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Fig. 10 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 10. Utricular otoliths (lapilli) of Recent Carassius. A–C, F. Carassius cf. carassius (Linnaeus, 1758) from wild catches in Germany. A–C. BSPG 2003 IV 48b, 47, 48a respectively, in dorsal (A, B) and ventral (C) views. F. BSPG 2003 IV 46 in dorsal (F1) and anterior (F2) views. All lapilli, except F2, are represented as right ones (A–C, F1 are mirrored); F2 is represented as left lapillus. A, C display a lapilli pair. D. Carassius cf. gibelio (Bloch, 1782) from a wild catch in Germany, BSPG 2003 IV 44, in dorsal (D1) and anterior (D2) views, represented as right lapillus. E. Carassius auratus (Linnaeus, 1758) from breeding station, BSPG 2003 IV 162, in dorsal view, represented as right lapillus (mirrored). SEM−pictures (B–F), digital photographs (A).
Fig. 9 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 9. Utricular otoliths (lapilli) of Recent Barbus barbus (Linnaeus, 1758) from wild catches in Germany. A, B, D. BSPG 2003 IV 39, 40, and 37 respectively, represented as right lapilli, in dorsal (A, B1, D) and anterior (B2) views (A and D mirrored). C. BSPG 2003 IV 38 represented as left lapillus in ventral view. SEM−pictures (A−C), digital photographs (D).
Fig. 7 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 7. Utricular otoliths (lapilli) of Recent Alburnus alburnus (Linnaeus, 1758) from wild catches in Germany. A–G, I. BSPG 2003 IV 23, 25, 26, 28, 30, 31, 35, and 22 respectively, in dorsal views, showing its range of morphological diversity; except D2 and G2, which are in ventral views. H. BSPG 2003 IV 27 in dorsal (H1) and anterior (H2) views. All lapilli are represented as right ones, except D2, H2, and G2, which are represented as left lapilli (A–D1, E–G1, H1 are mirrored). SEM−pictures (D2, G2, H, I), digital photographs (A–D1, E–G1).
Fig. 31 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 31. Middle Miocene aff. Rutilus sp. vel aff. Scardinius sp. A. BSPG 2003 XVIII 74 from Goldberg/Ries (Germany) in dorsal view, represented as right lapillus. B–D. BSPG 2003 XVIII 75–77 respectively, from Le Locle (Switzerland) S3/19.0–21.3 m (B) and S3/16.4–16.6 m (C, D) in dorsal views, represented as right lapilli (C, D mirrored). SEM−pictures.
Fig. 19 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 19. Utricular otoliths (lapilli) of Recent Scardinius erythrophthalmus (Linnaeus, 1758) from wild catches in Germany. A. BSPG 2003 IV 165 in dorsal view, represented as right lapillus, mirrored. B. BSPG 2003 IV 116 represented as right lapillus in dorsal (B1) and anterior (B2) views. C. BSPG 2003 IV 115 in ventral view, represented as left lapillus. All SEM−pictures.
Fig. 5 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 5. Utricular otoliths (lapilli) of Recent Abramis brama (Linnaeus, 1758) from wild catches in Germany. A. BSPG 2003 IV 1a in dorsal (A1) and anterior (A2) views. B. BSPG 2003 IV 9 in dorsal view. C. BSPG 2003 IV 2a in ventral view. D–I. BSPG 2003 IV 6, 7, 12, 8, 1b, 2b respectively, mirrored, in dorsal views. All lapilli are represented as right ones except C, which is represented as left lapillus (mirrored). A, H and C, I display lapilli pairs. SEM−pictures (A–C), digital photographs (D–I).
Fig. 4 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 4. Utricular otoliths (lapilli) of Recent Abramis bjoerkna (Linnaeus, 1758) from wild catches in Germany. A, B, D. BSPG 2003 IV 161, 43, and 41 respectively, in dorsal (A, B and D1 are mirrored) and anterior (D2) views. C. BSPG 2003 IV 42 in ventral view. All lapilli are represented as right ones, except for C and D2, which are represented as left ones (C is mirrored). SEM−pictures (C, D), digital photographs (A, B).
Fig. 3 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 3. Morphological characters and terminology of the cypriniform utricular otolith (lapillus). A, C, D. Recent Rutilus rutilus (Linnaeus, 1758), BSPG 2003 IV105, 101, and103 respectively, in dorsal (A, C) and ventral (D) views. B. Recent Abramis brama (Linnaeus, 1758), BSPG 2003 IV 1 in dorsal view. Note that the depression is extremely shallow and covering nearly the whole caudal portion. E. Recent Chondrostoma nasus (Linnaeus, 1758), BSPG 2003 IV 50 in anterior view. A, B, C2, D2, E are represented as right lapilli, C1, D1 are represented as left lapilli.
Fig. 1 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 1. Position and morphology of the otoliths in the head of a carp. A. Computer tomography (CT) of Recent Cyprinus carpio (Linnaeus, 1758) (BSPG 2003 IV 143) and its lapilli; 150 layers of frontal sections were carried out from the dorsal to the ventral side of the head. 3D reconstruction of the head with the position of the otoliths projected (A1), frontal section (layer 36), showing the position of lapillus and asteriscus (A2), and frontal section (layer 38), showing the position of sagitta and asteriscus (A3); right (A4) and left (A5) lapillus in dorsal views (A4 and A5 are digital photographs). B. Digital pictures of the otoliths of Recent Cyprinus carpio (Linnaeus, 1758): lapillus in dorsal view (B1), asteriscus in medial view (B2), and sagitta in medial view (B3) (posterior tip incomplete). Otoliths are represented as right ones (BSPG 2003 IV 156b, d, and e respectively).
Fig. 2. A in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 2. A sketch map showing fossil and Recent localities mentioned in the text. A. Geographic overview of the localities that have yielded the fossil material. B. Map of Bavaria in South Germany with the numbers of the sample sites. 1, Chiemsee; 2, Starnberger See; 3, Klötzlmühlbach and Further Bach, near Landshut; 4, Alte Ammer, near Fischen; 5, Ponds at Wielenbach; 6, Uffinger Ach; 7, Isar at Landau; 8, Isen at Mühldorf; 9, Ponds at Reichlingsried and Ludenhausen; 10, Rottbach at Rott (Landsberg/Lech); 11, Wiesent at Gössweinstein (Forchheim); 12, Weissenstädter See at Wunsiedel; 13, Leiblach at Lindau.
Fig. 17 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 17. Utricular otoliths (lapilli) of Recent Rhodeus amarus (Bloch, 1782) from wild catches in Germany. A. BSPG 2003 IV 99, in dorsal view, represented as right lapillus, mirrored (A1) and in anterior view, represented as left lapillus (A2). B, D, E. BSPG 2003 IV 98a, 100, and 97 respectively, in dorsal views, represented as right lapilli (E mirrored). C. BSPG 2003 IV 98b in ventral view, represented as left lapillus. B, C display a lapilli pair. SEM−pictures (A–C), digital photographs (D, E).
Fig. 6 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 6. Utricular otoliths (lapilli) of Recent Alburnoides bipunctatus (Bloch, 1782) from wild catches in Germany. A. BSPG 2003 IV 15b in dorsal (A1, represented as right lapillus, mirrored) and anterior (A2, represented as left lapillus) views. B. BSPG 2003 IV 15a in ventral view represented as left lapillus (mirrored). C–E. BSPG 2003 IV 13, 17, and 16 respectively, in dorsal views, represented as right lapilli (mirrored). A, B display a lapilli pair. SEM−pictures (A, B), digital photographs (C–E).
Fig. 8 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 8. Utricular otoliths (lapilli) of Recent Aspius aspius (Linnaeus, 1758) from a wild catch in Germany. A. BSPG 2003 IV 36b in dorsal (A1) and anterior (A2) views. B. BSPG 2003 IV 36a in ventral view. A1 is represented as right lapillus (mirrored) while A2 and B (mirrored) are represented as left lapilli. A, B display a lapilli pair. SEM−pictures.
Fig. 26 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 26. Middle Miocene lapilli of Palaeoleuciscus sp. from Switzerland. A–D. BSPG 2003 XVIII 47–50 respectively, from Le Locle S1/15.2–15.45 m (A, D), S3/22–23 m (B), and S2/22.1–22.5 m (C) in dorsal views, represented as right lapilli (C, D mirrored). SEM−pictures.
Fig. 23 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 23. Middle Miocene lapilli of aff. Alburnoides sp. from Switzerland. A–C. BSPG 2003 XVIII 37–39 respectively, from Le Locle S3/16.4–16.6 m (A) and S1/15.2–15.45 m (B, C), in dorsal views, represented as right lapilli, mirrored. SEM−pictures.
Fig. 29 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 29. Middle Miocene Tinca micropygoptera (Agassiz, 1844) from Steinheim Basin (Germany). A, C–E. SMNS 86052a, c, d, and e respectively, in dorsal views, represented as right lapilli (A, D, E mirrored). B. SMNS 86052b in ventral view, represented as left lapillus (mirrored). SEM−pictures.
Fig. 25 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 25. Middle Miocene lapilli of cf. Leuciscus sp. from Turkey. A–C. BSPG 2003 XVIII 43, 44, and 45 respectively, from Sofça KS4/340 (A, C) and V719 (B) in dorsal views, represented as right lapilli (B mirrored). D. BSPG 2003 XVIII 46 from Sofça KS4/340 in ventral view, represented as left lapillus. SEM−pictures.
Fig. 12 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 12. Utricular otoliths (lapilli) of Recent Cyprinus carpio (Linnaeus, 1758) from breeding stations in Germany. A. BSPG 2003 IV 52a in ventral view, represented as left lapillus (mirrored). B. BSPG 2003 IV 164 in dorsal view, represented as right lapillus. C. BSPG 2003 IV 52b in dorsal view, represented as right lapillus and mirrored (C1) and in anterior view, represented as left lapillus (C2). A, C, display a lapilli pair. SEM−pictures (A, C), digital picture (B).
Fig. 28 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 28. Early Miocene Palaeotinca sp. 1. A–D. BSPG 2003 XVIII 64–67 respectively, from St. Donat (France) in dorsal views, represented as right lapilli (C, D mirrored). E. BSPG 2003 XVIII 63 from Göllheim (Germany) in dorsal view, represented as right lapillus. SEM−pictures.
Fig. 22 in Reconstruction of Oligocene and Neogene freshwater fish faunas-an actualistic study on cypriniform otoliths
Fig. 22. Miocene lapilli of aff. Abramis sp. vel aff. Alburnus sp. A–F. BSPG 2003 IV 30–35 respectively, in dorsal views, represented as right lapilli, mirrored, from middle Miocene of Le Locle (Switzerland) S1/15.2–15.45 m (A, B) and S3/16.4–16.6 m (C), and early Miocene of Illerkirchberg (Germany), no. 18 (D–F). G. BSPG 2003 XVIII 36 from early Miocene of Illerkirchberg (Germany), no. 18 in ventral view, represented as left lapillus. SEM−pictures.
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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.