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Fig. 13 A in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 13 A Ufimia sp. A1 External view of the specimen RAh (101), showing a straight conical corallite with eroded calice rim and apex. Positions of thin-sections indicated. A2–A3 Two successive transverse thin-sections in the mature part of the corallite show the thick, rhopaloid major septa meet in the corallite centre. Scale bars: A1: 5 mm; A2, A3: 2 mm. B Bothrophyllum okense Kossovaya, 2001. B1 External view of the partly preserved corallite (RAh 37), with partly eroded wall. Positions of thin-sections indicated. Successive transverse thin-sections from the lower less mature part in B2 up to the more mature section below the calice in B4, the transverse sections show the axial septum and a very narrow dissepimentarium. Scale bars: 5mm

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Fig. 12 in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 12 Relation between number of major septa and coralla alar diameters for: A Lytvolasma paraaucta n. sp., L aucta Fedorowski, 1987, L. asymetrica Soshkina, 1925 described by Chwieduk (2013), L. canadense Fedorowski and Bamber, 2001 and the current studied L. cf. canadense Fedorowski and Bamber, 2001. B Monophyllum galalaensis n. sp. and M. parvum Fomichev, 1953. C Rotiphyllum exile de Groot, 1963. D Zaphrentites cf. parallela (Carruthers, 1910) and Zaphrentites sp

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Fig. 10 in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 10 Rotiphyllum exile de Groot, 1963. A1 External lateral view of the corallite RAh (116), showing a slightly curved corallite with a calice largely preserved but compressed. Positions of thin-sections indicated. A2 Transverse thin section at the immature part of the corallite, showing a stereocolumn in the centre. A3–A4 Two successive transverse thin-sections at the early and latest mature stages, showing a long cardinal septum with thin axial end (diagenetically broken in A4). B1 External lateral view of the corallite RAh (117), with partly eroded calice. B2–B4 Successive transverse thin-sections marked in B1, showing the radial to sub-radial arrangement of major septa, the central stereocolumn and the long cardinal septum with a thin axial end. C1–C2 Two successive transverse thin-sections in the mature part of the corallite RAh (21). D1 Transverse thin-section in the immature part of the specimen RAh (46) showing a zaphrentoid arrangement of major septa. D2 Transverse thin-section in the mature part of the corallite, showing a deformed long cardinal septum in a triangular fossula. Black dots indicate the positions of cardinal septum (below), counter septum (above) and the two alar septa

opencc-by-4.0Nov 2023View details →
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Fig. 3 in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 3 Field aspects of the Aheimer Formation; A General view of the studied succession of the lower member exposed in a faulted block to the north of Porto Sukhna; the shales mudstones close to the base (rectangle) are interbedded with thin, hard dolomitic bands. B Close up view on of the lower fossiliferous shale mudstone beds of A. C, D Close-up view on of two rugose corals entombed in the shale mudstone beds. E Close-up view on of a rugose coral species with diagenetically compressed calyx. Note strong ferrugination of corallite and surrounding matrix within the fossiliferous shale. F Fossiliferous shales mudstone with thin bands of ferruginous dolomitic limestone and secondary evaporite veinlets; Cr = crinoidal stems. G Crinoid columnals (Cr) and rugose corals (RC) are embedded in the shale mudstone. H Close-up view on of a spiriferid valve shell within the shale (arrow). Diameter of coins in C–E, G: 25 mm

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Fig. 8 A Lytvolasma paraaucta n in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 8 A Lytvolasma paraaucta n. sp. A1 Lateral external view of the holotype specimen (RAh 54). Note that, calice is compressed due to compaction. A2 Transverse thin-section in the immature part, showing major septa with irregular zaphrentoid arrangement. A3 Transverse thin section in the early mature part of the corallite, showing radially arranged major septa with rhopaloid ends. A4 Laterally compressed section in the calice base, showing a deformed fossula. A5 Transverse thin-section in the compressed calice, with calcareous mud filling. B1 Lateral external view of the paratype specimen (RAh 19). B2–B5 Successive transverse thin-sections from the immature part near the apex (B2) to the last mature part in the calice (B5)

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Fig. 4 in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 4 Effects of diagenesis on some coral specimens: A Thin-section in the calice of the specimen RAh (44) shows a completely compressed calice filled with fossiliferous mud. B Thin-section below the calice of the Bothrophyllum okense (RAh 37) shows beginning of compression and breakage of septa. C Thin-section below the calice of the specimen RAh (79), shows completely broken and altered septa, probable outer dissepimentarium and axial structure, filled with ferruginous mud. D Thin-section of a completely compressed specimen RAh (200) shows high alteration, breakage and ferrugination of skeletal elements. E Thin-section in the early mature part of the Actinophrentis crassithecata n. sp. (RAh 11), shows ferrugination affects a large part of the interior skeleton. F Mature thin-section of Rotiphyllum exile (RAh 29), shows ferrugination and dolomitization of skeletal elements. G, H Thin-sections of mature part of the specimen (RAh 81) in G and the immature part of the specimen RAh (99) in H show extensive dolomitization and ferrugination of the internal skeletal elements

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Fig. 9 A Monophyllum galalaensis n in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 9 A Monophyllum galalaensis n. sp. (Holotype specimen, Rah 9). A1 Lateral external view of the corallite, positions of thin-sections indicated in A1. A2 A calice view of the paratype specimen (RAh 41), with eroded rim, shows an elongated counter septum that form a columella (arrow). A3–A5 Successive transverse thin-sections of the neanic stage, showing the pseudo-radial to pinnate arrangement of major septa, a long thin ended cardinal septum, and a longer counter septum with a swollen end in a dense stereocolumn. A6–7 Two successive mature sections, showing a short cardinal septum. A81, 2 Transverse thin-section in the late mature stage below the calice, showing radially arranged major septa that retreat a little leaving a narrow free axial area occupied by the elongated part of the counter septum. Note, A82 is a redrawing of section A81. Paratype specimen (RAh 13). External alar view of the corallite, positions of thin-sections are indicated in white lines. B2 Nepionic stage. B3 Early neanic stage. B4–5 Two partly compressed successive mature sections (ephebic stage), show a distinctly long counter septum. B6 Last mature section—more or less in the calice—showing a detached columella that is separated from the long counter septum. Black dots indicate the positions of cardinal septum (below), counter septum (above) and the two alar septa

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Fig. 11 A, B in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 11 A, B Zaphrentites cf. parallela (Carruthers, 1910). A1–A3 Successive transverse sections in the specimen RAh (118), starting from the early immature stage with zaphrentoid arrangement of the septa in A1 to the last mature stage below the calice in A3. B1 External lateral view of the specimen RAh (109), showing strong longitudinal ribbing on the corallite wall. Positions of thin-sections indicated. B2–B4 Successive transverse sections represent the ontogenetic development, starting from the immature section in the apical part in B2 to the last mature section below the calice floor in B4. C Zaphrentites sp. C1 External view of the specimen RAh (84). C2–C4 Successive transverse sections; from the immature section in C2 to the last mature section below the calice floor in C4. Black dots indicate the positions of cardinal septum (below), counter septum (above) and the two alar septa

opencc-by-4.0Nov 2023View details →
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Fig. 2 A in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 2 A Lithostratigraphic succession of the Aheimer Formation studied along the eastern cliffs of the Northern Galala Plateau after Kora and Mansour (1992). B Enlargement of the mudstone dominated basal shale part of the lower member of the Aheimer Formation studied herein (see also Fig. 3A)

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Fig. 1 in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 1 Geological map of the eastern cliffs of the Northern Galala Plateau, modified after Abdallah and El Adindani (1965)

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Fig. 6 A Actinophrentis crassithecata n in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 6 A Actinophrentis crassithecata n. sp.: (Holotype specimen RAh (57). A1 External view showing a thick walled, slightly curved corallite with septal furrows ornamenting the external wall. Position of thin-sections indicated. A2 Transverse thin-section near the non-preserved apical part, shows thick major septa meeting in the centre and adaxially thinning cardinal septum. A3 Transverse thin-section in the middle part of the corallite, shows major septa meeting in the centre and noticeable fossular breaks. A4 Last adult transverse thin section just below the calice shows septa withdrawn a little from the centre. A5 Details of the external wall of A3. B1, B2 External lateral views of the specimen RAh (11) showing a thick walled, slightly curved corallite with septal furrows and concentric growth lines on the external wall. C Lytvolasma cf. canadense Fedorowski and Bamber, 2001, specimen RAh (66). C1, C2 Transverse thin-section in the middle mature part of the corallite, shows a short cardinal septum and a long counter septum with a rhopaloid axial end. C3 Transverse thin-section in the calice, shows a long counter septum. Scale bars: 2.5 mm, except A2–A5: 2 mm. Black dots indicate the positions of cardinal septum (below), counter septum (above) and the two alar septa

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Fig. 7 Lytvolasma aheimerensis n in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 7 Lytvolasma aheimerensis n. sp. A External view of the specimen RA (2), showing a straight corallite with partly eroded calice and non-preserved apical part, positions of thin-sections indicated. B–D Successive transverse thin-sections in the early preserved growth stages, shows very thick major septa joining together near the centre. The cardinal septum is deformed in D. E–G Successive thin-sections in the early mature stages show the formation of a stereozone with a free axial area, shortening of the cardinal septum with maturity and the longest counter septum with a rhopaloid end. H–I Two transverse thin-sections below the calice, deformed due to rejuvenation in H and lateral compaction in I. Scale bars: 2.5 mm, except A: 5 mm. Black dots indicate the positions of cardinal septum (below), counter septum (above) and the two alar septa

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Fig. 5 in Kasimovian (late Pennsylvanian) cornute rugose corals from Egypt: taxonomy, facies and palaeogeography of a cool-water fauna from northern Gondwana

Fig. 5 Internal morphological characters of the non-dissepimented rugose corals referred to in the systematic descriptions, after Denayer and Hoşgör (2014). A Transverse section. B Longitudinal section

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Figure 6. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt

Figure 6. A. Amino acids variations of the COX1 gene generated by WebLogo3 server. B. Multiple amino acids alignments for selected Exitianus isolates generated by MultAlin server.

opencc-by-4.0Jun 2024View details →
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Figure 2. Exitianus nanus. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt

Figure 2. Exitianus nanus. A. Habitus, dorsal view; B. Habitus, female ventral view; C. Habitus, male ventral view; D. Pronotum & scutellum; E. Face; F. Male genitalia (pygofer, subgenital plate, valva, styles and connective, aedeagus).

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Figure 1. Exitianus capicola. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt

Figure 1. Exitianus capicola. A. Habitus, dorsal view; B. Habitus, female ventral view; C. Habitus, male ventral view; D. Pronotum

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Figure 3. Exitianus pondus. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt

Figure 3. Exitianus pondus. A. Habitus, dorsal view; B. Habitus, female ventral view; C. Habitus, male ventral view; D. Pronotum & scutellum; E. Face; F. Male genitalia (pygofer, subgenital plate, valva, styles and connective, aedeagus); G. Aedeagus, lateral view.

opencc-by-4.0Jun 2024View details →
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Fig. 1. A in First known gigantic sea turtle from the Maastrichtian deposits in Egypt

Fig. 1. A. Location map of the south Western Desert of Egypt (star). B. Geologic map of the studied area at Abu Minqar.

opencc-by-4.0Jun 2021View details →
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Fig. 4 in First known gigantic sea turtle from the Maastrichtian deposits in Egypt

Fig. 4. Left humerus (NVP010) of panchelonioidean turtle, from Maastrichtian, Abu Minqar, southern Western Desert of Egypt. Photograps (A) and explanatory drawings (B), in anterior (A1, B1), dorsal (A2, B2), posterior (A3, B3), ventral (A4, B4), distal (A5, B5), and proximal (A6, B6) views.

opencc-by-4.0Jun 2021View details →
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Fig. 3. A in First known gigantic sea turtle from the Maastrichtian deposits in Egypt

Fig. 3. A. General view of Qaret Selmi, north Abu Minqar, showing the Dakhla and Tarawan formations. B. The fossiliferous siltstone and sandstone layer, showing bioturbations or enormous concentrations of ammonites (e.g., Baculites sp.), bivalves (e.g., Exogyra overwagi, Pycnodonta vesicularis, pectinids), gastropods, echinoids, corals, fossilized fruits of mangrove palm (Nypa) and vertebrate remains.

opencc-by-4.0Jun 2021View details →

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