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.
1,692
datasets available to search
ShareScore release 0.7.1
Dataset results
1,692 results for “Caenogastropoda”
Figure 13 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 13. Anatomy of Radomaniola dolens sp. nov. A–H, paratypes (UGSB 16932). A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, pallial oviduct. E, bursa copulatrix and seminal receptacles. F, head of male and penis. G, penis. H, prostate gland.
Figure 16 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 16. Shells, operculum and radulae of Radomaniola nachtigallae sp. nov. A, B, holotype (MNCN 15.05/200165). C–J, paratypes (UGSB 18857). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 24 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 24. Shells, operculum and radulae of Radomaniola wolffi sp. nov. A, B, holotype (MNCN 15.05/200171). C–J, paratypes (UGSB 19533). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 19 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 19. Anatomy of Radomaniola pesici sp. nov. A–H, paratypes (UGSB 19048). A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, pallial oviduct. E, bursa copulatrix and seminal receptacles. F, head of male and penis. G, penis. H, prostate gland.
Figure 11 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 11. Anatomy of Radomaniola curta maxima subsp. nov. A–H, paratypes (UGSB 19540). A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, pallial oviduct. E, bursa copulatrix and seminal receptacles. F, head of male and penis. G, penis. H, prostate gland.
Figure 8 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 8. Shells, operculum and radulae of Radomaniola curta omblensis subsp. nov. A, B, holotype (MNCN 15.05/200155). C–J, paratypes (UGSB 18778). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 6 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 6. Shells, operculum and radulae of Radomaniola curta montenegrensis subsp. nov. A, B, holotype (MNCN 15.05/200157). C, paratype (UGSB 19515). D, shell (UGSB 19043). E–J, paratypes (UGSB 19515). E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 5 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 5. Anatomy of Radomaniola curta meridionalis subsp. nov. A–F, holotype (MNCN 15.05/200152). A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, head of male and penis. E, penis. F, prostate gland.
Figure 4 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 4. Shells, operculum and radulae of Radomaniola curta meridionalis subsp. nov. A, B, holotype (MNCN 15.05/200152). C, D, shell (UGSB 14439). E–J, holotype (MNCN 15.05/200152). E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 7 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 7. Anatomy of Radomaniola curta montenegrensis subsp. nov. A–E, H, I, L, paratypes (UGSB 19515). F, G, J, K, UGSB 19043. A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, F, pallial oviduct. E, G, bursa copulatrix and seminal receptacles. H, J, head of male and penis. I, K, penis. L, prostate gland.
Figure 2. Majority-rule consensus tree from a in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 2. Majority-rule consensus tree from a Bayesian analysis based on the multilocus dataset (COI, 16S and 28S) of Radomaniola. Branch support values (BPP, Bayesian posterior probability; BS, bootstrap support) are provided on nodes. Tip labels correspond to the sequence codes given in the Supporting Information (Table S1). Vertical bars on the right represent entities identified by the molecular species delimitation methods automatic barcode gap discovery (ABGD), Bayesian generalized mixed Yule-coalescent method (bGMYC) and Poisson tree processes species delimitation method in a Bayesian framework (bPTP) and the multi-rate version (mPTP) with Bayesian support values. Scale bar below topology: substitutions per site.
Figure 10 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 10. Shells, operculum and radulae of Radomaniola curta maxima subsp. nov. A, B, holotype (MNCN 15.05/200153). C–J, paratypes (UGSB 19540). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 15 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 15. Anatomy of Radomaniola jovanovskae sp. nov. A–H, paratypes (UGSB 19517). A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, pallial oviduct. E, bursa copulatrix and seminal receptacles. F, head of male and penis. G, penis. H, prostate gland.
Figure 3 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 3. Rate, correlation and mode of evolution of 40 traits along the Radomaniola phylogeny. A, time-calibrated phylogeny and trait distribution. Traits were scaled between 0.01 and 1 to display their variation among taxa. B, diagonal showing the Brownian motion rate of trait evolution and off-diagonals the pairwise evolutionary correlation. Modularity is suggested by a higher correlation within a functional organ (black square) than between two groups. Integration is indicated by a high or low within-group correlation. C, barplots showing, for each group of traits, the support [corrected Akaike information criterion (AICc) weight] for the modes of trait evolution.
Figure 12 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 12. Shells, operculum and radulae of Radomaniola dolens sp. nov. A, B, holotype (MNCN 15.05/200159). C–J, paratypes (UGSB 16932). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 14 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 14. Shells, operculum and radulae of Radomaniola jovanovskae sp. nov. A, B, holotype (MNCN 15.05/200161). C–J, paratypes (UGSB 19517). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 20 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 20. Shells, operculum and radulae of Radomaniola szarowskae sp. nov. A, B, holotype (MNCN 15.05/200167). C–J, paratypes (UGSB 18556). C, D, shells. E, F, operculum (E, inner side; F, outer side). G, protoconch. H, portion of radula ribbon. I, central radular teeth. J, outer marginal teeth.
Figure 9 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 9. Anatomy of Radomaniola curta omblensis subsp. nov. A–H, paratypes (UGSB 18778). A, ctenidium and osphradium. B, stomach. C, partial nervous system. D, pallial oviduct. E, bursa copulatrix and seminal receptacles. F, head of male and penis. G, H, penis. I, prostate gland.
Figure 22 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 22. Shells, operculum and radulae of Radomaniola variabilis sp. nov. A, B, holotype (MNCN 15.05/200169). C, paratype (UGSB 23975). D, shell (UGSB 14440). E, F, shell (UGSB 2294). G–J, N, paratypes (UGSB 23975). G, H, operculum (G, inner side; H, outer side). I, protoconch. J, portion of radula ribbon (UGSB 23975). K, portion of radula ribbon (UGSB 2294). L, central radular teeth (UGSB 14440). M, outer marginal teeth (UGSB 2294). N, outer marginal teeth (UGSB 23975).
Figure 1 in Shell features and anatomy of the springsnail genus Radomaniola (Caenogastropoda: Hydrobiidae) show a different pace and mode of evolution over five million years
Figure 1. Map showing the location of the different populations of Radomaniola undergoing molecular examination in this study. The number and letter of each locality code refer to species and locality, respectively, and are explained in the Supporting Information (Tables S1 and S2). Type localities of other species known from the literature (i.e. 27, Radomaniola lacustris; 28, Radomaniola elongata; and 29, Radomaniola hessei) are also plotted on the map.
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.