International audiencePURPOSE:To accelerate the acquisition of free-breathing 3D saturation-recovery-based (SASHA) myocardial T1 mapping by acquiring fewer saturation points in combination with a post-processing 3D denoising technique to maintain high accuracy and precision.METHODS:3D SASHA T1 mapping acquires nine T1-weighted images along the saturation recovery curve, resulting in long acquisition times. In this work, we propose to accelerate conventional cardiac T1 mapping by reducing the number of saturation points. High T1 accuracy and low standard deviation (as a surrogate for precision) is maintained by applying a 3D denoising technique to the T1-weighted images prior to pixel-wise T1 fitting. The proposed approach was evaluated on a...
International audienceBackground : Cardiovascular magnetic resonance T1ρ mapping may detect myocardi...
PURPOSE: To improve the efficiency of native and postcontrast high-resolution cardiac T(1) mapping b...
Myocardial T1 mapping at 1.5T and 3T distinguishes powerfully between normal and diseased tissue wit...
International audiencePURPOSE:To accelerate the acquisition of free-breathing 3D saturation-recovery...
PURPOSE:To accelerate the acquisition of free-breathing 3D saturation-recovery-based (SASHA) myocard...
International audiencePurpose: To improve the precision of a free-breathing 3D saturation-recovery-b...
To develop a novel method for rapid myocardial T1 mapping at high spatial resolution. METHODS: The p...
Background: Myocardial T1-mapping recently emerged as a promising quantitative method for non-invasi...
Abstract Background High resolution 3D T1 mapping is important for assessment of diffuse myocardial ...
To propose and validate a novel imaging sequence that uses a single breath-hold whole-heart 3D T1 sa...
Purpose: To develop a free-breathing myocardial T1 mapping technique using inversion-recovery (IR) r...
A novel pulse sequence scheme is presented that allows the measurement and mapping of myocardial T1 ...
Pixel-by-pixel calculation of T1 values (T1 mapping) has been used in different tissues to focus on ...
BACKGROUND: This study develops a model-based myocardial T1 mapping technique with sparsity constrai...
Quantitative myocardial T1 mapping allows assessment of focal and diffuse fibrosis in the myocardium...
International audienceBackground : Cardiovascular magnetic resonance T1ρ mapping may detect myocardi...
PURPOSE: To improve the efficiency of native and postcontrast high-resolution cardiac T(1) mapping b...
Myocardial T1 mapping at 1.5T and 3T distinguishes powerfully between normal and diseased tissue wit...
International audiencePURPOSE:To accelerate the acquisition of free-breathing 3D saturation-recovery...
PURPOSE:To accelerate the acquisition of free-breathing 3D saturation-recovery-based (SASHA) myocard...
International audiencePurpose: To improve the precision of a free-breathing 3D saturation-recovery-b...
To develop a novel method for rapid myocardial T1 mapping at high spatial resolution. METHODS: The p...
Background: Myocardial T1-mapping recently emerged as a promising quantitative method for non-invasi...
Abstract Background High resolution 3D T1 mapping is important for assessment of diffuse myocardial ...
To propose and validate a novel imaging sequence that uses a single breath-hold whole-heart 3D T1 sa...
Purpose: To develop a free-breathing myocardial T1 mapping technique using inversion-recovery (IR) r...
A novel pulse sequence scheme is presented that allows the measurement and mapping of myocardial T1 ...
Pixel-by-pixel calculation of T1 values (T1 mapping) has been used in different tissues to focus on ...
BACKGROUND: This study develops a model-based myocardial T1 mapping technique with sparsity constrai...
Quantitative myocardial T1 mapping allows assessment of focal and diffuse fibrosis in the myocardium...
International audienceBackground : Cardiovascular magnetic resonance T1ρ mapping may detect myocardi...
PURPOSE: To improve the efficiency of native and postcontrast high-resolution cardiac T(1) mapping b...
Myocardial T1 mapping at 1.5T and 3T distinguishes powerfully between normal and diseased tissue wit...