Title :
Preclinical x-ray dark-field radiography for pulmonary emphysema evaluation
Author :
Yaroshenko, A. ; Meinel, F.G. ; Bech, M. ; Tapfer, A. ; Velroyen, A. ; Schleede, S. ; Muller, Mathias ; Auweter, S. ; Bohla, A. ; Yildirim, A.O. ; Nikolaou, K. ; Bamberg, F. ; Eickelberg, O. ; Reiser, M. ; Pfeiffer, F.
Author_Institution :
Dept. of Phys., Tech. Univ., München, Germany
Abstract :
Pulmonary emphysema is a widespread disorder characterized by irreversible destruction of alveolar walls. The spatial distribution of the disease, so far, could only be obtained using an X-ray CT scan, implying a high patient dose. X-ray scattering on alveolar structures is measured in the dark-field signal. The signal is dependent on the size of alveoli and therefore, a combination of absorption and darkfield signal is explored for mapping the distribution of emphysema in the lung on x-ray projection images. In this study three excised murine lungs with pulmonary emphysema and three control samples were imaged using a compact, cone-beam, small-animal x-ray dark-field scanner with a polychromatic source. Statistical analysis of the results, based on a combination of transmission and darkfield signals, revealed a distinct difference between emphysematous and control samples. Subsequently, the distribution of emphysema was mapped out per-pixel for the lungs and showed good agreement with histological findings.
Keywords :
computerised tomography; diagnostic radiography; diseases; lung; statistical analysis; X-ray CT scan; X-ray image projection; X-ray scattering; absorption; alveolar structure measurement; alveolar wall; computed tomography; dark-field signal; disease spatial distribution; murine lung; patient dose; polychromatic source; preclinical X-ray dark-field radiography; pulmonary emphysema evaluation; small-animal X-ray dark-field scanner; statistical analysis; Absorption; Computed tomography; Gratings; Lungs; Scattering; X-ray imaging; dark-field; emphysema; grating interferometer; phase-contrast; x-ray;
Conference_Titel :
Biomedical Imaging (ISBI), 2013 IEEE 10th International Symposium on
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4673-6456-0
DOI :
10.1109/ISBI.2013.6556489