Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping (MPM) estimates multiple relaxation parameters from multi-echo FLASH acquisitions with different basic contrasts, i.e., proton density (PD), T1 or magnetization transfer (MT) weighting. Motion can particularly affect maps of the apparent transverse relaxation rate R2(*), which are derived from the signal of PD-weighted images acquired at different echo times. To address the motion artifacts, we introduce ESTATICS, which robustly estimates R2(*) from images even when acquired with different basic contrasts. ESTATICS extends the fitted signal model to account for inherent contrast differences in the PDw, T1w and MTw images. The fit was implemen...
T2 quantification is commonly attempted by applying an exponential fit to proton density (PD) and tr...
Multi-parameter mapping (MPM) magnetic resonance imaging (MRI) provides quantitative estimates of th...
Abstract Background In magnetic resonance (MR) imaging, T1, T2 and T2* relaxation times represent ch...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
doi: 10.3389/fnins.2014.00278 Estimating the apparent transverse relaxation time (R2*) from images w...
Longitudinal (T1) and transverse (T2) relaxation are the most fundamental physical processes governi...
<div><p>The knowledge of relaxation times is essential for understanding the biophysical mechanisms ...
Previously published T1 relaxation times for brain tissue at 7T vary greatly in results and in metho...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
Accurate quantification of transverse relaxation times in vivo is of vital importance for research a...
[Departement_IRSTEA]Ecotechnologies [TR1_IRSTEA]SPEEInternational audienceT2 MRI mapping is used for...
The mapping of the spin-spin relaxation time T2 in pixel-by-pixel was suggested as a quantitative di...
This talk gives a technical overview about acquisition strategies suited to simultaneously map longi...
T2 quantification is commonly attempted by applying an exponential fit to proton density (PD) and tr...
Multi-parameter mapping (MPM) magnetic resonance imaging (MRI) provides quantitative estimates of th...
Abstract Background In magnetic resonance (MR) imaging, T1, T2 and T2* relaxation times represent ch...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
doi: 10.3389/fnins.2014.00278 Estimating the apparent transverse relaxation time (R2*) from images w...
Longitudinal (T1) and transverse (T2) relaxation are the most fundamental physical processes governi...
<div><p>The knowledge of relaxation times is essential for understanding the biophysical mechanisms ...
Previously published T1 relaxation times for brain tissue at 7T vary greatly in results and in metho...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
The knowledge of relaxation times is essential for understanding the biophysical mechanisms underlyi...
Accurate quantification of transverse relaxation times in vivo is of vital importance for research a...
[Departement_IRSTEA]Ecotechnologies [TR1_IRSTEA]SPEEInternational audienceT2 MRI mapping is used for...
The mapping of the spin-spin relaxation time T2 in pixel-by-pixel was suggested as a quantitative di...
This talk gives a technical overview about acquisition strategies suited to simultaneously map longi...
T2 quantification is commonly attempted by applying an exponential fit to proton density (PD) and tr...
Multi-parameter mapping (MPM) magnetic resonance imaging (MRI) provides quantitative estimates of th...
Abstract Background In magnetic resonance (MR) imaging, T1, T2 and T2* relaxation times represent ch...