| Literature DB >> 19398817 |
Aaron So1, Jiang Hsieh, Jian-Ying Li, Ting-Yim Lee.
Abstract
This paper presents a method for correcting beam hardening (BH) in cardiac CT perfusion imaging. The proposed algorithm works with reconstructed images instead of projection data. It applies thresholds to separate low (soft tissue) and high (bone and contrast) attenuating material in a CT image. The BH error in each projection is estimated by a polynomial function of the forward projection of the segmented image. The error image is reconstructed by back-projection of the estimated errors. A BH-corrected image is then obtained by subtracting a scaled error image from the original image. Phantoms were designed to simulate the BH artifacts encountered in cardiac CT perfusion studies of humans and animals that are most commonly used in cardiac research. These phantoms were used to investigate whether BH artifacts can be reduced with our approach and to determine the optimal settings, which depend upon the anatomy of the scanned subject, of the correction algorithm for patient and animal studies. The correction algorithm was also applied to correct BH in a clinical study to further demonstrate the effectiveness of our technique.Entities:
Mesh:
Year: 2009 PMID: 19398817 DOI: 10.1088/0031-9155/54/10/005
Source DB: PubMed Journal: Phys Med Biol ISSN: 0031-9155 Impact factor: 3.609