Torben Schneider
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Explore the profile of Torben Schneider including associated specialties, affiliations and a list of published articles.
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65
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2682
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Recent Articles
1.
Tur C, Battiston M, Yiannakas M, Collorone S, Calvi A, Prados F, et al.
Mult Scler
. 2024 Feb;
30(4-5):516-534.
PMID: 38372019
Background: We assessed the ability of a brain-and-cord-matched quantitative magnetic resonance imaging (qMRI) protocol to differentiate patients with progressive multiple sclerosis (PMS) from controls, in terms of normal-appearing (NA) tissue...
2.
John N, Solanky B, De Angelis F, Parker R, Weir C, Stutters J, et al.
J Magn Reson Imaging
. 2023 Oct;
59(6):2192-2201.
PMID: 37787109
Background: H-magnetic resonance spectroscopy (H-MRS) may provide a direct index for the testing of medicines for neuroprotection and drug mechanisms in multiple sclerosis (MS) through measures of total N-acetyl-aspartate (tNAA),...
3.
Wochner P, Schneider T, Stockmann J, Lee J, Sinkus R
PLoS One
. 2023 Mar;
18(3):e0281332.
PMID: 36996066
Diffusion MRI classically uses gradient fields that vary linearly in space to encode the diffusion of water molecules in the signal magnitude by tempering its intensity. In spin ensembles, a...
4.
Powell E, Schneider T, Battiston M, Grussu F, Toosy A, Clayden J, et al.
Magn Reson Med
. 2022 Jul;
88(5):2157-2166.
PMID: 35877787
Purpose: To develop a robust reconstruction pipeline for EPI data that enables 2D Nyquist phase error correction using sensitivity encoding without incurring major noise artifacts in low SNR data. Methods:...
5.
Tourais J, Scannell C, Schneider T, Alskaf E, Crawley R, Bosio F, et al.
Front Cardiovasc Med
. 2022 May;
9:884221.
PMID: 35571164
Introduction: To develop and test the feasibility of free-breathing (FB), high-resolution quantitative first-pass perfusion cardiac MR (FPP-CMR) using dual-echo Dixon (FOSTERS; Fat-water separation for mOtion-corrected Spatio-TEmporally accelerated myocardial peRfuSion). Materials...
6.
Cohen-Adad J, Alonso-Ortiz E, Alley S, Lagana M, Baglio F, Vannesjo S, et al.
Magn Reson Med
. 2022 Apr;
88(2):849-859.
PMID: 35476875
Purpose: Spinal cord gray-matter imaging is valuable for a number of applications, but remains challenging. The purpose of this work was to compare various MRI protocols at 1.5 T, 3 ...
7.
Boonsuth R, Samson R, Tur C, Battiston M, Grussu F, Schneider T, et al.
Front Neurol
. 2021 Dec;
12:763143.
PMID: 34899579
Multiple sclerosis (MS) has traditionally been regarded as a disease confined to the central nervous system (CNS). However, neuropathological, electrophysiological, and imaging studies have demonstrated that the peripheral nervous system...
8.
Cruz G, Qi H, Jaubert O, Kuestner T, Schneider T, Botnar R, et al.
Magn Reson Med
. 2021 Oct;
87(2):746-763.
PMID: 34601737
Purpose: Develop a novel low-rank motion-corrected (LRMC) reconstruction for nonrigid motion-corrected MR fingerprinting (MRF). Methods: Generalized motion-corrected (MC) reconstructions have been developed for steady-state imaging. Here we extend this framework...
9.
West D, Cruz G, Teixeira R, Schneider T, Tournier J, Hajnal J, et al.
Magn Reson Med
. 2021 Aug;
87(1):220-235.
PMID: 34418151
Purpose: Magnetization transfer (MT) and inhomogeneous MT (ihMT) contrasts are used in MRI to provide information about macromolecular tissue content. In particular, MT is sensitive to macromolecules, and ihMT appears...
10.
Milidonis X, Franks R, Schneider T, Sanchez-Gonzalez J, Sammut E, Plein S, et al.
J Cardiovasc Magn Reson
. 2021 Mar;
23(1):35.
PMID: 33775247
Background: Quantification of myocardial blood flow (MBF) and myocardial perfusion reserve (MPR) by cardiovascular magnetic resonance (CMR) perfusion requires sampling of the arterial input function (AIF). While variation in the...