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594 results for “Carboniferous”
Figs 2, 3 in An enigmatic Palaeozoic stem-group: Paoliida, designation of new taxa from the Upper Carboniferous of the Czech Republic (Insecta: Paoliidae, Katerinkidae fam. n.)
Figs 2, 3. Mertovia sustai (Kukalová, 1958), comb. n. (Paoliidae), photograph and line drawing of holotype specimen B13189, collection of the Municipal Museum of Ostrava.
Figs 4, 5 in An enigmatic Palaeozoic stem-group: Paoliida, designation of new taxa from the Upper Carboniferous of the Czech Republic (Insecta: Paoliidae, Katerinkidae fam. n.)
Figs 4, 5. Undetermined genus of presumed Paoliidae, photograph and line drawing of specimen B13190, collection of the Municipal Museum of Ostrava.
Fig. 1 in An enigmatic Palaeozoic stem-group: Paoliida, designation of new taxa from the Upper Carboniferous of the Czech Republic (Insecta: Paoliidae, Katerinkidae fam. n.)
Fig. 1. Location of the Upper Silesian Coal Basin (Czech Republic) within Upper Carboniferous palaeogeographical world map and stratigraphical position in lithostratigraphic division of the Carboniferous in the Upper Silesian Coal Basin the Czech Republic after Dopita et al. (1997, modified). Proximate distribution of other paoliid species within palaeogeographical world map indicated by black triangles (palaeogeographical map after Scotese (2005), modified).
Fig. 24 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 24. Acutimitoceras acutum (Schindewolf, 1923) from Gattendorf. A. Cross section of paralectotype SMF Mbg.3106 (Schindewolf 1916 Coll.) from bed 21. B. Suture line of specimen MB.C.31283 (Korn 1989 Coll.) from bed 21f, at dm = 11.5 mm, ww = 4.8 mm, wh = 5.5 mm. C. Growth line and constriction course in lectotype SMF.Mbg.3105 (Schindewolf 1916 Coll.) from bed 21, at dm = 16.4 mm, ww = 5.0 mm, wh = 9.0 mm. D –F. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Grey dots = specimen MB.C.1986 from the Pfaffenberg near Saalfeld, from Bartzsch & Weyer (1996). Scale bar units = 1 mm.
Fig. 23 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 23. Acutimitoceras acutum (Schindewolf, 1923) from Gattendorf. A. Lectotype SMF Mbg.3105 (Schindewolf 1916 Coll.) from bed 21. B. Specimen MB.C.31283 (Korn 1989 Coll.) from bed 21f. Scale bar units = 1 mm.
Fig. 21 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 21. Stockumites sp., juvenile specimens (Korn 1989 Coll.) from Gattendorf, bed 21a. A. Specimen MB.C.31271. B. Specimen MB.C.31272. C. Specimen MB.C.31273. D. Specimen MB.C.31274. E. Specimen MB.C.31275. Scale bar units = 1 mm.
Fig. 20 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 20. Stockumites nonaginta sp. nov. from Gattendorf. A. Cross section of paratype MB.C.31270.1 (Korn 1989 Coll.) from bed 21c–d. B. Cross section of paratype MB.C.31270.2 (Korn 1989 Coll.) from bed 21c–d. C. Suture line of holotype BGRB X13403 (Schindewolf 1934 Coll.) from bed 21, at dm = 47.5 mm, ww = 18.7 mm, wh = 26.0 mm. D –F. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Scale bar units = 1 mm.
Fig. 19 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 19. Stockumites nonaginta sp. nov., holotype BGRB X13403 (Schindewolf 1934 Coll.) from Gattendorf, bed 21. Scale bar units = 1 mm.
Fig. 18 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 18. Stockumites hofensis sp. nov. from Gattendorf, bed 21c–d. A. Cross section of paratype MB.C.31269.2 (Korn 1989 Coll.). B. Cross section of paratype MB.C.31269.3 (Korn 1989 Coll.). C. Cross section of paratype MB.C.31269.4 (Korn 1989 Coll.). D–F. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Scale bar units= 1 mm.
Fig. 17 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 17. Stockumites hofensis sp. nov. from Gattendorf. A. Cross section of paratype MB.C.31269.5 (Korn 1989 Coll.) from bed 21c–d. B. Cross section of paratype MB.C.31269.6 (Korn 1989 Coll.) from bed 21c–d. C. Suture line of holotype MB.C.31269.1 (Korn 1989 Coll.) from bed 21c–d, at ww = 9.6 mm, wh = 10.8 mm. D. Suture line of paratype BGRB X13398 (Schindewolf 1934 Coll.) from bed 21, at dm = 28.8 mm, ww = 11.4 mm, wh = 15.1 mm. E. Suture line of paratype BGRB X13397 (Schindewolf 1934 Coll.) from bed 21, at ww = 12.6 mm, wh = 15.7 mm. Scale bar units = 1 mm.
Fig. 25 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 25. Gattendorfia subinvoluta (Münster, 1839) from Gattendorf. A. Holotype SNSB BSPG AS VII 30 (Münster Coll.). B. Holotype of "Gattendorfia ventroplana Schindewolf, 1923" SMF Mbg.3119 (Schindewolf 1916 Coll.). C. Specimen MB.C.8015. D. Specimen SMF Mbg.3118 (Schindewolf 1916 Coll.). Scale bar units = 1 mm.
Fig. 15 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 15. Stockumites convexus (Vöhringer, 1960) from Gattendorf, bed 21. A. Specimen SMF Mbg.7572 (Schindewolf 1916 Coll.). B. Specimen BGRB X13396 (Schindewolf 1934 Coll.). Scale bar units = 1 mm.
Fig. 16 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 16. Stockumites hofensis sp. nov. from Gattendorf. A. Paratype BGRB X13397 (Schindewolf 1934 Coll.) from bed 21. B. Paratype BGRB X13398 (Schindewolf 1934 Coll.) from bed 21. C. Holotype MB.C.31269.1 (Korn 1989 Coll.) from bed 21c–d. D. Paratype BGRB X13399 (Schindewolf 1934 Coll.) from bed 21. E. Paratype BGRB X13400 (Schindewolf 1934 Coll.) from bed 21. Scale bar units = 1 mm.
Fig. 13 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 13. Stockumites parallelus Korn & Weyer, 2023 from Gattendorf. A. Specimen MB.C.31267 (Korn 1989 Coll.) from bed 21a. B. Specimen BGRB X13392 (Schindewolf 1934 Coll.) from bed 21. C. Specimen BGRB X13393 (Schindewolf 1934 Coll.) from bed 21. Scale bar units = 1 mm.
Fig. 14 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 14. Stockumites parallelus Korn & Weyer, 2023 from Gattendorf. A. Cross section of specimen MB.C.31268 (Korn 1989 Coll.) from bed 21c–d. B. Cross section of specimen BGRB X13394 (Schindewolf 1934 Coll.) from bed 21. C. Cross section of specimen BGRB X13395 (Schindewolf 1934 Coll.) from bed 21. D–F. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Scale bar units= 1 mm.
Fig. 10 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 10. Stockumites subbilobatus (Münster, 1839), holotype SNSB BSPG AS VII 26 (Münster Coll.) from Gattendorf. Scale bar units = 1 mm.
Fig. 7 in The ammonoids from the Gattendorfia Limestone of Gattendorf (Devonian-Carboniferous boundary; Upper Franconia, Germany)
Fig. 7. Stockumites kleinerae (Korn, 1984) from Gattendorf. A. Cross section of specimen MB.C.31261 (Korn 1989 Coll.) from bed 21a. B. Cross section of specimen SMF Mbg.7561 (Schindewolf 1916 Coll.) from bed 21. C. Cross section of specimen SMF Mbg.7562 (Schindewolf 1916 Coll.) from bed 21. D. Cross section of specimen MB.C.31262.1 (Korn 1989 Coll.) from bed 21c–d. E–G. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Scale bar units = 1 mm.
Fig. 127 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)
Fig. 127. Eocanites planus (Schindewolf, 1926) from the Oberrödinghausen railway cutting. A. Lateral view and dorsal reconstruction of neotype GPIT-PV-64009 (Vöhringer Coll.) from bed 1. B. Suture line of specimen GPIT-PV-63990 (Vöhringer Coll.) from an unknown bed, at ww = 6.2 mm, wh = 7.0 mm. Scale bar units = 1 mm.
Fig. 120 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)
Fig. 120. Eocanites nodosus (Schmidt, 1925) from the Oberrödinghausen railway cutting. A. Cross section of specimen MB.C.31234.2 (Weyer 1993–1994 Coll.) from bed 3d1b. B. Suture line of specimen GPIT-PV-63968 from bed 3d, at dm = 18.6 mm, ww = 5.5 mm, wh = 5.5 mm. C. Growth line course of specimen GPIT-PV-63968 from bed 3d, at dm = 22.5 mm, ww = 6.4 mm, wh = 6.9 mm. D–F. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Scale bar units = 1 mm.
Fig. 114 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)
Fig. 114. Pseudarietites subtilis Vöhringer, 1960 from the Oberrödinghausen railway cutting.A. Specimen MB.C.31221 (Korn 1977 Coll.), bed unknown. B. Cross section of paratype GPIT-PV-63959 (Vöhringer Coll.) from bed 3c. C. Growth line course of holotype GPIT-PV-63984 (Vöhringer Coll.) from bed 3c, at dm = 26.5 mm, ww = 8.1 mm, wh = 8.6 mm. D –F. Ontogenetic development of the conch width index (ww/dm), umbilical width index (uw/dm), whorl width index (ww/wh) and whorl expansion rate (WER) of selected specimens. Scale bar units = 1 mm.
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