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FIGURE 7 in The earliest record of fossil solid-wood-borer larvae-immature beetles in 99 million-year-old Myanmar amber
FIGURE 7. Morphospace, represented by principal component 2 (PC2) vs. principal component 1 (PC1) of the shape analysis of the body outline of wood-borer larvae. Numbers refer to the data set in Supplementary Tab. 1.
FIGURE 3 in The earliest record of fossil solid-wood-borer larvae-immature beetles in 99 million-year-old Myanmar amber
FIGURE 3. Fossil wood-borer larva without legs, Buprestidae, PED 0597. A, Dorsal or ventral view. B, Colour-marked version of A. Abbreviations: a1–a9 = abdomen segments 1–9; hc = head capsule; ms = mesothorax; mt = metathorax; pt = prothorax; te = trunk end.
Data from: Neutron imaging investigation of fossil woods: non-destructive characterization of microstructure and detection of in situ changes as occurring in museum cabinets
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Preservation of erniettomorph fossils in clay-rich siliciclastic deposits from the Ediacaran Wood Canyon Formation, Nevada
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Figure 1 from: Soomro N, Mangi JU, Panhwer M, Jatoi GH, Khuhro SA, Khokhar Q, Khan SA, Mengal AN, Shaikh N (2021) Anatomical characteristics of fossil wood collected from the Manchar Formation (Miocene), Thano Bula Khan, Sindh, Pakistan. Italian Botanist 11: 1-8. https://doi.org/10.3897/italianbotanist.11.60344
Figure 1 A map of Sindh (Pakistan), showing the area of Thano Bula Khan from where the fossil wood was collected B geological map showing the Manchar Formation exposed in the study area.
Figure 4 from: Soomro N, Mangi JU, Panhwer M, Jatoi GH, Khuhro SA, Khokhar Q, Khan SA, Mengal AN, Shaikh N (2021) Anatomical characteristics of fossil wood collected from the Manchar Formation (Miocene), Thano Bula Khan, Sindh, Pakistan. Italian Botanist 11: 1-8. https://doi.org/10.3897/italianbotanist.11.60344
Figure 4 Atalantioxylon thanobolensis sp. nov. Plate 3-09 Radial longitudinal section showing arrangement of fibers (×40). Plate 3-10 Radial longitudinal section showing arrangement of fibers (×40). Plate 3-11 Radial longitudinal section showing vessel end-walls and pits (×200). Plate 3-12 Radial longitudinal section showing pits on wall of vessels (×100).
Figure 2 from: Soomro N, Mangi JU, Panhwer M, Jatoi GH, Khuhro SA, Khokhar Q, Khan SA, Mengal AN, Shaikh N (2021) Anatomical characteristics of fossil wood collected from the Manchar Formation (Miocene), Thano Bula Khan, Sindh, Pakistan. Italian Botanist 11: 1-8. https://doi.org/10.3897/italianbotanist.11.60344
Figure 2 Atalantioxylon thanobolensis sp. nov. Plate 1-01: Macrograph of the fossil wood TB 35. Plate 1-02: Cross section showing general distribution of vessels and parenchyma (×40). Plate 1-03: Cross section showing general distribution of vessels and parenchyma. (×100). Plate 1-04: Cross section showing details of vessels and parenchyma. (×200).
Figure 3 from: Soomro N, Mangi JU, Panhwer M, Jatoi GH, Khuhro SA, Khokhar Q, Khan SA, Mengal AN, Shaikh N (2021) Anatomical characteristics of fossil wood collected from the Manchar Formation (Miocene), Thano Bula Khan, Sindh, Pakistan. Italian Botanist 11: 1-8. https://doi.org/10.3897/italianbotanist.11.60344
Figure 3 Atalantioxylon thanobolensis sp. nov. Plate 2-05 Tangential section showing general distribution of xylem rays and fibers (×40). Plate 2-06 Tangential section showing general distribution of xylem rays and fibers (×100). Plate 2-07 Tangential section showing details of xylem rays (×400). Plate 2-08 Tangential section showing general distribution of xylem rays and fibers (×200).
FIG. 20 in Fossil wood from the lower Miocene of Myanmar (Natma Formation): palaeoenvironmental and biogeographic implications
FIG. 20. — Indet. sp. 1, MNHN.F.50199 (A-F): A, Ts, vessels and few vasicentric parenchyma, solitary secretory canals (arrows) or in short tangential lines, surrounded by parenchyma, remarkably bigger than vessels; B, C, Tls, 1-4-seriate rays with sometimes long uniseriate row of marginal cells (arrow); D, Tls, parenchyma cells (white arrow) and secretory canal (black arrow); E, Tls, detail of secretory canals in short tangential line; F, Rls, heterocellular rays with procumbent cells (black arrow) and square or upright cells (white arrow). G-J, Indet. sp. 2, MNHN.F.50200: G, Ts, poorly preserved wood, vessel arrangement often in groups; H-I, Tls, 1-5-seriate rays, with maybe sheath cells (arrows); J, Rls, heterocellular rays with procumbent and square or upright cells. Scale bars: A, G, 1 mm; B, H, 500 µm; C-F, I-J, 200 µm. Abbreviations: see Fig. 2.
FIG. 2 in Fossil wood from the lower Miocene of Myanmar (Natma Formation): palaeoenvironmental and biogeographic implications
FIG. 2. — Cupressinoxylon sp. MNHN.F.50171: A, transverse section (Ts), growth limits (white arrows), diffuse parenchyma (grey arrows) and zonate parenchyma (black arrows), large black areas are cells filled with deposit material; B, Ts, growth limit with gradual transition from earlywood to latewood; C, tangential longitudinal section (Tls), 1- sometimes 2-seriate rays and parenchyma lines (arrow); D, Tls, detail of 1- sometimes 2-seriate rays; E, Tls, smooth longitudinal parenchyma walls (arrows); F, Tls, 1-2-seriate rays and tangential pits (arrows); G, radial longitudinal section (Rls), possibly cupressoid and/or podocarpoid crossfield pits (arrow); H, Rls, uniseriate radial pits; I, Rls, smooth parenchyma cell walls. Scale bars: A, C, 1 mm; B, 200 µm; E-F, H, 100 µm; G, 50 µm; I, 20 µm.
Fig. 4 in Palaeoclimate and fossil woods-is the use of mean sensitivity sensible?
Fig. 4. Distribution of mean CV (ratio of the standard deviation to the mean) for MS values of 61 fossil wood assemblages of studied database.
Fig. 3 in Palaeobiogeographical implications of the first fossil wood flora from the Jurassic of Turkey
Fig. 3. Araucariacean wood sections of Agathoxylon sp. type 1 (ISTO-FW-00217) from Jurassic of the Beycam locality of the province of Gümüshane, Turkey. A1, A2, transversal sections with distinct growth ring boundary; A3, A4, tangential sections with high rays.
Text-fig. 5. Schema of radial section of T. gypsaceum (sample Bečov 2). t – tracheid, r – ray, bp – bordered pit, tp – taxodioid pit, cp – cupressoid pit, c – crassulae. in New Fossil Woods From The Paleogene Of Doupovské Hory And České Středohoří Mts. (Bohemian Massif, Czech Republic)
Text-fig. 5. Schema of radial section of T. gypsaceum (sample Bečov 2). t – tracheid, r – ray, bp – bordered pit, tp – taxodioid pit, cp – cupressoid pit, c – crassulae.
Text-fig. 11. Schema of transversal section of Ulmoxylon cf. kersonianum (sample 1/3). v – vessel, r – ray, grb – one growth ring. in New Fossil Woods From The Paleogene Of Doupovské Hory And České Středohoří Mts. (Bohemian Massif, Czech Republic)
Text-fig. 11. Schema of transversal section of Ulmoxylon cf. kersonianum (sample 1/3). v – vessel, r – ray, grb – one growth ring.
FIGURE 8 in The earliest record of fossil solid-wood-borer larvae-immature beetles in 99 million-year-old Myanmar amber
FIGURE 8. Ranges of all effective principal components (PCs) resulting from the shape analysis.
Astroniumxylon, Schinopsixylon and Parametopioxylon n. gen. fossil woods from Upper Cenozoic of Argentina: Taxonomic revision, new taxon and new records
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FIGURE 2 in The earliest record of fossil solid-wood-borer larvae-immature beetles in 99 million-year-old Myanmar amber
FIGURE 2. Extant larva of Buprestidae; ZMH 62921. A, Ventral view. B, Dorsal view of anterior body. C, Detail of mouthparts. D, Detail of ventral region of thorax with numerous setae. Abbreviations: a1–a9 = abdomen segments 1–9; hc = head capsule; ms = mesothorax; mt = metathorax; pt = prothorax; te = trunk end.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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