In the following, the basic principles of X-ray physics are discussed which includes generation and detection of X-rays and the acquisition of X-ray projection images. Further on, the process of computer-assisted sectional image calculation is briefly introduced and the latest developments in the field are mentioned. Additionally, particular issues of micro- and nano-scale X-ray Computed Tomography are described. Finally, we attempt to look forward into the upcoming future of industrial X-ray imaging systems which most probably will evolve to cognitive sensor networks by applying advanced machine-learning technologies
Solid materials can now be viewed non-destructively with x-rays by tomography; a technique for takin...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
X-ray computed tomography (CT) can reveal the internal details of objects in three dimensions non-de...
X-ray computed tomography (CT) can reveal the internal details of objects in three dimensions non-de...
The analysis of random samples as well as the inspection and verification of prototypes, e.g. in alu...
In this chapter, the physical and mathematical principles of X-ray computed tomography are summarise...
One of the major topics in the research on X-ray tomography within UGCT is trying to understand the ...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
Solid materials can now be viewed non-destructively with x-rays by tomography; a technique for takin...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
X-ray computed tomography (CT) can reveal the internal details of objects in three dimensions non-de...
X-ray computed tomography (CT) can reveal the internal details of objects in three dimensions non-de...
The analysis of random samples as well as the inspection and verification of prototypes, e.g. in alu...
In this chapter, the physical and mathematical principles of X-ray computed tomography are summarise...
One of the major topics in the research on X-ray tomography within UGCT is trying to understand the ...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
Solid materials can now be viewed non-destructively with x-rays by tomography; a technique for takin...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...
International audienceThis chapter presents the principle of X-ray CT and its evolution during the l...