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258 results for “freshwater mussel”
Figure 9 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 9. Differing shell shapes of Unio elongatulus. A, Po di Tolle River, Italy. B, Lake Candia, Italy. C, Venice, Italy. D, Lake Cestella, Italy. E, Lake Bačinska, Croatia. F, G, Mirna River, Croatia. H, Zrmanja River, Croatia. I, Lake Scutari, Albania. Scale bar 2 cm.
Figure 6 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 6. Differing shell shapes of Unio tigridis. A, Lake Kinneret, Israel. B, Tersakan River, Southwest Turkey.
Figure 7 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 7. Differing shell shapes of Unio mancus. A, Stabiacciu River, Corsica. B, Liscia River, Sardinia. C, Cedrino River, Corsica. D, River at Banyoles Lake, Spain. E, F, Araxisi River, Sardinia. Scale bar 2 cm.
Figure 4 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 4. Differing shell shapes of Unio foucauldianus. A, Loukos River. B, Oum Er Rbia River. C, Molouya River. D, Mda River. E, Martil River. F, Beth River (Sebou). G, Loukos River. Scale bar 2 cm.
Figure 3 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 3. Differing shell shapes of Unio tumidus. A, Franconian Saale, a tributary of the Main River (Rhine), Germany. B, Fulda River (Weser), Germany. C, Okna River (Danube), Slovakia. D, Danube River, Slovakia. E, Ferma Lake (Rhine), Germany. F, Thames River, UK. G, Fulda River (Weser), Germany. H, Rhine River, Germany. I, Horloff River (Rhine), Germany. Scale bar 2 cm.
Figure 2 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 2. Schematic distribution of the Unio species in the Western Palaearctic. Points indicate the general vicinity of sampled localities. See Supporting Information, Table S1 for details.
Figure 1 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 1. Bayesian tree reconstruction based on the two mitochondrial genes analysed. Values on the branches indicate Bayesian posterior probabilities, ML and MP bootstrap values. Results from the species delimitation analyses are also shown in this figure (green: M-PTP with a Bayesian tree; red: M-PTP with an ML tree; blue: bGMYC analysis). Names for the currently recognized morphospecies are also indicated in the phylogenetic tree.
Figure 12 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 12. Network of Unio crassus haplotypes. A, U. crassus courtillierii and Sweden. B, eastern Greece (Sofaditikos, Aliakmon and Sperchios). C, Central European (Rhine, Danube and Rhône). D, eastern Greece (Lissos River). E, western Turkey.
Figure 11 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 11. Differing shell shapes of Unio pictorum. A, B, Lake Volvi, Greece. C–F, Strymonas River, Greece. Scale bar 2 cm.
Figure 5 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 5. Differing shell shapes of Unio delphinus. A, Guadalmez River (Guadiana). B, Landrinos River (Tagus). C, Ulla River. D, Hozgarganta River. E, Barbate River. F, Deza River (Ulla). G, Guadalporcún River (Guadalete). Scale bar 2 cm.
Figure 14 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 14. Differing shell shapes of Unio crassus. A, B, Sofaditikos River (Pinios), Greece. C, Matzenheim, France. D, Çine Çayi, Mugla, Turkey. E, F, Lissos River, Greece. G, Limagne, France. Scale bar 2 cm.
Figure 8 in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 8. Differing shell shapes of Unio mancus. A, Brugent River (Ter), Spain. B, Bourget Lake (Rhône), France. C, Drée River (Loire), France. D, Golo River, Corsica. E, Ebro River, Spain. F, Stabiacciu River, Corsica. G, Orbu River, Corsica. Scale bar 2 cm.
Figure 13. A–C, Unio bruguierianus. A in Species boundaries, geographic distribution and evolutionary history of the Western Palaearctic freshwater mussels Unio (Bivalvia: Unionidae)
Figure 13. A–C, Unio bruguierianus. A, Pinios River, Greece. B, Axios River, Greece. C, Pinios River, Greece. D–E, Unio ionicus. D, River at Lake Lysimacheia, Greece. E, Perroi i Bistrices, Albania. F–H, Unio crassus. F, Sperchios River, Greece. G, H, Aliakmonas River, Greece. Scale bar 2 cm.
Figure 5 in Re-discovery of the type series of the Indian freshwater mussel Parreysia corrugata (O. F. Müller, 1774) with the designation of the lectotype (Bivalvia: Unionidae: Parreysiinae)
Figure 5. Principal component analysis scatter plot based on Fourier coefficients of the shell contours of Parreysia corrugata and Potomida semirugata: (а) PC1 vs PC2; and (b) PC2 vs PC4. The smaller circles indicate recent samples of the two species (see the legend). The stars indicate the paralectotypes of P. corrugata (the incongruent one is red), and the diamond indicates the lectotype of this species (NHMD 916309). The violet circle indicates the shell picture published by Chemnitz (1782, pl. 3, fig. 22a), and the yellow circle indicates the shell picture published by Müller (1779, pl. 3b, fig. 7). The coloured lines enclose 95% confidence ellipses. The PC1 axis describes 70.5%, the PC2 axis describes 8.3%, and PC4 describes 5.7% of the total variation. Synthetic outlines of the 'extreme' shell morphotypes are shown on four sides of the scatter plot. Information on shell lots and pictures used in the analyses is given in Supplementary data set 1.
Figure 4 in Re-discovery of the type series of the Indian freshwater mussel Parreysia corrugata (O. F. Müller, 1774) with the designation of the lectotype (Bivalvia: Unionidae: Parreysiinae)
Figure 4. Shells of Potomida semirugata, including the incongruent paralectotype of the composite taxon Parreysia corrugata: (a) NHMD 916687 (formerly NHMD 916310: larger shell; paralectotype of P. corrugata): collecting locality unknown (outer view of the right valve and inner view of the left valve); (b) the same shell (vice versa); (c) USNM 85182: Bagdad, Iraq (outer view of the right valve and inner view of the left valve); (d) the same shell (vice versa); (e) USNM 85856: Emesi, Lake Homs, River Orontes, Northern Syria (outer view of the left valve and inner view of the right valve); (f) RMBH biv 309/1: Karasu River, Orontes Basin, Hatay Province, Turkey. Scale bar = 10 mm. (Photos: Tom SchiØtte [a,b], NMNH collection database under a CC0 1.0 licence [c–e], and Ilya Vikhrev [f]).
Figure 2 in Re-discovery of the type series of the Indian freshwater mussel Parreysia corrugata (O. F. Müller, 1774) with the designation of the lectotype (Bivalvia: Unionidae: Parreysiinae)
Figure 2. The lectotype of Parreysia corrugata (shell lot NHMD 916309; designated in this study). (a,b) Possible historical pictures of the lectotype: (a) outer view of the left valve (Müller 1779, pl. 3b, fig. 7); and (b) inner view of the left valve (Müller 1779, pl. 3b, fig. 8). (c–f) Photos of the lectotype: (c) outer view of the left valve; (d) outer view of the right valve; (e) inner view of the left valve; and (f) inner view of the right valve. (g) Old (nineteenth century) label of the lectotype. Scale bar = 10 mm. (Photos: Tom SchiØtte).
Figure 1 in Re-discovery of the type series of the Indian freshwater mussel Parreysia corrugata (O. F. Müller, 1774) with the designation of the lectotype (Bivalvia: Unionidae: Parreysiinae)
Figure 1. Map of the Indian subcontinent (India and surrounding countries). The light green shading shows the Coromandel Coast, representing the vague type locality of Parreysia corrugata. The red star indicates Tranquebar (now Tharangambadi town), a former Danish colony on the Coromandel Coast, the name of which is written on the old (nineteenth century) labels of the type specimens. The map was created using ESRI ArcGIS 10 software (https://www.esri.com/arcgis); its topographic base was compiled with Natural Earth Free Vector and Raster Map Data (https://www.naturalearthdata.com) and Global Self-consistent Hierarchical High-resolution Geography (https://www.soest.hawaii.edu/ wessel/gshhg). (Map: Mikhail Y. Gofarov).
Figure 3 in Re-discovery of the type series of the Indian freshwater mussel Parreysia corrugata (O. F. Müller, 1774) with the designation of the lectotype (Bivalvia: Unionidae: Parreysiinae)
Figure 3. Paralectotypes of Parreysia corrugata. (a,b) Old (nineteenth century) labels of the paralectotypes: (a) paralectotype NHMD 916310; and (b) paralectotype NHMD 916311. (c–f) Paralectotype shells: (c) NHMD 916310 (outer view of the right valve and inner view of the left valve); (d) the same shell (vice versa); (e) NHMD 916311 (outer view of the right valve and inner view of the left valve); and (f) the same shell (vice versa). Scale bar = 10 mm. (Photos: Tom SchiØtte).
Figure 1 in Evolution of bilaterally asymmetrical larvae in freshwater mussels (Bivalvia: Unionoida: Unionidae)
Figure 1. Bilaterally asymmetrical glochidium of: A, Contradens sp. (UMMZ 304653); B, Physunio eximius (10×; ANSP 3612).
Figure 2 in Evolution of bilaterally asymmetrical larvae in freshwater mussels (Bivalvia: Unionoida: Unionidae)
Figure 2. Most likely topology recovered from the maximum-likelihood (ML) PRANK 5 partition analysis. Inset (A) indicates branch lengths of the transformed cladogram (B). Values above and below the branches indicate ML bootstrap support and Bayesian inference (BI) posterior probability, respectively. Filled boxes represent the reported larval morphologies of each taxon (C).
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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.