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1,692 results for “Caenogastropoda”
Fig. 9 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 9. Number of whorls vs height of the species in Clessiniella Zallot et al., 2015. Violet dots = Cochlostoma (Clessiniella) anomphale Boeckel, 1939; red squares = Co. (Cl.) stelucarum sp. nov.; green triangles = Co. (Cl.) tergestinum (Westerlund, 1878); blue diamonds = Co. (Cl.) villae (Strobel, 1851); black triangles = Co. (Cl.) waldemari (A.J. Wagner, 1897). Analysis performed with the software 'Past' (https://palaeo-electronica.org).
Fig. 11 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 11. Ribs per mm on the 1st whorl vs ribs on the 4th whorls of the species in Clessiniella Zallot et al., 2015. Violet dots = Cochlostoma (Clessiniella) anomphale Boeckel, 1939; red squares = Co. (Cl.) stelucarum sp. nov.; green triangles = Co. (Cl.) tergestinum (Westerlund, 1878); blue diamonds = Co. (Cl.) villae (Strobel, 1851); black triangles = Co. (Cl.) waldemari (A.J. Wagner, 1897). Analysis performed with the software 'Past' (https://palaeo-electronica.org).
Fig 6. Female genital features. A in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig 6. Female genital features. A. SR shape. B. Loops set up. C. Loops main position. D. CBC position. E. SR width. F. SR curvature. G. SR apex position. H. JUG position.
Fig. 2 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 2. Measurements taken on the shell of Clessiniella Zallot et al. 2015. 1 = height (H); 2 = height of the 1st whorl; 3 = height of the 4th whorl; 4 = height of the aperture (Ha); 5 = height of the external lobe; 6 = width of the 1st whorl (W); 7 = width of the 1st suture; 8 = width of the 2nd whorl; 9 = width of the 4th whorl; 10 = width of the aperture (Wa); 11 = maximum width of the lip on the columellar side; 12 = width of the basal whorl of the protoconch; 13 = inclination of the aperture; 14 = inclination of the ribs; 15 = distance between the 5 central ribs of the body whorl; 16 = distance between the 5 central ribs of the 4th whorl. The figure in the lower right corner shows how the whorls (green) and sutures (red) are counted.
Fig. 1 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 1. Map of the sampling localities. Blue dots = Cochlostoma (Clessiniella) villae (Strobel, 1851); red dots = Co. (Cl.) stelucarum sp. nov.; green dots = Co. (Cl.) tergestinum (Westerlund, 1878); yellow dots = Co. (Cl.) waldemari (A.J. Wagner, 1897); orange dots = Co. (Cl.) anomphale Boeckel, 1939.
Fig. 5 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 5. Genitalia in Clessiniella Zallot et al., 2015. A. Female genitalia (Cochlostoma (Clessiniella) tergestinum (Westerlund, 1878) (WdM6998)). 1 = ovary; 2 = visceral oviduct; 3 = proximal loop; 4 = loops of the visceral oviduct; 5 = seminal receptacle; 6 = distal oviduct; 7 = pedunculus of the bursa copulatrix; 8 = bursa copulatrix; 9 = copulatory duct; 10 = channel of the uterine gland; 11 = uterine gland. B. Male genitalia (Co. (Cl.) tergestinum (WdM7012)). 1 = anus; 2 = fold delimiting the sperm groove; 3 = sperm pocket; 4 = penial funnel; 5 = body spermiduct; 6 = penis with the internal spermiduct.
Fig. 13 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 13. Shell characters (ribs inclination and relative size of the protoconch) which could be helpful to distinguish Cochlostoma (Clessiniella) villae (Strobel, 1851) (blue diamonds) fromCo. (Cl.) tergestinum (Westerlund, 1878) (green triangles).
Fig. 7 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 7. Statistical parsimony network based on Histone H3 sequences of species in the subgenus Clessiniella Zallot et al., 2015. Cochlostoma (Cochlostoma) septemspirale (Razoumowsky, 1789) was used as an outgroup. For sample IDs we refer to Table 5.
Fig. 4 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 4. Features of the shell of Clessiniella Zallot et al., 2015. A. Shape of the body whorl approaching the aperture. B. Strength of the spots on the shell (0 = spotless shell to 2 = really evident spots). C. Strength of the ribs (1 = weak ribs to 3 = really prominent ribs). D. Strength of the ribs on the external side of the body whorl approaching the aperture (W= smooth shell; I = intermediate; S = prominent ribs).
Fig. 3 in Cochlostoma revised: the subgenus Clessiniella Zallot et al., 2015 (Caenogastropoda, Cochlostomatidae)
Fig. 3. Examples of protoconchs: the red dots mark the end of the protoconchs. A. Cochlostoma (Clessiniella) anomphale Boeckel, 1939 (EZ0034). A1. Co. (Cl.) anomphale (EZ0034): 1 = end of the first smooth part of the protoconch; 2 = end of the protoconch. B. Co. (Cl.) tergestinum (Westerlund, 1878) (EZ0799). C. Co. (Cl.) villae (Strobel, 1851) (EZ0885). D. Co. (Cl.) waldemari (A.J. Wagner, 1897) (WdM6697). E. Co. (Cl.) stelucarum sp. nov. (EZ0104).
Figure 9 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 9. Original illustrations of Iberhoratia gatoa (Boeters 1980, p 63). (A, B) Holotype (RMNH 55467), shell width 1.5 mm; (C, D) paratype (BOE 948), shell width 1.2 mm; (E) penis (paratype BOE 948); (F) anterior female genitalia (paratype BOE 948).
Figure 7 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 7. Anatomy of Iberhoratia aurorae from type locality. (A, B) Partial nervous system; (C) osphradium and ctenidium; (D) rectum curve; (E) stomach; (F) head of a male and penis; (G) anterior female genitalia; (H) bursa copulatrix and seminal receptacles. Abbreviations in text. Scale bar: 500 Mm (A–H).
Figure 6 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 6. Operculum and radula of Iberhoratia aurorae from type locality. (A) Internal side of the operculum; (B) external side of the operculum; (C) radula; (D) central and lateral teeth; (E) central tooth; (F) lateral and internal marginal teeth. Scale bar: 200 Mm (A, B); 100 Mm (C).
Figure 5 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 5. Shells of Iberhoratia aurorae. (A–D, G) Shells from Robladillo de Gata; (E, I) shells from Roturas; (F, H, J, K) shell (holotype) from population between Hervás and Jerte (type locality). (H–K) Protoconch and microsculpture. Scale bar: 500 Mm (A–G).
Figure 3 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 3. Opercula, radula, and penis of Iberhoratia morenoi (E–G, I, K, L), and Ib. cf. morenoi (A–D, H, J). (A, C, H, J) Opercula from Félix; (B, D) opercula from El Marchal de Antón López; (E, F, G, I, K, L) opercula and radula from Prado del Rey; (L) head of a male and penis from El Chorro. (A, B, E) External side of the operculum; (C, D, F, G) internal side of the operculum; (H, I) central teeth; (J) lateral, internal, and external marginal teeth; (K) ciliary fields in the pallial edge. Scale bars: 200 Mm (A–G).
Figure 11 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 11. Plot of discriminant scores on the two canonical axes, obtained from DFA of shell measurements for the species Iberhoratia morenoi, Ib.aurorae, and Horatia klecakiana. Confidence intervals for ellipses: 0.95.
Figure 10 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 10. Plot of discriminant scores on the two canonical axes, obtained from DFA of shell measurements for Iberhoratia species and topotypes of Horatia klecakiana (NHM-WIEN, 17.683). Confidence interval for ellipses: 0.95.
Figure 4 in A new genus and two new species of Hydrobiidae (Mollusca, Caenogastropoda) from the Iberian Peninsula
Figure 4. Anatomy of Iberhoratia morenoi from type locality. (A, B) Partial nervous system; (C) osphradium and ctenidium; (D) stomach; (E) prostate and rectum; (F) head of a male and penis; (G) anterior female genitalia; (H) bursa copulatrix and seminal receptacles. Abbreviations in text. Scale bar: 500 Mm.
Fig. 5. A–F in Notes on Pseudopomatias Möllendorff, 1885 and Vargapupa Páll- Gergely, 2015 (Gastropoda: Caenogastropoda: Pupinidae)
Fig. 5. A–F, Vargapupa biheli viridis, new subspecies (holotype, HNHM 104398); G–L, Vargapupa biheli viridis, new subspecies (paratype, HNHM 104399); M–Q, Vargapupa biheli biheli Páll-Gergely, 2015 (holotype, MNHN-IM-2012–27020). Scale 'a' refers to images of the whole shell, scale 'b' refers to images of the body whorl, both scales represent 5 mm.
Fig. 4 in Notes on Pseudopomatias Möllendorff, 1885 and Vargapupa Páll- Gergely, 2015 (Gastropoda: Caenogastropoda: Pupinidae)
Fig. 4. Outer (A) and inner (B) side of the operculum and plicae (C) of Pseudopomatias phrunoi, new species Abbreviations: cl: columellar lamella; l: lower plica; m: middle plica; u: upper plica. Specimen A–B, HNHM 104398b; C, HNHM 104398b. Scale bars represent 1 mm.
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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.