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.
21
datasets available to search
ShareScore release 0.7.1
Dataset results
21 results for “Pseudocleopatra”
FIGURE 20 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 20. Radula of Pseudocleopatra broecki (Putzeys, 1899) n. comb., MCZ 171520 (modified from Glaubrecht 2010a). A. Radula ribbon, scale bar: 10 μm. B. Lateral and central teeth, scale bar: 10 μm. C. Marginal teeth, scale bar: 10 μm.
FIGURE 19 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 19. Shells of Pseudocleopatra broecki (Putzeys, 1899) n. comb. A. Lectotype of Cleopatra broecki Putzeys, 1899, MRAC 47360. B. Paralectotype of Cleopatra broecki Putzeys, 1899, MRAC 47361. C. Holotype of Cleopatra broecki var. zonata Putzeys, 1899, MRAC 47362. D. Holotype of Pseudocleopatra bennikei Mandahl-Barth, 1974, MRAC 799156. E. Paratype of Pseudocleopatra bennikei Mandahl-Barth, 1974, DBL 2584. F. Paratype of Pseudocleopatra bennikei Mandahl-Barth, 1974, DBL 2585. A–C modified from Glaubrecht (2010a). Scale bar: 5 mm.
FIGURE 18 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 18. Known occurrence records of Pseudocleopatra dartevellei Mandahl-Barth, 1973 in the Congo River system. The asterisk indicates the type locality; solid symbols indicate samples with alcohol material, open symbols those of dry material. The arrow indicates the approximate location of the Inga dams.
FIGURE 17 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 17. Radula of Pseudocleopatra dartevellei Mandahl-Barth, 1973 (Morph b), probable paratype, Île des Princes, MRAC 146342. A. Radula ribbon, scale bar: 10 μm. B. Lateral and central teeth, scale bar: 10 μm. C. Cutting edge of lateral and central teeth, scale bar: 2 μm. D. Central, lateral and marginal teeth, scale bar: 10 μm.
FIGURE 15 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 15. Shells of Pseudocleopatra dartevellei Mandahl-Barth, 1973. A. Holotype, MRAC 799161. B. Probable paratype, Matadi; MRAC 260702. C–D. Probable paratypes, Matadi, MRAC 260702, growth series. Scale bar: 5 mm.
FIGURE 14 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 14. Known occurrence records of Pseudocleopatra voltana Mandahl-Barth, 1973 in the Volta River system. The asterisk indicates the type locality; open symbols indicate samples of dry material. The arrow indicates the approximate location of the Akosombo dam.
FIGURE 12 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 12. Radula of Pseudocleopatra voltana Mandahl-Barth, 1973, paratype, Apaso village, DBL 2592. A. Radula ribbon, scale bar: 25 μm. B. Lateral and central teeth; scale bar: 5 μm. C. Cutting edge of lateral and central teeth; scale bar: 3 μm. D. Central, lateral and marginal teeth; scale bar: 5 μm.
FIGURE 13 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 13. Radula of Pseudocleopatra voltana Mandahl-Barth, 1973, paratype, Daboya, DBL 2594. A. Radula ribbon, scale bar: 25 μm. B. Lateral and central teeth; scale bar: 20 μm. C. Cutting edge of lateral and central teeth; scale bar: 6 μm. D. Central, lateral and marginal teeth; scale bar: 8 μm.
FIGURE 11 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 11. Shells of Pseudocleopatra voltana Mandahl-Barth, 1973. A. Holotype, DBL 2594-1. B. Paratype, from the type locality; DBL 2594-2. C. Paratype, from the type locality, DBL 2594-3. D. Paratype, Ghana, NE region, without exact locality, DBL 2593. E. Paratype, Mogeyenga village, DBL 2591. F. Paralectotype of Pseudocleopatra togoensis Thiele, 1928, ZMB 190049. Scale bar: 5 mm.
FIGURE 21 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 21. Known occurrence records of Pseudocleopatra broecki (Putzeys, 1899) n. comb. in the Congo River system. Asterisks indicate type localities; 1: type locality of Cleopatra broecki Putzeys, 1899 and Cleopatra broecki var. zonata Putzeys, 1899; 2: type locality of Pseudocleopatra bennikei Mandahl-Barth, 1974. The arrow indicates the approximate location of the Inga dams.
FIGURE 10 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 10. Known occurrence records of Pseudocleopatra togoensis Thiele, 1928 in the Volta River system. The asterisk indicates the type locality. The arrow indicates the approximate location of the Akosombo dam.
FIGURE 9 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 9. Radula of Pseudocleopatra togoensis Thiele, 1928, Ghana, NE region, DBL 214. A. Radula ribbon; scale bar: 20 μm. B. Lateral and central teeth; scale bar: 10 μm. C. Cutting edge of lateral and central teeth; scale bar: 2 μm. D. Central, lateral and marginal teeth; scale bar: 20 μm.
FIGURE 8 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 8. Opercula of Pseudocleopatra Thiele, 1928 species. A. Lectotype of P. togoensis Thiele, 1928, ZMB 190048b. B. Paratype of Pseudocleopatra voltana Mandahl-Barth, 1973, Mogeyenga village, DBL 2591. C. Probable paratype of Pseudocleopatra dartevellei Mandahl-Barth, 1973, Matadi, DBL 2583. D. Pseudocleopatra broecki (Putzeys, 1899) n. comb., MCZ 171520. E. Lectotype of Pseudocleopatra broecki (Putzeys, 1899) n. comb., MRAC 47360. Scale bar: 1mm.
FIGURE 7 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 7. Shells of Pseudocleopatra togoensis Thiele, 1928. A. Lectotype, ZMB 190048a. B. Oti River at Bdakune village, DBL 2601. C. NE-Ghana, DBL 214. D. White Volta River, DBL 12761. Scale bar: 5 mm.
FIGURE 16 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 16. Radula of Pseudocleopatra dartevellei Mandahl-Barth, 1973 (Morph a), probable paratype, Île des Princes, MRAC 146342. A. Radula ribbon, scale bar: 10 μm. B. Lateral and central teeth, scale bar: 10 μm. C. Cutting edge of lateral and central teeth, scale bar: 10 μm. D. Central, lateral and marginal teeth, scale bar: 10 μm.
FIGURE 6 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 6. Total variance of examined shell shapes and results of geometric morphometrics analyses of Pseudocleopatra Thiele, 1928 species and Cleopatra bulimoides (Olivier, 1804). A. Relative variance of shell shape along PC1 and PC2. The colours of dots imply species affiliations. Depicted thin plate splines represent shell shapes of individuals with the highest and lowest value along PC1. B, F. Variance of shell shapes of PC1 (B) and PC2 (F). Arrow heads indicate the maximum value on the respective shape axis, whereas grey dots indicate the minimum value. C, E. Boxplots for PC1 (C) and PC2 (E) of shell shape sorted according to species. Significant differences (p <0.05) are indicated by bars. D. Total variance of landmark positions; grey dots correspond to all positions of all landmark sets; black dots indicate the mean position of each landmark across the complete data set.
FIGURE 4 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 4. Multivariate ratio analysis of shell measurements of Pseudocleopatra togoensis Thiele, 1928, P. voltana Mandahl- Barth, 1973, P. dartevellei Mandahl-Barth, 1973 and P. broecki (Putzeys, 1899) n. comb. A. Plot of isometric size vs. first principal component in shape space. B. Plot of isometric size vs. second principal component in shape space. C. Plot of isometric size vs. third principal component in shape space. D. Plot of first vs. second principal component in shape space. E. Plot of first vs. third principal component in shape space. F. Plot of second vs. third principal component in shape space. G. PCA ratio spectrum of the first principal component. H. PCA ratio spectrum of the second principal component in shape space. I. PCA ratio spectrum of the third principal component in shape space. J. Allometry ratio spectrum. Vertical bars in G–I = 68% confidence intervals based on 500 bootstrap replicates. For abbreviations of measured shell variables, see Fig. 2.
FIGURE 2 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 2. Shell measurements and positions of landmarks and sliding landmarks. A. Shell measurements of the adult shell. Abbreviations: h—shell height, w—shell width, bw—last whorl height, la—aperture height, wa—aperture width. B. Dots indicate positions of landmarks, lines indicate lines of sliding landmarks (colours indicate different total numbers of sliding landmarks).
FIGURE 1 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 1. Distribution of recent species of Pseudocleopatra Thiele, 1928 in Africa.
FIGURE 5 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 5. Scatter plot of ratios best discriminating among Pseudocleopatra togoensis Thiele, 1928, P. voltana Mandahl- Barth, 1973, P. dartevellei Mandahl-Barth, 1973 and P. broecki (Putzeys, 1899) n. comb. For abbreviations of measured shell variables, see Fig. 2.
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.