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FIGURE 6. Buccal bulb and reproductive system. A–B in Filling gaps in the knowledge of Goniodorididae taxa (Mollusca, Gastropoda, Nudibranchia) with description of seven new species
FIGURE 6. Buccal bulb and reproductive system. A–B. Murphydoris polkadotsa sp. nov. (QM MO 86038). A. Buccal bulb. B. Reproductive system. C–D. Naisdoris aurornata sp. nov. (CASIZ 186113). C. Buccal bulb. D. Reproductive system. E–F. Naisdoris labalsaensis sp. nov. (WAM S72700). E. Buccal bulb. F. Reproductive system. G–H. Naisdoris vitiligata sp. nov. (ZCR.MOL.15410). G. Buccal bulb. H. Reproductive system. Abbreviations: am, ampulla; bc, bursa copulatrix; bp, buccal pump; fgm, female gland mass; hd, hermaphroditic duct; oe, esophagus; op, esophageal pump; p, penis; pr, prostate; ra, radular sac; rs, receptaculum seminis; sgl, salivary gland; ud, uterine duct; va, vagina; vd, vas deferens. Scale bars: 1 mm.
Figure 6 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 6. Living individuals of four Elysia species from European waters used in this study. A, Elysia azorica sp. nov. (MNCN15.05/47823); B, E. flava (MNCN15.05/90931); C, E. rubeni (MNCN15.05/200080); D, E. timida (MNCN15.05/90934). Photos taken by Manuel Malaquías (A); Jakov Prkic (B); Fabio Vitale (C) and Giulia Furfaro (D). Scale bars = 1 mm.
Figure 5 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 5. Living individuals of the species Elysia viridis (A–F) and Elysia evelinae (G–H) used in this study. A, MNCN15.05/90901; B, MNCN15.05/90894; C, MNCN15.05/90910; D, MNCN15.05/90898; E, MNCN15.05/90906; F, MNCN15.05/90889; G, MNCN15.05/90924; H, MNCN15.05/90923. Photos taken by Peter H. van Bragt (A); Leila Carmona (B); Gianni Colucci (C); Marina Poddubetskaia (D, G–H); Alen Petani (E) and D'Onofrio (F). Scale bars = 1 mm.
Figure 7 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 7. Scanning electron micrographs of Elysia spp. radular teeth. A, E. azorica sp. nov. (MNCN15.05/47823); B, E. rubeni (MNCN15.05/200080); C, D, E. viridis: C, MNCN15.05/90903; D, MNCN15.05/90912; E, E. flava (MNCN15.05/90929); F, E. timida (MNCN15.05/90933); G, E. gordanae (MNCN15.05/90843); H, E. gordanae (MNCN15.05/90836); I, J, K, E. margaritae: I, J, MNCN15.05/90817; K, MNCN15.05/94854; L, E. evelinae (MNCN15.05/90924). Scale bars = 10 μm.
Figure 8 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 8. Elysia azorica sp. nov. reproductive system (MNCN 15.05/47823), scale bar = 100 μm. Abbreviations: ag, albumen gland; am, ampulla; fmgc, female gland complex; fp, female pore; hf, hermaphroditic follicle; gr, genital receptacle; p, penis; sr, seminal receptacle; vd, vas deferens.
Figure 4 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 4. Living individuals of the species Elysia gordanae (A–F) and Elysia margaritae (G–H) used in this study. A, MNCN15.05/90861; B, MNCN15.05/90854; C, MNCN15.05/90855; D, MNCN15.05/90829; E, MNCN15.05/90841; F, MNCN15.05/90839; G, MNCN15.05/90816; H, MNCN15.05/90817. Photos taken by Fabio Vitale (A, G–H); Marina Poddubetskaia (B–C, E) and Alen Petani (D). Scale bars = 1 mm.
Figure 3 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 3. Molecular phylogeny of Atlantic and Mediterranean Elysia species rooted on genus Bosellia (not shown), based on the combined dataset (H3 + COI + 16S) inferred by Bayesian inference analysis. Numerals in parentheses indicate the number of specimens from the same locality. Bold branches represent the Elysia species present in European waters arranged in four subclades labelled from A to D. Significant support values are given as ML bootstrap percentages (below branch) and BI posterior probabilities (above branch). Not supported branches are not labelled. Abbreviations: EA, eastern Atlantic Ocean; MED, Mediterranean Sea; WA, western Atlantic Ocean.
Figure 1 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 1. Molecular phylogeny of worldwide Elysia species rooted on genus Bosellia (not shown). Topology is based on Bayesian inference analysis of concatenated dataset (H3 + COI + 16S + 28S). Only one specimen per species is shown according to species delimitation analyses. Bold red species names indicate the species sequenced in this study that are present in European waters. Significant support values are given as ML bootstrap percentages (BS, below branch) and BI posterior probabilities (PP, above branch). Asterisks indicate complete support (PP = 1.0, BS = 100%). Vertical grey bars indicate specimens grouped as species entities by ABGD, GMYC and bPTP methods based on the COI gene. Unfilled vertical bars indicate the specimens grouped as species based on the 16S gene.
Figure 2 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 2. Histogram of pairwise genetic COI distances (Kimura parameter) among 638 sequences including all available National Center for Bioinformatics (NCBI) sequences for Elysia, showing barcoding gap; the arrow indicates the threshold that allows to distinguish intraspecific (left) and interspecific (right) distances for the COI region, based on ABGD analyses.
FIGURA 3. A in Descripción de una nueva especie del género Drymaeus (Albers, 1850) para el norte de Perú y nuevos datos sobre Drymaeus valentini (Gastropoda: Bulimulidae)
FIGURA 3. A: Mapa de distribución de las tres poblaciones estudiadas de DrymOeus vOlentini Breure & Vega-Luz,2020 y DrymOeus ommOtidiO sp. nov. B: Ejemplar vivo de DrymOeus vOlentini de la localidad 3 (sur de Chachapoyas,Dept.Amazonas).
FIGURA 2. A in Descripción de una nueva especie del género Drymaeus (Albers, 1850) para el norte de Perú y nuevos datos sobre Drymaeus valentini (Gastropoda: Bulimulidae)
FIGURA 2. A: DrymOeus vOlentini de la nueva localidad 1 (cerca del Bosque de Protección de Alto Mayo,cerca de Rioja,dept.San Martin) tamaño 25,38 mm. B: DrymOeus vOlentini de la nueva localidad 2 (sur de Chachapoyas,dept.Amazonas),tamaño 24,10 mm.C: DrymOeus vOlentini de la localidad tipo (cerca de Molinopampa,dept.Amazonas),tamaño 27,79 mm.D: DrymOeus ommOtidiO sp.nov.Paratipo 4 de la localidad tipo (nordeste de Bagua,provincia de Bagua, dept.Amazonas) tamaño 22,90 mm.Escala 10 mm.
FIGURA 3 in Evidències primerenques del gènere Iberellus Hesse, 1908 (Gastropoda: Stylommatophora: Helicidae: Allognathini) al Pliocè inferior de Mallorca, amb descripció d'Iberellus colladoi sp. nov.
FIGURA 3. Iberellus collOdoi sp.nov.A-C:holotip (MBCN 21881).D-G:paratip (MBCN 21882).Zanclià inferior de cova Vella de Son Lluís,Porreres (Mallorca).
FIGURE 3 in A new stygobiont species of the genus Hadziella Kuščer, 1932 (Gastropoda: Hydrobiidae) from Spain
FIGURE 3. Measurements obtained in the shells.SW:shell diameter;SH: shell height;PW: aperture width; PH: aperture height.
FUGURA 7 in Descripción de Testacella lidenbrocki sp. nov. (Gastropoda: Testacellidae, grupo scutulum), una nueva especie de distribución gimnésica
FUGURA 7. Estructura interna del pene de TestQcellQ lidenbrocki sp.nov. Ejemplar procedente del Canal de l'Infern (Algaiarens, Ciutadella de Menorca). Figura realizada por el Dr. Folco Giusti (Siena, Italia), a partir de un ejemplar capturado por el autor el 05/01/2004.Sin escala.
FUGURA 6 in Descripción de Testacella lidenbrocki sp. nov. (Gastropoda: Testacellidae, grupo scutulum), una nueva especie de distribución gimnésica
FUGURA 6. Sistema genital de una TestQcellQ lidenbrocki sp. nov. procedente de Menorca. Individuo capturado en el Lloc de Monges (Ciutadella de Menorca). bc: bolsa copulatriz; cbc: conducto de la bolsa copulatriz; cd: conducto deferente; ch: conducto de la glándula hermafrodita; g: glándula de la albúmina; mrp: músculo retractor del pene;ol:oviducto libre;v:vagina.
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).
FUGURA 1 in Descripción de Testacella lidenbrocki sp. nov. (Gastropoda: Testacellidae, grupo scutulum), una nueva especie de distribución gimnésica
FUGURA 1. Conchas de TestQcellQ lidenbrocki sp. nov. de Menorca.A: Santa Eularieta (Alaior); B: Canal de l'Infern (Algaiarens, Ciutadella); C: Pla de Mar (Ciutadella);D: ses Mongetes (Ciutadella); E: ses Olles (es Mercadal);F: ses Mongetes (Ciutadella).
FUGURA 3 in Descripción de Testacella lidenbrocki sp. nov. (Gastropoda: Testacellidae, grupo scutulum), una nueva especie de distribución gimnésica
FUGURA 3. Holotipo de TestQcellQ lidenbrocki sp. nov. A: procedente de los sedimentos holocénicos del Pas d'en Revull (barranco de Algendar, Ferreries Menorca) comparado con un ejemplar B: de la serra de Darrera (N'Alí,Mallorca) (Guillem X.Pons leg.21/04/1990).
FIGURE 31 in The Dolicholatiridae and Fasciolariidae (Gastropoda, Buccinoidea) of the Miocene Paratethys Sea
FIGURE 31. Schematic drawings of Paratethyan Dolicholatiridae and Fasciolariidae showing size relations amongst species; colors group genera. Dolicholatiridae: 1. Dulaiania pleurotomoides (Hoernes & Auinger 1890). Fasciolariidae, Fasciolariinae: 2. Aurantilaria pyrulaeformis (Hoernes & Auinger, 1890). 3. Aurantilaria tarbelliana (Grateloup, 1845). Fasciolariidae, Peristerniinae: 4. Polygona vindobonensis (Csepreghy-Meznerics, 1956). 5. Eurolatirus ornatus (d'Orbigny, 1852). 6. Tarantinaea hoernesii (Seguenza, 1875). 7. Polygona lynchi (de Basterot, 1825). 8. Snyderifusus prevosti (Hörnes, 1853). 9. Neolatirus recticauda (Fuchs in Karrer, 1877). 10. Cryptoneolatirus bellardii (Hörnes, 1854). 11. Turrilatirus moravicus (Hoernes & Auinger, 1890). Fasciolariidae, Fusininae: 12. Angustifusus hoessii (Naumann, 1852). 13. Angustifusus vindobonensis (Hoernes & Auinger, 1890). 14. Fraudifusinus crispoides (Kittl, 1887). 15. Fraudifusinus grundensis nov. sp. 16. Fraudifusinus pseudocrispoides nov. sp. 17. Pseudofusus austriacus (Hoernes & Auinger, 1890). 18. Pseudofusus balteus nov. sp. 19. Pseudofusus hontensis (Csepreghy-Meznerics, 1956). 20. Pseudofusus palatinus (Strausz, 1954). 21. Pseudofusus rostratoides nov. sp. 22. Pseudofusus stahlschmidti nov. sp. 23. Pseudolatirus bilineatus (Naumann, 1852). 24. Takashius kantori nov. sp. 25. Takashius vinculum nov. sp. 26. Takashius boettgeri (Kovács, 2022). 27. Xenofusinus haueri (Hoernes, 1875).
FIGURE 30 in The Dolicholatiridae and Fasciolariidae (Gastropoda, Buccinoidea) of the Miocene Paratethys Sea
FIGURE 30. Euthria reussi (Hoernes & Auinger, 1885). A1–A2. NHMW 1869/0001/0351, paralectotype, Steinebrunn (Austria). B1–B2. NHMW 1869/0001/0351, paralectotype, Steinebrunn (Austria). C. NHMW 1846/0037/0231, lectoype, Steinebrunn (Austria).
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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)
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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.