Improving the Segmentation of Anatomical Structures in Chest Radiographs using U-Net with an ImageNet Pre-trained Encoder
October 04, 2018 ยท Declared Dead ยท ๐ RAMBO+BIA+TIA@MICCAI
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Authors
Maayan Frid-Adar, Avi Ben-Cohen, Rula Amer, Hayit Greenspan
arXiv ID
1810.02113
Category
cs.CV: Computer Vision
Cross-listed
cs.LG
Citations
70
Venue
RAMBO+BIA+TIA@MICCAI
Last Checked
3 months ago
Abstract
Accurate segmentation of anatomical structures in chest radiographs is essential for many computer-aided diagnosis tasks. In this paper we investigate the latest fully-convolutional architectures for the task of multi-class segmentation of the lungs field, heart and clavicles in a chest radiograph. In addition, we explore the influence of using different loss functions in the training process of a neural network for semantic segmentation. We evaluate all models on a common benchmark of 247 X-ray images from the JSRT database and ground-truth segmentation masks from the SCR dataset. Our best performing architecture, is a modified U-Net that benefits from pre-trained encoder weights. This model outperformed the current state-of-the-art methods tested on the same benchmark, with Jaccard overlap scores of 96.1% for lung fields, 90.6% for heart and 85.5% for clavicles.
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