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820 results for “Czech Republic”
Fig. 2 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 2. Makowskia laticephala gen. et sp. nov., SNM Z 26506. Photograph of holotype skull (A) and explanatory drawing of the same (B) in ventral view.
Fig. 3 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 3. Makowskia laticephala gen. et sp. nov., SNM Z 26506. A. Sclerotic plates in anterior part of right orbit. B. Right stapes.
Fig. 1 in A new discosauriscid seymouriamorph tetrapod from the Lower Permian of Moravia, Czech Republic
Fig. 1. Makowskia laticephala gen. et sp. nov., SNM Z 26506. Photograph of holotype skull (A) and explanatory drawing of the same (B) in dorsal view.
Fig. 1. A in Shallow-Water Occurrence ofWiwaxiain the Middle Cambrian of the Barrandian Area, Czech Republic
Fig. 1. A. Location of the Skryje−Týřovice Basin and the studied area within the Bohemian Massif and Czech Republic. B. Geology of the area of "Orthis small quarry" (modified after Mašek et al. 1997). C. Stratigraphy of the Skryje−Týřovice Basin (according to Fatka et al. 2011).
Fig. 3 in Shallow-Water Occurrence ofWiwaxiain the Middle Cambrian of the Barrandian Area, Czech Republic
Fig. 3. Palaeogeographical distribution of the genus Wiwaxia in the lower and middle Cambrian. 1, Wiwaxia corrugata (Matthew, 1899), Burgess Shale of the Stephen Formation, British Columbia, USA (Conway Morris 1985a); 2, Wiwaxia corrugata (Matthew, 1899), Mount Cap Formation, northwestern Canada (Butterfield 1994); 3, Wiwaxia cf. corrugata (Matthew, 1899), Spence Shale, west−central Utah, USA (Conway Morris and Robison 1988; Robison 1991); 4, Wiwaxia taijiangensis Zhao, Qian, and Li, 1994, Kaili Formation, Guizhou, China (Zhao et al. 1994); 5, Wiwaxia sp., Emu Bay Shale, South Australia (Nedin unpublished material, Porter 2004); 6, Wiwaxia sp., Monastery Creek Formation, North Australia (Southgate and Shergold 1991; Porter 2004); 7, Wiwaxia sp., Sinsk Formation, Siberia (Ivantsov et al. 2005a, b); 8, Wiwaxia sp. cf. Wiwaxia corrugata (Matthew, 1899), Slapnice Member, Buchava Formation, Czech Republic (this paper). Early Cambrian palaeogeography modified after McKerrow et al. (1992).
Fig. 2 in Shallow-Water Occurrence ofWiwaxiain the Middle Cambrian of the Barrandian Area, Czech Republic
Fig. 2. Isolated sclerites of Wiwaxia sp. cf. Wiwaxia corrugata (Matthew, 1899), Slapnice Member of the Buchava Formation, Skryje−Týřovice Basin, Barrandian area, Czech Republic. A, B. Part and counterpart of CGS XB 800a. C. CGS XB 800b. D. CGS XB 800c. E. CGS XB 800d. F. CGS XB 800e. A1–C1, D, E1–F1. Photos of scales. A2–C2, E2–F2. Drawings of the respective specimens. A3. Example of a typical assemblage of the sclerite of Wiwaxia (arrow) with fragments of graptolites; slab CGS XB 800.
Fig. 2 in Role of three bird species in the life cycle of two Sarcocystis spp. (Apicomplexa, Sarcocystidae) in the Czech Republic
Fig. 2. Maximum likelihood tree for Sarcocystis halieti isolates from intermediate and definitive hosts (red asterisk) based on internal transcribed spacer sequences (HKY + I model). Sequences of the present study in blue. The tree was rooted on Sarcocystis arctica. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1 in Role of three bird species in the life cycle of two Sarcocystis spp. (Apicomplexa, Sarcocystidae) in the Czech Republic
Fig. 1. Sarcocystis halieti from Sturnus vulgaris. (a) Free thin-walled sarcocyst from skeletal muscle, wet mount. (b) Haematoxylin and eosin-stained histological sections of breast muscle with sarcocyst. Scale bars = 25 μm.
Fig. 10. A–E in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 10. A–E. Elapidae gen. et sp. indet. from the Early Miocene (MN 3a) of Merkur−North; trunk vertebra (SGDB 7408/MI−89) in lateral (A), dorsal (B), ventral (C), cranial (D), and caudal (E) views. Scale bar 2 mm.
Fig. 11. A–E in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 11. A–E. Vipera sp. from the Early Miocene (MN 3a) of Merkur−North; precaudal vertebra (SGDB Ah−610) in lateral (A), dorsal (B), ventral (C), cranial (D), and caudal (E) views. Scale bar 2 mm.
Fig. 8 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 8. Natrix merkuriensis sp. nov. from the Early Miocene (MN 3a) of Merkur−North. A. Left ectopterygoid (SGDB Ah−313, paratype). B. Right quadrate (SGDB Ah−312). C. Right maxillary (SGDB Ah−314). D1, D2. Right compound bone (SGDB Ah−315, holotype). In dorsal (A), postero−lateral (B), ventral (C), labial (D1), and lingual (D2) views. Scale bar 2 mm.
Fig. 7 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 7. Natrix sansaniensis (Lartet, 1851) from the Early Miocene (MN 3a) of Merkur−North. A1–A3. Left compound bone (SGDB Ah−291). B. Right compound bone (SGDB Ah−620). C1–C5. Precaudal vertebra (SGDB Ah−296). In labial (A1, B), lingual (A2), dorsal (A3, C4), lateral (C1), cranial (C2), ventral (C3), and caudal (C5) views. Scale bar 2 mm.
Fig. 9 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 9. Natrix merkurensis sp. nov. from the Early Miocene (MN 3a) of Merkur−North. A1–A5. Anterior precaudal vertebra (SGDB 7408/MI−62, paratype). B1–B5. Mid−trunk vertebra (SGDB 7408/MI−75). C1–C4. Caudal vertebra (SGDB SGDB−Ah−505). In lateral(A1, B1, C1),dorsal(A2, B2, C2),ventral(A3, B3, C3), cranial (A4, B4, C4), and caudal (A5, B5) views. Scale bar 2 mm.
Fig. 6 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 6. cf. Elaphe sp. from the Early Miocene (MN 3a) of Merkur−North. A1, A2. Left dentary (SGDB Ah−l 68). B1–B5. Mid−trunk vertebra (SGDB Ah−215). In lingual (A1), labial (A2), lateral (B1), dorsal (B2), ventral (B3), cranial (B4), and caudal (B5) views. Scale bar 2 mm.
Fig. 2 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 2. Bavarioboa sp. from the Early Miocene (MN 3a) of Merkur−North; A1–A4. Cervical vertebra (SGDB Ah−2). B1–B5. Mid−trunk vertebra (SGDB 7408/MI−1). In lateral (A1, B1), dorsal (A2, B2), ventral (A3, B3), cranial (A4, B4), and caudal (B5) views. Scale bar 2 mm.
Fig. 1 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 1. The distribution of some Early and Middle Miocene ophidian localities in the areas of Germany, Czech Republic, Slovak Republic, Poland and Austria. 1, Weisenau (MN 1); 2, Hessler (MN 1); 3, Ulm−Westtangente (MN 2); 4, Stubersheim 3 (MN 3); 5, Merkur−North (MN 3a); 6, Dolnice (MN 4); 7, Petersbuch 2 (MN 4); 8, Langenau (MN 4); 9, Oberdorf (MN 4); 10, Randecker Maar (MN 5); 11, Eichstätt (MN 4–6); 12, Ivančice (MN?4–6); 13, Oggenhausen (MN 5/6); 14, Przeworno (MN 5–6); 15, Devínska Nová Ves (MN 6); 16, Vösendorf; 17, Sandelzhausen (MN 6); 18, Rothenstein 13 (MN 6); 19, Opole (MN 7); 20, Öhningen (MN 7+8); 21, Steinheim am Albuch (MN 7+8).
Fig. 5 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 5. Coluber caspioides Szyndlar and Schleich, 1993 from the Early Miocene (MN 3a) of Merkur−North. A1, A2. Left frontal (SGDB Ah−44). B. Right palatine (SGDB Ah−46). C1, C2. Right pterygoid (SGDB Ah−45). D. Right quadrate (SGDB Ah−l 1). E. Left dentary (SGDB Ah−48). F1, F2. Right compound bone (SGDB Ah−49). G1–G5. Cervical vertebra (SGDB Ah−51). H1, H2. Mid−trunk vertebra (SGDB Ah−615). I1–I5. Posterior trunk vertebra (SGDB 7408/MI−37). In dorsal (A1, C1, G2, H2, I2), ventral (A2, B, C2, G3, I3), postero−lateral (D), labial (E, F1), lingual (F2), lateral (G1, H1, I1), cranial (G4, I4), and caudal (G5, I5) views. Scale bar 2 mm.
Fig. 4 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 4. Coluber suevicus (Fraas, 1870) from the Early Miocene (MN 3a) of Merkur−North. A. Right quadrate (SGDB−Ah−33). B1–B3. Cervical vertebra (SGDB−Ah−36). C1–C5. Trunk vertebra (SGDB 7408/MI−26). In postero−lateral (A), lateral (B1, C1), dorsal (B2, C2), ventral (B3, C3), cranial (C4), and caudal (C5) views. Scale bar 2 mm.
Fig. 3. Coluber dolnicensis Szyndlar, 1987 in The oldest known Miocene snake fauna from Central Europe: Merkur-North locality, Czech Republic
Fig. 3. Coluber dolnicensis Szyndlar, 1987 from the Early Miocene (MN 3a) of Merkur−North. A1, A2. Left dentary (SGDB Ah−12). B1, B2. Right compound bone (SGDB Ah−l 4). C. Left compound bone (SGDB 7408/MI−9). D1–D4. Cervical vertebra (SGDB 7408/MI−5). E1–E5. Trunk vertebra (SGDB 7408/MI−7). F1–F3. Caudal vertebra. In labial (A1, B1), lingual (A2, B2, C), lateral (D1, E1), dorsal (D2, E2, F1), ventral (D3, E3, F2), cranial (D4, E4, F3), and caudal (E5) views. Scale bar 2 mm.
Fig. 2. Cochleosaurus bohemicus Fritsch. A. NMPM525 in On a small Cochleosaurus described as a large Limnogyrinus (Amphibia, Temnospondyli) from the Upper Carboniferous of the Czech Republic
Fig. 2. Cochleosaurus bohemicus Fritsch. A. NMPM525 ("Dendrerpeton deprivatum") = Fritsch Orig. 32, interior of skull roof. B. Original composite reconstructionofsmallskullbasedonBMNHR2823(palate),MBAm.25(extentofinterpterygoidvacuitiesinsmallskull)andNMPM525(interiorofskullroof).
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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.