A Scaling Parameter for Predicting Pressure Wave Reflection in Stented Arteries

Author:

Charonko John J.1,Ragab Saad A.2,Vlachos Pavlos P.3

Affiliation:

1. VT-WFU School of Biomedical Engineering & Sciences, Virginia Polytechnic Institute and State University, 114 Randolph Hall, Blacksburg, VA 24061

2. Department of Engineering Science and Mechanics, Virginia Polytechnic Institute and State University, 333G Norris Hall, Blacksburg, VA 24061

3. Department of Mechanical Engineering, VT-WFU School of Biomedical Engineering & Sciences, Virginia Polytechnic Institute and State University, 114S Randolph Hall, Blacksburg, VA 24061

Abstract

A one-dimensional finite-difference model was developed to predict pressure wave reflections in stented arteries, and a parametric study of variations in stent and vessel properties was performed, including stent stiffness, length, and compliance transition region, as well as vessel radius and wall thickness. The model was solved using a combination of weighted essentially nonoscillatory and Runge–Kutta methods. Over 100 cases were tested and the magnitudes of the predicted waves were less than 0.5 mm Hg for all cases, less than 1% of the normal pulse pressure of 40 mm Hg. It was also shown that reasonable variations in these parameters could induce changes in reflection magnitude of up to ±50%. The relationship between each of these properties and the resulting wave reflection could be described in a simple manner, and the effect of all of them together could, in fact, be encompassed by a single nondimensional parameter titled “stent authority.” It is believed that stent authority is a novel way of relating the energy imposed upon the arterial wall by the stent to the fraction of the incident pressure energy that is reflected from the stented region. Based on these results, it is believed that stent design can have a significant effect on pressure wave reflections; however, it was concluded that their small magnitudes make clinical relevance of these waves unlikely, regardless of design.

Publisher

ASME International

Subject

Biomedical Engineering,Medicine (miscellaneous)

Reference45 articles.

1. American Heart Association, 2004, “Heart Disease and Stroke Statistics—2004 Update.”

2. American Heart Association, 2004, “International Cardiovascular Disease Statistics.”

3. Arterial Stiffness, Wave Reflections, and the Risk of Coronary Artery Disease;Weber;Circulation

4. Chasing the Wave. Unfashionable But Important New Concepts in Arterial Wave Travel;Bleasdale;Am. J. Physiol. Heart Circ. Physiol.

5. Stent Implantation Reduces Restenosis in Patients With Suboptimal Results Following Coronary Angioplasty;Knight;Eur. Heart J.

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