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MRzero -- Fully automated discovery of MRI sequences using supervised learning

Authors :
Loktyushin, Alexander
Herz, Kai
Dang, Nam
Glang, Felix
Deshmane, Anagha
Weinmüller, Simon
Doerfler, Arnd
Schölkopf, Bernhard
Scheffler, Klaus
Zaiss, Moritz
Publication Year :
2020

Abstract

Purpose: A supervised learning framework is proposed to automatically generate MR sequences and corresponding reconstruction based on the target contrast of interest. Combined with a flexible, task-driven cost function this allows for an efficient exploration of novel MR sequence strategies. Methods: The scanning and reconstruction process is simulated end-to-end in terms of RF events, gradient moment events in x and y, and delay times, acting on the input model spin system given in terms of proton density, T1 and T2, and $\Delta$B0. As a proof of concept, we use both conventional MR images and T1 maps as targets and optimize from scratch using the loss defined by data fidelity, SAR penalty, and scan time. Results: In a first attempt, \textit{MRzero} learns gradient and RF events from zero, and is able to generate a target image produced by a conventional gradient echo sequence. Using a neural network within the reconstruction module allows arbitrary targets to be learned successfully. Experiments could be translated to image acquisition at the real system (3T Siemens, PRISMA) and could be verified in the measurements of phantoms and a human brain \textit{in vivo}. Conclusions: Automated MR sequence generation is possible based on differentiable Bloch equation simulations and a supervised learning approach.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2002.04265
Document Type :
Working Paper
Full Text :
https://doi.org/10.1002/mrm.28727