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.
12
datasets available to search
ShareScore release 0.9.0
Dataset results
12 results for “Bufotes”
Figure 1 in Life history traits in Bufotes variabilis (Pallas, 1769) from 2 different altitudes in Turkey
Figure 1. Cross-sections at the diaphysis level of a phalanx of a male (A) and a female (B) of Bufotes variabilis individuals (m.c. = marrow cavity, e.b. = endosteal bone). The LAGs are indicated by black arrows.
Figure 3 in Molecular systematics and phylogeography of Bufotes variabilis (syn. Pseudepidalea variabilis) (Pallas, 1769) in Turkey
Figure 3. Mismatch distributions for different population subsets of genus Bufotes compared to the expected frequencies under the demographic expansion model (a = B. viridis, b = lineage 1 of B. variabilis, c = lineage 2 of B. variabilis).
Figure 1 in Molecular systematics and phylogeography of Bufotes variabilis (syn. Pseudepidalea variabilis) (Pallas, 1769) in Turkey
Figure 1. Map of Turkey, Greece, Albania, Russia, and Azerbaijan showing localities of samples sequenced for this study and haplotype group (Bufotes viridis, lineage 1, and lineage 2 of B. variabilis) assignments for populations based on phylogenetic analyses.
Figure 7 in Chondrocranial differences in Bufotes variabilis (Anura: Bufonidae): geometric morphometric comparison with two anuran species
Figure 7. DFA results among three anuran species (B. variabilis, R. macrocnemis, and H. orientalis).
Figure 6 in Chondrocranial differences in Bufotes variabilis (Anura: Bufonidae): geometric morphometric comparison with two anuran species
Figure 6. Scatter plot of CVA among three species (B. variabilis, R. macrocnemis, and H. orientalis) and positive (right) and negative (left) curvature of landmarks on CV1.
Figure 2 in Chondrocranial differences in Bufotes variabilis (Anura: Bufonidae): geometric morphometric comparison with two anuran species
Figure 2. Larval chondrocranium in different species. A) B. variabilis, stage 31; B) R. macrocnemis, stage 29; C) H. orientalis, stage 34. ct, cornu trabeculae; lop, larval otic process; cqo, commissura quadratoorbitalis; sc, suprarostral cartilage.
Figure 1 in Chondrocranial differences in Bufotes variabilis (Anura: Bufonidae): geometric morphometric comparison with two anuran species
Figure 1. The suprarostral cartilages in different species. A) B. variabilis, stage 28; B) R. macrocnemis, stage 35; C) H. orientalis, stage 31. cc, central corpus; la, lateral ala.
Figure 3 in Chondrocranial differences in Bufotes variabilis (Anura: Bufonidae): geometric morphometric comparison with two anuran species
Figure 3. Hyobranchial skeleton in different species. A) B. variabilis, stage 45; B) R. macrocnemis, stage 46; C) H. orientalis, stage 44. alp, anterolateral process; c, corpus; h, hyale; plp, posterolateral process; pmp, posteromedial process.
Text-fig. 5. Amphibians: a, b – Latonia sp. from Nasrettinhoca 2: a – left ilium in lateral (a1) and medial (a2) views, and junctura ilioischiadica (a3), EUNHM PV-13223; b – left ilium in lateral (b1) and medial (b2) views, EUNHM PV-13224; c – right angular of Palaeobatrachus sp. from Mercan 1, in medial (c1) and dorsal (c2) views, EUNHM PV-13225; d – left ilium of Pelobates sp. from Nasrettinhoca 2 in lateral (d1) and medial (d2) views, EUNHM PV-13226; e – right ilium of Bufotes viridis s. l. from Nasrettinhoca 2, in lateral (e1) and medial (e2) views, EUNHM PV-13227; f – left angular of Pelophylax sp. from Mercan 1, in dorsal view, EUNHM PV-13228; g – right ilium of Pelophylax sp. from Mercan 1, in lateral (g1) and medial (g2) views, EUNHM PV-13229; h – right ilium of Pelophylax sp. from Hoyhoytepe 1, in lateral (h1) and medial (h2) views, EUNHM PV-13234; i – left angular of Ranidae indet. from Hamamkarahisar A, in dorsal view, EUNHM PV-13237. Scale equals 1 mm. in Plio-Pleistocene Amphibians And Reptiles From Central Turkey: New Faunas And Faunal Records With Comments On Their Biochronological Position Based On Small Mammals
Text-fig. 5. Amphibians: a, b – Latonia sp. from Nasrettinhoca 2: a – left ilium in lateral (a1) and medial (a2) views, and junctura ilioischiadica (a3), EUNHM PV-13223; b – left ilium in lateral (b1) and medial (b2) views, EUNHM PV-13224; c – right angular of Palaeobatrachus sp. from Mercan 1, in medial (c1) and dorsal (c2) views, EUNHM PV-13225; d – left ilium of Pelobates sp. from Nasrettinhoca 2 in lateral (d1) and medial (d2) views, EUNHM PV-13226; e – right ilium of Bufotes viridis s. l. from Nasrettinhoca 2, in lateral (e1) and medial (e2) views, EUNHM PV-13227; f – left angular of Pelophylax sp. from Mercan 1, in dorsal view, EUNHM PV-13228; g – right ilium of Pelophylax sp. from Mercan 1, in lateral (g1) and medial (g2) views, EUNHM PV-13229; h – right ilium of Pelophylax sp. from Hoyhoytepe 1, in lateral (h1) and medial (h2) views, EUNHM PV-13234; i – left angular of Ranidae indet. from Hamamkarahisar A, in dorsal view, EUNHM PV-13237. Scale equals 1 mm.
Figure 5 in Chondrocranial differences in Bufotes variabilis (Anura: Bufonidae): geometric morphometric comparison with two anuran species
Figure 5. DFA results in B. variabilis.
Figure 2 in Molecular systematics and phylogeography of Bufotes variabilis (syn. Pseudepidalea variabilis) (Pallas, 1769) in Turkey
Figure 2. Phylogeny of Bufotes populations in Turkey, Greece, Albania, Russia, and Azerbaijan based on Bayesian and ML analysis of the combined mitochondrial genes (D-loop and 12S). Numbers above branches are Bayesian posterior probabilities, and numbers below are likelihood bootstrap support values. Single and double asterisks indicate nodes that are not strongly supported in both Bayesian and likelihood analysis (bootstrap values of <70% and Bayesian posterior probabilities of <0.95). IDs in front of the branches show DNA ID in Table 1.
Figure 2 in Life history traits in Bufotes variabilis (Pallas, 1769) from 2 different altitudes in Turkey
Figure 2. Age frequency distributions of the highland (A) and the lowland (B) populations.
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.