High-resolution x-ray imaging techniques offer a variety of possibilities for studying the nanoscale structure of biological cells. A challenging task remains the study of cells by x rays in their natural, aqueous environment. Here, we overcome this limitation by presenting scanning x-ray diffraction measurements with beam sizes in the range of a few hundred nm on living and fixed-hydrated eukaryotic cells in microfluidic devices which mimic a native environment. The direct comparison between fixed-hydrated and living cells shows distinct differences in the scattering signal, pointing to structural changes on the order of 30 to 50 nm
AbstractWe have performed scanning x-ray nanobeam diffraction experiments on single cells of the amo...
DoctorCoherent diffraction imaging, also called as lens-less imaging, is able to reconstruct an imag...
8siRecent advances in coherent x-ray diffractive imaging have paved the way to reliable and quantita...
High-resolution x-ray imaging techniques offer a variety of possibilities for studying the nanoscale...
Softcover, 17x24X-rays provide an ideal probe for studying structures at the nano-scale and are rout...
Cells and biological materials are large objects in comparison to the size of internal components su...
Nanoscale imaging of biological specimens in their native condition is of long-standing interest, in...
X-ray studies of biological cells in microfluidic devices provide a method to probe cellular structu...
Recent advances in hard x-ray optics, instrumentation and detection have made it possible to probe b...
With the development of advanced focusing optics for x-rays, we can now use x-ray beams with spot si...
Emerging X-ray free-electron lasers with femtosecond pulse duration enable single-shot snapshot imag...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...
All rights reserved. There exists a conspicuous gap of knowledge about the organization of life at m...
We have performed scanning x-ray nanobeam diffraction experiments on single cells of the amoeba Dict...
The cytoskeleton of eukaryotic cells is a complex and dynamic network of different biopolymers, whic...
AbstractWe have performed scanning x-ray nanobeam diffraction experiments on single cells of the amo...
DoctorCoherent diffraction imaging, also called as lens-less imaging, is able to reconstruct an imag...
8siRecent advances in coherent x-ray diffractive imaging have paved the way to reliable and quantita...
High-resolution x-ray imaging techniques offer a variety of possibilities for studying the nanoscale...
Softcover, 17x24X-rays provide an ideal probe for studying structures at the nano-scale and are rout...
Cells and biological materials are large objects in comparison to the size of internal components su...
Nanoscale imaging of biological specimens in their native condition is of long-standing interest, in...
X-ray studies of biological cells in microfluidic devices provide a method to probe cellular structu...
Recent advances in hard x-ray optics, instrumentation and detection have made it possible to probe b...
With the development of advanced focusing optics for x-rays, we can now use x-ray beams with spot si...
Emerging X-ray free-electron lasers with femtosecond pulse duration enable single-shot snapshot imag...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...
All rights reserved. There exists a conspicuous gap of knowledge about the organization of life at m...
We have performed scanning x-ray nanobeam diffraction experiments on single cells of the amoeba Dict...
The cytoskeleton of eukaryotic cells is a complex and dynamic network of different biopolymers, whic...
AbstractWe have performed scanning x-ray nanobeam diffraction experiments on single cells of the amo...
DoctorCoherent diffraction imaging, also called as lens-less imaging, is able to reconstruct an imag...
8siRecent advances in coherent x-ray diffractive imaging have paved the way to reliable and quantita...