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8,443 results for “gastropoda”
FUGURA 5 in Descripción de Testacella lidenbrocki sp. nov. (Gastropoda: Testacellidae, grupo scutulum), una nueva especie de distribución gimnésica
FUGURA 5. TestQcellQ lidenbrocki sp. nov. de la serra de Darrera (N'Alí, Mallorca) (Guillem X.Pons leg.21/04/1990). TestQcellQ lidenbrocki sp.nov.from the Serra de Darrera (N'Alí, Mallorca) (Guillem X.Pons leg.04/21/1990).
FUGURA 2. A-B in Descripción de Testacella lidenbrocki sp. nov. (Gastropoda: Testacellidae, grupo scutulum), una nueva especie de distribución gimnésica
FUGURA 2. A-B: Conchas de TestQcellQ procedentes de Menorca; C: de Lambeth (Londres),localidad típica de T. scutulum (a partir de la figura original de Sowerby,1820,sin escala); D-E: de Sicilia (a partir de Liberto et al., 2011); F: de Calabria, Italia; G: de Campania,Italia (a partir de Liberto et al., 2011) y H: de Mallorca (a partir de Beckmann,2007). A-B:TestQcellQ shells from Menorca;C: from Lambeth (London),typical locality of T.scutulum (afer the original figure of Sowerby,1820,unscaled);D-E: from Sicilia (from Liberto et al., 2011);F: from Calabria,Italy; G: from Campania,Italy (based on Liberto et al., 2011) and H: Mallorca (based on Beckmann,2007).
Comparative shell morphology of the rare land snails Levantina ninivita and Levantina escheriana (Gastropoda: Helicidae) in south-eastern Türkiye (Table for measurements)
<div>Title:</div> <div>Comparative Shell Morphology of the Rare Land Snails Levantina ninivita and Levantina escheriana (Gastropoda: Helicidae) in South-Eastern Türkiye</div> <div> </div> <div>Description:</div> <div>This study presents a comparative analysis of the shell morphology of the rare land snails Levantina ninivita and Levantina escheriana (Gastropoda: Helicidae) in south-eastern Türkiye. The dataset includes detailed measurements of shell dimensions for both species, specifically focusing on shell height (shh), shell width (shw), aperture height (aph), aperture width (apw), spire height (sph), and body whorl height (bwh). </div>
Fig. 27 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 27 Map of species distributions. Full-filled colors represent specimens studied and colors with empty circles represent photograph records found in the literature and/or on-line. Yellow = Hexabranchus aureomarginatus. Pink = Hexabranchus gigan-
Fig. 24 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 24 Hexabranchus giganteus sp. nov. (UL – YT1634). SEM photograph of the radula. A General view, B outer teeth, C inner teeth, D rodlets of the jaws
Fig. 25 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 25 Hexabranchus giganteus sp. nov. A Photography of internal anatomy of specimen UL-YT1657 with details of the reproductive system (ventral view above and dorsal view below). B Reconstructed drawing. Abbreviations: amp, ampulla; bc, bursa copulatrix; bg, blood gland; dd, deferent duct; dg, digestive gland; fmg, female gland; h, heart; hd, hermaphroditic duct; it, intestine; p, penial bulb; pr, prostate; reps, reproductive system; rs, receptaculum seminis; st, stomach, ud, uterine duct; v, vagina
Fig. 9 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 9 Ontogeny, color, and variation in Hexabranchus sanguineus (lineage 2). Green circles indicate studied specimens and red online sources. A early juvenile B transitional C mature, D unrolled man-
Fig. 15 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 15 Hexabranchus sandwichensis (UF508353). SEM photograph of the radula. A General view, B central region and inner teeth, C outer teeth, D rodlets of the jaws
Fig. 12 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 12 Hexabranchus sanguineus (CASIZ194618) SEM photograph of the radula. A General view, B top portion of the radula, C outer teeth, D rodlets of the jaws
Fig. 18 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 18 Hexabranchus aureomarginatus (CASIZ074634) SEM photograph of the radula. A general view, B central portion of the radula, C Inner teeth, D rodlets of the jaws
Fig. 3 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 3 Ontogeny, color, and variation in Hexabranchus lacer (morphotype 1: Pacific). Green circles indicate studied specimens and red online sources. A early juvenile, B juvenile, C early transitional, D mild-transitional, E late transitional, F mature, even rosettes, G
Fig. 6 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 6 Hexabranchus lacer (CASIZ193301) SEM photograph of the radula. A General view, B outer teeth, C inner teeth, D rodlets of the jaws
Fig. 2 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 2 The haplotype network based on cytochrome c oxidase subunit I (COI) molecular data showing genetic mutations occurring within species of the genus Hexabranchus. Each hatch line represents one mutation and black dots represent hypothetical haplotypes. Each
Fig. 11 in A Spanish dancer? No! A troupe of dancers: a review of the family Hexabranchidae Bergh, 1891 (Gastropoda, Heterobranchia, Nudibranchia)
Fig. 11 Ontogeny, color, and variation in Hexabranchus sanguineus (putative lineage 4). Red circles indicate online sources. A juvenile, B late transitional, C mature, light orange background, lightly flecked, D mature, red background, moderately flecked, E swimming, white
Fig. 19 in Phyllidiidae (Nudibranchia, Heterobranchia, Gastropoda): an integrative taxonomic approach including chemical analyses
Fig. 19 Haplotype network of Phyllidiella sp. a (29 sequences, white circles) and Phyllidiella zeylanica auctt. (24 sequences, grey circles) based on the CO1 gene. Note the closer relationship of specimens with similar chemotypes, coloured orange and blue, respectively
Fig. 13 in Phyllidiidae (Nudibranchia, Heterobranchia, Gastropoda): an integrative taxonomic approach including chemical analyses
Fig. 13 Maximum likelihood tree of Phyllidiidae based on the concatenated data set of partial CO1 and 16S sequences. Terminal taxa on species level collapsed. Numbers at nodes are bootstrap values (1000 replicates). The genera are marked with the same colours as in Fig. S1. Numbers behind the species names indicate results of the
Fig. 6 in Phyllidiidae (Nudibranchia, Heterobranchia, Gastropoda): an integrative taxonomic approach including chemical analyses
Fig. 6 Phyllidia species and specimens with identifiers. Scale bars: 10 mm. 1a Phyllidia sp. a: a Phsp17Bu1. 2a–i Phyllidia varicosa: a Phel15Bu1; b Phva15Bu8; c Phel18Bu6; d Phel18Ko3; e Phva18Po1; f Phva18Ba1; g Phva15Bu2; h Phva16Sa37; i Phva16Sa38
Fig. 3 in Phyllidiidae (Nudibranchia, Heterobranchia, Gastropoda): an integrative taxonomic approach including chemical analyses
Fig. 3 Type and museum voucher material of Phyllidiella and Phyllidiopsis: a Phyllidiella annulata non-type C159519; b Phyllidiella annulata non-type C159520; c Phyllidiella annulata non-type C159520b; d Phyllidiella annulata non-type C159522; e Phylli-
Fig. 14 in Phyllidiidae (Nudibranchia, Heterobranchia, Gastropoda): an integrative taxonomic approach including chemical analyses
Fig. 14 Maximum likelihood tree of Phyllidiidae based on partial CO1 sequences. Terminal taxa on species level collapsed. Numbers at nodes are bootstrap values. The genera are marked with the same colours as in Fig. S1
Fig. 8 in Phyllidiidae (Nudibranchia, Heterobranchia, Gastropoda): an integrative taxonomic approach including chemical analyses
Fig. 8 Phyllidiopsis species and specimens with identifiers. Scale bars: 1–3 1 mm; 4 10 mm. 1a–d Phyllidiopsis xishaensis: a Phst16Bu1; b Phst16Bu2; c Phsxi18Ba1; d Phsxi18Bu1. 2a–c Phyllidiopsis annae:
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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.