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Through-Plane Super-Resolution With Autoencoders in Diffusion Magnetic Resonance Imaging of the Developing Human Brain

Authors :
Kebiri, Hamza
Canales-Rodríguez, Erick J
Lajous, Hélène
de Dumast, Priscille
Girard, Gabriel
Alemán-Gómez, Yasser
Koob, Mériam
Jakab, András; https://orcid.org/0000-0001-6291-9889
Bach Cuadra, Meritxell
Kebiri, Hamza
Canales-Rodríguez, Erick J
Lajous, Hélène
de Dumast, Priscille
Girard, Gabriel
Alemán-Gómez, Yasser
Koob, Mériam
Jakab, András; https://orcid.org/0000-0001-6291-9889
Bach Cuadra, Meritxell
Source :
Kebiri, Hamza; Canales-Rodríguez, Erick J; Lajous, Hélène; de Dumast, Priscille; Girard, Gabriel; Alemán-Gómez, Yasser; Koob, Mériam; Jakab, András; Bach Cuadra, Meritxell (2022). Through-Plane Super-Resolution With Autoencoders in Diffusion Magnetic Resonance Imaging of the Developing Human Brain. Frontiers in Neurology, 13:827816.
Publication Year :
2022

Abstract

Fetal brain diffusion magnetic resonance images (MRI) are often acquired with a lower through-plane than in-plane resolution. This anisotropy is often overcome by classical upsampling methods such as linear or cubic interpolation. In this work, we employ an unsupervised learning algorithm using an autoencoder neural network for single-image through-plane super-resolution by leveraging a large amount of data. Our framework, which can also be used for slice outliers replacement, overperformed conventional interpolations quantitatively and qualitatively on pre-term newborns of the developing Human Connectome Project. The evaluation was performed on both the original diffusion-weighted signal and the estimated diffusion tensor maps. A byproduct of our autoencoder was its ability to act as a denoiser. The network was able to generalize fetal data with different levels of motions and we qualitatively showed its consistency, hence supporting the relevance of pre-term datasets to improve the processing of fetal brain images.

Details

Database :
OAIster
Journal :
Kebiri, Hamza; Canales-Rodríguez, Erick J; Lajous, Hélène; de Dumast, Priscille; Girard, Gabriel; Alemán-Gómez, Yasser; Koob, Mériam; Jakab, András; Bach Cuadra, Meritxell (2022). Through-Plane Super-Resolution With Autoencoders in Diffusion Magnetic Resonance Imaging of the Developing Human Brain. Frontiers in Neurology, 13:827816.
Notes :
application/pdf, info:doi/10.5167/uzh-219814, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1443046295
Document Type :
Electronic Resource