English

Uncertainty in multitask learning: joint representations for probabilistic MR-only radiotherapy planning

Computer Vision and Pattern Recognition 2019-08-23 v1

Abstract

Multi-task neural network architectures provide a mechanism that jointly integrates information from distinct sources. It is ideal in the context of MR-only radiotherapy planning as it can jointly regress a synthetic CT (synCT) scan and segment organs-at-risk (OAR) from MRI. We propose a probabilistic multi-task network that estimates: 1) intrinsic uncertainty through a heteroscedastic noise model for spatially-adaptive task loss weighting and 2) parameter uncertainty through approximate Bayesian inference. This allows sampling of multiple segmentations and synCTs that share their network representation. We test our model on prostate cancer scans and show that it produces more accurate and consistent synCTs with a better estimation in the variance of the errors, state of the art results in OAR segmentation and a methodology for quality assurance in radiotherapy treatment planning.

Keywords

Cite

@article{arxiv.1806.06595,
  title  = {Uncertainty in multitask learning: joint representations for probabilistic MR-only radiotherapy planning},
  author = {Felix J. S. Bragman and Ryutaro Tanno and Zach Eaton-Rosen and Wenqi Li and David J. Hawkes and Sebastien Ourselin and Daniel C. Alexander and Jamie R. McClelland and M. Jorge Cardoso},
  journal= {arXiv preprint arXiv:1806.06595},
  year   = {2019}
}

Comments

Early-accept at MICCAI 2018, 8 pages, 4 figures

R2 v1 2026-06-23T02:32:57.451Z