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Mask R-CNN

Kaiming HeGeorgia GkioxariPiotr DollárRoss Girshick

Abstract

We present a conceptually simple, flexible, and general framework for object instance segmentation. Our approach efficiently detects objects in an image while simultaneously generating a high-quality segmentation mask for each instance. The method, called Mask R-CNN, extends Faster R-CNN by adding a branch for predicting an object mask in parallel with the existing branch for bounding box recognition. Mask R-CNN is simple to train and adds only a small overhead to Faster R-CNN, running at 5 fps. Moreover, Mask R-CNN is easy to generalize to other tasks, e.g., allowing us to estimate human poses in the same framework. We show top results in all three tracks of the COCO suite of challenges, including instance segmentation, bounding-box object detection, and person keypoint detection. Without bells and whistles, Mask R-CNN outperforms all existing, single-model entries on every task, including the COCO 2016 challenge winners. We hope our simple and effective approach will serve as a solid baseline and help ease future research in instance-level recognition. Code has been made available at: https://github.com/facebookresearch/Detectron.

Advanced Neural Network ApplicationsHuman Pose and Action RecognitionAdvanced Image and Video Retrieval TechniquesComputer scienceMinimum bounding boxSegmentationArtificial intelligenceObject detectionBounding overwatchCode (set theory)Object (grammar)Overhead (engineering)Pattern recognition (psychology)
Citations
3,315
FWCI
102.76
field-weighted impact
References
61
Percentile
100%
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References
Faster R-CNN: Towards Real-Time Object Detection with Region Proposal Networks
IEEE Transactions on Pattern Analysis and Machine Intelligence · 2016 · 52,930 citations
Selective Search for Object Recognition
International Journal of Computer Vision · 2013 · 6,087 citations
Backpropagation Applied to Handwritten Zip Code Recognition
Neural Computation · 1989 · 11,706 citations
ImageNet classification with deep convolutional neural networks
Communications of the ACM · 2017 · 75,550 citations
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