremendia minor from Verkhnya Krynitsa 1, fragment of left mandible with proximal part of i1 in buccal view (c.n. 29/1/13/1); Petenyia dubia from Verkhnya Krynitsa 2 (3) and Lobkove (4): 3, left condyloid process, posterior view (c.n. 29/2/14/1); 4, left M1, occlusal view (c.n. 29/3/14/1). 5, Zelceina sp. from Verkhnya Krynitsa 2, fragment of left maxillae with M1-M2, occlusal view (c.n. 29/2/16/1).
FIGURE 7. 1 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 7. 1, cf. Miosorex sp. from Verkhnya Krynitsa 2, right I1, buccal view (c.n. 29/2/6/1). 2, Miosorex grivensis from Popovo 3, fragment of right mandible with m2 and trigonid of m3, buccal view (c.n. 29/III/7/1).
FIGURE 4 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 4. Desmana sp. from Verkhnya Krynitsa 1 (1-2) and from Popovo 2 (3-7). Left?I2, 1, buccal; 2, occlusal view (c.n. 29/1/4/1). Left C: 3, buccal; 4, occlusal view (c.n. 29/II/4/1). 5, Left P2, occlusal view (c.n. 29/II/4/2). 6, Left P4, occlusal view (c.n. 29/II/4/3). 7, Right M1, occlusal view (c.n. 29/II/4/4).
FIGURE 5 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 5. Desmana sp. from Popovo 2 (1-4 and 6) and Popovo 1 (5). Left?i3: 1, buccal, 2, occlusal view (c.n. 29/II/ 4/5). Left p2: 3, buccal; 4, occlusal view (c.n. 29/II/4/6). 5, Left m1, occlusal view (c.n. 29/I/4/1). 6, Left m3, occlusal view (c.n. 29/II/4/7).
FIGURE 3. 1 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 3. 1, cf. Mygalinia hungarica from Verkhnya Krynitsa 2, left m2, occlusal view (c.n. 29/2/2/1); 2, Ruemkelia sp. from Verkhnya Krynitsa 2, fragment of left m2, occlusal view (c.n. 29/2/3/1).
FIGURE 2 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 2. Schizogalerix sp. from Popovo 3 (1) and Verkhnya Krynitsa 2 (2-5). 1, right P4, occlusal view (catalogue number 29/III/1/1). (2-4) left m1; 2, occlusal; 3, lingual; 4, posterior view (c.n. 29/2/1/1); 5, right m2; occlusal view (c.n. 29/2/1/2).
FIGURE 8 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 8. Crusafontina cf. kormosi from Verkhnya Krynitsa 2. 1, fragment of left mandible with i1–p4 in buccal view (c.n. 29/2/8/1); 2, fragment of left mandible with m1–m2 in occlusal view (c.n. 29/2/8/2); 3, fragment of left mandible with m2–m3 and coronoid and condyloid proceses in lingual view (c.n. 29/2/8/3). (4-5), Fragment (talonid) of right m2 in: 4, occlusal; and 5, lingual view (c.n. 29/2/8/5).
FIGURE 1 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 1. The Ukrainian localities in which insectivore mammals were studied. 1, Regional map of Europe indicating location of Ukraine (Inset, 2). 2-3, Ukraine Miocene to Pleistocene localities: Inset (3), Miocene localities (A-Popovo 3; B-Verkhnya Krynitsa 2; C-Lobkove), Pliocene localities (A-Popovo 2; B- Verkhnya Krynitsa 1), Plio/Pleistocene locality (A-Popovo 1); Pleistocene locality (A-Popovo 0; D- Medzhybozh).
FIGURE 6. 1 in New data on Eulipotyphla (Insectivora, Mammalia) from the Late Miocene to the Middle Pleistocene of Ukraine
FIGURE 6. 1, Desmana sp. from Popovo 1 (1). fragment of right mandible with m1–m3 in buccal view (c.n. 29/I/4/2); (2-3) cf. Desmana sp. from Verkhnya Krynitsa 2, left humerus, 2, dorsal side, 3, ventral side (c.n. 29/2/5/1).
FIGURE 4 in A new species of Eutatus Gervais (Xenarthra, Dasypodidae) from the Late Pleistocene of the Northern Pampean Region, Argentina
FIGURE 4. Scatterplot (CV1 versus CV2) from Canonical Variate Analysis of osteoderms of Eutatus. Shape change across axes is represented as wireframe for the positive and negative values. 95 % confidence ellipse for E. seguini, E. pascuali and E. crispianii sp. nov. are shown. E. crispianii sp. nov. (black circles), E. seguini (white circles) and E. pascuali (red circles).
FIGURE 3 in A new species of Eutatus Gervais (Xenarthra, Dasypodidae) from the Late Pleistocene of the Northern Pampean Region, Argentina
FIGURE 3. Bivariate plot showing relationship between the width and length of fixed osteoderms of E. crispianii sp. nov. (black circles), E. seguini (white circles) and E. pascuali (red circles).
FIGURE 2. 1 in A new species of Eutatus Gervais (Xenarthra, Dasypodidae) from the Late Pleistocene of the Northern Pampean Region, Argentina
FIGURE 2. 1, Fixed osteoderms of Eutatus crispianii sp. nov. MGPV-E1; 2, E. seguini MACN10160a; 3, E. seguini MACN2772; 4, E. pascuali MMP1212. af, anterior foramina; facf, foramina around the central figure.
FIGURE 1. 1 in A new species of Eutatus Gervais (Xenarthra, Dasypodidae) from the Late Pleistocene of the Northern Pampean Region, Argentina
FIGURE 1. 1, Landmark configuration on schematic osteoderm of Eutatus; landmarks (dark gray circles) and semilandmarks (white circles); 2, Box-and-whisker plot showing centroid sizes of E. seguini, E. pascuali and E. crispianii. The central bar of each box represents the median of the population, while upper and lower bounds are 75th and 25th percentiles, respectively. Boxes show 50 % of the population and whiskers extend showing the minimum and maximum values in a range of 1.5 times the length of the box. Circles mark the atypical values of CS located beyond to 1.5 times the box length distances.
Paleoecology of an extinct Cervidae (Haploidoceros mediterraneus) of Middle-Late Pleistocene in Southern Europe
<p>Dental meso- and microwear data for the Haploidoceros mediterraneus and other cervid (Cervus, Megaloceros, Praedama, Dama) populations from Gruta da Aroeira, Igue des Rameaux, Lunel-Viel I, PRERESA, Cova del Rinoceront. </p> <p>Corresponding to the paper :</p>
Fig. 6 in Paleoecology of the large carnivore guild from the late Pleistocene of Argentina
Fig. 6. Schematic representation of the "imbalance" hypothesis (A) and an alternative hypothesis (B).
Fig. 5 in Paleoecology of the large carnivore guild from the late Pleistocene of Argentina
Fig. 5. General trophic relationships between the Lujanian carnivores and their main prey grouped by size classes. Black arrows: frequent preys; Grey arrows: occasional preys. The reconstructions are not drawn to scale (see the text for body mass estimations). Upper section (from left to right): a giant armadillo (Pampatherium typum Ameghino, 1875), a deer [Morenelaphus lujanensis (Ameghino, 1888)]; a capybara [Neochoerus aesopi (Leidy, 1854)]; a horse [Hippidion principale (Lund, 1840)]; a guanaco (Lama guanicoe Müller, 1776); a mastodon [Stegomastodon platensis (Ameghino, 1888)]; a glyptodont [Panochthus tuberculatus (Owen, 1845)]; a litoptern (Macrauchenia patachonica Owen, 1838); a toxodont (Toxodon platensis Owen, 1837); and the giant ground sloth (Megatherium americanum Cuvier, 1796). Lower section (from left to right): short faced bears (Arctotherium bonariense (Gervais, 1852) and Arctotherium tarijense Ameghino, 1902); a large fox [Dusicyon avus (Burmeister, 1866)]; large conical toothed felid [Panthera onca (Linnaeus, 1758) and Puma concolor (Linnaeus, 1771)]; a wolf [Canis nehringi (Ameghino, 1902)]; and a sabertoothed cat [Smilodon populator (Lund, 1842)].
Fig. 2 in Paleoecology of the large carnivore guild from the late Pleistocene of Argentina
Fig. 2. Frequencies of herbivore body mass (>10 kg) from the Lujanian of the Pampean Region (Argentina). A. Total sample. B. Herbivores with body mass between 10–1000 kg.
Fig. 1 in Paleoecology of the large carnivore guild from the late Pleistocene of Argentina
Fig. 1. Carnivore community structure of the Lujanian of the Buenos Aires province, Argentina (A), Pit 91 of Rancho La Brea, USA (B), and of three living faunas (Serengueti, Tanzania (C), Chitawan, Nepal (D), and Yellowstone, USA (E)), expressed in scatterplots of the carnivore body mass (kg) and maximum prey size (kg). This graphic was made with information from Schaller (1972), Ewer (1973), Van Valkenburgh (1985), Skinner and Smithers (1990), Nowak (1991), Silva and Downing (1995b), Van Valkenburgh and Hertel (1998), Sunquist and Sunquist (2002), Spencer et al. (2003), and Sillero Zubiri et al. (2004).
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.