DocumentCode
141008
Title
Assessing the hemodynamic influence between multiple lesions in a realistic right coronary artery segment: A computational study
Author
Siogkas, Panagiotis K. ; Sakellarios, Antonios I. ; Papafaklis, Michail I. ; Stefanou, Kostas A. ; Athanasiou, Lambros M. ; Exarchos, Themis P. ; Naka, Katerina K. ; Michalis, Lampros K. ; Fotiadis, Dimitrios I.
Author_Institution
Dept. of Mater. Sci. & Eng., Univ. of Ioannina, Ioannina, Greece
fYear
2014
fDate
26-30 Aug. 2014
Firstpage
5643
Lastpage
5646
Abstract
Coronary artery disease is the primary cause of morbidity and mortality worldwide. Therefore, detailed assessment of lesions in the coronary vasculature is critical in current clinical practice. Fractional flow reserve (FFR) has been proven as an efficient method for assessing the hemodynamic severity of a coronary stenosis. However, functional assessment of a coronary segment with multiple stenoses (> 2) remains complex for guiding the strategy of percutaneous coronary intervention due to the hemodynamic interplay between adjacent stenoses. In this work, we created four 3-dimensional (3D) arterial models that derive from a healthy patient-specific right coronary artery segment. The initial healthy model was reconstructed using fusion of intravascular ultrasound (IVUS) and biplane angiographic patient data. The healthy 3D model presented a measured FFR value of 0.96 (pressure-wire) and a simulated FFR value of 0.98. We then created diseased models with two artificial sequential stenoses of 90% lumen area reduction or with the proximal and distal stenosis separately. We calculated the FFR value for each case: 0.65 for the case with the two stenoses, 0.73 for the case with the distal stenosis and 0.90 for the case with the proximal stenosis. This leads to the conclusion that although both stenoses had the same degree of lumen area stenosis, there was a large difference in hemodynamic severity, thereby indicating that angiographic lumen assessment by itself is often not adequate for accurate assessment of coronary lesions.
Keywords
angiocardiography; biomedical ultrasonics; blood vessels; haemodynamics; image fusion; 3D arterial models; FFR; IVUS fusion; angiographic lumen assessment; biplane angiographic patient data; coronary stenosis; distal stenosis; fractional flow reserve; hemodynamic influence; hemodynamic severity; initial healthy model; intravascular ultrasound fusion; lumen area stenosis; multiple lesions; proximal stenosis; right coronary artery segment; Arteries; Computational modeling; Hemodynamics; Image reconstruction; Solid modeling; Three-dimensional displays;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location
Chicago, IL
ISSN
1557-170X
Type
conf
DOI
10.1109/EMBC.2014.6944907
Filename
6944907
Link To Document