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1.
Rev Sci Instrum ; 84(6): 063703, 2013 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-23822348

RESUMEN

This study realizes the concept of simultaneous micro-X-ray computed tomography and X-ray powder diffraction using a synchrotron beamline. A thin zinc metal foil was placed in the primary, monochromatic synchrotron beam to generate a divergent wave to propagate through the samples of interest onto a CCD detector for tomographic imaging, thus removing the need for large beam illumination and high spatial resolution detection. Both low density materials (kapton tubing and a piece of plant) and higher density materials (Egyptian faience) were investigated, and elemental contrast was explored for the example of Cu and Ni meshes. The viability of parallel powder diffraction using the direct beam transmitted through the foil was demonstrated. The outcomes of this study enable further development of the technique towards in situ tomography∕diffraction studies combining micrometer and crystallographic length scales, and towards elemental contrast imaging and reconstruction methods using well defined fluorescence outputs from combinations of known fluorescence targets (elements).


Asunto(s)
Colorantes Fluorescentes/química , Metales/química , Difracción de Polvo/instrumentación , Sincrotrones , Tomografía por Rayos X/instrumentación , Difracción de Rayos X/instrumentación
2.
Opt Express ; 21(26): 32151-9, 2013 Dec 30.
Artículo en Inglés | MEDLINE | ID: mdl-24514809

RESUMEN

Phase-diverse Fresnel coherent diffractive imaging has been shown to reveal the structure and composition of biological specimens with high sensitivity at nanoscale resolution. However, the method has yet to be applied using X-ray illumination with energy in the so-called 'water-window' that lies between the carbon and oxygen K edges. In this range, differences in the strength of the X-ray interaction for protein based biological materials and water is increased. Here we demonstrate a proof-of-principle application of FCDI at an X-ray energy within the water-window to a dehydrated cellular sample composed of red blood cells infected with the trophozoite stage of the malaria parasite, Plasmodium falciparum. Comparison of the results to both optical and electron microscopy shows that the correlative imaging methods that include water-window FCDI will find utility in studying cellular architecture.


Asunto(s)
Eritrocitos/parasitología , Eritrocitos/ultraestructura , Aumento de la Imagen/métodos , Malaria Falciparum/patología , Malaria/patología , Refractometría/métodos , Difracción de Rayos X/métodos , Malaria/diagnóstico por imagen , Malaria/parasitología , Malaria Falciparum/diagnóstico por imagen , Malaria Falciparum/parasitología , Microscopía de Contraste de Fase/métodos , Radiografía , Reproducibilidad de los Resultados , Sensibilidad y Especificidad
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