(Stroke. 2002;33:2575.)
© 2002 American Heart Association, Inc.
Original Contributions |
From the Structural and Computational Biology and Molecular Biophysics Program (G.J.A.) and Departments of Cell Biology (C.B.B.), Pediatrics (G.W.V.), Medicine (W.I., J.D.M.), and Biochemistry (J.D.M.), Baylor College of Medicine; Heartscan (D.M.S.); and statistical consultant (K.T.K.), Houston, Tex.
Reprint requests to Joel D. Morrisett, PhD, Departments of Medicine and Biochemistry, Baylor College of Medicine, 6565 Fannin, MS601A, Houston, TX 77030. E-mail morriset{at}bcm.tmc.edu
Background and Purpose Atherosclerosis is a principal cause of stroke and myocardial infarction. The carotid arteries provide a site at which progression of atherosclerosis can be monitored reproducibly and noninvasively. This study was conducted to determine the similarity of atherosclerotic plaques in the left and right carotid arteries. This question was explored with the use of perfusion-fixed cadaveric carotid arteries and 2 noninvasive clinical imaging techniques, MRI and electron-beam CT.
Methods Fifty pairs of carotid arteries from cadaveric donors (aged 48 to 98 years) were imaged with MRI and electron-beam CT. Thirty-eight of the pairs met the criteria for rigorous analysis. Carotid artery wall volumes were measured from the MRI images, and calcification scores were computed from the electron-beam CT images.
Results Total wall volumes of the left (972.5±241.6 mm3) and right (1016.3±275.0 mm3) carotid arteries were moderately correlated (concordance correlation coefficient [rc]=0.71). Calcification scores were highly correlated, with rc=0.95 for the Agatston scores and rc=0.94 for the calcium volume scores.
Conclusions Total wall volume and plaque calcification in the left and right human carotid arteries are substantially similar. These results suggest that atherosclerosis of the human carotid arteries is generally a bilaterally symmetrical disease. This evidence of symmetry suggests that diagnostic information about atherosclerotic plaque in one carotid artery can be used to infer information about the composition and volume of atherosclerotic plaque in the contralateral artery.
Key Words: atherosclerosis calcium carotid arteries magnetic resonance imaging
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