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SHR Neuro Krebs Kardio Lipid Stoffw Microb

Danciu, M; Gordan, M; Florea, C; Orghidan, R; Sorantin, E; Vlaicu, A; .
A Hybrid 3D Learning-and-Interaction-based Segmentation Approach Applied on CT Liver Volumes.
RADIOENGINEERING. 2013; 22(1): 100-113. [OPEN ACCESS]
Web of Science

 

Co-Autor*innen der Med Uni Graz
Sorantin Erich
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Abstract:
Medical volume segmentation in various imaging modalities using real 3D approaches (in contrast to slice-by-slice segmentation) represents an actual trend. The increase in the acquisition resolution leads to large amount of data, requiring solutions to reduce the dimensionality of the segmentation problem. In this context, the real-time interaction with the large medical data volume represents another milestone. This paper addresses the twofold problem of the 3D segmentation applied to large data sets and also describes an intuitive neuro-fuzzy trained interaction method. We present a new hybrid semi-supervised 3D segmentation, for liver volumes obtained from computer tomography scans. This is a challenging medical volume segmentation task, due to the acquisition and inter-patient variability of the liver parenchyma. The proposed solution combines a learning-based segmentation stage (employing 3D discrete cosine transform and a probabilistic support vector machine classifier) with a post-processing stage (automatic and manual segmentation refinement). Optionally, an optimization of the segmentation can be achieved by level sets, using as initialization the segmentation provided by the learning-based solution. The supervised segmentation is applied on elementary cubes in which the CT volume is decomposed by tilling, thus ensuring a significant reduction of the data to be classified by the support vector machine into liver/not liver. On real volumes, the proposed approach provides good segmentation accuracy, with a significant reduction in the computational complexity.

Find related publications in this database (Keywords)
3D liver segmentation
3D DCT
blocks level volume segmentation
SVM
3D human-computer interaction
segmentation refinement
3D level set segmentation
neuro-fuzzy interaction
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