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4 months ago

Deeply supervised salient object detection with short connections

Qibin Hou; Ming-Ming Cheng; Xiao-Wei Hu; Ali Borji; Zhuowen Tu; Philip Torr

Deeply supervised salient object detection with short connections

Abstract

Recent progress on saliency detection is substantial, benefiting mostly from the explosive development of Convolutional Neural Networks (CNNs). Semantic segmentation and saliency detection algorithms developed lately have been mostly based on Fully Convolutional Neural Networks (FCNs). There is still a large room for improvement over the generic FCN models that do not explicitly deal with the scale-space problem. Holistically-Nested Edge Detector (HED) provides a skip-layer structure with deep supervision for edge and boundary detection, but the performance gain of HED on salience detection is not obvious. In this paper, we propose a new method for saliency detection by introducing short connections to the skip-layer structures within the HED architecture. Our framework provides rich multi-scale feature maps at each layer, a property that is critically needed to perform segment detection. Our method produces state-of-the-art results on 5 widely tested salient object detection benchmarks, with advantages in terms of efficiency (0.15 seconds per image), effectiveness, and simplicity over the existing algorithms.

Code Repositories

houqb/DSS
caffe2
Mentioned in GitHub
moothes/salod
pytorch
Mentioned in GitHub
Andrew-Qibin/DSS
caffe2
Mentioned in GitHub
AceCoooool/DSS-pytorch
pytorch
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
salient-object-detection-on-duts-teDSS
MAE: 0.065
max F-measure: 0.813
salient-object-detection-on-istdDSS
Balanced Error Rate: 10.48
salient-object-detection-on-sbuDSS
Balanced Error Rate: 7.00
salient-object-detection-on-ucfDSS
Balanced Error Rate: 10.56

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Deeply supervised salient object detection with short connections | Papers | HyperAI