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Figure 8 from: Albano PG, Schnedl S-M, Eschner A (2018) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): deep-sea Eastern Mediterranean molluscs. Zoosystematics and Evolution 94(1): 29-56. https://doi.org/10.3897/zse.94.20116

Figure 8 A–J. Raphitoma nuperrima var. corallinoides Sturany, 1896, holotype NHMW 13013, Station 36, north of Benghazi, Libya, 680 m: original figure in Sturany, 1896 (A), front (B–C), side (D–E) and back (F) views, apex (G), microsculpture (H–I), original label (J). K–P, T–V. Raphitoma nuperrima var. pseudacanthodes Sturany, 1896, syntype NHMW 13014a, Station 213, north of Astypalaia, Sporades, Greece, 597 m: original figure in Sturany, 1896 (K), front (L–M), side (N–O) and back (P) views, microsculpture (T–U), original label (V). Q–R. Raphitoma nuperrima var. pseudacanthodes Sturany, 1896, syntype NHMW 13014b (same locality as 13014a): front (Q), apex (R–S). Scale bars: 1 mm (B–F, L–Q); 0.1 mm (G, R–U); 0.2 mm (H–I).

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Figure 1 from: Albano PG, Schnedl S-M, Eschner A (2018) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): deep-sea Eastern Mediterranean molluscs. Zoosystematics and Evolution 94(1): 29-56. https://doi.org/10.3897/zse.94.20116

Figure 1 Map of the stations sampled by the "Pola" expeditions to the Eastern Mediterranean (1890-1893) and the Southern Adriatic Sea (1894) which provided molluscan samples and reported in Sturany (1896).

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Figure 2 from: Albano PG, Schnedl S-M, Eschner A (2018) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): deep-sea Eastern Mediterranean molluscs. Zoosystematics and Evolution 94(1): 29-56. https://doi.org/10.3897/zse.94.20116

Figure 2 Jujubinus igneus Sturany, 1896 ex Monterosato ms. A-C. Syntype NHMW 72399a, station 260, Pelagruža, Croatia, 128 m: front (A), side (B) and back (C) views. D–E. Syntype NHMW 72399b and c: front views. F. NHMW 27441 (Monterosato coll.): front view. G. Original figure in Sturany, 1896. H. Original label of lot NHMW 72399. I. Original label of lot 27441. Scale bar: 1 mm.

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Figure 4 from: Albano PG, Schnedl S-M, Eschner A (2018) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): deep-sea Eastern Mediterranean molluscs. Zoosystematics and Evolution 94(1): 29-56. https://doi.org/10.3897/zse.94.20116

Figure 4 A–F, H–J. Pseudomurex ruderatus Sturany, 1896 in Monterosato ms., Corsica, France. Original figures in Sturany, 1896 (A, I). Specimen NHMW 28222a: front (B), side (C) and back (D) views, original label (E). Specimen NHMW 28222b: front (H), side (I) and back (J) view. G, K. Fusus craticulatus var. pianosana Sturany, 1896, Station 243, between Tremiti Islands and Pianosa Isl., Adriatic Sea, Italy, 103 m, original figures in Sturany, 1896. Scale bars: 1 mm.

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Figure 7 from: Albano PG, Schnedl S-M, Eschner A (2018) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): deep-sea Eastern Mediterranean molluscs. Zoosystematics and Evolution 94(1): 29-56. https://doi.org/10.3897/zse.94.20116

Figure 7 Defrancia implicisculpta, Sturany, 1896, station 82, north of Alexandria, Egypt, 2420 m. A, H, I. Original figures in Sturany, 1896. B–G. Holotype NHMW 13003: front (B–C), back (D), side (E–F) views and microsculpture (G). J. Original label. Scale bars: 1 mm (B–F), 0.3 mm (G).

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Figure 15 from: Albano PG, Schnedl S-M, Eschner A (2018) An illustrated catalogue of Rudolf Sturany's type specimens in the Naturhistorisches Museum Wien, Austria (NHMW): deep-sea Eastern Mediterranean molluscs. Zoosystematics and Evolution 94(1): 29-56. https://doi.org/10.3897/zse.94.20116

Figure 15 Pecchiolia berenicensis Sturany, 1896, Station 37, north of Benghazi, Libya, 700 m. A, D, H–I, K–L. Original figures in Sturany, 1896. B–C, E–G, J, M. Holotype NHMW 13007: outer view left valve (B–C), inner view right valve (E–F), hinge detail of right (G) and left valve (J), sculpture detail (M). N. Original label. Scale bar: 1 mm (B–C, E–F, G, J), 0.5 mm (M).

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FIGURE 5. Molluscs and brachiopods from the Strelovec Formation. A in Revisiting horseshoe crab fossils from the Middle Triassic (Anisian) Strelovec Formation Konservat-Lagerstätte of Slovenia

FIGURE 5. Molluscs and brachiopods from the Strelovec Formation. A: An ammonoid. PMSL T-1805. B: Lingulid brachiopod. PMSL T-865. C: Modiolus sp. PMSL T-836. D: Worthenia sp. PMSL T-1772. A coated in ammonium chloride sublimate. All converted to greyscale. Image credit: A: Tomaž Hitij; B, C, D: Jure Žalohar.

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FIGURE 14 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 14. Distribution maps of benthic foraminifera occurring in Namibian and western South African outer shelf (blue shading = Lowry, 1987; black dots = Compton et al., 2002, 2004 and this study), lower to middle upper Quaternary sediments (green-yellow dots = McMillan, 1987) and inner shelf surface grab sediments (red-yellow dots = Schmidt-Sinns, 2008). Samples from McMillan (1987), Compton et al. (2002, 2004) and this study represent Pleistocene-aged foraminifera and samples from Lowry (1987) and Schmidt-Sinns (2008) are from surface grab sediments.

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FIGURE 15 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 15. Mid to late Pleistocene/Holocene environmental interpretation of the southwestern margin of Africa based on foraminifera and mollusc species found in outer shelf sediments. Slope data and occurrences are based on reports from ODP Leg 175 (Wefer et al., 1998) and results from cores GeoB 20601-4, 8342-6 and 8336-6 (Meteor Cruises M123 and M57/1) in Chapter 7 of Bergh (2019).

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FIGURE 10 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 10. Whole and fragmented shells (top) (core 2658, 10-15 cm sampling interval), Nuculana bicuspidata (bottom left) shells including articulated valves (core 2634, 78-85 cm) and Pecten spp. fragments (bottom right) (core 2658, 88-90 cm) from the northern Namibian cores.

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FIGURE 11. Planktic foraminifera from the Namibian outer shelf with primary apertural views visible. 1 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 11. Planktic foraminifera from the Namibian outer shelf with primary apertural views visible. 1. Globorotalia (Globoconella) inflata (d'Orbigny, 1839b) (core 2670, 98 cm); 2. Globorotalia menardii (Parker, Jones and Brady, 1865) (core 2670, 23 cm); 3. Globorotalia truncatulinoides (d'Orbigny, 1839b) (core 2670, 23 cm); 4. Neogloboquadrina dutertrei (d'Orbigny, 1839a) (core 2670, 43 cm); 5. Neogloboquadrina incompta (Cifelli, 1961) (core 2670, 85 cm); 6 Globigerina bulloides d'Orbigny, 1826 (core 2670, 85 cm); 7. Globigerinella siphonifera (d'Orbigny, 1839b) (core 2670, 33 cm); 8. Globigerinoides ruber white (d'Orbigny, 1839a) (core 2670, 13 cm); 9. Trilobatus sacculifer (Brady, 1877) (core 2670, 63 cm); 10. Orbulina bilobata (d'Orbigny, 1846) (core 2670, 3 cm); 11. Orbulina universa d'Orbigny, 1839a (core 2670, 33 cm).

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FIGURE 8 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 8. Mollusc shells from the gravel fraction of the uppermost 2 units of the Walvis Bay-Lüderitz cores. 1. Dosinia lupinus (Linnaeus, 1758) (core 1407, 0-4 cm sampling interval); 2. Lucinoma capensis (Jaeckel and Thiele, 1931) (core 1397, 0-4 cm); 3. Tellina (Moerella) analogica Sowerby III, 1904 (core 1478, 8-12 cm); 4. Ostrea sp. (core 1657, 0-4 cm); 5. Nassarius vinctus (Marrat, 1877) (core 1407, 0-4 cm); 6. Turritella declivis Adams and Reeve, 1850 (core 1657, 20-24 cm); 7. Comitas saldanhae (Barnard, 1958) (core 1307, 0-4 cm).

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FIGURE 12 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 12. Distribution maps of benthic foraminifera occurring in Namibian and western South African outer shelf (blue shading = Lowry, 1987; black dots = Compton et al., 2002, 2004 and this study), lower to middle upper Quaternary sediments (green-yellow dots = McMillan, 1987) and inner shelf surface grab sediments (red-yellow dots = Schmidt-Sinns, 2008). Samples from McMillan (1987), Compton et al. (2002, 2004) and this study represent Pleistocene-aged foraminifera and samples from Lowry (1987) and Schmidt-Sinns (2008) are from surface grab sediments.

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FIGURE 13 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 13. Distribution maps of benthic foraminifera occurring in Namibian and western South African outer shelf (blue shading = Lowry, 1987; black dots = Compton et al., 2002, 2004 and this study), lower to middle upper Quaternary sediments (green-yellow dots = McMillan, 1987) and inner shelf surface grab sediments (red-yellow dots = Schmidt-Sinns, 2008). Samples from McMillan (1987), Compton et al. (2002, 2004) and this study represent Pleistocene-aged foraminifera and samples from Lowry (1987) and Schmidt-Sinns (2008) are from surface grab sediments.

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FIGURE 4 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 4. Mean relative abundance of planktic species preserved across the three units of the Walvis BayLüderitz cores.

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FIGURE 3 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 3. Mean relative abundance, represented by column charts, of the major components within the complete sand fractions of core 1479.

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FIGURE 2 in Quaternary foraminifera and mollusc assemblages on the southwestern African shelf

FIGURE 2. Stratigraphy of the Conception and Meob Bay cores. The depositional ages and units are defined by Compton and Bergh (2016). Unit 6 = reworked foram layer; unit 5 = brown to olive-green mud unit; unit 4 = pelletal phosphorite sandy layer; unit 3 = slightly shelly layer; unit 2 = shelly sandy layer; unit 1 = shelly gravel layer (Compton and Bergh, 2016).

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FIGURE 6 in Late Miocene molluscs of the Morskaya 2 site (Azov Sea region, Russia)

FIGURE 6. Assemblage of the Maeotian terrestrial molluscs (layer 3). 1, cf. Helicella sp. 2, Helicodiscus (Helicodiscus) roemeri (Andreae, 1902). 3, Vallonia cf. pulchella (Müller, 1774). 4-5,? Deroceras sp.

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Supplementary material 1 from: Ortigosa D, Suárez-Mozo NY, Barrera NC, Simões N (2018) First survey of Interstitial molluscs from Cayo Nuevo, Campeche Bank, Gulf of Mexico. ZooKeys 779: 1-17. https://doi.org/10.3897/zookeys.779.24562

Species abundance per sample :

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Figure 4 from: Ortigosa D, Suárez-Mozo NY, Barrera NC, Simões N (2018) First survey of Interstitial molluscs from Cayo Nuevo, Campeche Bank, Gulf of Mexico. ZooKeys 779: 1-17. https://doi.org/10.3897/zookeys.779.24562

Figure 4 Gastropoda1–18: 1Parviturboides sp. 1a ventral view 1b dorsal view, scale bar 1 mm 2Vitrinella sp. 2a ventral view 2b dorsal view, scale bar 0.5 mm 3Gibberulalavalleeana3a ventral view 3b dorsal view, scale bar 1 mm 4Volvarina sp. 1 4a ventral view 4b dorsal view, scale bar 1 mm 5Volvarina sp. 2 5a ventral view 5b dorsal view, scale bar 1 mm 6Columbellidae sp. 1 6a ventral view 6b dorsal view, scale bar 0.5 mm 7Columbellidae sp. 2 7a ventral view 7b dorsal view, scale bar 0.5 mm 8Steironepionmoniferum8a ventral view 8b dorsal view, scale bar 1 mm 9Phrontis sp. 9a ventral view 9b dorsal view, scale bar 0.5 mm 10Trachypollia sp. 10a ventral view 10b dorsal view, scale bar 1 mm 11Turridae sp. 1 11a ventral view 11b dorsal view, scale bar 1 mm 12Ammoniceralineofuscata, Apical view, scale bar 0.25 mm 13Ammoniceraminortalis13a Apical view 13b ventral view, scale bar 0.1 mm 14Rissoellagalba14a ventral view 14b dorsal view, scale bar 0.1 mm 15Pseudoscillaaff.babylonia15a ventral view 15b dorsal view, scale bar 1 mm.

opencc-by-4.0Aug 2018View details →

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Allen Brain Atlas

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neuroscienceopenDocumentation, web resources, and API references are available online.
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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.

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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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record