BIOMEDICAL ENGINEERING- APPLICATIONS, BASIS COMMUNICATIONS EXTRACTION OF CORONARY ARTERIA.pdf
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BIOMEDICAL ENGINEERING-
APPLICATIONS, BASIS COMMUNICATIONS
1
1. INTRODUCTION
Coronary angiography is still the most common
modality for physicians to assess the severity of vessel
narrowing or stenosis during percutaneous coronary
intervention procedure. Accurate quantitative analysis
of coronary arteries in digital angiographic images is
valuable and important to clinical needs. Computer-
assisted extraction of a set of major arteries or the
entire coronary arterial tree from two-dimensional (2-
D) angiograms is regarded as a crucial process. Once
the vessels are identified, additional techniques may be
applied to obtain quantitative information including
severity of stenosis, three-dimensional representation
of the vascular tree, motion analysis of the coronary
arteries, or blood-flow analysis [1-8].
The major difficulty in automatic extraction of
coronary arterial structures in angiogram lies in (1) low
signal-to-noise ratio due to poor X-ray penetration, (2)
vessel overlaps, and (3) superimposition of other
tissues such as ribs, spine, or cardiac chambers.
Traditional signal-based edge detection algorithms [9-
15] were unable to effectively or accurately detect the
desired structures. The existing methods specific to
vessel extraction can be categorized into (i) model-
based [16-18] (ii) tracking-based [19-21], (iii)
classifier-based [22], and (iv) filter-based [23-25]
techniques. In model-based methods, the coronary
arterial tree is produced based on a pre-defined
coronary artery model in the form of a graph
structure. In tracking-based methods, the process
proceeds with an initial start-of-search location
followed by an automatic tracking process by
ABSTRACT
An efficient and robust method for identification of coronary arteries and evaluation of the
severity of the stenosis on the routine X-ray angiograms is proposed. It is a challenging process to
accurately identify coronary artery due to poor signal-to-noise ratio, vessel overlap, and
superimpo
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