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8,443 results for “Gastropoda”
Fig. 48 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 48. Distribution map of Iniforis carmelae Rolán & Fernández-Garcés, 1993; red circle = type locality.
Fig. 77 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 77. Distribution map of Triphora charybdis Fernandes & Pimenta, 2015; red circle = type locality.
Fig. 43 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 43. Distribution map of "Inella" vanilla Fernandes & Pimenta, 2019; red circle = type locality.
Fig. 39 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 39. Distribution map of "Inella" faceta Fernandes & Pimenta, 2019; red circle = type locality.
Fig. 33 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 33. Distribution map of Eutriphora auffenbergi Rolán & Lee, 2008; red circle = type locality.
Fig. 34 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 34. Distribution map of Eutriphora costai Fernandes & Pimenta, 2015; red circle = type locality.
Fig. 5 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 5. Isotriphora leo sp. nov. A. MNRJ 29392*, holotype, 2.39 mm. B. MORG 25615*, 2.00 mm. C–D. MORG 25645*, 1.76 mm and 1.79 mm, respectively. E–I. HolotypE. Scale bars: A–E = 1 mm; F–G = 100 µm; H–I = 500 µm.
Fig. 1 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 1. Cheirodonta dupliniana (Olsson, 1916). A–C. PRI 1376, 5.75 mm (original description) or 6.31 mm (scale bar provided), lectotype, illustrated in Olsson (1916). D–E. PRI 11016, 5.57 mm, paralectotype, not illustrated in Olsson (1916). F–G. MCZ 34426, 6.75 mm and 6.35 mm, respectively. H. FLMNH 160564, 6.00 mm. I–J. FLMNH 507930, 4.60 mm. Scale bars: B–I = 1 mm; J = 500 µm. Photo credits B–E: Leslie Skibinski (Cornell University).
Fig. 10 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 10. Monophorus caracca (Dall, 1927) comb. nov. A. USNM 108343, lectotype, 7.1 mm. B–E. MNHN*, 4.42 mm, 6.84 mm, 4.50 mm and 5.74 mm, respectively. F–J. Same shell as E. Scale bars: A–F = 1 mm; G = 100 µm; H = 20 µm; I = 250 µm; J = 500 µm.
Fig. 6 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 6. Isotriphora sp. 1. A–B. MORG 52611*, 2.08 mm and 1.58 mm, respectively. C–D. Same shell as A. E–F. ZUEC-GAS 7489, 1.44 mm. G. ZUEC-GAS 7489, same shell as E. Scale bars: A–C, E–F = 1 mm; D, G = 100 µm. Photo credits E–G: Aramys Cesar (UNICAMP).
Fig. 3 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 3. Isotriphora tricingulata Rolán & Fernández-Garcés, 2015. A, C. MNRJ 32558*, 2.75 mm and 3.04 mm, respectively. B. MNRJ 17929*, 4.62 mm. D. MNRJ 32574*, 3.29 mm. E–I, K. Same shell as A. J. Same shell as D. Scale bars: A–E = 1 mm; F–H = 500 µm; I–K = 100 µm.
Fig. 8 in Unraveling one of the 'Big Five': update of the taxonomy of Triphoridae (Gastropoda, Triphoroidea) from Brazil
Fig. 8. Marshallora ostenta Rolán & Fernández-Garcés, 2008 from Brazil. A–C, E. IBUFRJ 19532, same shell as Fig. 7N. D. MNRJ 18623*. F. MNRJ 31017*, same shell as Fig. 7K. G. MNRJ 33801*, same shell as Fig. 7F. H–I. MNRJ 30750*, same shell as Fig. 7J. Scale bars: A–C = 500 µm; D–H = 100 µm; I = 50 µm.
Fig. 18 in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 18. Localities of Plagigeyeria species in Hercegovina and adjacent regions and the most likely distribution range of the known species within the related aquifers (colour blotches) and sampling localities (dots with numbers). Freshwater springs are in circles and brackish or submarine springs are as marked by diamonds, arrows show main karst conduits and locality numbers are according to the legend from Fig. 1.
Fig. 15. A in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 15. A. Travunijana robusta (Schütt, 1959), Trebinje, Izvor Tučevac, SBMNH 626406. B. Travunijana robusta (Schütt, 1959), Trebinje, Vrelo Vruljak 1, SBMNH 625919. C. Travunijana robusta asculpta (Schütt, 1972), Croatia, Dubrovnik, Komolac, Izvor Ombla, SBMNH 625896. D. Travunijana gloeri sp. nov., Bjeljani, Dabarsko Polje, Vrelo Vrijeka, paratype SBMNH 632722. Scale bars = 1mm. (SEM SBMNH Vanessa Delnavaz).
Fig. 17 in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 17. Karst aquifers of Hercegovina and their estimated delimitations to drainage basins. As most to the karst aquifers in Hercegovina are represented by subterranean karst conduits, it is difficult to exactly set the watersheds. The subterranean drainage divides in this map were estimated based on our recent knowledge about the geology, hydrogeology and geomorphology. The boundaries are unstable and strongly dependent on a dynamic system of particular water level alternations in each perched water table within the basin as well as on their particular saturation. The interim oversaturation in the particular basin could lead to water divergence to the neighbouring river basin. The supposed inter-basin water divergences at high water saturation are highlighted by blue arrows. Each drainage basin could be further divided to separate subterranean karst conduits, which could also represent a kind of particularly isolated habitat. Freshwater springs are in circles and brackish or submarine spring are as diamonds with locality numbers according to the legend from Figure 1.
Fig. 13 in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 13. Historical type specimens of species of Plagigeyeria from Hercegovina and adjacent regions, currently transferred to the genus Travunijana Grego & Glöer, 2019. A. Plagigeyeria robusta Schütt, 1959, Hercegovina, spring Čepelica near Bileća, holotype (SMF 162833). B. P. klemmi Schütt, 1961, Croatia, spring Stenjevac south of Vrgorac, holotype (SMF 164344). C. P. tribunicae Schütt, 1963, Hercegovina, spring Trebišnjica near Bileća, holotype (SMF 168968). D. P. edlaueri Schütt, 1961, Hercegovina, spring Sopot Mlin in Svitavsko Blato, holotype (SMF 164342). E. P. angelovi Schütt, 1972, Croatia, spring Ombla (Rijeka Dubrovačka) in Komolac, holotype (SMF 221242). F. P. nitida Schütt, 1963, Hercegovina, spring Sopot Mlin in Svitavsko Blato, holotype (SMF 168970).
Fig. 12. A–B in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 12. A–B. Plagigeyeria jakabi sp. nov., Studenci, spring Guljevina A. Holotype (HNHM-MOLL-104172). B. Paratype (JG F1204). C–D. P. vriosticaensis sp. nov., Vitina, Vrelo Vrioštica C. Holotype (HNHM-MOLL-104182). D. Paratype (JG F1214). E. P. angyaldorkae sp. nov., Vrelo Jakšenica (holotype HNHM-MOLL- 104163). F. P. ozimeci sp. nov., Vitina, Vrelo Vrioštica, holotype (HNHM-MOLL-104173). G–K. P. ozimeci sp. nov., Vitina, Vrelo Vrioštica, paratypes (JG F1215).
Fig. 10. A in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 10. A. Plagigeyeria erossi sp. nov., Donja Jablanica, Komadinovo Vrelo, paratype (SBMNH 632010). B. P. listicaensis sp. nov., Široki Brijeg, Vrelo Lištice, Bilo Vrilo, paratype (SBMNH 626350). C. P. olsavskyi sp. nov., Studenci, Vrilo Kajtazovina, paratype (SBMNH 626245). D. P. olsavskyi sp. nov., Ljubuški, spring Mali Prokop, paratype (SBMNH 626260). Scale bars = 1 mm (SEM SBMNH Vanessa Delnavaz).
Fig. 6. A in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 6. A. Plagigeyeria ljutaensis sp. nov., Konjic, Vrelo Ljuta, paratype (SBMNH 626401). B. P. konjicensis sp. nov., Konjic, left side spring of Ljuta River, paratype (SBMNH 626249). C. P. plagiostoma (A. J. Wagner, 1914), Sarajevo, Ilidža, Vrelo Bosne, (SBMNH 632718). D. P. inflata (A. J. Wagner, 1928), Sarajevo, Ilidža, Vrelo Bosne (SBMNH 33032). Scale bars = 1 mm (SEM SBMNH Vanessa Delnavaz).
Fig. 4 in Revision of the stygobiont gastropod genera Plagigeyeria Tomlin, 1930 and Travunijana Grego & Glöer, 2019 (Mollusca; Gastropoda; Moitessieriidae and Hydrobiidae) in Hercegovina and adjacent regions
Fig. 4. Photos of studied localities in Hercegovina. A. Studenci, Vrilo Guljevina (LT of Plagigeyeria jakabi sp. nov.). B. Široki Brijeg, Bijelo Vrelo – Lištica 2 (LT of P. listicaensis sp. nov.) C. Donji Prolog, spring Mali Prokop (P. olsavskyi sp. nov.). Photos: Jozef Grego, Dorottya Angyal and Mário Olšavský.
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)
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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.