Title :
Texture based image recognition in microscopy images of diffuse gliomas with multi-class gentle boosting mechanism
Author :
Kong, Jun ; Cooper, Lee ; Sharma, Ashish ; Kurc, Tahsin ; Brat, Daniel J. ; Saltz, Joel H.
Author_Institution :
Center for Comprehensive Inf., Emory Univ., Atlanta, GA, USA
Abstract :
The diagnosis of diffuse gliomas requires the careful inspection of large amounts of visual data. Identifying tissue regions that inform diagnosis is a cumbersome task for human reviewers and is a process prone to inter-reader variability. In this paper we present an automatic method for identifying critical diagnostic regions within whole-slide microscopy images of gliomas. We frame the problem of critical region identification as a texture-based content retrieval task in the sense that each image is represented by a set of texture features. Both linear and nonlinear dimensionality reduction techniques are utilized to explore the intrinsic dimensionality of the feature space where images are classified by classification and regression trees with performances improved by a newly extended multi-class gentle boosting (MCGB) mechanism. The proposed method is demonstrated on 1200 sample regions using a five-fold cross validation, achieving a 96.25% classification accuracy.
Keywords :
biodiffusion; biomedical imaging; diseases; image recognition; medical image processing; regression analysis; classification tree; critical diagnostic regions; extended multiclass gentle boosting mechanism; feature space; five-fold cross validation; glioma diffusion; linear dimensionality reduction technique; microscopy images; multiclass gentle boosting mechanism; nonlinear dimensionality reduction technique; regression tree; texture based image recognition; texture features; texture-based content retrieval task; whole-slide microscopy images; Biopsy; Boosting; Classification tree analysis; Humans; Image recognition; Inspection; Microscopy; Pathology; Regression tree analysis; Tiles; Microscopy image processing; dimensionality reduction; gentle boosting; glioma; texture analysis;
Conference_Titel :
Acoustics Speech and Signal Processing (ICASSP), 2010 IEEE International Conference on
Conference_Location :
Dallas, TX
Print_ISBN :
978-1-4244-4295-9
Electronic_ISBN :
1520-6149
DOI :
10.1109/ICASSP.2010.5495724