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670 results for “Molluscs”
Fig. 3 in Polydora and Dipolydora (Polychaeta: Spionidae) associated with molluscs on the south coast of South Africa, with descriptions of two new species
Fig. 3. Dipolydora keulderae sp. n., SAMC A60060: (A) dorsal anterior; (B–D) chaetiger 5: (B) winged companion chaeta, (C) modified spines on chaetiger 5 with collar on convex side, the collar may be worn and appear as a line in more worn spines, as in the spine on the right, (D) long notochaeta; (E) pygidium with four lobes; dorsal pair smaller than ventral; (F) from left to right, hooded hooks, from anterior, late middle and posterior chaetigers. Scale bars: A = 0.05 mm, B–F = 0.02 mm.
Fig. 1 in Polydora and Dipolydora (Polychaeta: Spionidae) associated with molluscs on the south coast of South Africa, with descriptions of two new species
Fig. 1. Locations of the sample sites along the southern coast. Additional sites on the north-east and west coasts denote where Polydora-type worms were found in other studies and are referred to in the text.
Fig. 4 in Polydora and Dipolydora (Polychaeta: Spionidae) associated with molluscs on the south coast of South Africa, with descriptions of two new species
Fig. 4. Dipolydora keulderae sp. n., the relationships between number of branchiate chaetigers / chaetigers with unidentate hooks and total number of chaetigers.
Figs 3, 4 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Scaphopoda and Cephalopoda
Figs 3, 4. Sepia acuminata, SDUDOHFWRW\SHV 106$: () 2ΟΙ/7474, 4Ϭ.7î2Ι.2 PP>= Sepia hieronis (Robson, 1924)]; (4) 3200/T474, 48.6×21.7 mm.
Figs 5–8 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Scaphopoda and Cephalopoda
Figs 5–8. (5) Sepia confusa, syntype NMSA 3212/T475, 42.2×9.1 mm; (6) S. insignis, syntype NMSA 3210/T476, 18.4×5.8 mm; (7) S. incerta, syntype NMSA 3477/T477, 77.9×13.8 mm; (8) S. incerta, syntype NMSA 3207/T477, 35.1×9.8 mm.
Figs. 29-36 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figs. 29-36. Habitats of Bythinella spp. from Crete. 29: Meso Potámi (type locality of B. cretensis), 30: Meso Potámi (B. cretensis together with Ancylus fluviatilis), 31: Exo Potámi (B. cretensis), 32: Argiroúpoli (type locality of B. magdalenae n. sp.), 33: Ano Méros (B. magdalenae n. sp.), 34: Axós (B. magdalenae n. sp.), 35: Zou (tpye locality of B. sitiensis n. sp.), 36: Zákros (B. sitiensis n. sp.).
Figures 25-28. Bythinella sitiensis n in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 25-28. Bythinella sitiensis n. sp. from Crete. 25: Holotype, 26: male copulatory organ of no. 25, 27, 28: Zákros (paratypes). Abbreviations: p = penis, pa = penial appendix, tg = tubular gland.
Figures 20-24. Bythinella magdalenae n in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 20-24. Bythinella magdalenae n. sp. from Crete. 20: Holotype, 21: Ano Méros (paratype), 22: penis in situ of no. 21, 23: Argiroúpoli (paratype), 24: male copulatory organ of no. 23. Abbreviations: p = penis, pa = penial appendix, tg = tubular gland.
Figure 19 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figure 19. The sampling sites of the studied material of Bythinella spp. on Crete. 1-3: Bythinella magdalenae n. sp.: 1: Argiroúpoli (type locality), 2: Ano Méros, 3: Axós; 4-6: Bythinella cretensis: 4: Meso Potámi, 5: Exo Potámi, 6: Sarakina spring; Bythinella sitiensis n. sp.: 7: Zou, 8: Zákros.
Figures 11-13. 11, 12 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 11-13. 11, 12: The captured spring in Topólia, type locality of Pseudamnicola occulta n. sp. 13: Andrea Hirschfelder collecting paratypes of Pseudamnicola occulta n. sp. at sampling site 2 in Spíli.
Figures 14-18. Bythinella cretensis. 14 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 14-18. Bythinella cretensis. 14: Holotype, 15: specimen from Exo Potami, 16: specimen from Meso Potami (topotype), 17: penis in situ, 18: penis with tubular gland. Abbreviations: e = eye, p = penis, pa = penial appendix, t = tentacle, tg = tubular gland.
Figures 3-6. The Pseudamnicola spp. from Crete. 3 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 3-6. The Pseudamnicola spp. from Crete. 3: Syntype of P. brachia, 4: subadult shell of Pseudamnicola occulta n. sp. of same size as P. brachia, 5: Pseudamnicola sp. from the publication of Szarowska et al. (2015, Fig. 7 C) and 6: as well as a penis (Fig. 10 L).
Figures 7-10. Pseudamnicola occulta n in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 7-10. Pseudamnicola occulta n. sp. from Crete. 7: adult shell from Topólia (holotype) and 8: penis in situ (s = snout), 9: adult shell from Spíli (paratype) and 10: penis in situ.
Figure 2 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figure 2. The sampling sites of the studied material of Pseudamnicola spp. on Crete, Greece. Black dot: Iráklio (= Kandia), syntype of Pseudamnicola brachia (Westerlund, 1886) in coll. Westerlund; 1: Topólia, type locality of Pseudamnicola occulta n. sp.; green dot: Spíli, paratype locality of P. occulta n. sp.; red dots: additional material of P. occulta n. sp., 2 = Myrthios, 3 = Amári Valley between Méronas and Amári, 4 = Zou, 5 = Zákros; blue dot: Almyros spring in Georgioúpoli, sampling site of Pseudamnicola sp. in Szarowska et al. (2015), see Figs. 5, 6; yellow dot: Almira spring near Chaniá, sampling site of Pseudamnicola sp. in Schütt (1980, Fig. 29).
Figures 44-46 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 44-46. Lake Kournas, type locality of Valvata kournasi n. sp.. 45: Overflow of Lake Kournas which was completely dry during sampling time, 46: deposit of shells at the overflow where Valvata kournasi n. sp. was also found.
Figure 1 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figure 1. Faksimile of the original description and the label of the syntype (fig. 3) of Westerlund's collection.
Figures 37-42 in New Freshwater molluscs from Crete, Greece (Gastropoda: Hydrobiidae, Bythinellidae, Valvatidae)
Figures 37-42. Comparison of two similar Valvata spp. 37-39: Valvata macrostoma (Hamburg), 40-42: Valvata kournasi n.sp. (Crete, Lake Kournas).
Fig. 1. Pleurobranchus peronii Cuvier, 1804 in A report of four unrecorded species of opisthobranch molluscs from Korea
Fig. 1. Pleurobranchus peronii Cuvier, 1804 and Pleurobranchus weberi (Bergh, 1905). A. P. peronii (body length: 102 mm, width: 81 mm), living animal, dorsal view. B. P. weberi (body length: 92 mm, width: 78 mm), living animal, dorsal view. Scales=10 mm.
Fig. 2 in A report of four unrecorded species of opisthobranch molluscs from Korea
Fig. 2. Aplysiopsis nigra (Baba, 1949). A. dorsal view. B. ventral view. C. branchial papillae. D. ventral view of head and sole of foot. A-D. preserved specimen (body length: 23 mm, width: 4 mm). Scales=5 mm.
Fig. 1 in Diversity of bivalve molluscs in the St Lucia Estuary, with an annotated and illustrated checklist
Fig. 1. Map of the St Lucia Estuary, showing the sampling sites where bivalves were collected from 1925 to 2011; and its geographical position relative to South Africa (adapted from Carrasco et al. 2010).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.
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.