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212 results for “sea slugs”
Figure 4. Paradoris araneosa, reproductive system. A in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 4. Paradoris araneosa, reproductive system. A, two accessory glands and one stylet sac in the distal part (the second stylet sac not visible on this side), paratype, CASIZ 121099, scale = 0.9 mm. B, same as (A), on the other side, scale = 0.9 mm. C, spermatic pouches and ducts, paratype, CASIZ 121099, scale = 1.2 mm. D, one accessory gland and two stylet sacs in the distal part, paratype, MNHN-SMIB 8, after Valdés (2001: fig. 33C), scale = 2.1 mm. E, remaining pieces of possibly two accessory glands in the distal part (stylet sacs missing), paratype, MNHN-SMIB 8, scale = 0.8 mm. F, remaining genital pieces, paratype, MNHN-SMIB 8, scale = 2.3 mm. G, general view, paratype, CASIZ 121099, scale = 1.6 mm.
Reference transcriptomes for three species of sacoglossan sea slug
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Data from: Species selection favors dispersive life histories in sea slugs, but higher per-offspring investment drives shifts to short-lived larvae
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Figure 17 in A cryptic radiation of Caribbean sea slugs revealed by integrative analysis: Cyerce 'antillensis' (Sacoglossa: Caliphyllidae) is six distinct species
Figure 17. Cyerce willetteorum, radular scanning electron micrographs of LACM 3844 (isolate 07Stir01). A, complete radula, with ascus. B, close-up view of tissue-free teeth from descending limb, showing irregularly shaped denticles. C, close-up view of ascus.
Fig. 9 in Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
Fig. 9 Lysosome density in digestive tissue versus non-digestive tissues. The percentage of DGT tissue covered by lysosomes within the digestive gland tubule is indicated with light blue diamonds and compared to the average area covered by lysosomes outside the DGT (shown in dark blue
Fig. 6 in Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
Fig. 6 Chloroplast and lysosome density in Elysia timida. a Chloroplasts (cps) (falsely colored red) in an unstarved specimen. b Lysosomes (lys) (blue) in the same specimen. c Composite of chloroplasts and lysosomes. d-f Cps, lys, and composite after 14 days starvation. g–i Cps, lys, and composite after 30 days starvation. j–l Cps, lys, and composite after 60 days starvation. Scale bar—50 μm
Fig. 1 Investigated species. a in Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
Fig. 1 Investigated species. a Elysia timida adults crawling on Acetabularia acetabulum. b Elysia viridis. c Thuridilla hopei
Fig. 8 in Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
Fig. 8 Chloroplast and lysosome density in Thuridilla hopei. a Chloroplasts (cps) (falsely colored red) in an unstarved specimen. b Lysosomes (lys) (blue) in the same specimen. c Composite of chloroplasts and lysosomes. d-f Cps, lys, and composite after 7 days starvation. g–i Cps, lys, and composite after 14 days starvation. j–l Cps, lys, and composite after 21 days starvation. Scale bar—50 μm
Fig. 7 in Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
Fig. 7 Chloroplast and lysosome density in Elysia viridis. a Chloroplasts (falsely colored red) in an unstarved specimen. b Lysosomes (blue) in the same specimen. c Composite of chloroplasts and lysosomes. d-f Cps, lys, and composite after 14 days starvation. g–i Cps, lys, and composite after 21 days starvation. j–l Cps, lys, and composite after 30 days starvation. Scale bar—50 μm
Fig. 2 in Phylogeny and evolution of functional chloroplast retention in sacoglossan sea slugs (Gastropoda: Heterobranchia)
Fig. 2 Character reconstructions of retention form (NR, no functional retention; SR, short-term retention; LR, long-term retention) on the tree shown in Fig. 1. Tip boxes show observed retention form of species/populations. Retention form probabilities on internal nodes were estimated using maximum likelihood under an equal-rate model. Asterisks after the species names show new data for this study. Capi-
Figure 11 in A cryptic radiation of Caribbean sea slugs revealed by integrative analysis: Cyerce 'antillensis' (Sacoglossa: Caliphyllidae) is six distinct species
Figure 11. Cyerce antillensis, original drawing from Engel (1927).
Fig. 4 3D in Examining the retention of functional kleptoplasts and digestive activity in sacoglossan sea slugs
Fig. 4 3D-AMP design and logical flow chart
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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.