Paper
30 October 2009 Transfer learning for kernel matching pursuit on computer-aided diagnoses
Shuiping Gou, Yao Yao, Licheng Jiao
Author Affiliations +
Proceedings Volume 7497, MIPPR 2009: Medical Imaging, Parallel Processing of Images, and Optimization Techniques; 749722 (2009) https://doi.org/10.1117/12.832265
Event: Sixth International Symposium on Multispectral Image Processing and Pattern Recognition, 2009, Yichang, China
Abstract
It is commonplace for the lack of labeled data in novel domains on medical image computer-aided diagnosis but there have been some labeled data or prior knowledge in old correlative domains. In this paper, instance-transfer approach is introduced into medical image processing. And then we present a novel transfer learning model based on kernel matching pursuit called TLKMP, which extends KMP (kernel matching pursuit learning machine, Vincent & Bengio, 2002). TLKMP uses the Greedy Approximation Residue to transfer instances into target domains which have little labeled set different distributions from the source domains. So, valuable instances in resource domains are reused to construct high quality classification model for the unlabeled set of the target domains. The experiment is performed datasets on Gastric Cancer of Lymph Node database which comes from some a hospital. The results show that the proposed algorithm has better classification performance compared with traditional KMP methods, and it improves diagnosis accuracy rate of medical images effectively the same as the algorithm need lest labeled data for training a good classification model.
© (2009) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Shuiping Gou, Yao Yao, and Licheng Jiao "Transfer learning for kernel matching pursuit on computer-aided diagnoses", Proc. SPIE 7497, MIPPR 2009: Medical Imaging, Parallel Processing of Images, and Optimization Techniques, 749722 (30 October 2009); https://doi.org/10.1117/12.832265
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KEYWORDS
Lymphatic system

Medical imaging

Cancer

Computer aided diagnosis and therapy

Detection and tracking algorithms

Image processing

Data acquisition

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