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1,692 results for “Caenogastropoda”
Figure 5 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 5 - The median-joining haplotype network of COI haplotypes for clades I, II and III. Sequences from Falniowski et al. 2009a and Falniowski et al. 2012 are also included. Arrows and the letter C indicate cave haplotypes.
Figure 2 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 2 - Shells of Bythinella. A locality B1 B–C locality B7 D–F locality B5 G–Q locality B10; bar equals 1 mm.
Figure 1 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 1 - Sampling sites used in the present study (red dots) and in phylogenetic analyses (blue dots: Falniowski et al. 2009a; green dots: Falniowski et al 2012). Compare with Table 1. The dotted line indicates an area that was searched but where no Bythinella sites were found.
Figure 3 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 3 - The maximum-likelihood phylogram for COI gene. Haplotypes obtained in present work are indicated in bold. Arrows and the letter C indicate cave haplotypes.
Figure 5 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 5 - Shells, opercula and radula, Pyrgulopsis ojaiensis sp. n. A Holotype, SBMNH 74347 B, C Opercula (outer, inner sides), SBMNH 460496 D Portion of radular ribbon, SBMNH 460496 E Central teeth, SBMNH 460496 F Lateral teeth, SBMNH 460496. Scale bars: A =1.0 mm; B–C = 200 µm; D–F = 10 µm.
Figure 4 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 4 - Shells, opercula and radula, Pyrgulopsis lindae sp. n. A Holotype, USNM 905250 B Shell, BellMNH 20821 C, D Opercula (outer, inner sides), BellMNH 20821 E Portion of radular ribbon, BellMNH 20821 F Central teeth, BellMNH 20821 G Lateral teeth, BellMNH 20821. Scale bars: A–B = 1.0 mm; C–D = 200 µm; E–G = 10 µm.
Figure 1 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 1 - Map of California (A) and San Francisco Bay area (B, area occupied by rectangle in A) showing the collection localities for samples of Pyrgulopsis stearnsiana (and closely related Pyrgulopsis diablensis and Pyrgulopsis giulianii) and the three new species (highlighted by arrows) that were used in the molecular analysis. Specimen codes are from Suppl. material 1.
Figure 2 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 2 - Bayesian tree based on the COI dataset. The four lineages of Pyrgulopsis stearnsiana sensu lato are identified by arrows. Posterior probabilities for nodes are shown when >95%. Specimen codes are from Suppl. material 1.
Figure 3 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 3 - Penes (dorsal, ventral surfaces). A Pyrgulopsis lindae sp. n., USNM 1257409 B Pyrgulopsis ojaiensis sp. n., SBMNH 460496 C Pyrgulopsis torrida sp. n. USNM 1120443 D, E, F Pyrgulopsis stearnsiana USNM 1297168, USNM 1252041, USNM 905251, respectively. Scale bars: 250 µm. Pd penial duct Pf penial filament Pg penial gland Pl penial lobe Tg terminal gland Vg ventral gland.
Figure 7 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 7 - Shells, Pyrgulopsis stearnsiana. A Lectotype, ANSP 27961 B USNM 1291731 C USNM 894756 D USNM 1287760 E USNM 1287759 F USNM 1252041. Scale bar: 1.0 mm.
Figure 6 from: Hershler R, Liu H-P, Babbitt C, Kellogg MG, Howard JK (2016) Three new species of western California springsnails previously confused with Pyrgulopsis stearnsiana (Caenogastropoda, Hydrobiidae). ZooKeys 601: 1-19. https://doi.org/10.3897/zookeys.601.9040
Figure 6 - Shells, opercula and radula, Pyrgulopsis torrida sp. n. A Holotype, SBMNH 74238 B Shell, SBMNH 460492 C, D Opercula (outer, inner sides), SBMNH 460492 E Portion of radular ribbon, SBMNH 460492 F Central teeth, SBMNH 460492 G Lateral teeth, SBMNH 460492. Scale bars: A–B=1.0 mm; C–D=100 µm; E–G=10 µm.
Figure 3 from: Sitnikova T, Kovalenkova M, Peretolchina T, Sherbakov D (2016) A new, genetically divergent species of Pseudobaikalia Lindholm, 1909 (Caenogastropoda, Baicaliidae). ZooKeys 593: 1-14. https://doi.org/10.3897/zookeys.593.8511
Figure 3 - Scanning electron micrographs of Pseudobaikalia michelae sp. n. A, B Operculum, dorsal view to left and ventral view to right C, E Protoconch D Penis, dorsal view. Scale bars: 0.5 mm (A, B); 0.1 mm (C, D, E).
Figure 5 from: Sitnikova T, Kovalenkova M, Peretolchina T, Sherbakov D (2016) A new, genetically divergent species of Pseudobaikalia Lindholm, 1909 (Caenogastropoda, Baicaliidae). ZooKeys 593: 1-14. https://doi.org/10.3897/zookeys.593.8511
Figure 5 - Genitalia of Pseudobaikalia michelae sp. n. A, C Ventral and dorsal view of female genitalia B Section of capsule gland and ventral channel D Penis. Abbreviations: ag—albumen gland; cg—capsule gland; cov—coil oviduct; go—genitalia opening; vch—ventral channel; vd—vas deference. Scale bars 0.5 mm.
Figure 4 from: Sitnikova T, Kovalenkova M, Peretolchina T, Sherbakov D (2016) A new, genetically divergent species of Pseudobaikalia Lindholm, 1909 (Caenogastropoda, Baicaliidae). ZooKeys 593: 1-14. https://doi.org/10.3897/zookeys.593.8511
Figure 4 - Radular teeth of Pseudobaikalia michelae sp. n. Scale bars: 10 μm (A, B, C); 30 μm (D, E).
Figure 2 from: Sitnikova T, Kovalenkova M, Peretolchina T, Sherbakov D (2016) A new, genetically divergent species of Pseudobaikalia Lindholm, 1909 (Caenogastropoda, Baicaliidae). ZooKeys 593: 1-14. https://doi.org/10.3897/zookeys.593.8511
Figure 2 - Shells of the type specimens of Pseudobaikalia michelae sp. n. and syntypes of other species of Pseudobaikalia genus from ZIN collection. A Holotype Pseudobaikalia michelae sp. n. B Paratypes Pseudobaikalia michelae sp. n. used for analyses C Pseudobaikalia michelae sp. n. (=Leucosia angarensis var. pulla, det. Dybowski, No. 1) D Pseudobaikalia elegantula (No. 2) E Pseudobaikalia jentteriana (No. 1) F Pseudobaikalia pulla pulla (No. 1) G Pseudobaikalia pulla tenuicosta (No.1) H Pseudobaikalia zachwatkini (No. 1) I Parabaikalia elata (=Baikalia angarensis elata, No.1) J Pseudobaikalia cancellata (No. 1) K Pseudobaikalia contabulata (No. 1). Scale bar 1 mm.
Figure 1 from: Sitnikova T, Kovalenkova M, Peretolchina T, Sherbakov D (2016) A new, genetically divergent species of Pseudobaikalia Lindholm, 1909 (Caenogastropoda, Baicaliidae). ZooKeys 593: 1-14. https://doi.org/10.3897/zookeys.593.8511
Figure 1 - The location of Pseudobaikalia michelae sp. n. sampling sites in Lake Baikal. Site numbers correspond to 1 Kultuk Bay 2 near Utulik settlement 3 Murinskaya Bank 4 Barguzin Bay.
Figure 6 from: Sitnikova T, Kovalenkova M, Peretolchina T, Sherbakov D (2016) A new, genetically divergent species of Pseudobaikalia Lindholm, 1909 (Caenogastropoda, Baicaliidae). ZooKeys 593: 1-14. https://doi.org/10.3897/zookeys.593.8511
Figure 6 - Phylogram derived from Bayesian analysis of combined CO1, 16S DNA and ATPase α gene intron sequences. Values at nodes represent posterior probabilities. The scale bar represents the branch length as a measure of substitution per site.
Supplementary material 1 from: Boonmachai T, Bergey EA, Nantarat N (2023) First record and description of three new species in the land snail genus Diplommatina Benson, 1849 (Caenogastropoda, Diplommatinidae) from Satun Province, Thailand. Zoosystematics and Evolution 99(1): 195-207. https://doi.org/10.3897/zse.99.99030
Linked data table for pirmary biodiversity data of Diplommatina
Figure 6 in Litthabitellidae: a new family of the Truncatelloidea (Mollusca: Caenogastropoda)
Figure 6. Operculum of Litthabitella chilodia. Scale bar: 300 μm.
Fig. 29 in Morphology and taxonomic assessment of eight genetic clades of Mercuria Boeters, 1971 (Caenogastropoda, Hydrobiidae), with the description of five new species
Fig. 29. Shells and operculum of Mercuria veronicae Miller, Khalloufi & Delicado sp. nov. A–B. Holotype (MNCN 15.05/200124H), frontal and lateral views. C–D. Paratypes. C. MNCN 15.05/200124P. D. UGSB 17271. A–D, G–H. El Waha Spring, Oasis Waterfall, Tamerza, Tozeur. E–F. Lekbir Spring, Big Waterfall, Tamerza, Tozeur. G. Operculum, inner side. H. Operculum, outer side.
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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
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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.