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.
827
datasets available to search
ShareScore release 0.7.1
Dataset results
827 results for “Scincidae”
Figure 2 in Feeding ecology of the common sun skink, Eutropis multifasciata (Reptilia: Squamata: Scincidae), in the plains of central Vietnam
Figure 2. Expected prey-taxon accumulation curves from the data of (A) stomach contents and (B) food item counts consumed by Eutropis multifasciata in the plains of central Vietnam. Circles represent the expected mean values, and the graphs show the 95% confidence intervals for male (filled circles) and female (open circles) skinks.
Figure 2. A in Records of Günther's gracile skink, Riopa guentheri (Peters, 1879) (Reptilia: Scincidae: Lygosominae) from Central India
Figure 2. A subadultRiopa guentheri (ZSI-CZRC-V-6940ii) from Chikhaldara, Amravati, Maharashtra India. Photo by K. Ashaharraza.
Figure 1 in Records of Günther's gracile skink, Riopa guentheri (Peters, 1879) (Reptilia: Scincidae: Lygosominae) from Central India
Figure 1. An adultRiopa guentheri (ZSI-CZRC-V-6307i) from Nauradehi Wildlife Sanctuary, Madhya Pradesh. Photo by Pratyush P. Mohapatra.
Figure 4 in Records of Günther's gracile skink, Riopa guentheri (Peters, 1879) (Reptilia: Scincidae: Lygosominae) from Central India
Figure 4. Distribution map depicting new localities (yellow triangles) and modified locality of Bishrampur, Chhattisgarh (hollow red circle) for Riopa guentheri and hitherto published records (solid yellow circles) from India.
Fig. 5 in A New Species of Nannoscincus Günther (Squamata: Scincidae) from High Elevation Forest in Southern New Caledonia
Fig. 5. Isolated closed forest patch on Mont Çidoa, typical of habitat in the area from which the types of Nannoscincus garrulus n.sp. were collected.
Fig. 2 in A New Species of Nannoscincus Günther (Squamata: Scincidae) from High Elevation Forest in Southern New Caledonia
Fig. 2. Dorsal (upper), lateral (middle), and ventral (lower) views of the head of holotype of Nannoscincus garrulus
Fig. 3 in A New Species of Nannoscincus Günther (Squamata: Scincidae) from High Elevation Forest in Southern New Caledonia
Fig. 3. Left manus of holotype of Nannoscincus garrulus n.sp. (MNHN 2003.1002) showing extensive underside "webbing" between digits of the forelimbs (right) and enlarged dorsal scales at the base of the third and fourth digits (left).
FIGURE 3. USNM 31677 in Mabuia wirzi Roux, 1925 (Squamata: Scincidae), an overlooked synonym of Dasia olivacea Gray, 1839, with notes on the synonymy of Dasia olivacea
FIGURE 3. USNM 31677, the only other specimen of Dasia olivacea reported from Pulau Nias, the type locality of M. wirzi. Photo courtesy of Esther M. Langan (Division of Amphibians & Reptiles, USNM, Smithsonian Institution).
FIGURE 2 in Mabuia wirzi Roux, 1925 (Squamata: Scincidae), an overlooked synonym of Dasia olivacea Gray, 1839, with notes on the synonymy of Dasia olivacea
FIGURE 2. Head shields of Dasia olivacea in lateral view (Australian Museum R6815), showing the absence of a postnasal posterior to the nasal scale (N), the configuration of temporal scales, with a primary temporal (1°) and upper and lower secondary temporals (U2° and L2°), and the very small ear in this species. Scales a and b are respectively the last supraciliary and the uppermost postsubocular, using the definitions of Taylor (1936). These two scales constitute the pretemporals of Greer (1983). Scale bar = 5mm.
FIGURE 1 in Mabuia wirzi Roux, 1925 (Squamata: Scincidae), an overlooked synonym of Dasia olivacea Gray, 1839, with notes on the synonymy of Dasia olivacea
FIGURE 1. Holotype of Mabuia wirzi in dorsolateral view, with details of the lateral side of the head. Photos courtesy of Edi Stöckli (Naturhistorisches Museum, Basel).
Figure 1 in Phylogenetic placement of a recently discovered population of the threatened alpine she-oak skink Cyclodomorphus praealtus (Squamata: Scincidae) in Victoria
Figure 1: Elevation map of the mainland Australian alpine region indicating the five major populations of Cyclodomorphus praealtus, including the new location of Wellington Plains. Elevation is indicated by light, mid and dark grey areas at 500 m intervals, with highest elevations at or above 1500 m above sea level. Adapted from fig. 1; Koumoundouros et al. (2009).
Figure 3 in Phylogenetic placement of a recently discovered population of the threatened alpine she-oak skink Cyclodomorphus praealtus (Squamata: Scincidae) in Victoria
Figure 3: Population structure of Victorian Cyclodomorphus praealtus according to ND4 mitochondrial haplotype network. Black indicates individuals from Lankey Plain, dark grey indicates those from Mt Hotham, white indicates those from Bogong High Plains and diagonal stripes indicate those from Wellington Plains. The network structure indicates 3 haplogroups (i, ii and iii) within Victoria. Each circle represents a unique haplotype, with the circle size indicative of frequency and sample sizes within each circle. Empty circles represent missing haplotypes and differ by one base pair from the closest haplotype.
Figure 2 in Phylogenetic placement of a recently discovered population of the threatened alpine she-oak skink Cyclodomorphus praealtus (Squamata: Scincidae) in Victoria
Figure 2: A Bayesian consensus tree of the mtDNA ND4 sequences, depicting the relationship between unique haplotypes at each locality (Bogong High Plains, Lankey Plain, Mt Hotham, Wellington Plains and Kosciuszko National Park) for Cyclodomorphus praealtus. Bayesian posterior probabilities are shown at major nodes.
Fig. 1 in Short communications Extinct or not extinct: the case of the Chalcides ocellatus (Squamata: Scincidae) population from the Park of the ex Bourbonic Royal Palace of Portici (Naples, Italy)
Fig. 1 - Comparison among the anterolateral spines of: A) Ranina sp. (MSNM i28047), "Serre di Rapolano" (Siena). B) Ranina propinqua Ristori, 1891 (MSNM i28012), Orzalune-Cottano (Orvieto). C) Ranina propinqua Ristori, 1891 (MUSNAF 7075), Fabro Scalo (Terni). D) Ranina ranina (Linnaeus, 1758), Indo-Pacific area.
Fig. 2 in Short communications Extinct or not extinct: the case of the Chalcides ocellatus (Squamata: Scincidae) population from the Park of the ex Bourbonic Royal Palace of Portici (Naples, Italy)
Fig. 2 - Ranina sp., MSNM i28045. A) Carapace in dorsal view. (x 3.2). B) Close-up view of the dorsal ornamentation.
Fig. 1 in Short communications Extinct or not extinct: the case of the Chalcides ocellatus (Squamata: Scincidae) population from the Park of the ex Bourbonic Royal Palace of Portici (Naples, Italy)
Fig. 1 - Petrochirus fabroensis Pasini, Garassino & De Angeli in Baldanza et al. (2014), MSNM i28044. A) right cheliped in outer view. B) right cheliped in inner view. (x 3).
FIGURE 2 in Massif Speciation Events in New Caledonian Lizards: Diversification in the Genus Marmorosphax (Scincidae) Tracks Isolation on the Island's Ultramafic Surfaces
FIGURE 2. Persistent high elevation cloud formation on northwest Massif Katépahié (adjacent to the Massif de Koniambo) during the dry season.
FIGURE 5 in Massif Speciation Events in New Caledonian Lizards: Diversification in the Genus Marmorosphax (Scincidae) Tracks Isolation on the Island's Ultramafic Surfaces
FIGURE 5. Phylogenetic relationships amongst the species and populations of Marmorosphax. Likelihood topology with UFboot and BPP Bayesian posterior probabilities shown respectively. UFboot equal to 100 and BPP equal to 1.0 are represented at nodes with black circles. The numbers in squares represent the four major groups of Marmorosphax and numbers present in circles represent groups for pairwise comparisons. – indicate nodes not recovered by both phylogenetic analyses.
Figure 2 in Sexual dimorphism in Trachylepis vittata (Olivier, 1804) (Sauria: Scincidae) in the Zagros Mountains, western Iran
Figure 2. Ordination of male and female specimens of Trachylepis vittata on the first 2 principal components. Note the relatively high degree of separation along PC1.
Figure 6 in Taxonomic reassessment of Eutropis macularia (Blyth, 1853) complex in the Western Ghats of India: Resurrection of Eutropis brevis (Günther, 1875), Eutropis dawsoni (Annandale, 1909) and synonymisation of Eutropis gansi (Das, 1991) (Reptilia: Squamata: Scincidae)
Figure 6. Profile photographs comparing the dorsal scales of (1) Eutropis macularia, (2) Eutropis brevis, and (3) Eutropis dawsoni. Note the differences in keel projections and scale differences. Images of type specimens – (A) Eutropis macularia (Holotype – ZSI 2344) (B, C & D) Eutropis brevis (Syntypes – NHMUK 1874.4.29.254-55 & 354) (E) Eutropis gansi (Holotype – ZSI 24826), and (F) Eutropis dawsonii (Lectotype – ZSI 16170).
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.