Using quantitative multi-parameter mapping (MPM), studies can investigate clinically relevant microstructural changes with high reliability over time and across subjects and sites. However, long acquisition times (20 min for the standard 1-mm isotropic protocol) limit its translational potential. This study aimed to evaluate the sensitivity gain of a fast 1.6-mm isotropic MPM protocol including post-processing optimized for longitudinal clinical studies. 6 healthy volunteers (35±7 years old; 3 female) were scanned at 3T to acquire the following whole-brain MPM maps with 1.6 mm isotropic resolution: proton density (PD), magnetization transfer saturation (MT), longitudinal relaxation rate (R1), and transverse relaxation rate (R2*). MPM maps w...
Quantitative imaging aims to provide in vivo neuroimaging biomarkers with high research and diagnost...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Using quantitative multi-parameter mapping (MPM), studies can investigate clinically relevant micros...
Multi-center clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degr...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
Multiparameter mapping (MPM) is a quantitative MRI protocol that is promising for studying microstru...
Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables est...
We investigate the reliability of individual differences of four quantities measured by magnetic res...
Purpose: High-resolution quantitative multi-parameter mapping shows promise for non-invasively chara...
Multi-parametric quantitative MRI enables simultaneous measurement of MR parameters and offers the p...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables est...
Quantitative imaging aims to provide in vivo neuroimaging biomarkers with high research and diagnost...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Using quantitative multi-parameter mapping (MPM), studies can investigate clinically relevant micros...
Multi-center clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degr...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
Multiparameter mapping (MPM) is a quantitative MRI protocol that is promising for studying microstru...
Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables est...
We investigate the reliability of individual differences of four quantities measured by magnetic res...
Purpose: High-resolution quantitative multi-parameter mapping shows promise for non-invasively chara...
Multi-parametric quantitative MRI enables simultaneous measurement of MR parameters and offers the p...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables est...
Quantitative imaging aims to provide in vivo neuroimaging biomarkers with high research and diagnost...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...
Multi-center studies using magnetic resonance imaging facilitate studying small effect sizes, global...