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159 results for “limestone mountain”

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Fig. 94 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 94. Weyerella reticulum (Vöhringer, 1960), holotype GPIT-PV-63974 Vöhringer Coll.) from the Oberrödinghausen railway cutting, bed 6. Scale bar units = 1 mm.

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Fig. 92 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 92. Weyerella molaris (Vöhringer, 1960) from the Oberrödinghausen railway cutting, both Weyer 1993–1994 Coll. A. Specimen MB.C.31189.1 from bed 3d1b. B. Specimen MB.C.31190.1 from bed 3d2. Scale bar units = 1 mm.

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Fig. 91 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 91. Weyerella molaris (Vöhringer, 1960) from the Oberrödinghausen railway cutting; all Vöhringer Coll. A. Holotype GPIT-PV-63930 from bed 3c. B. Paratype GPIT-PV-63928 from bed 2. C. Paratype GPIT-PV-63960 from bed 2. Scale bar units = 1 mm.

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Fig. 85 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 85. Zadelsdorfia crassa (Schmidt, 1924) from the Oberrödinghausen railway cutting, cross sections, bed 2; all Vöhringer Coll. A. Specimen MB.C.5347. B. Specimen MB.C.5348. C. Specimen MB.C.5346. D. Specimen GPIT-PV-63956. E. Specimen MB.C.5349. F. Specimen MB.C.5353. G. Specimen MB.C.5351. H. Specimen MB.C.5352. I. Specimen MB.C.5350. J. Specimen MB.C.31166.1. K. Specimen MB.C.5354. L. Specimen MB.C.5358. M. Specimen MB.C.5357. N. Specimen MB.C.5356. O. Specimen MB.C.31166.2. Scale bar units = 1 mm.

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Fig. 83 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 83. Zadelsdorfia crassa (Schmidt, 1924) from the Oberrödinghausen railway cutting, both Korn 1977 Coll. A. Specimen MB.C.31169.1. B. Specimen MB.C.31169.2. Scale bar units = 1 mm.

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Fig. 81 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 81. Zadelsdorfia crassa (Schmidt, 1924) from bed 2 of the Oberrödinghausen railway cutting, all Vöhringer Coll. A. Specimen GPIT-PV-63953. B. Specimen GPIT-PV-63955. C. Specimen GPIT- PV-63957. D. Specimen GPIT-PV-63947. Scale bar units = 1 mm.

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Fig. 78 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 78. Gattendorfia corpulenta sp. nov. from the Oberrödinghausen railway cutting. A. Cross section of paratype MB.C.31159 (Vöhringer Coll.) from bed 3b. B. Cross section of paratype GPIT-PV-63896 (Vöhringer Coll.) from bed 3d. C. Cross section of paratype MB.C.31162 (Vöhringer Coll.) from an unknown bed. D. Suture line of paratype GPIT-PV-63896 from bed 3d, at dm = 30.6 mm, ww = 4.5 mm, wh = 13.0 mm. 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.

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Fig. 74 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 74. Gattendorfia schmidti sp. nov. from the Oberrödinghausen railway cutting. A. Holotype GPIT- PV-63952 (Vöhringer Coll.) from bed 1. B. Paratype MB.C.31157.1 (Vöhringer Coll.) from bed 3c. Scale bar units = 1 mm.

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Fig. 70 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 70. Gattendorfia bella sp. nov. from the Oberrödinghausen railway cutting. A. Paratype MB.C.31151.2 (Weyer 1993–1994 Coll.) from bed 3e. B. Holotype MB.C.31151.1 (Weyer 1993–1994 Coll.) from bed 3e. Scale bar units = 1 mm.

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Fig. 71 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 71. Gattendorfia bella sp. nov. from the Oberrödinghausen railway cutting. A. Cross section of paratype MB.C.31150 (Vöhringer Coll.) from bed 3b. B. Cross section of paratype GPIT-PV-63942 (Vöhringer Coll.) from bed 3d. C. Cross section of paratype GPIT-PV-63989 (Vöhringer Coll.) from bed 5. D. Growth line course of holotype MB.C.31151.1 (Weyer 1993–1994 Coll.) from bed 3e, at dm = 30.6 mm, ww = 8.5 mm, wh = 13.8 mm. 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.

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Fig. 87 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 87. Kazakhstania evoluta (Vöhringer, 1960), holotype GPIT-PV-63963 (Vöhringer Coll.) from the Oberrödinghausen railway cutting, unknown bed. Scale bar units = 1 mm.

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Fig. 68 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 68. Gattendorfia rhenana sp. nov.; holotype GPIT-PV-63940 (Vöhringer Coll.) from the Oberrödinghausen railway cutting, bed 5. Scale bar units = 1 mm.

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Fig. 69 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 69. Gattendorfia rhenana sp. nov. from the Oberrödinghausen railway cutting. A. Cross section of paratype GPIT-PV-63946 from bed 5. B. Suture line of paratype GPIT-PV-63946 from bed 5, at ww = 11.5 mm, wh = 6.0 mm. C. Growth line course of holotype GPIT-PV-63940 from bed 5, at ww ~ 32.0 mm, wh = 18.0 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.

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Fig. 67 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 67. Voehringerites peracutus (Vöhringer, 1960); B, D after Korn & Weyer (2003). A. Cross section of holotype GPIT-PV-63958 (Vöhringer Coll.) from the Oberrödinghausen railway cutting, bed 5. B. Cross section of specimen MB.C.5245.1 (Weyer 1993–1994 Coll.) from the Hasselbachtal section, bed 72. C. Suture line of holotype GPIT-PV-63958 (Vöhringer Coll.) from the Oberrödinghausen railway cutting, bed 5, at dm = 21.5 mm, ww = 6.8 mm, wh = 12.0 mm. D. Suture line of specimen MB.C.5245.1 (Weyer 1993–1994 Coll.) from the Hasselbachtal section, bed 72, at dm = 34.0 mm, ww = 8.8 mm, wh = 19.5 mm. 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.

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Fig. 66 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 66. Voehringerites peracutus (Vöhringer, 1960) from the Oberrödinghausen railway cutting. A. Holotype GPIT-PV-63958 (Vöhringer Coll.) from bed 5. B. Paratype GPIT-PV-63966 (Vöhringer Coll.) from bed 5. C. Specimen MB.C.3723.1 (Weyer 1993–1994 Coll.) from bed 5a2. Scale bar units = 1 mm.

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Fig. 63 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 63. Nicimitoceras heterolobatum (Vöhringer, 1960) from the Oberrödinghausen railway cutting (widely umbilicate morphotype). A. Cross section of paratype GPIT-PV-63897 from bed 3e. B. Cross section of paratype GPIT-PV-63977 from bed 3c. C. Cross section of specimen MB.C.31139.1 from bed 3d. D. Cross section of specimen MB.C.31135.1 from bed 2. E. Suture line of specimen MB.C.31139.1 from bed 3d, at ww = 7.3 mm, wh = 8.1 mm. F. Suture line of holotype GPIT-PV-63893 from bed 3b/c, at dm = 36.7 mm, ww = 16.0 mm, wh = 22.5 mm. G–I. 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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Fig. 61 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 61. Nicimitoceras acre (Vöhringer, 1960), from the Oberrödinghausen railway cutting, bed 2. A. Holotype GPIT-PV-63856 (Vöhringer Coll.). B. Paratype GPIT-PV-63859 (Vöhringer Coll.). C. Suture line of holotype GPIT-PV-63856, at ww = 11.0 mm, wh = 15.5 mm. Scale bar units = 1 mm.

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Fig. 73 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 73. Gattendorfia valdevoluta sp. nov. from the Oberrödinghausen railway cutting. A. Cross section of paratype GPIT-PV-63996 (Vöhringer Coll.) from bed 2. B. Cross section of paratype MB.C.31152 (Vöhringer Coll.) from bed 3a. C. Cross section of paratype MB.C.31153 (Vöhringer Coll.) from bed 3d. D. Growth line course of holotype MB.C.31155 (Weyer 1993–1994 Coll.) from bed 3d2, at dm = 17.0 mm, ww = 7.0 mm, wh = 4.8 mm. 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.

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Fig. 77 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 77. Gattendorfia corpulenta sp. nov. from the Oberrödinghausen railway cutting; photographs and dorsal view reconstructions. A. Holotype MB.C.31160.1 (Vöhringer Coll.) from bed 3.4. B. Paratype MB.C.31164 (Weyer 1993–1994 Coll.) from bed 3e. Scale bar units= 1 mm.

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Fig. 60 in The ammonoids from the Gattendorfia Limestone of Oberrödinghausen (Early Carboniferous; Rhenish Mountains, Germany)

Fig. 60. Nicimitoceras subacre (Vöhringer, 1960) from the Oberrödinghausen railway cutting. A. Cross section of paratype GPIT-PV-63855 from bed 3e. B. Suture line of paratype GPIT-PV-63853 from bed 3e, at ww = 12.5 mm, wh = 14.0 mm. C–E. 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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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.

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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.

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neuroscienceopenPublished datasets are available on demand over the internet.
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