Abstract:
:Three-dimensional reconstruction of coronary arteries can be performed during x-ray-guided interventions by gated reconstruction from a rotational coronary angiography sequence. Due to imperfect gating and cardiac or breathing motion, the heart's motion state might not be the same in all projections used for the reconstruction of one cardiac phase. The motion state inconsistency causes motion artefacts and degrades the reconstruction quality. These effects can be reduced by a projection-based 2D motion compensation method. Using maximum-intensity forward projections of an initial uncompensated reconstruction as reference, the projection data are transformed elastically to improve the consistency with respect to the heart's motion state. A fast iterative closest-point algorithm working on vessel centrelines is employed for estimating the optimum transformation. Motion compensation is carried out prior to and independently from a final reconstruction. The motion compensation improves the accuracy of reconstructed vessel radii and the image contrast in a software phantom study. Reconstructions of human clinical cases are presented, in which the motion compensation substantially reduces motion blur and improves contrast and visibility of the coronary arteries.
journal_name
Phys Med Bioljournal_title
Physics in medicine and biologyauthors
Hansis E,Schäfer D,Dössel O,Grass Mdoi
10.1088/0031-9155/53/14/007subject
Has Abstractpub_date
2008-07-21 00:00:00pages
3807-20issue
14eissn
0031-9155issn
1361-6560pii
S0031-9155(08)68383-9journal_volume
53pub_type
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