Single-shot grating-based phase-contrast imaging techniques offer additional contrast modalities based on the refraction and scattering of X-rays in a robust and versatile configuration. The utilization of a single optical element is possible in such methods, allowing the shortening of the acquisition time and increasing flux efficiency. One of the ways to upgrade single-shot imaging techniques is to utilize customized optical components, such as two-dimensional (2D) X-ray gratings. In this contribution, we present the achievements in the development of 2D gratings with UV lithography and gold electroplating. Absorption gratings represented by periodic free-standing gold pillars with lateral structure sizes from 5 µm to 25 µm and heights fr...
X-ray radiographic absorption imaging is an invaluable tool in medical diagnostics and materials sci...
Conventional x-ray absorption imaging is a powerful and commonly-used technique in a wide variety of...
Edge-illumination x-ray phase contrast imaging (EI XPCI) is a non-interferometric phase-sensitive me...
Single-shot grating-based phase-contrast imaging techniques offer additional contrast modalities bas...
X-ray imaging is of paramount importance for clinical and preclinical imaging but it is fundamentall...
Grating based X-ray phase contrast imaging sets out to overcome the limits of conventional X-ray ima...
In this work, a characterization and optimization of the grating-based x-ray imaging technique is pr...
X-ray imaging is of paramount importance for clinical and preclinical imaging but it is fundamentall...
An interferometric method to record quantitative X-ray phase contrast images has been developed that...
Two-dimensional (2D) Talbot array illuminators (TAIs) were designed, fabricated, and evaluated for h...
Depuis la découverte des rayons X par Röntgen, l'imagerie radiographique utilise le contraste d'abso...
Diffractive optical elements such as periodic gratings are fundamental devices in X-ray imaging - a ...
Phase-contrast imaging with x-rays is a developing field for imaging weakly absorbing materials. In ...
we demonstrate a non-absorption grating approach for X-ray phase contrast imaging based-on grating i...
X-ray imaging is a standard tool for the non-destructive inspection of the internal structure of sam...
X-ray radiographic absorption imaging is an invaluable tool in medical diagnostics and materials sci...
Conventional x-ray absorption imaging is a powerful and commonly-used technique in a wide variety of...
Edge-illumination x-ray phase contrast imaging (EI XPCI) is a non-interferometric phase-sensitive me...
Single-shot grating-based phase-contrast imaging techniques offer additional contrast modalities bas...
X-ray imaging is of paramount importance for clinical and preclinical imaging but it is fundamentall...
Grating based X-ray phase contrast imaging sets out to overcome the limits of conventional X-ray ima...
In this work, a characterization and optimization of the grating-based x-ray imaging technique is pr...
X-ray imaging is of paramount importance for clinical and preclinical imaging but it is fundamentall...
An interferometric method to record quantitative X-ray phase contrast images has been developed that...
Two-dimensional (2D) Talbot array illuminators (TAIs) were designed, fabricated, and evaluated for h...
Depuis la découverte des rayons X par Röntgen, l'imagerie radiographique utilise le contraste d'abso...
Diffractive optical elements such as periodic gratings are fundamental devices in X-ray imaging - a ...
Phase-contrast imaging with x-rays is a developing field for imaging weakly absorbing materials. In ...
we demonstrate a non-absorption grating approach for X-ray phase contrast imaging based-on grating i...
X-ray imaging is a standard tool for the non-destructive inspection of the internal structure of sam...
X-ray radiographic absorption imaging is an invaluable tool in medical diagnostics and materials sci...
Conventional x-ray absorption imaging is a powerful and commonly-used technique in a wide variety of...
Edge-illumination x-ray phase contrast imaging (EI XPCI) is a non-interferometric phase-sensitive me...