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820 results for “Czech Republic”
Fig. 3. The marrellomorph arthropod Furca bohemica Fritsch, 1908 in A revision of the Late Ordovician marrellomorph arthropod Furca bohemica from Czech Republic
Fig. 3. The marrellomorph arthropod Furca bohemica Fritsch, 1908 from the Upper Ordovician (Sandbian) of Bohemia (Ostrý Hill and Veselá, Beroun District). A. NML 32998 (A1) and detailed view (A2). B. NML 33001a. C. NML 33001b. D. NML 40881. E. NML CD784−9143a. F. NML CD784−9143b. G. NML CD748−7845b. Scale bars 10 mm.
Fig. 6. The marrellomorph arthropod Furca bohemica Fritsch, 1908 in A revision of the Late Ordovician marrellomorph arthropod Furca bohemica from Czech Republic
Fig. 6. The marrellomorph arthropod Furca bohemica Fritsch, 1908 from the Upper Ordovician (Sandbian) of Bohemia (Ostrý Hill and Veselá, Beroun District). A. NML 40865. B. NML 40861. C. NML 40875. Scale bars 10 mm.
Fig. 8 in A revision of the Late Ordovician marrellomorph arthropod Furca bohemica from Czech Republic
Fig. 8. Phylogeny of marrellomorph arthropods. Single MPT (most parsimonious tree) (CI = 0.941; RI = 0.941). Tree length is 17 steps with equally weighted characters. With implied weighting tree length equals 0.1667 (k = 5), 0.25 (k = 3) and 0.50 (k = 1). Numbers on the left of the branches indicate support values for jackknifing, and those in brackets are for symmetric resampling. Numbers on the right of branches indicate Bremer support values. Outgroup taxa are represented by trilobite Olenoides serratus.
Fig. 4 in The first non-avian theropod from the Czech Republic
Fig. 4. Non-avian theropod tooth, IGS-MJ-0001 (Orionides indet.) from Upper Jurassic (Oxfordian), Švédské šance (Brno-Slatina), Czech Republic. A. Tooth in labial view. B. Detail of the serrations on the mesial carina; with the cellae filled with matrix and clear absence of the complexes of interdenticular sulci and caudae. C. Tooth crown from the mesial view.
Fig. 5 in The first non-avian theropod from the Czech Republic
Fig. 5. Non-avian theropod tooth, IGS-MJ-0001 (Orionides indet.) from Upper Jurassic (Oxfordian), Švédské šance (Brno-Slatina), Czech Republic. Detail of the serrations on the distal carina from the labial view.
Fig. 3. Tooth orientation terminology. A in The first non-avian theropod from the Czech Republic
Fig. 3. Tooth orientation terminology. A. Theropod tooth crown in lingual view. B. Mid-crown cross-section of idealized theropod tooth crown. After Smith and Dodson (2003).
Fig. 2 in The first non-avian theropod from the Czech Republic
Fig. 2. Location of the discovery and paleogeography of the Czech Republic during the maximum transgression in the Late Jurassic. The depicted areas represent: the presumed extent of the landmass (A), the shelf lagoon (B), the carbonate platform (C), the basin development (D); star shows approximate position of Švédské šance (modified after Eliáš in Suk et al. 1984: 150).
Fig. 1 in The first non-avian theropod from the Czech Republic
Fig. 1. Sketch of tooth crown and measurements (modified after Smith et al. 2005 and Lubbe et al. 2009). DA, number of denticles per 5 mm at the apical third of the distal carina; DB, number of denticles per 5 mm at the basal third of the distal carina; DC, number of denticles per 5 mm at the center of the distal carina; MA, number of denticles per 5 mm at the apical third of the mesial carina; MB, number of denticles per 5 mm at the basal third of the mesial carina; MC, number of denticles per 5 mm at the center of the mesial carina.
Fig. 2 in Two new Carboniferous fertile sphenophylls and their spores from the Czech Republic
Fig. 2. Carboniferous (Bolsovian) fertile sphenophyll Bowmanites brasensis sp. nov., NMP−E 6352, Matylda Mine, Břasy, Radnice Basin, Kladno Formation, Radnice Member. A. Stem with leaves divided twice and three times. B. Cone and stem. C. Monopodially branched stem with leaves. D. Detail of twice divided leaves. E. Monopodially branched stem with leaves arranged in verticils.
Fig. 1. A in Two new Carboniferous fertile sphenophylls and their spores from the Czech Republic
Fig. 1. A. Geological profile of the Radnice Basin. B. Sketech map of the Czech Republic. C. Position of the Radnice Basin among other basins of the central and western Bohemian continental basins of the Czech Republic. D. Sketech map of the Radnice Basin with localities mentioned in the text.
Fig. 6 in Two new Carboniferous fertile sphenophylls and their spores from the Czech Republic
Fig. 6. Carboniferous (Bolsovian) fertile sphenophyll Bowmanites pseudoaquensis sp. nov., NMP−E 6358, holotype, Ovčín opencast mine, Radnice Basin, Kladno Formation, Radnice Member. A. General view of the holotype showing sterile axis, leaves and several cones. B. Leaves on the central axis. C. Detail of the leaf tips. D. Leaves on the central axis. E. Terminal position of the cone.
Fig. 4 in Two new Carboniferous fertile sphenophylls and their spores from the Czech Republic
Fig. 4. Carboniferous (Bolsovian) fertile sphenophyll Bowmanites pseudoaquensis sp. nov., Ovčín opencast mine, Radnice Basin, Kladno Formation, Radnice Member. A. NMP−E 6123, general view of sterile stems with leaves arranged in verticils (A1); detail showing lanceolate leaves (A2); detail of nine lanceolate leaves arranged in verticils (A3). B. NMP−E 6124; cone with sterile apex (B1); detail of leafy stem (B2).
Fig. 5 in Two new Carboniferous fertile sphenophylls and their spores from the Czech Republic
Fig. 5. Carboniferous (Bolsovian) fertile sphenophyll Bowmanites pseudoaquensis sp. nov., NMP−E 6124, Ovčín opencast mine, Radnice Basin, Kladno Formation, Radnice Member (A, G) and their spores of of Punctatisporites obesus−type (B–F). A. Detail showing the position of sporangia. Note that one sporangium occurs per sporangiophore between the sterile bract and the axis of a cone. B, D. Spores of Punctatisporites obesus−type; distal surfaces, SEM micrographs. C, E, F. Spore of Punctatisporites obesus−type. Proximal views. Note finely scabrate sculpture on the proximal surface (E, F) and slightly developed labrum. G. Detail of sub−terminally located sporangium on shortened sporangiophore.
Fig. 3 in Two new Carboniferous fertile sphenophylls and their spores from the Czech Republic
Fig. 3. Carboniferous (Bolsovian) fertile sphenophyll Bowmanites brasensis sp. nov., WBMP−F 03760 Matylda Mine, Břasy, Radnice Basin, Kladno Formation, Radnice Member. A. General view of the cone. B. Detail showing the position of sporangia with in situ spores (arrows) on the sporangiophore. C. Detail of in situ spores (arrows) in sporangia. Note the length of the sporangiophore. D. Position of sporangia between sterile bracts and the axis of a cone. E. Central body of a spore of Punctatisporites obesus−type; lateral view. F, G. Central bodies of spores of Punctatisporites obesus−type. Note the trilete mark and labrum. H. Central body of a spore of Punctatisporites obesus−type; distal view. I. Spore with exospore assigned to the dispersed species Punctatisporites obesus (Loose) Potonié and Kremp, 1954; proximal view.
Fig. 10. Phylogenetic analysis. A, B in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 10. Phylogenetic analysis. A, B. Two of six most parsimonious trees recovered by PAUP* 40b10 from a heuristic search of 33 taxa and 150 characters. C. Bootstrap percentages on a 50% majority−rule consensus tree.
Fig. 9 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 9. Makowskia laticephala gen. et sp. nov., SNM Z 26506. Right ischium in ventral view (A), left tibia in anterior view (B).
Fig. 7 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 7. Makowskia laticephala gen. et sp. nov., SNM Z 26506. A. Neural arch from the posterior half of the presacral vertebral column in dorsal view. B. Pleurocentrum and intercentrum from anterior section of caudal vertebral column in posterolateral (B1) and right lateral (B2) views. C. Femur, fibula and anterior section of caudal vertebral column in left lateral view (C1), selected postcranial elements of the same section of vertebral column in right lateral view (C2).
Fig. 6 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 6. Makowskia laticephala gen. et sp. nov., SNM Z 26506. A. Anterior portion of postcranial skeleton in dorsal view. B. The same skeleton in ventral view.
Fig. 5 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 5. Makowskia laticephala gen. et sp. nov., SNM Z 26506. A. Restoration of skull in ventral view. B. Restoration of lower jaw in right lateral view.
Fig. 4 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 4. Makowskia laticephala gen. et sp. nov., SNM Z 26506. Restoration of skull in dorsal (A) and left lateral (B) views.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.
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.