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Joint Learning of Motion Estimation and Segmentation for Cardiac MR Image Sequences

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arxiv 1806.04066 v1 pith:P2GC4SVM submitted 2018-06-11 cs.CV

classification cs.CV
keywords cardiacestimationmotionsegmentationbranchjointlearningnetwork
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Cardiac motion estimation and segmentation play important roles in quantitatively assessing cardiac function and diagnosing cardiovascular diseases. In this paper, we propose a novel deep learning method for joint estimation of motion and segmentation from cardiac MR image sequences. The proposed network consists of two branches: a cardiac motion estimation branch which is built on a novel unsupervised Siamese style recurrent spatial transformer network, and a cardiac segmentation branch that is based on a fully convolutional network. In particular, a joint multi-scale feature encoder is learned by optimizing the segmentation branch and the motion estimation branch simultaneously. This enables the weakly-supervised segmentation by taking advantage of features that are unsupervisedly learned in the motion estimation branch from a large amount of unannotated data. Experimental results using cardiac MRI images from 220 subjects show that the joint learning of both tasks is complementary and the proposed models outperform the competing methods significantly in terms of accuracy and speed.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Joint Motion Estimation and Segmentation from Undersampled Cardiac MR Image

    eess.IV 2019-08 conditional novelty 4.0 of 10

    A joint motion estimation and segmentation network, supervised by fully-sampled teacher outputs, predicts cardiac measurements from undersampled MRI nearly as well as from fully-sampled data.

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