Enhancing Tabletop X-Ray Phase Contrast Imaging with Nano-Fabrication
نویسندگان
چکیده
X-ray phase-contrast imaging is a promising approach for improving soft-tissue contrast and lowering radiation dose in biomedical applications. While current tabletop imaging systems adapt to common x-ray tubes and large-area detectors by employing absorptive elements such as absorption gratings or monolithic crystals to filter the beam, we developed nanometric phase gratings which enable tabletop x-ray far-field interferometry with only phase-shifting elements, leading to a substantial enhancement in the performance of phase contrast imaging. In a general sense the method transfers the demands on the spatial coherence of the x-ray source and the detector resolution to the feature size of x-ray phase masks. We demonstrate its capabilities in hard x-ray imaging experiments at a fraction of clinical dose levels and present comparisons with the existing Talbot-Lau interferometer and with conventional digital radiography.
منابع مشابه
X-ray phase contrast imaging of biological specimens with tabletop synchrotron radiation
The x-ray tube is still the most common source of x-rays, but cutting-edge medical applications demand high quality beams of x-rays, the production of which often requires large, expensive synchrotron x-ray facilities. Our scheme deploys a recently demonstrated tabletop source of 1-100 keV synchrotron radiation. Here, in order to produce high quality x-rays, electrons are accelerated and wiggle...
متن کاملNanoscale quantitative phase imaging using XOR-based X-ray differential interference contrast microscopy
We propose a quantitative x-ray phase imaging technique using previously demonstrated XOR objectives. The fabrication process of XOR is identical to that of a Fresnel zone-plate and as a result the same finest outermost zone width, thus spatial resolution, can be achieved. A series of phase shifts from 0 to 2p is implemented by shifting the relative position of the grating with respect to the z...
متن کاملMeasurement Parameters and Resolution Aspects of Micro X-ray Tomography for Advanced Core Analysis
Micro X-ray Tomography (μ-XCT) is an emerging non-destructive imaging technology with large potential for application in advanced core analysis. This scanning technique provides 3-D images and quantitative information in the micron range, i.e. at pore scale level. μ-XCT will assist to gain fundamental insight on rock topology structure, in-situ physicochemical processes as well as grain contact...
متن کاملIncorporation of 12-Tungstophosphoric acid in Titania spheres and fabrication of core-shell Polyoxotungstate/Titania nanostructures
Core-shell 12-tungstophosphoric acid/TiO2 (HPW/TiO2) nanoparticles at 10 and 20% of HPW have been synthesized by simple in-situ sol- gel method. Characterization of the samples was carried out by X-ray diffraction (XRD), Scanning electron microscopy (SEM), Fourier transform infrared (FTIR). The X-ray diffraction patterns of as prepared solid samples, indicated characterist...
متن کاملIncorporation of 12-Tungstophosphoric acid in Titania spheres and fabrication of core-shell Polyoxotungstate/Titania nanostructures
Core-shell 12-tungstophosphoric acid/TiO2 (HPW/TiO2) nanoparticles at 10 and 20% of HPW have been synthesized by simple in-situ sol- gel method. Characterization of the samples was carried out by X-ray diffraction (XRD), Scanning electron microscopy (SEM), Fourier transform infrared (FTIR). The X-ray diffraction patterns of as prepared solid samples, indicated characterist...
متن کامل