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Analyzing Training Information from Random Forests for Improved Image Segmentation
DOI:10.1109/TIP.2014.2305073.png)
摘要
En 中文
Labeled training data are used for challenging medical image segmentation problems to learn different characteristics of the relevant domain. In this paper, we examine random forest (RF) classifiers, their learned knowledge during training and ways to exploit it for improved image segmentation. Apart from learning discriminative features, RFs also quantify their importance in classification. Feature importance is used to design a feature selection strategy critical for high segmentation and classification accuracy, and also to design a smoothness cost in a second-order MRF framework for graph cut segmentation. The cost function combines the contribution of different image features like intensity, texture, and curvature information. Experimental results on medical images show that this strategy leads to better segmentation accuracy than conventional graph cut algorithms that use only intensity information in the smoothness cost.
Keyword:
Random forests
training information
feature selection
graph cut
segmentation
probability maps
supervoxels
context
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期刊
IF:
13.7
论文数:
1.0W
被引数:
8.4W

