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638 results for “thinning”
Text-fig. 35. Scanning electron microscope (SEM, a, b, d) and synchrotron radiation X-ray tomographic microscopy (SRXTM, c, e) images of "Paisia-like follicle"; Catefica locality, Portugal. a) Lateral view of slender follicle with an almost straight ventral margin and a slightly curved dorsal margin; b) Lateral view of small, broad follicle with slightly sinuous ventral margin and rounded dorsal margin; c) Lateral view of small, broad follicle with slightly sinuous ventral margin and rounded dorsal margin; d) Apical part of follicle in (a) showing the slight apical cleft in the probable stigmatic region; e) Transverse section (orthoslice xy0407) of follicle showing ovules and distinct follicle wall with small, thin-walled cells of the outer epidermis (arrow), larger, isodiametric cells of the mesocarp and an inner layer of smaller, thin-walled cells. Specimens, Catefica 50-S171523 (a, d), Catefica 343-S171515 (b), Catefica 49-S174929 (c, e). Scale bars = 300 Μm (a–c), 100 Μm (d, e). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms
Text-fig. 35. Scanning electron microscope (SEM, a, b, d) and synchrotron radiation X-ray tomographic microscopy (SRXTM, c, e) images of "Paisia-like follicle"; Catefica locality, Portugal. a) Lateral view of slender follicle with an almost straight ventral margin and a slightly curved dorsal margin; b) Lateral view of small, broad follicle with slightly sinuous ventral margin and rounded dorsal margin; c) Lateral view of small, broad follicle with slightly sinuous ventral margin and rounded dorsal margin; d) Apical part of follicle in (a) showing the slight apical cleft in the probable stigmatic region; e) Transverse section (orthoslice xy0407) of follicle showing ovules and distinct follicle wall with small, thin-walled cells of the outer epidermis (arrow), larger, isodiametric cells of the mesocarp and an inner layer of smaller, thin-walled cells. Specimens, Catefica 50-S171523 (a, d), Catefica 343-S171515 (b), Catefica 49-S174929 (c, e). Scale bars = 300 Μm (a–c), 100 Μm (d, e).
Text-fig. 34. Synchrotron radiation X-ray tomographic microscopy (SRXTM, a–h) images of "Paisia-like follicle"; Catefica locality, Portugal. a–d) Volume rendering of follicles in lateral (a, c) and ventral (b, d) views showing the decurrent stigmatic region that extends from base of the follicle to the apex; note papillate zone forming a probable stigma along the full length of the ventral suture; e) Longitudinal section (volume rendering cut at orthoslice yz0326) near the base of the follicle showing two ovules with a striate-reticulate surface (asterisks); note transverse fibers lining the inner follicle wall and large cells of the mesocarp; f) Transverse section (volume rendering cut at orthoslice xy2475) of follicle showing two rows of ovules borne on placentae on either side of the ventral suture (asterisks); note also the pronounced and densely-spaced papillae around the ventral suture; g) Transverse section (orthoslice xy1988) of follicle showing two ventral vascular bundles and one dorsal bundle (arrows) and ovules/seeds borne on two placentae, one on either side of the ventral suture; note the remains of the small thin-walled cells of the outer epidermis that cover the thicker-walled cells of the mesocarp; h) Transverse section (orthoslice xy2860) of follicle showing two ventral bundles and one dorsal bundle (arrows) and ovules/seeds in two rows on the placentae, one on either side of the ventral suture; note the remains of small epidermal cells and the large rounded cells of the mesocarp with thicker walls. Specimens, Catefica 49-S174916 (a, b), Catefica 49-S174917 (c–f, h), Catefica 50-S171525 (g). Scale bars = 300 Μm (a–d), 100 Μm (e–h). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms
Text-fig. 34. Synchrotron radiation X-ray tomographic microscopy (SRXTM, a–h) images of "Paisia-like follicle"; Catefica locality, Portugal. a–d) Volume rendering of follicles in lateral (a, c) and ventral (b, d) views showing the decurrent stigmatic region that extends from base of the follicle to the apex; note papillate zone forming a probable stigma along the full length of the ventral suture; e) Longitudinal section (volume rendering cut at orthoslice yz0326) near the base of the follicle showing two ovules with a striate-reticulate surface (asterisks); note transverse fibers lining the inner follicle wall and large cells of the mesocarp; f) Transverse section (volume rendering cut at orthoslice xy2475) of follicle showing two rows of ovules borne on placentae on either side of the ventral suture (asterisks); note also the pronounced and densely-spaced papillae around the ventral suture; g) Transverse section (orthoslice xy1988) of follicle showing two ventral vascular bundles and one dorsal bundle (arrows) and ovules/seeds borne on two placentae, one on either side of the ventral suture; note the remains of the small thin-walled cells of the outer epidermis that cover the thicker-walled cells of the mesocarp; h) Transverse section (orthoslice xy2860) of follicle showing two ventral bundles and one dorsal bundle (arrows) and ovules/seeds in two rows on the placentae, one on either side of the ventral suture; note the remains of small epidermal cells and the large rounded cells of the mesocarp with thicker walls. Specimens, Catefica 49-S174916 (a, b), Catefica 49-S174917 (c–f, h), Catefica 50-S171525 (g). Scale bars = 300 Μm (a–d), 100 Μm (e–h).
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).
Text-fig. 23. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of Ibericarpus cuneiformis gen. et sp. nov.; Catefica locality, Portugal. a) Longitudinal section (orthoslice yz0827) showing fruitlet with apical stigmatic region and a single seed enclosed within the fruitlet wall that has a thick epidermal cuticle; note the tiny embryo (emb) internal to the micropyle (mi) and oriented toward the base of the fruitlet; b) Transverse section through apical part of two fruitlets (orthoslice xy0810) showing the fruitlet wall (fr) composed of small thin-walled cells covered by an epidermis of isodiametric cells (ep) with a thick outer cuticle (cu); c) Longitudinal section (orthoslice xz0370) through basal part of fruitlet perpendicular to section in (a) showing the micropyle (mi), embryo (emb) composed of tiny cells, and the thick cuticle (cu) covering the bulging cells of the fruitlet epidermis. Specimen, Catefica 50-S174907 (a–c). Scale bars = 300 Μm (a–c). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms
Text-fig. 23. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of Ibericarpus cuneiformis gen. et sp. nov.; Catefica locality, Portugal. a) Longitudinal section (orthoslice yz0827) showing fruitlet with apical stigmatic region and a single seed enclosed within the fruitlet wall that has a thick epidermal cuticle; note the tiny embryo (emb) internal to the micropyle (mi) and oriented toward the base of the fruitlet; b) Transverse section through apical part of two fruitlets (orthoslice xy0810) showing the fruitlet wall (fr) composed of small thin-walled cells covered by an epidermis of isodiametric cells (ep) with a thick outer cuticle (cu); c) Longitudinal section (orthoslice xz0370) through basal part of fruitlet perpendicular to section in (a) showing the micropyle (mi), embryo (emb) composed of tiny cells, and the thick cuticle (cu) covering the bulging cells of the fruitlet epidermis. Specimen, Catefica 50-S174907 (a–c). Scale bars = 300 Μm (a–c).
microfractures of thin sections in the Longmen Shan Fault
<p>raw dataset of thin sections</p>
Observation of room temperature excitons in an atomically thin topological insulator
<p>Here you can find some data and information concerning the theoretical side of the paper "Observation of room temperature excitons in an atomically thin topological insulator", published in Nature Communications. </p> <p>While some initial results have been obtained using the DFT package VASP, the main core of the work (GW + BSE) is based on the packages Quantum Espresso and YAMBO.</p> <p>The data that you find will then have an according format. </p>
Raw data of "Heterogeneous integration of superconducting thin films and epitaxial semiconductor heterostructures with Lithium Niobate"
<p>Raw data used to produce figures</p>
The impact of Mn nonstoichiometry on the oxygen mass transport properties of La0.8Sr0.2MnyO3±δ thin films
<p>Dataset for the article: Francesco M Chiabrera <em>et al</em> 2022 <em>J. Phys. Energy</em> <strong>4</strong> 044011 (DOI 10.1088/2515-7655/ac98df)</p> <p>The dataset contains:</p> <ul> <li>"AFM.rar" : AFM of LSMy thin films with composition y=0.85 and y=1.00.</li> <li>"cell expansion_experimental and antisite model_Mn compositions.txt": measured lattice expansion and calculated by antisites model</li> <li>"Defect chemistry models.xlsx". Excel worksheet containing the automatic calculation of the three defect chemistry models studied (dilute, Mn vacancies and La antisites)</li> <li>"EDX_Mn compositions.txt" Mn/(La+Sr) ratios (y) measured by EDX</li> <li>"fraction of 18O_exp and fittings.rar" 18O depth profiles measured by SIMS after the exchange at 650 ºC for 3540 s (for y=0.85 and y=1.00) and 4000 s (for y=0.88, y=0.94 and y=0.99) and depth profile fitting.</li> <li>"lattice parameter_Mn composition.txt": evolution of lattice parameter measured by XRD vs Mn content.</li> <li>"oxygen mass transport parameters.rar": diffusivity and oxygen exchange parameter extracted by SIMS for the samples with different Mn content.</li> <li>"PALS intensities_Mn composition.txt": Relative intensities of Mn and La vacancies measured by PALS for different Mn content.</li> <li>"positron lifetimes.rar" : Positron lifetimes of main defects (La and Mn vacancies) as a function of photon energy for different Mn content.</li> <li>"RSM103.rar" Reciprocal SPace maps around 103 reflections of the thin films for different Mn content.</li> <li>"TEM Figures_y0.85.pdf" Collection of TEM cross sectional figures of the sample with y=0.85.</li> <li>"XRD.rar" theta-2theta scans of the LSMy thin films for different Mn content around the 002 reflection.</li> </ul>
Safe extended-range cycling of Li4Ti5O12-based anodes for ultra-high capacity thin-film batteries
<p>Dataser for article "Safe extended-range cycling of Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub>-based anodes for ultra-high capacity thin-film batteries" in Mater. Today Energy 2022.</p> <p>The data includes:</p> <p>-XRD and Raman patterns of the films (Fig. 2)</p> <p>-Cyclic voltammograms and charge-dischage profiles of the different films (Fig. 4)</p> <p>-Capacity vs. C-rate for the different flms (Fig. 5)</p> <p>-Capacity vs. cycle number at different electrochemical window (Fig. 6)</p> <p>- Operando Spectroscopic Ellipsometry - Including operando charge-discharge profile vs time in the extended voltage window, the imaginary part of the permittivity as a function of energy, and extracted ellipsometry data, the amplitude of the second oscilator and the imaginary part of the permittivity at 1.5eV as a function of time (Fig. 7)</p> <p>-Ex- situ Raman spectroscopy (Fig. 8)</p>
Viviscal Extra-Strength Formulation To Promote Hair Growth And Decrease Shedding In Women With Thinning Hair
ClinicalTrials.gov study NCT02297360. IPD Sharing: Not stated. Countries: 0. Publications: 1.
Spectacle Tints and Thin-Films for Migraine
ClinicalTrials.gov study NCT02720211. IPD Sharing: NO. Countries: 1. Publications: 0.
Minoxidil 5% / Botanical Hair Regimen in Men With Thinning Hair and Male Pattern Hair Loss/Androgenic Alopecia
ClinicalTrials.gov study NCT02460289. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Comparing Surfactant Administration Through Supraglottic Airway and Thin Catheter for Preterm Infants
ClinicalTrials.gov study NCT07030270. IPD Sharing: NO. Countries: 0. Publications: 7.
Autologous Intrauterine Platelet-Rich Plasma Instillation And Endometrial Scratching for Thinned Endometrium
ClinicalTrials.gov study NCT04240860. IPD Sharing: Not stated. Countries: 0. Publications: 5.
Minoxidil 2% Solution and Botanical Hair Regimen in Women With Thinning Hair and Female Pattern Hair Loss/Androgenic Alopecia
ClinicalTrials.gov study NCT02460497. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Clinical Trial to Evaluate the Safety and Efficacy of Scarclinic™ Thin in Surgical Scars
ClinicalTrials.gov study NCT01689857. IPD Sharing: Not stated. Countries: 1. Publications: 0.
PRO With Luxerm® in the Field Treatment of Thin and Non-hyperkeratotic Non-pigmented AK
ClinicalTrials.gov study NCT03511326. IPD Sharing: Not stated. Countries: 1. Publications: 0.
A Study to Learn About the Effects of Medicines That Help in Thinning the Blood in People With Atrial Fibrillation (AF) Between 2016 and 2020 in France
ClinicalTrials.gov study NCT05838664. IPD Sharing: NO. Countries: 1. Publications: 0.
Thin Film Spectacle Coatings to Reduce Light Sensitivity and Headaches in Child and Adolescent Patients With Migraine
ClinicalTrials.gov study NCT01942486. IPD Sharing: NO. Countries: 1. Publications: 0.
Data from: Landmark based thin plate spline relative warp analysis of gastropod shells
Open the record for dataset details and reuse information.
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