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68 results for “integument”
FIGURE 26. Teleosauroid SMNS 10985 in The integument of pelagic crocodylomorphs (Thalattosuchia: Metriorhynchidae)
FIGURE 26. Teleosauroid SMNS 10985 (formerly assigned to Steneosaurus), detail of integument on rear side of hind leg, illustrating flexed joints and square to rhomboidal shaped scutes. Courtesy of Erin Maxwell, used with permission. Width of frame equals 16 cm.
FIGURE 24 in The integument of pelagic crocodylomorphs (Thalattosuchia: Metriorhynchidae)
FIGURE 24. Schematic drawings of metriorhynchid tail flukes, distal caudal columns and integumentary contours. A: Rhacheosaurus NHMUK R.3948, historical reconstruction (Andrews, 1913, figure A). B: Same specimen, outline from photograph (Figure 23B), with potential outlines of the upper lobe evaluated from textures on the fossil in visible light. C: Metriorhynchidae indet., LF 3474 (new specimen, Figure 4), with possible outlines for the upper lobe inferred from preserved edges. D: Proposed outline in ontogenetic stages with less pronounced tail bending (generalized sketch comparable to unpublished specimen, see text for further information). All drawn to similar size.
Figure 4 in Study of the integument that covering back and stinger of the freshwater stingray Potamotrygon rex (Chondricthyes, Potamotrygonidae)
Figure 4. Micrographs demonstrating cell morphology along the back of the Potamotrygon rex stingray.Et- epithelial tissue, Ct- connective tissue. H&E stain. Bar = 100µm.
Text-fig. 4. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of seeds of Canrightia foveolata sp. nov.; Catefica locality, Portugal. a–d) Volume renderings of abraded seeds in ventral (a), lateral (b, d) and apical (c) views showing the slightly protruding chalaza (arrows) and dense longitudinal grooves with shallow pits in the surface of the endotesta; e) Transverse section of seed (orthoslice xy0665) showing the irregular grooved surface of the endotesta (oi-en) and the tegmen comprised of two layers of thick-walled cells that surround the cells of the prominent endothelium (asterisk); f) Longitudinal section (orthoslice xz1195) through seed showing the thin-walled endothelium cells (asterisk) surrounded by the thicker cells of the outer tegmen and endotesta; g) Longitudinal section (orthoslice yz0727) through seed showing outlines of angular crystals evenly distributed in cells of the endotesta (oi-en); note the outer epidermis of the tegmen (ii-o) composed of thick-walled cells; h) Longitudinal section (orthoslice xz0940) of seed showing details of the chalazal region with course of the vascular bundle (vb), cells of the prominent endothelium (asterisk), crystalliferous endotesta of the outer integument (oi-en) and the distinct thick walled cells of the outer cells of the tegmen (ii-o); i) Longitudinal and tangential section (orthoslice yz0542) through the endotesta (oi-en) showing the outlines of densely spaced crystals. Specimens, Catefica 242-S175178 (a–c, e–h), Catefica 49-S175179 (d, i). Scale bars = 300 Μm (a–d), 100 Μm (e, f, h, i), 50 Μm (g). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms
Text-fig. 4. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of seeds of Canrightia foveolata sp. nov.; Catefica locality, Portugal. a–d) Volume renderings of abraded seeds in ventral (a), lateral (b, d) and apical (c) views showing the slightly protruding chalaza (arrows) and dense longitudinal grooves with shallow pits in the surface of the endotesta; e) Transverse section of seed (orthoslice xy0665) showing the irregular grooved surface of the endotesta (oi-en) and the tegmen comprised of two layers of thick-walled cells that surround the cells of the prominent endothelium (asterisk); f) Longitudinal section (orthoslice xz1195) through seed showing the thin-walled endothelium cells (asterisk) surrounded by the thicker cells of the outer tegmen and endotesta; g) Longitudinal section (orthoslice yz0727) through seed showing outlines of angular crystals evenly distributed in cells of the endotesta (oi-en); note the outer epidermis of the tegmen (ii-o) composed of thick-walled cells; h) Longitudinal section (orthoslice xz0940) of seed showing details of the chalazal region with course of the vascular bundle (vb), cells of the prominent endothelium (asterisk), crystalliferous endotesta of the outer integument (oi-en) and the distinct thick walled cells of the outer cells of the tegmen (ii-o); i) Longitudinal and tangential section (orthoslice yz0542) through the endotesta (oi-en) showing the outlines of densely spaced crystals. Specimens, Catefica 242-S175178 (a–c, e–h), Catefica 49-S175179 (d, i). Scale bars = 300 Μm (a–d), 100 Μm (e, f, h, i), 50 Μm (g).
DNA demethylation activates genes in seed maternal integument development in rice (Oryza sativa L.)
GEO Series GSE95107. Oryza sativa. 6 samples. Type: Methylation profiling by high throughput sequencing.
Sequencing of mRNA expressed in cultures and tissues of stugeon integument
GEO Series GSE291000. Acipenser medirostris; Acipenser transmontanus. 18 samples. Type: Expression profiling by high throughput sequencing.
The Medusa Mutant Disrupts Ovule Integument Identity Specification and Female Gametophyte Development in Mimulus nudatus
GEO Series GSE297725. Erythranthe nudata. 6 samples. Type: Expression profiling by high throughput sequencing.
Juvenile hormone (JH) response in integuments of silkworm larvae
GEO Series GSE53374. Bombyx mori. 4 samples. Type: Expression profiling by array.
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Allen Brain Atlas
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