Synchrotron-based full-field tomographic microscopy established itself as a tool for noninvasive investigations. Many beamlines worldwide routinely achieve micrometer spatial resolution while the isotropic 100-nm barrier is reached and trespassed only by few instruments, mainly in the soft x-ray regime. We present an x-ray, full-field microscope with tomographic capabilities operating at 10 keV and with an isotropic resolution of 144 nm. Custom-designed optical components allow for ideal, aperture-matched sample illumination and very sensitive phase contrast imaging. We show here that the instrument has been successfully used for the nondestructive, volumetric investigation of single cells
Hard X-ray nanotomography enables 3D investigations of a wide range of samples with high resolution ...
The diversity of living cells, in both size and internal complexity, calls for imaging methods with ...
X-ray tomography can provide structural information of whole cells in close to their native state. R...
An instrument for high-resolution imaging and tomography has been built at the APS beamline 34 ID-C,...
Hard X-ray full-field nanotomography is an ideal technique to study the inner structureof materials ...
Full-field X-ray microscopy is a valuable tool for 3D observation of biological systems. In the soft...
Softcover, 17x24To this day, the standard method for investigating biological tissue with cellular r...
The high-throughput 3D visualisation of biological specimens is essential for studying diseases and ...
Softcover, 17x24X-ray imaging enables the nondestructive investigation of interior structures in oth...
a b s t r a c t X-ray imaging offers a new 3-D view into cells. With its ability to penetrate whole ...
Beamline 11.3.1 at the Advanced Light Source is a tender/hard (6-17 keV) x-ray bend magnet beam...
We report on a method for tomographic phase contrast imaging of centimeter sized objects. As opposed...
The diversity of living cells, in both size and internal complexity, calls for imaging methods with ...
X-ray microscopy is a commonly used method especially in material scienceapplication, where the larg...
The application of two approaches for high-throughput, high-resolution X-ray phase contrast tomograp...
Hard X-ray nanotomography enables 3D investigations of a wide range of samples with high resolution ...
The diversity of living cells, in both size and internal complexity, calls for imaging methods with ...
X-ray tomography can provide structural information of whole cells in close to their native state. R...
An instrument for high-resolution imaging and tomography has been built at the APS beamline 34 ID-C,...
Hard X-ray full-field nanotomography is an ideal technique to study the inner structureof materials ...
Full-field X-ray microscopy is a valuable tool for 3D observation of biological systems. In the soft...
Softcover, 17x24To this day, the standard method for investigating biological tissue with cellular r...
The high-throughput 3D visualisation of biological specimens is essential for studying diseases and ...
Softcover, 17x24X-ray imaging enables the nondestructive investigation of interior structures in oth...
a b s t r a c t X-ray imaging offers a new 3-D view into cells. With its ability to penetrate whole ...
Beamline 11.3.1 at the Advanced Light Source is a tender/hard (6-17 keV) x-ray bend magnet beam...
We report on a method for tomographic phase contrast imaging of centimeter sized objects. As opposed...
The diversity of living cells, in both size and internal complexity, calls for imaging methods with ...
X-ray microscopy is a commonly used method especially in material scienceapplication, where the larg...
The application of two approaches for high-throughput, high-resolution X-ray phase contrast tomograp...
Hard X-ray nanotomography enables 3D investigations of a wide range of samples with high resolution ...
The diversity of living cells, in both size and internal complexity, calls for imaging methods with ...
X-ray tomography can provide structural information of whole cells in close to their native state. R...