We report numerical and experimental results demonstrating accurate region-of-interest computed tomography (CT) reconstruction based on differential phase-contrast projection (DPC) images. The approach removes the constraint of covering the entire sample within the field of view of the image detector. Particularly for biomedical applications, the presented DPC-CT region-of-interest approach will allow for the visualization of previously inaccessible details deep inside an entire animal or organ. We envisage that this development will also be of interest for potential future clinical applications, because grating-based DPC-CT can be implemented with standard x-ray tube sources.

Pfeiffer, F., David, C., Bunk, O., Donath, T., Bech, M., Le Duc, G., et al. (2008). Region-of-interest tomography for grating-based X-ray differential phase-contrast imaging. PHYSICAL REVIEW LETTERS, 101(16) [10.1103/PhysRevLett.101.168101].

Region-of-interest tomography for grating-based X-ray differential phase-contrast imaging

Bravin A
Penultimo
Membro del Collaboration Group
;
2008

Abstract

We report numerical and experimental results demonstrating accurate region-of-interest computed tomography (CT) reconstruction based on differential phase-contrast projection (DPC) images. The approach removes the constraint of covering the entire sample within the field of view of the image detector. Particularly for biomedical applications, the presented DPC-CT region-of-interest approach will allow for the visualization of previously inaccessible details deep inside an entire animal or organ. We envisage that this development will also be of interest for potential future clinical applications, because grating-based DPC-CT can be implemented with standard x-ray tube sources.
Articolo in rivista - Articolo scientifico
phase contrast imaging, x-rays
English
2008
101
16
168101
reserved
Pfeiffer, F., David, C., Bunk, O., Donath, T., Bech, M., Le Duc, G., et al. (2008). Region-of-interest tomography for grating-based X-ray differential phase-contrast imaging. PHYSICAL REVIEW LETTERS, 101(16) [10.1103/PhysRevLett.101.168101].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/342699
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