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1,692 results for “Caenogastropoda”
Fig. 26 - Prese sul Torrente Scrivia a in Nuovi idrobiidi freatobi e stigobi dell'Appennino Settentrionale in Piemonte, Liguria ed Emilia-Romagna (Gastropoda: Caenogastropoda: Hydrobiidae)
Fig. 26 - Prese sul Torrente Scrivia a Busalla (A-B), sorgente I Buxi sul Rio d'Iso (C-D) e ultimo tratto del Torrente Agnellasca, affluente superiore del Torrente Borbera (E-F). A) presa superficiale sul T. Scrivia sopra la galleria di subalveo. B) galleria nel subalveo del T. Scrivia. C) forra del Rio d'Iso a monte di Isoverde; a destra la canalizzazione sotterranea della sorgente carsica I Buxi. D) accesso alla canalizzazione sotterranea della sorgente I Buxi, copiosa scaturigine che drena le acque del complesso carsico di Isoverde. E) risorgive alla base della briglia sul T. Agnellasca. F) posature alla base della briglia sul T. Agnellasca. Nella falda del T. Scrivia è frequente Fissuria globosa n. sp., e, più rara, Alzoniella isoensis n. sp.; nella sorgente I Buxi vive una copiosa popolazione di A. isoensis n. sp., mentre nella falda del T. Agnellasca si trovano Alzoniella borberensis n. sp., Fissuria globosa n. sp. e Fissuria varicosa n. sp. / Water plugs on Scrivia stream at Busalla (A-B), I Buxi spring on Rio Iso (C-D) and last tract of the Agnellasca stream, upper tributary of the Borbera stream (E-F). A) superficial water plugs on the Scrivia stream upper the tunnel in riverbed. B) filter tunnel in the riverbed of the Scrivia stream. C) narrow traits of the Iso brook upstream Isoverde; on the right the subterranean canalization from I Buxi karstic spring. D) admission to the subterranean canalization from I Buxi spring, plentiful spring draining the water of the karstic complex of Isoverde. E) alluvial springs at the base of the dike on the Agnellasca stream. F) alluvial debris at the base of the dike on the Agnel-Agnellasca stream. In the phreatic water of the Scrivia stream, Fissuria globosa n. sp. is frequent, while Alzoniella isoensis n. sp. is the rarest one; in the I Buxi spring a plentiful population of A. isoensis n. sp. live, while in the phreatic table of the Agnellasca stream Alzoniella borberensis n. sp., Fissuria globosa n. sp. and Fissuria varicosa n. sp. are present.
Figura 1 in Mortalidad y comportamiento de búsqueda de pareja en Pomacea canaliculata (Caenogastropoda: Ampullariidae)
Figura 1. Arreglo de acuarios utilizado para evaluar la actividad y el comportamiento de los caracoles en función de la presencia de un congénere del mismo o de distinto sexo. R: reloj; T: termómetro.
Figura 2. A in Mortalidad y comportamiento de búsqueda de pareja en Pomacea canaliculata (Caenogastropoda: Ampullariidae)
Figura 2. A) Superposición digital de 200 imágenes tomadas durante el tercer cuarto del experimento de actividad y comportamiento utilizada para calcular el porcentaje de área explorada. R: reloj; T: termómetro. B) Simulación realizada para reconstruir el área explorada por el macho y la hembra por separado en el tratamiento (Ÿÿ) que incluía un caracol de cada sexo. Figure 2. A) Digital overlap of 200 images taken during the third quarter of the experiment of activity and behaviour used to calculate the percentage of explored area. R: clock; T: thermometer. B) Simulation carried out to reconstruct the area explored by the male and the female separately in the treatment (Ÿÿ) that included one snail of each sex.
Figura 4 in Mortalidad y comportamiento de búsqueda de pareja en Pomacea canaliculata (Caenogastropoda: Ampullariidae)
Figura 4. Diagrama de cajas y brazos del tiempo de actividad (min) de los caracoles para el experimento completo de actividad y comportamiento, representados en función del sexo del caracol experimental y de la ausencia o presencia de una pareja y del sexo de la misma.
Figs 4–5 in A New Species Of The Valvatiform Hydrobiid Genus Hauffenia From Hungary (Mollusca: Caenogastropoda: Hydrobiidae)
Figs 4–5. Hauffenia kissdalmae sp. n., paratype, male: 4 = genitalia (after the drawing of BODON), 5 = penis with lobes (after the drawing of BODON)
Fig. 3 in Two Extraordinary Alycaeid Species From Northeastern India (Gastropoda: Caenogastropoda: Cyclophoroidea)
Fig. 3. Operculum (A, B), sculpture of R2 (C) and protoconch (D) of the holotype of Alycaeus himalayae sp. n. (Photos: B. Páll-Gergely)
Fig. 4 in Two Extraordinary Alycaeid Species From Northeastern India (Gastropoda: Caenogastropoda: Cyclophoroidea)
Fig. 4. Distribution of the genus Alycaeus Gray, 1850 (based on PÁLL-GERGELY et al. 2020 and PÁLL-GERGELY 2023). Dark grey area: Alycaeus s. str., Light grey area: distribution of Pincerna mouhoti (L. Pfeiffer, 1862) and Pincerna vanbuensis (Bavay et Dautzenberg, 1900),
Fig. 1 in Two Extraordinary Alycaeid Species From Northeastern India (Gastropoda: Caenogastropoda: Cyclophoroidea)
Fig. 1. Cycloryx cf. pemaledai Gittenberger et Sherub, 2022 from Sikkim, India (Specimen1). (Photos: B. Páll-Gergely)
Fig. 10 in Pseudamnicola Paulucci, 1878 (Caenogastropoda: Truncatelloidea) from the Aegean Islands: a long or short story?
Fig. 10 Penes of PseudVmnicolV: A–A Andros, E Naxos, F–G Tinos, H–K Khios (P. chiV), L–O Crete (P. WrVchiV), P–S Karpathos (P. pieperi) and T–Z Rhodes (T–W R02, X–Z R06); WVr represents 0.5 mm
Fig. 9 in Pseudamnicola Paulucci, 1878 (Caenogastropoda: Truncatelloidea) from the Aegean Islands: a long or short story?
Fig. 9 Renal and pallial section of the female reproductive organs of PseudVmnicolV chiV from Khios Island, locality CH02: Wc bursa copulatrix, cWc duct of bursa copulatrix, dgp gono-pericardial duct, gV albuminoid gland, gn nidamental gland, gp gonoporus, ov pallial oviduc, ovl loop of (renal) oviduct, rs receptaculum seminis, vc ventral canal
Fig. 11 in Pseudamnicola Paulucci, 1878 (Caenogastropoda: Truncatelloidea) from the Aegean Islands: a long or short story?
Fig. 11 Penes biometry (PCA) of PseudVmnicolV for main clades. PC1 explains 58.73 %, PC2 explains 18.52 %, cumulatively 77.25 %
Fig. 4 in Pseudamnicola Paulucci, 1878 (Caenogastropoda: Truncatelloidea) from the Aegean Islands: a long or short story?
Fig. 4 Geographical distribution of 16 recognised clades, based on COI analysis. Compare with Figs. 1 and 2
Fig. 3 in Pseudamnicola Paulucci, 1878 (Caenogastropoda: Truncatelloidea) from the Aegean Islands: a long or short story?
Fig. 3 The maximum-likelihood phylogram for the COI+16S rRNA+18S gene. The ML tree was rooted by using the AdrioinsulVnV conovulV. @ootstrap support (>75 %) and @ayesian posterior probabilities (>0.95) were shown. Division into 16 clades (potential species) and connotations with earlier described PseudVmnicolV species are also shown
Fig. 1 in Pseudamnicola Paulucci, 1878 (Caenogastropoda: Truncatelloidea) from the Aegean Islands: a long or short story?
Fig. 1 The maximum-likelihood phylogram (GTR+I+G, 10,000 bootstrap replicates) for the COI gene. The ML tree was rooted by using the AdrioinsulVnV conovulV. @ootstrap support is shown only if above 70 %. Division into 16 clades (potential species) and connotations with earlier described PseudVmnicolV species are also shown. Divergence times of main clades are also shown
Fig. 12 in Cochlostoma revised: the subgenus Lovcenia Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 12. Cochlostoma (Lovcenia) lanatum Zallot, Fehér & Gittenberger sp. nov., holotype, Deleve Cave, Albania (HNHM 102806).
Fig. 10 in Cochlostoma revised: the subgenus Lovcenia Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 10. Cochlostoma (Lovcenia) tropojanum Zallot, Fehér & Gittenberger sp. nov., holotype, Tropojë Valley, Albania (NHMW 111638).
Fig. 7 in Cochlostoma revised: the subgenus Lovcenia Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 7. Cochlostoma (Lovcenia) erika (A.J. Wagner, 1906), lectotype, "Popovo Höhle bei Njegus", Montenegro (NHMW 38260a).
Fig. 6. Female genital morphology. See Table 1 for localities and Table 3 for measurements. A in Cochlostoma revised: the subgenus Lovcenia Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 6. Female genital morphology. See Table 1 for localities and Table 3 for measurements. A. Cochlostoma (Lovcenia) erika (A.J. Wagner, 1906) (HNHM 86387). B. Cochlostoma (Lovcenia) dalmatinum (L. Pfeiffer, 1863) (NHMW 110430/MN/0162). C. Cochlostoma (Lovcenia) tropojanum sp. nov. (NHMW 111248). D1. Cochlostoma (Lovcenia) jakschae sp. nov., Bugarska Peak population (NHMW 111249). D2. Cochlostoma (Lovcenia) jakschae sp. nov., Pejë Pass population (HNHM 97221). E. Cochlostoma (Lovcenia) lanatum sp. nov. (HNHM 99861).
Fig. 11 in Cochlostoma revised: the subgenus Lovcenia Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 11. Cochlostoma (Lovcenia) jakschae Zallot, Fehér & Gittenberger sp. nov., holotype, Bugarska Peak, Macedonia (NHMW 111649).
Fig. 8 in Cochlostoma revised: the subgenus Lovcenia Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 8. Cochlostoma (Lovcenia) erika (A.J. Wagner, 1906), Popova Cave near Njeguš, Pljevlja, Montenegro (HNHM 86387).
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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.