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Fig. 3 in Dasycladales Algae From The Norian-Rhaetian Reef Carbonates Of Argolis Peninsula, Greece

Fig. 3 Diplopora obliqusipora nov. sp. (Holotype). The magnification from Fig. 5c shows the relics of metaspondyle arrangement of the tufts (large arrows, also the cross sections of the laterals at the base of the thallus indicate the metaspondyle arrangement of the laterals). Small arrows indicate the tufts arising from the common base. The thin wall around the axial cavity is clearly recognizable.

opencc-by-4.0Sep 2014View details →
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Fig. 4 a in Dasycladales Algae From The Norian-Rhaetian Reef Carbonates Of Argolis Peninsula, Greece

Fig. 4 a to n Probolocupsis sarmeikensis nov. sp. from the reef carbonates near the town of Sarmeika, Peloponnes, Greece. a Cross section exhibiting the narrow axial cavity and the thick thallus wall. Laterals appear as white points in section through them. G058, x10. b Cross section through two poorly preserved specimens. G058, x8. c Oblique longitudinal section through an incomplete? specimen exhibits the laterals, which are oriented perpendicular to the axial cavity. G05C, x16. d Cross section of a specimen exhibiting the partly recrystallized laterals of the thallus. G05A, x16. e Cross section through an apparently poorly preserved specimen. Laterals appear as white points in section through them. G058, x16. f Cross section through an incomplete specimen. G050, x8. g Sections through a complete and an incomplete specimen. Laterals appear as white points around the incomplete specimen. G05B, x16. h Cross sections through two specimens. G05C, x12. i Cross section through a relatively well preserved specimen. G05C, x16. j Oblique section similar to Fig. i. G05C, x10. k Cross section exhibiting the pores (arrows) in the laterals. G05B, x16. l Longitudinal section through the holotype (for magnification see Fig. 2) and cross sections through two paratypes. G05C, x6. m Cross section through a recrystallized specimen. Arrows indicate the pores within the laterals. G05B, x16. n Cross section through a strongly recrystallized specimen causing the disappearance of the axial cavity. G025, x16.

opencc-by-4.0Sep 2014View details →
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Fig. 2 in First Record Of Harlanjohnsonella Annulata Elliott In Granier & Deloffre, 1993, Non 1968, A Triploporellacean Alga In Upper Barremian-Lowermost Bedoulian Strata Of Lebanon

Fig. 2 Stratigraphic section in El-Sheaybeh (coordinates are 33º55'8.83''N; 36º14'8.88''E) with distribution of Harlanjohnsonella annulata Elliott in Granier & Deloffre in red, Choffatella decipiens (Schlumberger) in blue, Salpingoporella (Hensonella) dinarica Radoičić in green, and indeterminate orbitolinids in orange.

opencc-by-4.0Oct 2014View details →
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Fig. 10 a-g in First Record Of Harlanjohnsonella Annulata Elliott In Granier & Deloffre, 1993, Non 1968, A Triploporellacean Alga In Upper Barremian-Lowermost Bedoulian Strata Of Lebanon

Fig. 10 a-g Harlanjohnsonella annulata Elliott in Granier & Deloffre, 1993, non 1968; a Oblique section, El-Sheaybeh, Jezzinian, thin-section VO15; b Oblique section, El-Sheaybeh, Jezzinian, thin-section VO11; c Tangential section - ElSheaybeh, Jezzinian, thin-section VO11; d Transverse section - El-Sheaybeh, Jezzinian, thin-section VO 15. e Axial section - El-Sheaybeh, Jezzinian, thin-section VO 15; f Oblique-Trasverse section - El-Sheaybeh, Jezzinian, thin-section VO 15; g Oblique section, El-Sheaybeh, Jezzinian, thin-section VO15. h-j Montiella elitzae (Bakalova, 1971); h Longitudinal section - East Ain Dara, Jezzinian, thin section EAD19; i Transverse section - East Ain Dara, Jezzinian, thin-section EAD18; j Tangential section - Maarab, Jezzinian, thin-section MEB45. All scale bars = 0.5 mm, (black bar: a-c and h-j; blue bar: d-g)

opencc-by-4.0Oct 2014View details →
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Fig. 5 in Dasycladales Algae From The Norian-Rhaetian Reef Carbonates Of Argolis Peninsula, Greece

Fig. 5 Diplopora obliguspora nov. sp. (a to d) and Probolocuspis tenuiparia nov. sp. (e to l) from the Norian-Rhaetian reef carbonates of Sarmeika, Peloponnes, Greece. a Specimen exhibits the thin wall around the axial cavity and the spine-like extended laterals. Thin section G1, x32. b Similar section as Fig. a showing the common base of oblique orientation of individual laterals. Thin section G89, x12. c (Holotype). Longitudinal section exhibiting the metaspondyle arrangement of the laterals, tuft of laterals and the thin wall around the axial cavity (for more information see Fig. 3). Thin section G75, x8. d Two cross sections exhibiting the spine-like extended individual laterals. G12, x20. e Cross sections through several specimens with thin thallus wall. Thin section G012, x20. f Sections through three specimens with relatively thick thallus wall but the individual laterals are recognizable. Thin section G08a, x25. g Oblique to longitudinal section. Thin section G08a, x20. h Holotype. The oblique section shows the individual laterals at the base. Thin section G08a, x20. i Sections through four specimens showing the laterals in part. Thin section G08a, x20. j Sections similar to Fig. i. Thin section G08a, x20. k Cross sections clearly showing the spine-like extended laterals. Thin section G08a, x40. l Similar to k. Thin section G40/1, x12.

opencc-by-4.0Sep 2014View details →
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Fig. 2 in Dasycladales Algae From The Norian-Rhaetian Reef Carbonates Of Argolis Peninsula, Greece

Fig. 2 Probolocupsis sarmeikensis nov. sp. (Holotype). The magnification from Fig. 4l shows the spine-like extended individual laterals (some of the internal pores: see arrows). Laterals are perpendicular to the thallus axis.

opencc-by-4.0Sep 2014View details →
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Fig. 1 in Dasycladales Algae From The Norian-Rhaetian Reef Carbonates Of Argolis Peninsula, Greece

Fig. 1 Geographic position of the Norian-Rhaetian reef locality north of the town of Sarmeika, Peloponnes, Greece.

opencc-by-4.0Sep 2014View details →
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Text-fig. 3. Green alga of genus Botryococcus – curve occurrence (quantity %) and findings of quillwort microspores in Prášilské Lake (Analysed by E. Břízová). in Quillwort (Isoëtes), A Mysterious Plant From The Czech Republic

Text-fig. 3. Green alga of genus Botryococcus – curve occurrence (quantity %) and findings of quillwort microspores in Prášilské Lake (Analysed by E. Břízová).

opencc-by-4.0Aug 2011View details →
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Fig. 4 in The first identification of fossil Mesophyllum in accordance to the modern taxonomic concepts in coralline algae

Fig. 4. Coralline alga Mesophyllum crassiusculum (Foslie, 1902) Lebednik, 2004 from early Serravallian, Miocene, Modrý Majer, Slovakia. A. Carposporophyte, NHM B1858 (TS 918-7), carposporangial conceptacle with central pedestal (arrow). B. Bi/tetrasporophyte, NHM B1857/2a (counterpart of the TS 918-1). B1. Multiporate sporangial conceptacle, arrows point to the rounded epithallial cells located at the top of conceptacle roof. Rounded cell at the margin of the pore canal marks the surface of the roof. Adjacent pore canal cells are therefore considered as rosette cells. Note that rosette cells are not sunken. B2. Asexuate conceptacle with roof filaments and pore canal filaments consisting of at least 6 cells, arrows point to thinner (black arrow) and wider (white arrow) pore canal cells. C. Bi/tetrasporophyte, NHM B1857/1a (TS 918-1). C1. Asexuate multiporate conceptacle with roof filaments consisting of up to 7 cells. C2. Detail of C1 with pore lining cells (arrows), the cells are same or wider (top of the pore canal) than adjacent roof cells. C3. Embedded asexuate conceptacles (arrow). Note chambers filed with adventitious cells. The roofs are convex to flat, lacking peripheral rim.

opencc-by-4.0Jul 2019View details →
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Fig. 5 in The first identification of fossil Mesophyllum in accordance to the modern taxonomic concepts in coralline algae

Fig. 5. Coralline alga Mesophyllum crassiusculum (Foslie, 1902) Lebednik, 2004 bi/tetrasporophyte, early Langhian, Miocene, Kosihovce, Slovakia. Schaleková's collection, NHM B1859 (TS IIIb455). A1. Thallus morphology, growth form is encrusting with weak protuberances. A2. Coaxial to non-coaxial hypothallus (arrow). A3. Epithallial cells rounded or flattened (arrow). A4. Lateral cell fusions of the cells in adjacent filaments (arrow). A5. Pore canal anatomy, lining cells are same as adjacent roof cells (black arrow) or thinner near the base (white arrow). A6. Pore canal anatomy, lining cells are thinner than adjacent roof cells in some portions of the pore canal filaments. Arrows point to the center of the pore canal.

opencc-by-4.0Jul 2019View details →
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Fig. 3 in The first identification of fossil Mesophyllum in accordance to the modern taxonomic concepts in coralline algae

Fig. 3. Coralline alga Mesophyllum crassiusculum (Foslie, 1902) Lebednik, 2004 from early Serravallian, Miocene, Modrý Majer, Slovakia, male gametophyte, NHM B1857/1b (TS 918-1). A. Conceptacles of the type 1 (Johansen, 1981) were protruding above thallus surface during their maturity. Note the coaxial arrangment of the hypothallus; arrow points to the coaxial hypothallus. B. Conceptacle filled with material of unknown origin (arrow).

opencc-by-4.0Jul 2019View details →
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Fig. 2 in The first identification of fossil Mesophyllum in accordance to the modern taxonomic concepts in coralline algae

Fig. 2. Corallinae alga Mesophyllum crassiusculum (Foslie, 1902) Lebednik, 2004 from early Serravallian, Miocene, Modrý Majer, Slovakia. A. Bi/tetrasporophyte and male gametophyte, NHM B1857/1a and NHM B1857/1b (TS 918-1), respectively. An asexuate (tetra/bisporangial) plant (white arrow) overgrows a fragment of scleractinian coral colony. Growth form of coralline alga is encrusting. Male gametophyte overgrows tetrasporophyte (black arrow). B. Carposporophyte, NHM B1858 (TS 918-7). Carpogonial-carposporangial plant of M. crassiusculum (black arrow) overgrows a protuberant rhodolith of Phymatolithon calcareum (Pallas, 1766) (white arrow). Growth form of M. crassiusculum is encrusting and without protuberances. C. Bi/tetrasporophyte, NHM B1857/1a (TS 918-1). C1. Applanately branching thallus (arrows). C2. Pseudoparenchymatous thallus with coaxially to non-coaxially arranged hypothallus. Arrow points to the portion where coaxial hypothallus is best visible. C3. Magnified portion of the thallus from C2, arrows point to cell fusions in hypothallus and in the perithallus. C4. Flattened epithallial cells above meristematic cells located at the top of the embedded conceptacle.

opencc-by-4.0Jul 2019View details →
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Fig. 7 in Reproductive phases of Miocene algae from central Paratethys and their bearing on systematics

Fig. 7. Coralline alga Lithoporella sp. 1. A. Bi/tetrasporophyte, NHM B1855 (thin section 371111453), early Serravallian, Vývrat, Slovakia, Vienna Basin. A1. Encrusting growth form with prominent conceptacle; note type of the conceptacle with roof cells oriented perpendiculary to the chamber. A2. Palisade cells (white arrow) and lateral fusion of cells in adjacent filaments (black arrows). B. Male gametophyte, NHM B1856 (thin section 31011152), late Langhian, Stupava, Slovakia, Vienna Basin. B1. Spermatangial plant with encrusting growth form; black arrow point to the lateral cells fusions in adjacent filaments; white arrow point to the palisade cells. B2. Detail of the spermatangial conceptacle; note the type of the conceptacle with roof filaments running parallel with the chamber and bending upward to develop the pore canal.

opencc-by-4.0May 2019View details →
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Fig. 6. Lithoporella minus Johnson, 1964 in Reproductive phases of Miocene algae from central Paratethys and their bearing on systematics

Fig. 6. Lithoporella minus Johnson, 1964 from early Serravallian, Rohožník, Slovakia, Vienna Basin. A. Bi/tetrasporophyte, NHM B1850/1 (thin section 5099). A1. Plant with encrusting growth form and conceptacles projecting above thallus surface. Thallus is entirely bi-stratose. A2. Palisade cells in primigenous filament developed in patches and non-palisade cells are present as well (arrow). A3. Arrow points to flattened not flared epithallial cell; note cell fusions in lower thallus. A4. Enlarged A1. Uniporate conceptacle with preserved pore canal cells (arrows). Cells are narrower and elongated. B. Gametangial-carposporangial plant, NHM B1850/2 (thin section 5099). B1. Projection of the conceptacle above thallus surface; arrow points to the single trichocyte at the side of the conceptacle. B2. Single trichocyte in distant portion of the thallus (black arrow); white arrow points to the palisade cells.

opencc-by-4.0May 2019View details →
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Fig. 1 in Reproductive phases of Miocene algae from central Paratethys and their bearing on systematics

Fig. 1. Modified geographical and geological map of the studied area with Recent distribution of central Paratethyan deposits, redrawn from Kováč (2000). List of studied sites: 1, Rohožník; 2, Vývrat; 3, Stupava; 4, Devínska Kobyla; 5, Wolfsthal; 6, Müllensdorf; 7, Mikulov; 8, Židlochovice; 9, Blučina; 10, Rebešovice; 11, Telnice; 12, Pratecký Vrch; 13, Holubice; 14, Vyškov; 15, Hluchov; 16, Přemyslovice; 17, Lomnice; 18,- Ochoz; 19, Kralice nad Oslavou; 20, Hostim; 21, Modrý Majer; 22, Čierny Hill; 23, Kamenica nad Hronom; 24, Pavlová; 25, Veľký Pesek; 26,- Sazdice; 27, Štúrovo; 28, Kosihovce; 29, Maksymivka; 30, Lopadea Veche; 31, Weglinek; 32, Zagrody.

opencc-by-4.0May 2019View details →
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Figure 1 in Marine Benthic Algae from Seamounts along the Mariana Islands, Western Pacific

Figure 1. Map of the islands, reefs, banks and shoals within the Mariana Islands. Map provided by NOAA PIFSC CRED (2015).

opencc-by-4.0Dec 2015View details →
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FIGURE 35. 1-5, 8. Olgaorlovella davydovi n. gen. n in Late Early Permian (late Leonardian; Kungurian) algae, microproblematica, and smaller foraminifers from the Yeso Group and San Andres Formation (New Mexico; USA)

FIGURE 35. 1-5, 8. Olgaorlovella davydovi n. gen. n. sp. 1. Axial section. San Andres Fm. Sample SAR 11a-11. 2. Axial section. San Andres Fm. Sample SAR 11a-8 (already illustrated in Brose et al., 2013, figure 6. 12). 3. Subaxial section. San Andres Fm. Sample SAR 11a-15. 4. Axial section. San Andres Fm. Sample SAR 11a-14. 5. Axial section. San Andres Fm. Sample SAR 11a-3. 8. Axial section. San Andres Fm. Sample SAR 11-6. 6-7, 13. Orthovertellopsis calcitornellaeformis n. gen. n. sp. 6. Subtransverse section. San Andres Fm. Sample SAR 11a-16. 7. Transverse section. San Andres Fm. Sample SAR 11-16. 13. Oblique section. San Andres Fm. Sample SAR 11a-5. 9, 11, 14. Glomomidiella infrapermica n. sp. 9. Axial section showing the proloculus. San Andres Fm. Sample SAR 11-14. 11. Subtransverse section. Yeso Group. Sample MG(2) 10-7b. 14. Axial section relatively well preserved (dark wall). Yeso Group. Sample MG(2) 12-7. 10, 12. Orthovertellopsis protaeformis n. gen. n. sp. 10. Axial section. Yeso Group. Sample MG(2) 10-14. 12. Subaxial section. Yeso Group. Sample MG(2) 10-6. Scale bars equal 0.10 mm.

opencc-by-4.0Apr 2015View details →
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FIGURE 33. 1-14, 16, 18 in Late Early Permian (late Leonardian; Kungurian) algae, microproblematica, and smaller foraminifers from the Yeso Group and San Andres Formation (New Mexico; USA)

FIGURE 33. 1-14, 16, 18. Hemigordiellina? cf. simplex (Harlton, 1928). 1. Oblique subtransverse section. San Andres Fm. Sample MLY 3-1. 2. Oblique subaxial section. San Andres Fm. Sample MLY 3-11. 3. Subtransverse section. San Andres Fm. Sample MLY 4-8. 4. Subaxial section. San Andres Fm. Sample MLY 4-11. 5. Transverse section. San Andres Fm. Sample MLY 4-15. 6. Subtransverse section. San Andres Fm. Sample MLY 4-16. 7. Transverse section. San Andres Fm. Sample MLY 4-18. 8. Subaxial section. San Andres Fm. Sample MLY 4-19. 9. Subtransverse section. San Andres Fm. Sample MLY 8-7. 10. Subtransverse section. San Andres Fm. Sample MLY 4-20. 11. Subtransverse section. San Andres Fm. Sample MLY 5-15. 12. Subaxial section. San Andres Fm. Sample MLY 5-16a. 13. Transverse section. San Andres Fm. Sample MLY 5-5. 14. Subtranverse section. San Andres Fm. Sample MLY 4-12. 16. Oblique section. San Andres Fm. Sample MLY 6-25a. 18. Transverse section. San Andres Fm. Sample MLY 4-21. 15, 21. Pseudospira aff. ishimbaica (Lipina, 1949). 15. Subaxial section. San Andres Fm. Sample MLY 6-22. 21. Axial section with Hemigordiellina? cf. simplex (left). San Andres Fm. Sample MLY 5-17. 17, 22, 26. Praeneodiscus convexus n. gen. n. sp. 17. Oblique section. San Andres Fm. Sample MLY 5-16. 22. Transverse section. San Andres Fm. Sample MLY 5-8a. 26. Subaxial section. San Andres Fm. Sample MLY 5-9. 19-20. Orthovertellopsis protaeformis n. gen. n. sp. 19. Subaxial section. San Andres Fm. Sample MLY 6-5. 20. Oblique subaxial section. San Andres Fm. Sample MLY 6-5a. 23-24. Hemigordiellina? aff. pseudopusilla (Baryshnikov in Zolotova and Baryshnikov, 1980). 23. Oblique section. San Andres Fm. Sample MLY 5-25. 24. Axial section. San Andres Fm. Sample MLY 5-24. 25. Palaeonubecularia? sp. Axial section. Perhaps also related with Ellesmerella (see Vachard et al., 2013b). San Andres Fm. Sample MLY 5-29. Scale bars equal 0.10 mm.

opencc-by-4.0Apr 2015View details →
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FIGURE 30. 1, 4-6, 8-10, 12, 14-15. Globivalvulina praegraeca n in Late Early Permian (late Leonardian; Kungurian) algae, microproblematica, and smaller foraminifers from the Yeso Group and San Andres Formation (New Mexico; USA)

FIGURE 30. 1, 4-6, 8-10, 12, 14-15. Globivalvulina praegraeca n. sp. 1. Subtransverse section. San Andres Fm. Sample SAR 8a-13a. 4. Transverse section. San Andres Fm. Sample SAR 9-1. 6. Transverse section. San Andres Fm. Sample SAR 13-10. 8. Subaxial section. San Andres Fm. Sample SAR(2) 13-2. 9. Subtransverse section. San Andres Fm. Sample SAR(2) 13-6. 10. Transverse section. San Andres Fm. SAR 13-9. 12. Axial section showing the proloculus and the first whorl. San Andres Fm. Sample SAR(2) 8-21. 14. Transverse section. San Andres Fm. Sample MLY(2) 4-9. 15. Transverse section. San Andres Fm. Sample SAR 8-18. 2-3, 11, 13, 16. Globivalvulina retroseptata n. sp. 2. Subtransverse section. San Andres Fm. Sample SAR 8a-19. 3. Transverse section. San Andres Fm. Sample SAR 8a-24. 11. Transverse section. San Andres Fm. Sample SAR 13a-7. 13. Transverse section. San Andres Fm. Sample MLY(2) 6-13 (already illustrated by Brose et al., 2013, figure 6.7). 16. Axial section. San Andres Fm. Sample SAR(2) 12-6. 5. Globivalvulina parapiciformis n. sp. Subtransverse section. San Andres Fm. Sample SAR 13-9. 7. Globivalvulina novamexicana n. sp. Transverse section. San Andres Fm. Sample SAR 13-12. Scale bars equal 0.10 mm.

opencc-by-4.0Apr 2015View details →
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FIGURE 28. 1-3, 7. Globivalvulina retroseptata n in Late Early Permian (late Leonardian; Kungurian) algae, microproblematica, and smaller foraminifers from the Yeso Group and San Andres Formation (New Mexico; USA)

FIGURE 28. 1-3, 7. Globivalvulina retroseptata n. sp. 1. Transverse section. San Andres Fm. Sample SAR 13-5. 2. Transverse section. San Andres Fm. Sample SAR 13-5b. 3. Transverse section. San Andres Fm. Sample SAR 13- 5c. 7. Transverse section. San Andres Fm. Sample SAR 8-5. 4-6, 8-12, 14-16. Globivalvulina praegraeca n. sp. 4. Transverse section. San Andres Fm. Sample SAR 13-7. 5. Transverse section. San Andres Fm. Sample SAR 8-2. 6. Subtransverse section. San Andres Fm. Sample SAR 8-3. 8. Subaxial section. San Andres Fm. Sample SAR 8-7a. 9. Subaxial section. San Andres Fm. Sample SAR 8a-2. 10. Subaxial section. San Andres Fm. Sample SAR 8a-5. 11. Axial section. San Andres Fm. Sample SAR 8a-5a. 12. Transverse section. San Andres Fm. Sample SAR 8a-18. 14. Subtransverse section. San Andres Fm. Sample SAR 8a-9. 15. Oblique subtransverse section. San Andres Fm. Sample SAR 8a-10. 16. Subtransverse section. San Andres Fm. Sample SAR 8a-12. 13. Globivalvulina parapiciformis n. sp. Transverse section. San Andres Fm. Sample SAR 8a-8a. Scale bars equal 0.10 mm.

opencc-by-4.0Apr 2015View details →

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