English

Experimental design for MRI by greedy policy search

Computer Vision and Pattern Recognition 2020-12-16 v2 Machine Learning Neural and Evolutionary Computing

Abstract

In today's clinical practice, magnetic resonance imaging (MRI) is routinely accelerated through subsampling of the associated Fourier domain. Currently, the construction of these subsampling strategies - known as experimental design - relies primarily on heuristics. We propose to learn experimental design strategies for accelerated MRI with policy gradient methods. Unexpectedly, our experiments show that a simple greedy approximation of the objective leads to solutions nearly on-par with the more general non-greedy approach. We offer a partial explanation for this phenomenon rooted in greater variance in the non-greedy objective's gradient estimates, and experimentally verify that this variance hampers non-greedy models in adapting their policies to individual MR images. We empirically show that this adaptivity is key to improving subsampling designs.

Keywords

Cite

@article{arxiv.2010.16262,
  title  = {Experimental design for MRI by greedy policy search},
  author = {Tim Bakker and Herke van Hoof and Max Welling},
  journal= {arXiv preprint arXiv:2010.16262},
  year   = {2020}
}

Comments

Accepted to NeurIPS 2020 (spotlight), 15-12-2020: Fixed typos, Figure 9, and pseudocode

R2 v1 2026-06-23T19:46:41.534Z