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FIG. 15 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 15. — Nanaphora leei Fernandes & Pimenta, 2015: A, MNHN, sta. AB197; B, MNHN, sta. AB567; C, E, MNHN, sta. AB360; D, MNHN, sta. AB419; F, G, MNHN, sta. AS557; H-J, MNHN, sta. GS34 (Karubenthos 1) (Fig. 14B). Scale bars: A-D, H, 100 μm; E-G, 200 μm; I-J, 500 μm.
FIG. 17 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 17. — Triphora portoricensis Rolán & Redfern, 2008: A, B, MNHN, sta. AB183 (Fig. 16A); C, MNHN, sta. AB193 (Fig. 16B); D, MNHN, sta. AB350 (Fig. 16C); E, H, MNHN, sta. AS255 (Fig. 16G); F, MNHN, sta. AB405 (Fig. 16E); G, MNHN, sta. AB405 (Fig. 16F). Scale bars: A, E, 200 μm; B-D, F-H, 100 μm.
FIG. 14 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 14. — Nanaphora leei Fernandes & Pimenta, 2015: A, MNHN, sta. AS075, 5.0 mm; B, MNHN, sta. GS34 (KARUBENTHOS 1), 4.9 mm; C, MNHN, sta. AB191, 4.8 mm; D, E, MNHN, sta. AB260, 4.3 mm, 4.2 mm; F, MNHN, sta. AS252, 4.1 mm; G, MNHN, sta. AB197, 3.9 mm; H, MNHN, sta. AB567, 3.9 mm; I, MNHN, sta. AB195, 3.9 mm; J, MNHN, sta. AB360,3.7 mm; K, MNHN,sta. AB400, 3.7 mm; L, MNHN, sta. AS557,3.6 mm; M, MNHN, sta.AB419,3.0 mm. Scale bars: 1 mm.
FIG. 6. — Isotriphora pardus n in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 6. — Isotriphora pardus n. sp.: A, H, J, MNHN-IM-2000-38597, holotype, 4.7 mm; B, MNHN-IM-2000-35481, paratype, sta. AB567, 3.8 mm; C, MNHN- IM-2000-38600, paratype, sta. AD280, 3.2 mm; D, MNHN-IM-2000-35480, paratype, sta. AD289, 3.8 mm; E, K, MNRJ 24517, paratype, sta. AD290, 3.0 mm; F, MNHN, sta. AS253, 2.7 mm; G, I, L, MNHN-IM-2000-38599, paratype, sta. AS409, 2.2 mm. Scale bars: A-G, 1 mm; H, K-L, 200 μm; I, 100 μm; J, 500 μm.
FIG. 1 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 1. — Triphoridae Gray, 1847 from Martinique: A, Cheirodonta dupliniana (Olsson, 1916), MNHN, sta. AS576, 5.4 mm; B, Coriophora novem (Nowell-Usticke, 1969), MNHN, sta. AD280, 5.0 mm; C, Cosmotriphora arnoldoi Faber & Moolenbeek, 1991, MNHN, sta. AD260, 2.6 mm; D, Cosmotriphora melanura (C. B. Adams, 1850), MNHN, sta. AB123, 4.1 mm; E, Eutriphora bermudensis (Bartsch, 1911), MNHN, sta. AS257, 4.2 mm; F, Iniforis gudeliae Rolán & Fernández-Garcés, 2009, MNHN, sta. AS403, 4.7 mm; G, Iniforis pseudothomae Rolán & Fernández-Garcés, 1993, MNHN, sta. AB062, 7.0 mm; H, Iniforis turristhomae (Holten, 1802), MNHN, sta. AS075, 5.7 mm; I, Isotriphora tricingulata Rolán & Fernández-Garcés, 2015, MNHN, sta. AD263, 4.9 mm; J, Isotriphora sp., MNHN, sta. AS403, 2.6 mm. Scale bars: 1 mm.
FIG. 13 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 13. — Nanaphora verbernei (Moolenbeek & Faber, 1989): A, MNHN, sta. GM11 (KARUBENTHOS 1), 3.8 mm; B, MNHN, sta. AD115, 3.9 mm; C, MNHN, sta. AD261, 3.7 mm; D, F-I, MNHN, sta. AD280, 3.9 mm; E, J, K, MNHN, sta. DW4545 (KARUBENTHOS 2 expedition), 3.8 mm. A weak micro-sculpture on the teleoconch is shown in G, J. Scale bars: A-E, 1 mm; F, 500 μm; G-H, J-K, 100 μm; I, 200 μm.
FIG. 8 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 8. — Marshallora monteiroi (Rolán & Fernández-Garcés, 2015) n. comb.: A, MNHN, sta. AD283 (Fig. 7A); B, MNHN, sta. AS482 (Fig. 7B); C, MNHN, sta. B350 (Fig. 7C); D, MNHN, sta. AD275 (Fig. 7D); E, MNHN, sta. AD283 (Fig. 7E); F, MNHN, sta. AD283 (Fig. 7F); H, MNHN, sta. AS252 (Fig. 7I); H, MNHN, sta. AD263 (Fig. 7K). Scale bars: 100 μm.
FIG. 7 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 7. — Marshallora monteiroi (Rolán & Fernández-Garcés, 2015) n. comb.: A, L, MNHN, sta. AD283, 4.2 mm; B, MNHN, sta. AS482, 2.8 mm; C, MNHN, sta. AB350, 2.0 mm; D, MNHN, sta. AD275, 3.7 mm; E-H, N, MNHN, sta. AD283, 3.0 mm, 3.0 mm, 3.5 mm, 3.0 mm; I, MNHN, sta. AS252, 3.0 mm; J, MNHN, sta. GD21 (KARUBENTHOS 1), 4.6 mm; K, M, MNHN, sta. AD263, 2.7 mm. Scale bars: A-K, 1 mm; L-N, 200 μm.
FIG. 3 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 3. — Triphoridae Gray, 1847 from Martinique – cont.: A, Strobiligera inaudita (Rolán & Fernández-Garcés, 2008), MNHN, sta. AD218, 4.0 mm; B, Triphora ellyae De Jong & Coomans, 1988, MNHN, sta. AB308, 4.1 mm; C, Triphora martii Rolán & Fernández-Garcés, 1995, MNHN, sta. AS252, 4.2 mm; D, Triphora cf. scylla Fernandes & Pimenta, 2015, MNHN, sta. AB562, 3.5 mm. Scale bars: 1 mm.
FIG. 12 in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 12. — Types of Nanaphora verbernei (Moolenbeek & Faber, 1989); credits to MSc. Hannco Bakker; A, ZMA.MOLL.136613, holotype; B-D, ZMA.MOLL.136655, paratypes. Scale bars: 1 mm.
FIG. 4. — Inella spinosa n in Triphoridae (Gastropoda) from Martinique sampled by the MADIBENTHOS expedition, with notes on shallow-water species from Guadeloupe
FIG. 4. — Inella spinosa n. sp.: A, G-H, MNHN-IM-2000-38595, holotype, 4.4 mm; B, C, E, F, MNHN-IM-2000-38596, paratypes, sta. AD263, 3.9 mm, 2.9 mm; D, MNHN, sta. DW4545 (KARUBENTHOS 2 expedition), 2.7 mm. Scale bars: A-D, 1 mm; E-H, 200 μm.
Fig. 3 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 3. Mean distribution of burrowing slugs in relation to soil moisture levels afer release into vented (75% RH) and unvented (90% RH) cages. Error bars indicate SD. Bars topped by the same letter are not significantly different according to the Bonferroni multiple comparison test.
Fig. 7 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 7. Foliage consumption (mean leaf area and mean wet weight) patterns by L. floridana in relation to mean slug wet weight (age): (a) daily consumption; (b) relative consumption (consumption adjusted for slug weight).
Fig. 2 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 2. Leidyula floridana: (a) growth (change in mean wet weight) and (b) survival over an 18 month period under laboratory conditions. Error bars indicate SD.
Fig. 1 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 1. Leidyula floridana: (a) dissected male genitalia, showing exsheathed penial gland (lef) and penis (right); (b) adults, showing extended form (lef) and contracted form (right); (c) adult depositing eggs; (d) completed egg clutch.
Fig. 8 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 8. Effects of different bait treatments on L. floridana slugs in relation to time: (a) mean cumulative mortality; (b) mean daily lettuce consumption. Error bars indicate SD. Bars within a date topped by the same letter are not signficantly different according to the Bonferroni multiple comparison test.
Fig. 5 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 5. Growth (mean change in wet weights) of young L. floridana afer transfer to a Romaine lettuce lettuce diet from less suitable hosts. Error bars indicate SD.
Fig. 4 in Biology and control of the leatherleaf slug Leidyula floridana (Mollusca: Gastropoda: Veronicellidae)
Fig. 4. Growth (mean change in wet weight) of young L. floridana during the first 6 weeks of life when provided with different potential food resources: (a) vegetable plants; (b) ornamental plants; (c) weeds; (d) other materials. Error bars indicate SD.
Figs. 6–10. 6. Cerithium magnum Jay, 1836 in Catalog Of Recent Type Specimens In The Division Of Invertebrate Zoology, American Museum Of Natural History. V. Mollusca, Part 2 (Class Gastropoda [Exclusive Opisthobranchia And Pulmonata With Supplements To Gastropoda [Opisthobranchia], And Bivalvia
Figs. 6–10. 6. Cerithium magnum Jay, 1836 (lectotype—AMNH 56067), X 0.75. 7. Conus Bernardi and Crosse, 1861 (syntype—AMNH 47629), X 1.75. 8. Conus pseudoaustini Usticke, (holotype—AMNH 195452), X 2. 9. Cyclostoma maculosa Jay, 1839 (syntype—AMNH 56086), 10. Cyclostoma multilineata Jay, 1839 (syntype—AMNH 56087), X 2.6.
FIG. 10 in The Pleistocene Conidae (Mollusca: Gastropoda) from the island of Rhodes (Greece) and their palaeoecological significance
FIG. 10. — Current distribution of the subgenus Monteiroconus on African coast, after Monnier et al. 2018a, b and Tenorio et al. 2020. Temperature ranges (in Celsius degrees) of the four species. Map and temperatures modified from Sessa et al. 2013. Star indicates Rhodes.
ScienceDex guides
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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.