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670 results for “Molluscs”
Figure 3 from: Rosenfeld S, Aldea C, Mansilla A, Marambio J, Ojeda J (2015) Richness, systematics, and distribution of molluscs associated with the macroalga Gigartina skottsbergii in the Strait of Magellan, Chile: A biogeographic affinity study. ZooKeys 519: 49-100. https://doi.org/10.3897/zookeys.519.9676
Figure 3 - A Ischnochiton stramineus (10 × 5 mm B Ischnochiton pusio (11 × 6 mm) C Callochiton puniceus (11 × 6 mm) D Tonicia lebruni (25 × 13 mm) E–F Tonicia chilensis (20 × 10 mm and 22 × 11 mm) G Tonicia atrata (50 × 26 mm) H Chiton bowenii (26 × 13 mm) I Plaxiphora aurata (30 × 20 mm) J Nuttallochiton martiali (20 × 10 mm).
Fig. 12 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 12. Lepidochitona (L.) dicksae, holotype V6152/T1539: spicules of girdle with edge of perinotum.
Figs 5–8 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Figs 5–8. Lepidochitona (L.) dicksae, holotype V6152/T1539: (5) head valve; (6) valve III; (7) valve IV; (8) tail valve. Scale bar = 1 mm.
Fig. 1 in Terrestrial mollusc species richness and diversity in Omo Forest Reserve, Ogun State, Nigeria
Fig. 1. The location of Omo Forest Reserve in Ogun State, Nigeria. Site I includes plots (1–12) sampled in 2009 and site II plots (13–17) sampled in 2010.
Figs 3–12 in Terrestrial mollusc species richness and diversity in Omo Forest Reserve, Ogun State, Nigeria
Figs 3–12. (3) Achatinidae, Lignus sp., H 46 mm; (4–12) Subulinidae: (4) Subulona pattalus, H 36 mm; (5) Striosubulina striatella, H 21.1 mm; (6) Subulona involuta, H 24 mm; (7) Kempiochoncha stuhlmanni, H 11 mm; (8) Pseudopeas curvelliforme, H 10.2 mm; (9) Curvella feai, H 4.8 mm; (10) Curvella ovata, H 5.6 mm; (11) Curvella sp. juvenile, H 5.52 mm; (12) Pseudopeas cf. ukaguruense, H 5.52 mm. Scale bars = 10 mm (Figs 3–8) and 1 mm (Figs 9–12).
Fig. 2 in Terrestrial molluscs of Cabo Delgado and adjacent inland areas of north-eastern Mozambique
Fig. 2. Cumulative graph of the number of species recorded sequentially at the stations in the sampled area.
Fig. 2 in Polydora and Dipolydora (Polychaeta: Spionidae) associated with molluscs on the south coast of South Africa, with descriptions of two new species
Fig. 2. Dipolydora normalis: (A) dorsal anterior; (B) hooded hook; (C) from left to right: bilimbate companion chaeta, pointed and worn modified spines of chaetiger 5; (D) pygidium. Scale bars: A = 0.1 mm, B and C = 0.02 mm, D = 0.5 mm.
Fig. 3. Stiliger aureomarginatus Jensen, 1993. A. dorso-lateral view. B. dorsal view. C. ventral view. D in A report of four unrecorded species of opisthobranch molluscs from Korea
Fig. 3. Stiliger aureomarginatus Jensen, 1993. A. dorso-lateral view. B. dorsal view. C. ventral view. D. digestive gland in cerata. A. living animal. B-D. preserved specimen (body length: 5 mm, width: 1 mm). Scales=1 mm.
Data from: Resolving the evolutionary relationships of molluscs with phylogenomic tools
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Data from: Identification of North Sea molluscs with DNA barcoding
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Data from: Interactions between plant genome size, nutrients and herbivory by rabbits, molluscs and insects on a temperate grassland
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Data from: Mollusc-shell debris can mitigate the deleterious effects of organic pollution on marine sediments
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FIG. 4 in The exploitation of molluscs and other invertebrates in Alexandria (Egypt) from the Hellenistic period to Late Antiquity: food, usage, and trade
FIG. 4. — Fragmentofabrokenblade (?) inanoystershell. Scalebars: 10 mm.
FIG. 17 in The exploitation of molluscs and other invertebrates in Alexandria (Egypt) from the Hellenistic period to Late Antiquity: food, usage, and trade
FIG. 17. — Perforatedmother-of-pearlplaquedatedtothe 2ndcenturyBC. Scale bar: 10 mm.
Figure 9 from: Muratov IV, Heyns-Veale E (2020) Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Patellogastropoda and Lepetellida. African Invertebrates 61(1): 49-81. https://doi.org/10.3897/afrinvertebr.61.51989
Figure 9 Emarginula thorektes Kilburn, 1978. Holotype T2193/NMSA-MOL 0A3829. Scale bar: 5 mm.
Figure 7 from: Muratov IV, Heyns-Veale E (2020) Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Patellogastropoda and Lepetellida. African Invertebrates 61(1): 49-81. https://doi.org/10.3897/afrinvertebr.61.51989
Figure 7 Emarginula mcclurgi Kilburn, 1978. Holotype T2190/NMSA-MOL 0A5726. Scale bar: 5 mm.
Figure 6 from: Muratov IV, Heyns-Veale E (2020) Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Patellogastropoda and Lepetellida. African Invertebrates 61(1): 49-81. https://doi.org/10.3897/afrinvertebr.61.51989
Figure 6 Emarginula koon Kilburn, 1978. Holotype T2196/NMSA-MOL 0B147. Scale bar: 10 mm.
Figure 4 from: Muratov IV, Heyns-Veale E (2020) Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Patellogastropoda and Lepetellida. African Invertebrates 61(1): 49-81. https://doi.org/10.3897/afrinvertebr.61.51989
Figure 4 Diodora procurva Herbert, 1989. Holotype T124/NMSA-MOL 0E5938. Scale bar: 10 mm
Figure 3 from: Muratov IV, Heyns-Veale E (2020) Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Patellogastropoda and Lepetellida. African Invertebrates 61(1): 49-81. https://doi.org/10.3897/afrinvertebr.61.51989
Figure 3 Glyphis fuscocrenulata E.A. Smith, 1906. Syntype T524/NMSA-MOL 001270. Scale bar: 10 mm.
Figure 18 from: Muratov IV, Heyns-Veale E (2020) Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Patellogastropoda and Lepetellida. African Invertebrates 61(1): 49-81. https://doi.org/10.3897/afrinvertebr.61.51989
Figure 18 Anatoma yaroni Herbert, 1986. Holotype T3258/NMSA-MOL 0C6590. Scale bar: 1 mm.
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International Brain Laboratory public data
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OpenNeuro
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