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1.
Microsc Microanal ; 19(3): 726-39, 2013 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-23575375

RESUMEN

Tomography is a standard and invaluable technique that covers a large range of length scales. It gives access to the inner morphology of specimens and to the three-dimensional (3D) distribution of physical quantities such as elemental composition, crystalline phases, oxidation state, or strain. These data are necessary to determine the effective properties of investigated heterogeneous media. However, each tomographic technique relies on severe sampling conditions and physical principles that require the sample to be adequately shaped. For that purpose, a wide range of sample preparation techniques is used, including mechanical machining, polishing, sawing, ion milling, or chemical techniques. Here, we focus on the basics of tomography that justify such advanced sample preparation, before reviewing and illustrating the main techniques. Performances and limits are highlighted, and we identify the best preparation technique for a particular tomographic scale and application. The targeted tomography techniques include hard X-ray micro- and nanotomography, electron nanotomography, and atom probe tomography. The article mainly focuses on hard condensed matter, including porous materials, alloys, and microelectronics applications, but also includes, to a lesser extent, biological considerations.

2.
J Synchrotron Radiat ; 12(Pt 5): 659-64, 2005 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-16120991

RESUMEN

A new state-of-the art synchrotron beamline fully optimized for monochromatic X-ray diffraction at high pressure and high (or low) temperature is presented. In comparison with the old high-pressure beamline ID30, this new beamline exhibits outstanding performance in terms of photon flux and focusing capabilities. The main components of this new instrument will be described in detail and compared with the performance of beamline ID30. In particular, the choices in terms of X-ray source, X-ray optics, sample environment and detectors are discussed. The first results of the beamline commissioning are presented.

3.
Cell Mol Biol (Noisy-le-grand) ; 46(6): 1065-75, 2000 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-10976864

RESUMEN

We present in this paper two imaging techniques using contrast agents assessed with in vivo experiments. Both methods are based on the same physical principle, and were implemented at the European Synchrotron Radiation Facility medical beamline. The first one is intravenous coronary angiography using synchrotron radiation X-rays. This imaging technique has been planned for human studies in the near future. We describe the first experiments that were carried out with pigs at the ESRF. The second imaging mode is computed tomography using synchrotron radiation on rats bearing brain tumors. Owing to synchrotron radiation physical properties, these new imaging methods provide additional information compared to conventional techniques. After infusion of the contrast agent, it is possible to derive from the images the concentration of the contrast agent in the tumor area for the computed tomography and in any visible vessel for the angiography method.


Asunto(s)
Angiografía Coronaria/métodos , Sincrotrones , Tomografía Computarizada por Rayos X/métodos , Animales , Neoplasias Encefálicas/diagnóstico por imagen , Medios de Contraste , Angiografía Coronaria/instrumentación , Europa (Continente) , Gadolinio , Glioma/diagnóstico por imagen , Humanos , Yodo , Ratas , Porcinos , Sincrotrones/instrumentación , Tomografía Computarizada por Rayos X/instrumentación
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