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Recent Advances in X-ray Phase Imaging

Japanese Journal of Applied Physics · 2005 · Vol. 44(9R) · pp. 6355–6355
Atsushi Momose

Abstract

Since the middle of the 1990s, X-ray phase imaging including phase tomography has been attracting increasing attention. The advantage of X-ray phase imaging is that an extremely high sensitivity is achieved for weak-absorbing materials, such as biological soft tissues, which generate a poor contrast by conventional methods. Medical and biological imaging is the main target of X-ray phase imaging, and several trials using synchrotron radiation sources and laboratory sources have been made. Measuring and controlling the X-ray phase are also significant for X-ray microscopy with a high spatial resolution, and innovative techniques are attracting intense interest. The progress of X-ray phase imaging is supported by the developments in X-ray sources such as third-generation synchrotron radiation sources, optical elements, and image detectors. This article describes the advantages of using X-ray phase information and reviews various techniques studied for X-ray phase imaging.

Advanced X-ray Imaging TechniquesAdvanced Electron Microscopy Techniques and ApplicationsAdvanced X-ray and CT ImagingSynchrotron radiationPhase-contrast imagingPhase (matter)OpticsX-raySynchrotronMaterials scienceX-Ray Phase-Contrast ImagingPhase imagingPhase contrast microscopy
Citations
541
FWCI
14.95
field-weighted impact
References
86
Percentile
99%
vs. same field & year
Citations per year
References
Demonstration of X-Ray Talbot Interferometry
Japanese Journal of Applied Physics · 2003 · 954 citations
Phase objects in synchrotron radiation hard x-ray imaging
Journal of Physics D Applied Physics · 1996 · 834 citations
Diffraction enhanced x-ray imaging
Physics in Medicine and Biology · 1997 · 1,083 citations
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