Wavelet-Based Image Registration and Segmentation Framework for the Quantitative Evaluation of Hydrocephalus

Author:

Luo Fan1,Evans Jeanette W.2,Linney Norma C.1,Schmidt Matthias H.3,Gregson Peter H.4

Affiliation:

1. Mathematics and Computing Science Department, Saint Mary's University, Halifax, NS, Canada B3H 3C3

2. Department of Psychiatry, University of British Columbia, Vancouver, BC, Canada V6T 2A1

3. Department of Radiology, Dalhousie University, Halifax, NS, Canada B3H 2Y9

4. Electrical & Computer Engineering, Faculty of Engineering, Dalhousie University, Halifax, NS, Canada B3J 1Z1

Abstract

Hydrocephalus, characterized by increased fluid in the cerebral ventricles, is traditionally evaluated by a visual assessment of serial CT scans. The complex shape of the ventricular system makes accurate visual comparison of CT scans difficult. The current research developed a quantitative method to measure the change in cerebral ventricular volume over time. Key elements of the developed framework are: adaptive image registration based on mutual information and wavelet multiresolution analysis; adaptive segmentation with novel feature extraction based on the Dual-Tree Complex Wavelet Transform; volume calculation. The framework, when tested on physical phantoms, had an error of 2.3%. When validated on clinical cases, results showed that cases deemed to be normal/stable had a calculated volume change less than 5%. Those with progressive/treated hydrocephalus had a calculated change greater than 20%. These findings indicate that the framework is reasonable and has potential for development as a tool in the evaluation of hydrocephalus.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Hindawi Limited

Subject

Radiology, Nuclear Medicine and imaging

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