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Automated Midline Shift and Intracranial Pressure Estimation based on Brain CT Images
Published on: April 13, 2013
Atlas-based segmentation of 3D cerebral structures with competitive level sets and fuzzy control
Cybèle Ciofolo1, Christian Barillot
1Unit/Project VisAGeS U746, CNRS/IRISA/INSERM/INRIA, Campus universitaire de Beaulieu, Rennes, France. cybele.ciofolo@philips.com
Abstract:
We propose a novel approach for the simultaneous segmentation of multiple structures with competitive level sets driven by fuzzy control. To this end, several contours evolve simultaneously toward previously defined anatomical targets. A fuzzy decision system combines the a priori knowledge provided by an anatomical atlas with the intensity distribution of the image and the relative position of the contours. This combination automatically determines the directional term of the evolution equation of each level set. This leads to a local expansion or contraction of the contours, in order to match the boundaries of their respective targets. Two applications are presented: the segmentation of the brain hemispheres and the cerebellum, and the segmentation of deep internal structures. Experimental results on real magnetic resonance (MR) images are presented, quantitatively assessed and discussed.
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