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.
63
datasets available to search
ShareScore release 0.9.0
Dataset results
63 results for “Mercuria”
Fig. 27 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 27. Radula of the Mercuria lupiaensis Miller & Delicado sp. nov. from Giammateo Creek, Frigole, Lecce. A. General view of the radular ribbon. B. Overview of radular teeth rows. C. Detailed view of the lateral and inner marginal teeth. D. Detailed view of the outer marginal teeth.
Fig. 24 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 24. Protoconch and radula of Mercuria felixi Miller, García-Guerrero & Ramos sp. nov. from the stream in Canuto de la Tala, Cádiz, Spain. A. Protoconch. B. Details of the protoconch. C. Protoconch microsculpture. D. Overview of radular teeth rows. E–F. Detailed view of the inner and outer marginal teeth, respectively.
Fig. 20 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 20. Shells and operculum of Mercuria carrillorum Miller, García-Guerrero & Ramos sp. nov. A–B. Holotype (MNCN 15.05/200175H), frontal and lateral views. D, G–H. Paratypes (MNCN 15.05/94748). C. Manantial de los Doce Pilares Spring, Málaga, Spain. D. Stream in Canuto de la Gallina, Montes de Propios, Jerez de la Frontera, Cádiz, Spain. E–F. Stream in Canuto de las Palas, Montes de Propios, Jerez de la Frontera, Cádiz, Spain (MNCN 15.05/94751). G–H. Stream in Canuto de la Gallina, Montes de Propios, Jerez de la Frontera, Cádiz, Spain. G. Operculum, inner side. H. Operculum, outer side.
Fig. 21 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 21. Protoconch and radula of Mercuria carrillorum Miller, García-Guerrero & Ramos sp. nov. from the stream in Canuto de las Palas, Montes de Propios, Jerez de la Frontera, Cádiz, Spain. A. Details of the protoconch. B. Protoconch nucleus. C. Protoconch microsculpture. D. Overview of radular teeth rows. E–F. Detailed view of the central and outer marginal teeth, respectively.
Fig. 19 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 19. Anatomy of Mercuria egarensis Miller, García-Guerrero & Ramos sp. nov. from Font de les Canyes, Barcelona, Spain. A. Female genitalia. B. Detailed view of the bursa copulatrix and seminal receptacle. C. Head and penis. D. Ctenidium and osphradium. E. Stomach. F. Prostate gland. G. Perioesophageal ring.
Fig. 17 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 17. Shells and operculum of Mercuria egarensis Miller, García-Guerrero & Ramos sp. nov. A–B. Holotype (MNCN 15.05/200174H), frontal and lateral views. C–G. Paratypes (MNCN 15.05/94753). F. Operculum, inner side. G. Operculum, outer side.
Fig. 13 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 13. Anatomy of Mercuria balearica (Paladilhe, 1869). A, D, F. Stream at Sant Joan de Carbonell, Minorca, Spain. B, C, E. Venta El Pilar Spring, Málaga, Spain. A. Female genitalia. B. Penis and head. C. Prostate gland. D. Ctenidium and osphradium. E. Stomach. F. Perioesophageal ring.
Fig. 8 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 8. Shells and operculum of Mercuria tachoensis (Frauenfeld, 1865). A–B. Spring at Saô Mamede, Leiria, Portugal. C. Oude Maas at Hoogvliet, Netherlands. D. Das Mouras Spring, Alpedriz, Leiria, Portugal. E. Arun Banks, Burpham, West Sussex, United Kingdom. F. Spring at Vale de Lobos, Almargem do Bispo, Lisboa, Portugal. G–I. Spring at Jardim da Sereia, Coimbra, Portugal. H. Operculum, inner side. I. Operculum, outer side.
Fig. 18 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 18. Protoconch and radula of Mercuria egarensis Miller, García-Guerrero & Ramos sp. nov. from Font de les Canyes, Barcelona, Spain.A. Details of the protoconch.B. Protoconch nucleus. C. Protoconch microsculpture. D. Overview of radular teeth rows. E–F. Detailed view of the inner and outer marginal teeth, respectively.
Fig. 4 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 4. Intraspecific variation of the shell shape and colour of Mercuria similis (Draparnaud, 1805). A. Salaboreja Spring, Casa de Ves, Albacete, Spain. B. Salado Stream, Casa de Ves, Albacete, Spain. C. Galayo´s Pond, Fuentalbilla, Albacete, Spain. D. Stream in Barranco del Agua Salada, Gelsa, Zaragoza, Spain (pigmented animal). E. Stream in Barranco del Agua Salada, Gelsa, Zaragoza, Spain (unpigmented animal). F. Saltwater gully in Aguinaliu, Huesca, Spain. G. Stream in Peralta de la Sal, Huesca, Spain. H. Sosa River at Peralta de la Sal, Huesca, Spain. I. Fonte Dame, Salses-le- Château, Aude, France. J. Font d´Estramar, Salses-le-Château, Aude, France. K. Pond at La Palme, Aude, France. L. Estany de la Ricarda, El Prat de Llobregat, Barcelona, Spain. M. Ullals de Baltasar, Amposta, Tarragona, Spain. N. Arc River near Les Cabanes, Bouches-du-Rhône, France. O. La Fouxde-Draguignan, France. P–Q. Arc River near Les Cabanes, Bouches-du-Rhône, France. P. Operculum, inner side. Q. Operculum, outer side.
Fig. 1 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 1. Phylogenetic clustering and geographic location of the studied populations of Mercuria Boeters, 1971 throughout the western Palaearctic region. The tree topology on the left has been modified from Miller et al. (2022) to show the species clades (i.e., coloured clades) of the populations described here. One population (grey dot) represents the distribution of M. maceana (Paladilhe, 1869). Scale bar below topology: expected change per site.
Fig. 15 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 15. Shells and operculum of Mercuria maceana (Paladilhe, 1869) from C'an Tunis, Barcelona, Spain. A–E. Shells. F. Operculum, inner side. G. Operculum, outer side.
Fig. 7 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 7. Male genitalia of Mercuria similis (Draparnaud, 1805). A–E. Penis. F. Penis and head. G–H. Prostate gland. A. La Cañada Stream. B. Font d´Estramar Spring. C. Fonte Dame Spring. D. Pond in La Palme. E. Barranco de las Negras. F. Stream crossing the town of Peralta de la Sal. G. Saltings of Riba de Santiuste, Guadalajara. H. Font d´Estramar Spring.
Fig. 9 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 9. Protoconch and radula of Mercuria tachoensis (Frauenfeld, 1865). A–C. Fonte dos Amores Spring, Coimbra, Portugal. A. Protoconch. B. Details of the protoconch. C. Protoconch microsculpture. D–E. Stream near the beach in Bidart, France.D. Detailed view of the central and lateral teeth. E. Detailed view of the outer marginal teeth. F. Spring at Jardim da Sereia, Coimbra, Portugal.
Fig. 11 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 11. Shells and operculum of Mercuria balearica (Paladilhe, 1869). A–B, G–H. Stream at Sant Joan de Carbonell, Minorca, Spain. C. Colarsega River, near the Port of Mahon (type locality). D. Fuente Árabe Spring, Mojácar, Granada, Spain (unpigmented specimen). E. Venta El Pilar Spring, Málaga, Spain. F. Spring, Alozaina, Cádiz, Spain. G. Operculum, inner side. H. Operculum, outer side.
Fig. 6 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 6. Anatomy of Mercuria similis (Draparnaud, 1805). A–D. Female genitalia. A. Font Dame Spring, Salses-le-Château, Languedoc-Roussillon, France. B–C. Galayo´s Pond, Fuentalbilla, Albacete, Spain. D. Pond in La Palme, Languedoc-Roussillon, France. E–G. Arc River near Les Cabanes, Bouches-du- Rhône, France. E. Ctenidium and osphradium. F. Stomach. G. Perioesophageal ring.
Fig. 3 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 3. Principal components analysis plot for species of Mercuria Boeters, 1971 based on 21 coordinates (9 landmarks and 12 semilandmarks). Each dot on the plot represents the consensus of the shape of each of the sampled populations. Warp grid deformations (TPS) show expansion (in red colour) and contraction (in blue) of the shell shape.
Fig. 16 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 16. Protoconch (A–C) and radula (D–F) of Mercuria maceana (Paladilhe, 1869) from C'an Tunis, Barcelona, Spain. A. Protoconch nucleus. B. Details of the protoconch. C. Protoconch microsculpture. D. Overview of radular teeth rows. E–F. Detailed view of the lateral and inner teeth.
Fig. 10 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 10. Anatomy of Mercuria tachoensis (Frauenfeld, 1865) from Nascente do Senhor Jordão Spring, Alpedriz, Leiria, Portugal. A. Female genitalia. B. Animal and penis. C. Prostate gland. D. Ctenidium and osphradium. E. Stomach. F. Perioesophageal ring.
Fig. 5 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 5. Shell and radula of Mercuria similis (Draparnaud, 1805) from Étang de Berre, Bouches-du- Rhône, France. A. Apical view of the shell. B. Details of the protoconch. C. Protoconch microsculpture. D. General view of the radular ribbon. E. Central, lateral, inner marginal and outer marginal teeth. F. Detailed view of the inner marginal teeth.
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.