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56 results for “Moravia”
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.
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. 6 in Middle Devonian Calceola sandalina (Linnaeus, 1771) (Anthozoa, Rugosa) from Moravia (Czech Republic): aspects of functional morphology, gerontic growth patterns, and epibionts
FIG. 6. — Calceola sandalina (Linnaeus, 1771), all specimens are whitened with ammonium chloride prior the photographing except the thin sections; A, B, specimen ICh 3483, Chlupáč collection, Czech Geological Survey, Eifelian, Petrovice, latex cast; A, calicinal view; B, "ventral" view; C-E, three specimens ICh 3482 A-C, same collection and locality, steinkerns of opercula; F-I, specimen 29, Strnad collection, Silesian Museum Opava (figured in Strnad 1960: figs 1, 2); Eifelian, Horní Benešov; F, "dorsal" view; G, "ventral" view; H, lateral view; I, calicinal view; J, specimen 2/13 (13SL), Givetian, Čelechovice, SL, adult specimen with operculum in situ; K; specimen 107, unknown locality in Čelechovice (Givetian), juvenile operculum; L-N, specimen AG 932 A-C, coll. Galle, Geological Institute Academy of Science, unknown locality in Čelechovice (Givetian); L, transverse section nearer to calice; M, transverse section nearer to apex, senile closing of the calice is visible; N, longitudinal section through counter-cardinal plane; free spaces under the tabulae or tabellae; O, specimen AG 1436 C, coll. Galle, Geological Institute Academy of Science (figured in Galle 1995: pl. 4, figs 1-3); Borehole KDH-9, vicinity of Konice, close to Eifelian/Givetian boundary; transverse section through deformed specimen. Abbreviations: RL, Růžičkův lom Quarry; SL, Státní lom Quarry. Photos by Mrs. Hana Vršt'alová, thin sections by Mrs. Dana Hejdová (Central Geological Survey, Prague). Scale bars: A-J, L-O, 10 mm; K, 1 mm.
FIG. 2 in Middle Devonian Calceola sandalina (Linnaeus, 1771) (Anthozoa, Rugosa) from Moravia (Czech Republic): aspects of functional morphology, gerontic growth patterns, and epibionts
FIG. 2. — Corallite growth of adult (15SL, 19SL, 9SL, 17SL) and gerontic (1RL, 2RL, 5RL, 16SL) specimens expressed as L/W ratio (L and W in mm), Čelechovice, note width decrease on the curve of the specimen 15SL (= rejuvenation, see Fig. 5E-H). For further explanations see Fig. 1. Abbreviations: RL, Růžičkův lom Quarry; SL, Státní lom Quarry.
FIG. 1 in Middle Devonian Calceola sandalina (Linnaeus, 1771) (Anthozoa, Rugosa) from Moravia (Czech Republic): aspects of functional morphology, gerontic growth patterns, and epibionts
FIG. 1. — Corallite growth of juvenile specimens (20, 21, 24, 28, 103SL) expressed as L/W ratio (L and W in mm), Čelechovice, measurements begin 1 mm after the preserved apex of the corallite; this caused the beginnings of respective lines at various widths. Abbreviation: SL, Státní lom Quarry.
FIG. 3 in Middle Devonian Calceola sandalina (Linnaeus, 1771) (Anthozoa, Rugosa) from Moravia (Czech Republic): aspects of functional morphology, gerontic growth patterns, and epibionts
FIG. 3. — Freeing of Calceola out of the sediment; A, coral deep in sediment; B, center of gravity shifts forward and calice moves downward by opening the operculum, apex moves upward and sediment particles pour under apical part; C, operculum close, center of gravity shifts backward, calice moves upward and sediment particles pour under calicinal part. Animal moved upward.
Text-fig. 1. a – Discosauriscidae indet., DE K 396, skull in dorsal view. b – reconstruction of skull of DE K 396 in dorsal view. c – reconstruction of skull of Discosauriscus austriacus in dorsal view (on the basis of specimen Z 15529 from the locality Kochov-Horka, Boskovice Basin, deposited in the Slovak National Museum, Bratislava, Slovakia; Klembara 1997). in A New Find Of Discosauriscid Seymouriamorph From The Lower Permian Of Boskovice Basin In Moravia (The Czech Republic)
Text-fig. 1. a – Discosauriscidae indet., DE K 396, skull in dorsal view. b – reconstruction of skull of DE K 396 in dorsal view. c – reconstruction of skull of Discosauriscus austriacus in dorsal view (on the basis of specimen Z 15529 from the locality Kochov-Horka, Boskovice Basin, deposited in the Slovak National Museum, Bratislava, Slovakia; Klembara 1997).
Figure 4 in Revision of the Middle Badenian fish otoliths from the Carpathian Foredeep in Moravia (Middle Miocene, Czech Republic)
Figure 4. –Present-day bathymetric range of benthic and benthopelagic taxa (without pelagic taxa) (Jardas, 1996; Quéro et al., 2003; Froese and Pauly, 2016) represented in the Badenian clay of the Brno-Královo Pole section (compare Brzobohatý, 1997).
Text-fig. 1. The plan of Za Hájovnou Cave, survey of Tomica, A. (Musil 2005a, supplemented). in Middle Pleistocene Stratigraphy Of The Deposits In Za Hájovnou Cave (Javoříčko Karst, Northern Moravia, Czech Republic)
Text-fig. 1. The plan of Za Hájovnou Cave, survey of Tomica, A. (Musil 2005a, supplemented).
Text-fig. 1. Ground plan of Za Hájovnou Cave (according Tomica, supplemented by Musil, 2005). in Panthera Fossilis (Reichenau, 1906) (Felidae, Carnivora) From Za Hájovnou Cave (Moravia, The Czech Republic): A Fossil Record From 1987-2007
Text-fig. 1. Ground plan of Za Hájovnou Cave (according Tomica, supplemented by Musil, 2005).
FIG. 4 in Middle Devonian Calceola sandalina (Linnaeus, 1771) (Anthozoa, Rugosa) from Moravia (Czech Republic): aspects of functional morphology, gerontic growth patterns, and epibionts
FIG. 4. — Calceola with calice facing downstream (A) and upstream (B).
FIGURE 3. N in Niphargus diadematus sp. n. (Crustacea, Amphipoda, Niphargidae), an inhabitant of a shallow subterranean habitat in South Moravia (Czech Republic)
FIGURE 3. N. diadematus sp. n. A. gnathopods I; B. gnathopod II and its palmar section (B1); C. pereopod IV; D. coxal plates I-II (cxI, cxII); E. coxal plates III–IV (cxIII, cxIV); F–F3. pereopod V: F. general view, F1. coxal plate, F2. basis, F3. dactylus and nail; G–G3. pereopod VI: G. general view, G1. coxal plate, G2. basis, H3. dactylus and nail; H–H3. Pereopod VII: H. general view, H1. coxal plate, H2. basis, H3– H3a. dactylus and nail; I1. pleopod I; I2. pleopod II; J. uropod I; K. uropod II; L. polygonal reticulation on the cuticle. (Drawings by I. Hudec.)
FIGURE 4. N in Niphargus diadematus sp. n. (Crustacea, Amphipoda, Niphargidae), an inhabitant of a shallow subterranean habitat in South Moravia (Czech Republic)
FIGURE 4. N. diadematus sp. n. A. epimeral plates; B. ventral spine on epimeral plate II; C. pleopod retinacles of pleopod II; D. maxilla I (mx-1) and maxilla II (mx-2); E. maxilla I: inner lobe; F. mandibular and upper labium (ula); G. maxilliped: inner segment, outer segment and distal segment; H. gnathopods II; I. coxal plate V (female); J. pereopod V–distal part; K. coxal plate VII and basis; L–L1. telson (the same telson in different compression); M. telson and uropod of female. (Photo by I. Hudec.)
FIGURE 2 in Niphargus diadematus sp. n. (Crustacea, Amphipoda, Niphargidae), an inhabitant of a shallow subterranean habitat in South Moravia (Czech Republic)
FIGURE 2. Niphargus diadematus sp. n. A. male, general view; B. head capsula; C–C1 antenna; D. antenna; E. upper lip; F. ventral labium; G–G1. maxilla I; H–H1. maxilla II; I–I1. maxilliped (inner segment (is), outer segment (os)) and distal segment (I1); J. epimeral plates; K. telson; L. uropod III of female; M. uropod III of male; not scaled, except of the general view of the male. (Drawings and photo by I. Hudec.)
FIGURE 1 in Niphargus diadematus sp. n. (Crustacea, Amphipoda, Niphargidae), an inhabitant of a shallow subterranean habitat in South Moravia (Czech Republic)
FIGURE 1. Niphargus diadematus sp. n. A. The habitat of the type locality; B. The series of vertical subterranean traps used for this collection in soil.
Nei labirinti dell'esistenza. A partire da Sergio Moravia
<p>Convegno online relativo al Premio Nazionale di Filosofia, edizione 2023.</p>
Figures 6-9 from: Rung A (2018) A new species of Aulacigaster Macquart from Zurquí de Moravia, a Costa Rican cloud forest (Diptera, Aulacigastridae). Zoologia 35: 1-6. https://doi.org/10.3897/zoologia.35.e13047
Figures 6-9 Digital photographs of Aulacigaster zurqui sp. nov., holotype male, genitalia: (6) aejaculatory apodeme, dorsal view; (7) subepandrial sclerite, dorsal view; (8) gonopod, lateral view; (9) epandrium and surstylus, lateral view. All to the same scale.
Figures 2-5 from: Rung A (2018) A new species of Aulacigaster Macquart from Zurquí de Moravia, a Costa Rican cloud forest (Diptera, Aulacigastridae). Zoologia 35: 1-6. https://doi.org/10.3897/zoologia.35.e13047
Figures 2-5 Digital photographs of Aulacigaster zurqui sp. nov., paratype female: (2) habitus, lateral view; (3) habitus, dorsal view; (4) head, forntal view; (5) head, lateral view. Specimen is 2.6 mm long. Not all to the same scale.
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