We present a correlative microscopy approach for biology based on holographic X-ray imaging, X-ray scanning diffraction, and stimulated emission depletion (STED) microscopy. All modalities are combined into the same synchrotron endstation. In this way, labeled and unlabeled structures in cells are visualized in a complementary manner. We map out the fluorescently labeled actin cytoskeleton in heart tissue cells and superimpose the data with phase maps from X-ray holography. Furthermore, an array of local far-field diffraction patterns is recorded in the regime of small-angle X-ray scattering (scanning SAXS), which can be interpreted in terms of biomolecular shape and spatial correlations of all contributing scattering constituents. We find ...
Softcover, 212 S.: 44,00 €Softcover, 17x24The use of coherent x rays for microscopic imaging has see...
We present a multiscale imaging approach to characterize the structure of isolated adult murine card...
Developments in microscopy have been instrumental to progress in the life sciences, and many new tec...
We present a correlative microscopy approach for biology based on holographic X-ray imaging, X-ray s...
dedicated stimulated emission depletion (STED) microscope had been designed and implemented into the...
The data uploaded here corresponds to a manuscript on x-ray /STED correlative imaging by the same au...
This article presents scanning small-angle X-ray scattering (SAXS) experiments on the actomyosin ass...
X-ray diffraction from biomolecular assemblies is a powerful technique which can provide structural ...
Recent advances in hard x-ray optics, instrumentation and detection have made it possible to probe b...
Softcover, 17x24Understanding the intricate details of muscle contraction has a long-standing tradit...
Since its first experimental demonstration in 1999, Coherent X-Ray Diffractive Imaging has become on...
Correlative microscopy techniques interrogate biological systems more thoroughly than is possible us...
With the development of advanced focusing optics for x-rays, we can now use x-ray beams with spot si...
Since its first experimental demonstration in 1999, Coherent X-Ray Diffractive Imaging has become on...
Item does not contain fulltextThe increasing interest in "seeing" the molecular environment in biolo...
Softcover, 212 S.: 44,00 €Softcover, 17x24The use of coherent x rays for microscopic imaging has see...
We present a multiscale imaging approach to characterize the structure of isolated adult murine card...
Developments in microscopy have been instrumental to progress in the life sciences, and many new tec...
We present a correlative microscopy approach for biology based on holographic X-ray imaging, X-ray s...
dedicated stimulated emission depletion (STED) microscope had been designed and implemented into the...
The data uploaded here corresponds to a manuscript on x-ray /STED correlative imaging by the same au...
This article presents scanning small-angle X-ray scattering (SAXS) experiments on the actomyosin ass...
X-ray diffraction from biomolecular assemblies is a powerful technique which can provide structural ...
Recent advances in hard x-ray optics, instrumentation and detection have made it possible to probe b...
Softcover, 17x24Understanding the intricate details of muscle contraction has a long-standing tradit...
Since its first experimental demonstration in 1999, Coherent X-Ray Diffractive Imaging has become on...
Correlative microscopy techniques interrogate biological systems more thoroughly than is possible us...
With the development of advanced focusing optics for x-rays, we can now use x-ray beams with spot si...
Since its first experimental demonstration in 1999, Coherent X-Ray Diffractive Imaging has become on...
Item does not contain fulltextThe increasing interest in "seeing" the molecular environment in biolo...
Softcover, 212 S.: 44,00 €Softcover, 17x24The use of coherent x rays for microscopic imaging has see...
We present a multiscale imaging approach to characterize the structure of isolated adult murine card...
Developments in microscopy have been instrumental to progress in the life sciences, and many new tec...