Title :
Surrounding structures analysis of pulmonary nodules using differential geometry based vector fields
Author :
Kawata, Y. ; Niki, N. ; Ohmatsu, H. ; Kusumoto, M. ; Kakinuma, R. ; Mori, K. ; Nishiyama, H. ; Eguchi, K. ; Kaneko, M. ; Moriyama, N.
Author_Institution :
Dept. of Opt. Sci., Tokushima Univ., Japan
Abstract :
Presents a scheme to analyze nodule surrounding using differential geometry based vector fields in three-dimensional (3-D) thoracic images. In this scheme the differential characteristics such as the principal curvatures and directions are computed from the differential values of the isointensity surfaces. Each voxel in the nodule surrounding is described in terms of shape index and curvedness derived from the principal curvatures. Two vector fields are formed from the directions of the maximum principal curvatures of nodule surrounding and gradient vectors of nodule surface, respectively. The gradient vector field is computed by diffusing the gradient vector on the nodule surface. The regions corresponding to the cylindrical or conic figures which are similar to vessel and plural images are segmented by the shape index and curvedness values. Then, the relationship between the segmented regions and the nodule is evaluated by the inner product of the direction of the maximum principal curvature and the gradient vector. The authors demonstrate the effectiveness of their scheme by using real pulmonary nodule images
Keywords :
cancer; computerised tomography; differential geometry; image segmentation; lung; medical image processing; vectors; conic figures; curvedness; cylindrical figures; differential geometry based vector fields; gradient vector; isointensity surfaces; maximum principal curvature; medical diagnostic imaging; principal curvatures; pulmonary nodules; segmented regions; shape index; surrounding structures analysis; thin-section CT images; vector fields; voxel; Biomedical optical imaging; Cancer; Computed tomography; Feature extraction; Geometrical optics; Geometry; Image analysis; Image segmentation; Lungs; Shape;
Conference_Titel :
Image Processing, 2000. Proceedings. 2000 International Conference on
Conference_Location :
Vancouver, BC
Print_ISBN :
0-7803-6297-7
DOI :
10.1109/ICIP.2000.899424