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FIG. 5 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)
FIG. 5. — Raphitoma densa (Monterosato, 1884): A, Murter Is., coll. PRK, h = 11.3 mm; B, Biograd, coll. PRK, h = 10.2 mm; C, Vrsi, coll. PET, h = 11.55 mm; D, Vir Is., coll. PET, h = 11.0 mm; E, Murter Is., coll. PET, h = 11.6 mm; F, Sukošan, coll. PET, h = 10.75 mm; G, Vrsi, coll. PET, h = 10.0 mm; H, Zaton, coll. PET, h = 8.8 mm.
FIG. 3 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)
FIG. 3. — Raphitoma petanii Prkić, Giannuzzi-Savelli & Pusateri n. sp., Stari Trogir. A, holotype, MNHN-IM-2000-34887, h = 10.65 mm; B, paratype, coll. RGS 120245, h = 9.6 mm; C, paratype, MCZR-M-TYPE-00118, h = 9.25 mm; D, paratype, MNHN-IM-2000-34888, h = 9.3 mm; E, paratype, coll. PUS 2798, h = 9.7 mm; F, paratype, HPM 11500, h = 8.7 mm; G, paratype, MZB 60233, h = 8.2 mm.
FIG. 4 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)
FIG. 4. — Raphitoma petanii Prkić, Giannuzzi-Savelli & Pusateri n. sp.: A, Stari Trogir, paratype, coll. PRK, h = 11.05 mm; B, Stari Trogir, paratype, coll. RGS 120246, h = 11.8 mm; C, Stari Trogir, paratype coll. PET, h = 11.55 mm; D, Sukošan, coll. PET, h = 12.4 mm; E, Stari Trogir, paratype, coll. PRK, h = 12.05 mm; F, Biograd coll. PRK, h = 10.3 mm; G, Murter Is., coll. PRK, h = 10.3 mm; H, Stari Trogir, coll. RGS, h = 9.1 mm.
FIG. 2 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)
FIG. 2. — Measurements taken on protoconch of Raphitoma pusaterii Prkić & Giannuzzi-Savelli n. sp. Diameter of nucleus (D nuc. = 105 µm), diameter of first half-whorl (D ½ = 159 µm), diameter of first whorl (D 1 = 190 µm), maximum diameter (Max. D = 440 µm), number of whorls (PW = 3.6), number of whorls of protoconch 1 (PW 1 = 1.1). Scale bar: 200 µm.
FIG. 1 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)
FIG. 1. — Phylogenetic relationships (maximum likelihood topologies) among species of the genus Raphitoma (see Russini et al. 2020 for further details). Numbers at nodes are bootstrap supports after 1000 pseudoreplicates, and posterior probabilities after a Bayesian analysis on the same dataset; only values higher than 75% bootstrap support and 95% posterior probability are reported; black dots indicate nodes supported by 100% bootstrap and 1.0 posterior probability. A, ML analysis on the combined dataset (COI + 16S + 12S + ITS2); B, the histogram portraying the distribution of the pairwise genetic distances (K2p) among the COI sequences (red bars on the left are intraspecific comparisons, yellow bars on the right are interspecific comparisons); C, ML analysis on the ITS2 alignment.
FIG. 15 in Three new species of Raphitoma Bellardi, 1847 (Mollusca, Gastropoda, Raphitomidae) from Croatian waters (NE Adriatic Sea)
FIG. 15. — Murex echinatus Brocchi, 1814: A, lectotype, MCSNM i 5427; B, D, paralectotype, MCSNM i5428; C, E, paralectotype, MCSNM i5429. Photos courtesy: Martina Paolini (MCSNM).
FIG. 20 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 20. — Leufroyia villaria (Pusateri & Giannuzzi-Savelli, 2008). Dugi Otok Island (Croatia), 35-57 m, h. 7.18 mm. A, Frontal view of shell; B-D, apical (B), frontal (D) and dorsal (C) view of protoconch. Scale bars: 2 mm (A), 300 µm (B-D).
FIG. 22 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 22. — Details of spiral cordlets. A, L. leufroyi (Michaud, 1828), Ile Rousse (Corse), h. 9.8 mm (coll. BAR); B, L. concinna (Scacchi, 1836), Elba Island, 40 m, h. 14 mm (coll. BAR); C, L. erronea Monterosato, 1884, Bagni Fiume (Livorno), h. 16 mm (coll. PAG); D, L. villaria (Pusateri & Giannuzzi-Savelli, 2008), Porto Cesareo (Taranto), 70 m, h. 14.2 mm (coll. PAG).
FIG. 19 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 19. — Photographs of two living animals of Leufroyia villaria (Pusateri & Giannuzzi-Savelli, 2008). Dugi Otok Island (Croatia), 35-57 m, h. 7 mm (A), h. 7.5 mm (B-E). Photo courtesy: Alen Petani.
FIG. 16 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 16. — Leufroyia erronea Monterosato, 1884. Žirje Island (Croatia), 70-100 m, amidst red coral colonies, h. 9.32 mm. A, Frontal view of shell. B-D, apical (B), frontal (D) and dorsal (C) view of protoconch. Scale bars: 2 mm (A), 300 µm (B-D).
FIG. 2 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 2. — Relationships and genetic divergence among species of Raphitomidae Bellardi, 1875. A, Bayesian topology on the COI alignment. Numbers at nodes are posterior probabilities after a Bayesian analysis, and bootstrap supports after Maximum likelihood analysis on 1000 pseudoreplicates; only values higher than 75% bootstrap support and 95% posterior probability are reported. The boxes comprise the species hypotheses as defined by the ABGD analysis. B, Distribution of the pairwise genetic distances (K2p) among the COI sequences (black bars on the left, intraspecific comparisons; on the right, interspecific comparisons).
FIG. 7 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 7. — Underwater photographs of three living animals of Leufroyia leufroyi (Michaud, 1828). A-C, France, Cap d'Antibes, 13-17 m. Photo courtesy: Dominique Horst.
FIG. 11 in Revision of Mediterranean and NE Atlantic Raphitomidae (Gastropoda, Conoidea) 8: The genus Leufroyia Monterosato, 1884
FIG. 11. — Underwater photographs of two living animals of Leufroyia concinna (Scacchi, 1836). A, Italy; B, France, Cap d'Antibes, 21 m. Photo courtesy: A, Alessandro Falleni; B, Dominique Horst.
A JWST inventory of protoplanetary disk ices. The edge-on protoplanetary disk HH 48 NE, seen with the Ice Age ERS program
<p>JWST NIRSpec G395H spectrum for HH 48 NE edge-on disk, as analyzed in Sturm et al. (2023). DOI: 10.1051/0004-6361/202347512</p>
Fig. 2 in Fish assemblage of the Mamanguape Environmental Protection Area, NE Brazil: abundance, composition and microhabitat availability along the mangrove-reef gradient
Fig. 2. Ontogenetic patterns of habitat use in Abudefduf saxatilis, Anisotremus surinamensis, Lutjanus alexandrei, and L. jocu along the sub-areas of Mamanguape Mangrove-Reef system, NE Brazil, showing an increase in individual size classes from the Estuarine to the Reef zone. Mann Whitney U Test showed significant size differences between all sub-areas (for A. saxatilis, Transition vs. Reefs: U = 491, Z = -6.02, p = 0.00; for A. surinamensis, Transition vs. Reefs: U = 1338, Z = -6.83, p = 0.00; for L. alexandrei, Peixe-Boi vs. Transition: U = 0.00, Z = -3.39, p = 0.00; and Tanques vs. Transition: U = 0.00, Z = -2.92, p = 0.00; for L. jocu, Peixe-Boi vs. Transition: U = 7.5, Z = -3.38, p = 0.00), except between Tanques and Peixe-Boi for L. alexandrei (U = 65, Z = 0.76, p = 0.46).
Fig. 3 in Fish assemblage of the Mamanguape Environmental Protection Area, NE Brazil: abundance, composition and microhabitat availability along the mangrove-reef gradient
Fig. 3. Canonical Correspondence Analysis of fishes and environmental parameters from Mamanguape Mangrove-Reef system, NE Brazil: (a) fish species (symbols) in relation to microhabitat categories (vectors) - Eigenvalues: axis 1, 0.56; axis 2, 0,20; r species-environment: axis 1, 0.87; axis 2, 0.56; First two axes accounted for 64.9 % of the variance; (b) fish trophic groups and subareas (symbols) in relation to environmental categories (vectors) - Eigenvalues: axis 1, 0.49; axis 2, 0.39; r species-environment: axis 1, 0.79; axis 2, 0.76; First two axes accounted for 51.6 % of the variance. Monte-Carlo test of all canonical axes were significant (p <0.01), 999 permutations. Abbreviations as follows - fish species: Abusax: Abudefduf saxatilis; Acabah: Acanthurus bahianus; Acacoe: A. coeruleus; Achlin: Achirus lineatus; Anisur: Anisotremus surinamensis; Anivir: A. virginicus; Batsop: Bathygobius soporator; Centrop: Centropomus sp.; Cithspil - Citharichthys spilopterus; Corglau - Coryphopterus glaucofraenum; Dactvol - Dactylopterus volitans; Echnau: Echeneis naucrates; Epiadc: Epinephelus adscensionis; Eucmel: Eucinostomus melanopterus; Haepar: Haemulon parra; Hipprei: Hippocampus reidi; Lutana: Lutjanus analis; Lutale: L. alexandrei; Lutjoc: L. jocu; Micrbra: Microphis brachyurus; Myroce: Myrichthys ocellatus; Rypran: Rypticus randalli; Scarus: Scarus sp.; Sparis: Sparisoma sp.; Sphtes: Sphoeroides testudineus; Stefus: Stegastes fuscus; Stevar: S. variabilis; trophic groups: RH - Roving herbivore; TH - Territorial herbivore; OM - Omnivore; CA - Carnivore; IM - Invertivore of mobile prey.
Fig. 1 in Fish assemblage of the Mamanguape Environmental Protection Area, NE Brazil: abundance, composition and microhabitat availability along the mangrove-reef gradient
Fig. 1. Mamanguape estuary, State of Paraíba, NE Brazil, showing surveyed sub-areas: 1) Tanques; 2) Peixe-Boi; 3) Cação; 4) Transition; and 5) Reefs. Dashed areas represent sandbanks.
Fig.ç2.Ec hinoderes ohtsukai sp. nov., camera lucida drawings. A, B, Holotype, male (ZIHU 3976), entire animal, dorsal and ventral view, respectively; C, D, allotype, female (ZIHU 3977), segments 9–11, dorsal and ventral view, respectively. Abbreviations: dss, droplet-shaped sensory spot; gco1, glandular cell outlet type I; gco2, modi ed glandular cell outlet type II; ldt, laterodorsal tubule; lts, lateral terminal spine; lvt, lateroventral tubule; mds, middorsal spine; ne, neck; ps, penile spine; rss, rounded sensory spot; si, sieve plate. in A New Brackish-water Species of Echinoderes (Kinorhyncha: Cyclorhagida) from the Seto Inland Sea, Japan
Fig.ç2.Ec hinoderes ohtsukai sp. nov., camera lucida drawings. A, B, Holotype, male (ZIHU 3976), entire animal, dorsal and ventral view, respectively; C, D, allotype, female (ZIHU 3977), segments 9–11, dorsal and ventral view, respectively. Abbreviations: dss, droplet-shaped sensory spot; gco1, glandular cell outlet type I; gco2, modi ed glandular cell outlet type II; ldt, laterodorsal tubule; lts, lateral terminal spine; lvt, lateroventral tubule; mds, middorsal spine; ne, neck; ps, penile spine; rss, rounded sensory spot; si, sieve plate.
Combining traceological analysis and ZooMS on Early Neolithic bone artefacts from the Cave of Coro Trasito, NE Iberian Peninsula: Cervidae used equally to Caprinae
<p>MALDI-ToF MS and MALDI-tims-Q-ToF MS data (raw data: .txt files, merged spectra: msd files) used for the ZooMS analysis of 20 bone artefacts from the Early Neolithic site of Coro Trasito.</p>
nal; E', F', internal, G'-J', Pal. 1341 (peripheral 8); G', H', external; I', J', internal; K'-N', Pal. 1343 (peripheral 9); K', L', external; M', N', internal; O'-R', Pal. 1345 (peripheral 10); O', P', external; Q', R', internal; S'-V', Pal. 1348 (peripheral 11); S', T', external; U', V', internal views; W', reconstruction of carapace Thick lines correspond to scute sulci, dotted lines denote plate sutures, and oblique lines indicate missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Spr, supracaudal; Ve, vertebral. Scale bars: A-V', 1 cm; W', 2.5 cm. in Fossil turtles from the early Miocene localities of Mokrá-Quarry (Burdigalian, MN4), South Moravian Region, Czech Republic
nal; E', F', internal, G'-J', Pal. 1341 (peripheral 8); G', H', external; I', J', internal; K'-N', Pal. 1343 (peripheral 9); K', L', external; M', N', internal; O'-R', Pal. 1345 (peripheral 10); O', P', external; Q', R', internal; S'-V', Pal. 1348 (peripheral 11); S', T', external; U', V', internal views; W', reconstruction of carapace Thick lines correspond to scute sulci, dotted lines denote plate sutures, and oblique lines indicate missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Spr, supracaudal; Ve, vertebral. Scale bars: A-V', 1 cm; W', 2.5 cm.
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.