Paper
12 May 2004 Automatic plaque characterization and vessel wall segmentation in magnetic resonance images of atherosclerotic carotid arteries
Isabel M. Adame, Rob J. van der Geest, Bruce A. Wasserman, Mona Mohamed, Johan Hans C. Reiber, Boudewijn P. F. Lelieveldt
Author Affiliations +
Abstract
Composition and structure of atherosclerotic plaque is a primary focus of cardiovascular research. In vivo MRI provides a meanse to non-invasively image and assess the morphological features of athersclerotic and normal human carotid arteries. To quantitatively assess the vulnerability and the type of plaque, the contours of the lumen, outer boundary of the vessel wall and plaque components, need to be traced. To achieve this goal, we have developed an automated contou detection technique, which consists of three consecutive steps: firstly, the outer boundary of the vessel wall is detected by means of an ellipse-fitting procedure in order to obtain smoothed shapes; secondly, the lumen is segnented using fuzzy clustering. Thre region to be classified is that within the outer vessel wall boundary obtained from the previous step; finally, for plaque detection we follow the same approach as for lumen segmentation: fuzzy clustering. However, plaque is more difficult to segment, as the pixel gray value can differ considerably from one region to another, even when it corresponds to the same type of tissue. That makes further processing necessary. All these three steps might be carried out combining information from different sequences (PD-, T2-, T1-weighted images, pre- and post-contrast), to improve the contour detection. The algorithm has been validated in vivo on 58 high-resolution PD and T1 weighted MR images (19 patients). The results demonstrate excellent correspondence between automatic and manual area measurements: lumen (r=0.94), outer (r=0.92), and acceptable for fibrous cap thickness (r=0.76).
© (2004) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Isabel M. Adame, Rob J. van der Geest, Bruce A. Wasserman, Mona Mohamed, Johan Hans C. Reiber, and Boudewijn P. F. Lelieveldt "Automatic plaque characterization and vessel wall segmentation in magnetic resonance images of atherosclerotic carotid arteries", Proc. SPIE 5370, Medical Imaging 2004: Image Processing, (12 May 2004); https://doi.org/10.1117/12.532471
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Cited by 8 scholarly publications.
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KEYWORDS
Image segmentation

Magnetic resonance imaging

In vivo imaging

Tissues

Arteries

Fuzzy logic

Image quality

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