Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables estimation of four physical parameters (longitudinal and effective transverse relaxation rates and , proton density , and magnetization transfer saturation ) that are sensitive to microstructural tissue properties such as iron and myelin content. Their capability to reveal microstructural brain differences, however, is tightly bound to controlling random noise and artefacts (e.g. caused by head motion) in the signal. Here, we introduced a method to estimate the local error of , and maps that captures both noise and artefacts on a routine basis without requiring additional data. To investigate the method's sensitivity to random noise, we calculat...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
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...
Multiparameter mapping (MPM) is a quantitative MRI protocol that is promising for studying microstru...
Using quantitative multi-parameter mapping (MPM), studies can investigate clinically relevant micros...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
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...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
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...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
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...
Multiparameter mapping (MPM) is a quantitative MRI protocol that is promising for studying microstru...
Using quantitative multi-parameter mapping (MPM), studies can investigate clinically relevant micros...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
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...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
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...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
Quantitative MR imaging is increasingly favoured for its richer information content and standardised...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...