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.
718
datasets available to search
ShareScore release 0.9.0
Dataset results
718 results for “Crown”
Figure 6 in Description of a new genus of primitive ants from Canadian amber, with the study of relationships between stem- and crown-group ants (Hymenoptera: Formicidae)
Figure 6. Results of canonical discriminant analysis. A) All species. B) Haidomyrmecini removed. (Note: Red violet bars are crown-group ants; yellow bars are stem-group ants; violet bars - area of overlap. Lines are Gaussian curves fitted to the data).
Figure 5 in Description of a new genus of primitive ants from Canadian amber, with the study of relationships between stem- and crown-group ants (Hymenoptera: Formicidae)
Figure 5. Range for the indices SL/AL and AL/HL in females of Vespoidea and Apoidea. A) Range for SL/AL. B) Range for AL/HL. (Note: Diamonds are arithmetic means. Data on Vespoidea and Apoidea are from Dlussky and Fedoseeva (1988), sorted by families according to the current classification. Vespoidea: families Sapygidae, Scoliidae, Tiphiidae, Mutillidae, Bradynobaenidae, Vespidae. Apoidea: families Sphecidae, Crabronidae, Andrenidae, Melittidae, Megachilidae, Apidae. Social Hymenoptera: Vespa sp., Vespula sp., Polistes sp., Apis sp. (1 species each), Bombus sp. (4 species). Stem ants: all stem-group ants from Table S1. Crown ants: all crown-group ants from Table S1).
Figure 3 in Description of a new genus of primitive ants from Canadian amber, with the study of relationships between stem- and crown-group ants (Hymenoptera: Formicidae)
Figure 3. Bivariate plots (males). A) Scape length versus head length. B) Flagellum length versus head length. C) Scape length versus flagellum length. D) Pedicel length versus head length. E) Flagellomere 1 length versus head length. F) Flagellomere 2 length versus head length. (Note: Filled circles are crown-group ants; open circles are stem-group ants; regression lines for both groups (crown-group ants - solid line, stem-group ants - dashed line) are shown in cases where statistical difference between them was found).
Figure 4 in Description of a new genus of primitive ants from Canadian amber, with the study of relationships between stem- and crown-group ants (Hymenoptera: Formicidae)
Figure 4. Bivariate plots (females). A) Scape length versus head length. B) Flagellum length versus head length. C) Scape length versus flagellum length. D) Pedicel length versus head length. E) Flagellomere 1 length versus head length. F) Flagellomere 2 length versus head length. (Note: Filled circles are crown-group ants; open circles are Sphecomyrmini; triangles are Haidomyrmecini; A - Armaniinae (sensu Bolton 2003); C - Cananeuretus occidentalis; G - Gerontoformica cretacica; M - Myanmyrma gracilis. Regression lines for crown-group ants (solid line), Sphecomyrmini (dashed line), and Haidomyrmecini (dash-dotted line) are shown in cases where statistical difference between at least two groups was found).
Figure 2 in Description of a new genus of primitive ants from Canadian amber, with the study of relationships between stem- and crown-group ants (Hymenoptera: Formicidae)
Figure 2. Drawings of Boltonimecia canadensis. A) General habitus, lateral view (pubescence on mesosoma, legs, and gaster omitted). B) Head, anterodorsal view (reconstruction). C) Head, anterolateral view. D) Head, dorsal view (reconstruction). E) Propodeum, lateral view. Scale line = 0.1 mm.
Figure 1 in Description of a new genus of primitive ants from Canadian amber, with the study of relationships between stem- and crown-group ants (Hymenoptera: Formicidae)
Figure 1. Photographs of Boltonimecia canadensis. A) General habitus, lateral view. B) Part of head, anterodorsal view. C) Clypeus and mandibles. D) Pretarsal claws. E) Metatibial spurs. Scale line = 0.1 mm.
biscyclooctatrienylthulium bispotassium-18-crown-6, (Cot)2Tm(K(18-c-6)2)
<p>This contains the dataset of (Cot)2Tm(K(18-c-6)2)</p>
Text-fig. 4. Allosorex stenodus FEJFAR, 1966 – upper and lower incisors, Ivanovce, fissure 6523. a–g: upper left incisor (Z 28193 – OF 652360; a, f – buccal view, b, g – lingual view, c – anterior view, d – dorsal view, e – ventral view), h–i: upper right incisor (Z 28192 – OF 6523; h – buccal view, i – lingual view), j–m: lower right incisor (Z 28197 – OF 652363; j, m – buccal view, k – lingual view, l – dorsal view), n–o: lower right incisor (Z 28196 – OF 652362; n – lingual view, o – crown cross-section), p–q: lower right incisor (Z 28195 – OF 652361; p – lingual view, l – crown cross-section), r: lower left incisor (Z 28199 – OF 6523; lingual view). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 4. Allosorex stenodus FEJFAR, 1966 – upper and lower incisors, Ivanovce, fissure 6523. a–g: upper left incisor (Z 28193 – OF 652360; a, f – buccal view, b, g – lingual view, c – anterior view, d – dorsal view, e – ventral view), h–i: upper right incisor (Z 28192 – OF 6523; h – buccal view, i – lingual view), j–m: lower right incisor (Z 28197 – OF 652363; j, m – buccal view, k – lingual view, l – dorsal view), n–o: lower right incisor (Z 28196 – OF 652362; n – lingual view, o – crown cross-section), p–q: lower right incisor (Z 28195 – OF 652361; p – lingual view, l – crown cross-section), r: lower left incisor (Z 28199 – OF 6523; lingual view).
FIGURE 7 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 7. Relationships (strict consensus) of Genibatrachus baoshanensis with other living and fossil frogs. The tree is calibrated with the ages of fossil taxa. The new fossil taxon is highlighted in boldface. The numbers next to the branches represent the jackknife supporting value (only supporting value higher than 0.5 is shown).
FIGURE 6 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 6. Ontogenetic fusion of ribs to transverse process of the vertebra: A, PKUP V0410 (juvenile); B, PKUP V0411 (juvenile); C, PKUP V0406 (young adult); D, PKUP V0404 (fully grown adult). Scale bars = 5 mm. Note that PKUP V0410 and V0411 show all trunk vertebrae with free ribs articulated with the transverse process, PKUP V0406 shows a transitional stage of fusion of the ribs on posterior trunk vertebrae, whereas PKUP V0404 shows fully fused ribs to the transverse process on the posterior trunk vertebrae.
FIGURE 4 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 4. Referred specimens of Genibatrachus baoshanensis, gen. et sp. nov. (juvenile individuals): A, PKUP V0411 in dorsal view; B, PKUP V0412 in ventral view.
FIGURE 2 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 2. Photograph of the holotype of Genibatrachus baoshanensis, gen. et sp. nov. (PKUP V0401): incomplete skeleton exposed on part-and-counterpart shale slabs. A, skull and postcranial skeleton exposed in dorsal view; B, impressions of the skull and postcranial skeleton exposed in counterpart slab of A.
FIGURE 1 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 1. Area map showing the location of Taipingqiao locality (Inner Mongolia) in relation to other Early Cretaceous frog fossil localities near Chaoyang in western Liaoning Province, China (area shaded dark grey indicates the former "Jehol Province" after which the "Jehol Biota" was named).
FIGURE 3 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 3. Holotype of Genibatrachus baoshanensis, gen. et sp. nov. (PKUP V0401): line drawing of the incomplete skeleton and impressions of the skeleton in dorsal view, as exposed on part-and-counterpart shale slabs.
FIGURE 5 in A New Crown-Group Frog (Amphibia: Anura) from the Early Cretaceous of Northeastern Inner Mongolia, China
FIGURE 5. Palatal structures of Genibatrachus baoshanensis, gen. et sp. nov. (PKUP V0412). Arrow points to the ossified posteromedial process of the hyoid.
Text-fig. 7. Teeth of Masillamys parvus TOBIEN, from Messel (Hesse, Germany, MP 11), HLMD-Me 625, holotype. a) left upper M2, protocone damaged, occlusal view. b) left upper M3, occlusal view. c) left lower p4; c1 – occlusal view, c2 – buccal aspect, c3 – lingual aspect. d) left lower m2, metaconid damaged; d1 – occlusal view, d2 – buccal aspect, d3 – lingual aspect. e) right m3, occlusal view. f) left m3; f1 – occlusal view, f2 – buccal aspect, base of crown lacking, f3 – lingual aspect; g) SMF-ME 2099A: right lower tooth row with dp4 to m3, g1 – occlusal view, g2 – lingual aspect. Scale bar 1 mm. in A Reevaluation Of The Taxonomic Status Of The Rodent Masillamys Tobien, 1954 From Messel (Germany, Late Early To Early Middle Eocene, 48-47 M.Y.)
Text-fig. 7. Teeth of Masillamys parvus TOBIEN, from Messel (Hesse, Germany, MP 11), HLMD-Me 625, holotype. a) left upper M2, protocone damaged, occlusal view. b) left upper M3, occlusal view. c) left lower p4; c1 – occlusal view, c2 – buccal aspect, c3 – lingual aspect. d) left lower m2, metaconid damaged; d1 – occlusal view, d2 – buccal aspect, d3 – lingual aspect. e) right m3, occlusal view. f) left m3; f1 – occlusal view, f2 – buccal aspect, base of crown lacking, f3 – lingual aspect; g) SMF-ME 2099A: right lower tooth row with dp4 to m3, g1 – occlusal view, g2 – lingual aspect. Scale bar 1 mm.
Fig. 7 in Two novel species of subgenus Russula crown clade (Russulales, Basidiomycota) from China
Fig. 7. Line drawings of basidiospores. A. Russula coronaspora Y.Song sp. nov. (GDGM79711) B. R. minor Y.Song sp. nov., holotype (GDGM79686). Scale bars = 1 μm. Drawing by Yu Song.
Fig. 1 in Two novel species of subgenus Russula crown clade (Russulales, Basidiomycota) from China
Fig. 1. Maximum Likelihood tree of subgen. Russula crown clade based on ITS sequences, bootstrap values higher than 70% were displayed around nodes. Accession numbers of the two novel species are shown in bold.
Fig. 6. Russula minor Y in Two novel species of subgenus Russula crown clade (Russulales, Basidiomycota) from China
Fig. 6. Russula minor Y.Song sp. nov., holotype (GDGM79686). A. Basidia. B. Pleurocystidia. C. Cheilocystidia. D. Caulocystidia. E. Terminal elements of pileipellis. F. Pileocystidia. Scale bars = 10 μm. Drawing by Yu Song.
Fig. 5. Russula minor Y in Two novel species of subgenus Russula crown clade (Russulales, Basidiomycota) from China
Fig. 5. Russula minor Y.Song sp. nov. A, E–F. Holotype, GDGM79686. B. GDGM79689. C. GDGM79687. D. GDGM79688. A–E. Fruiting bodies. F. Basidiospores under scanning electron microscope. Scale bars: A–E = 1 cm; F = 1 µm.
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.