Key result
In vitro elasticity imaging provides reference data on clots and calcifications to assess plaque vulnerability.
Correlations between elasticity and tissue elements in the arterial wall may provide useful information for the noninvasive diagnosis of atherosclerotic plaque vulnerability.
May guide development of noninvasive elasticity imaging; leaves open clinical translation from animal reference data.
Previously, we developed the phased tracking method [H. Kanai et al.: IEEE Trans. Ultrason. Ferroelectr. Freq. Control 43 (1996) 791] for measuring the minute change in thickness during one heartbeat and the elasticity of the arterial wall. By comparing pathological images with elasticity images measured with ultrasound, elasticity distributions for respective tissues in the arterial wall were determined. We have already measured the elasticity distributions for lipids and fibrous tissues (mixtures of smooth-muscle and collagen fiber) [H. Kanai et al.: Circulation 107 (2003) 3018]. In this study, elasticity distributions were measured for blood clots and calcified tissues. We discuss whether these elasticity distributions, which were measuerd in vitro, can be used as reference data for classifying cross-sectional elasticity images measured in vivo into respective tissues. In addition to the measurement of elasticity distributions, correlations between collagen content and elasticity were investigated with respect to fibrous tissue to estimate the collagen and smooth-muscle content based on elasticity. Collagen and smooth-muscle content may be important factors in determining the stability of the fibrous cap of atherosclerotic plaque. Therefore, correlations between elasticity and elements of the tissue in the arterial wall may provide useful information for the noninvasive diagnosis of plaque vulnerability.
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Inagaki et al. (2005) studied Atherosclerotic plaque vulnerability. Elasticity imaging was evaluated on Elasticity distributions for blood clots and calcified tissues, and correlations between collagen content and elasticity. Elasticity imaging of the arterial wall in vitro provided reference data on elasticity distributions for blood clots and calcified tissues to aid in the noninvasive diagnosis of plaque vulnerability.
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