This is the peer reviewed version of the following article: Cheng, H.‐ L.M. and Wright, G.A. (2006), Rapid high‐resolution T1 mapping by variable flip angles: Accurate and precise measurements in the presence of radiofrequency field inhomogeneity. Magn. Reson. Med., 55: 566- 574. doi:10.1002/mrm.20791, which has been published in final form at https://doi.org/10.1002/mrm.20791. This article may be used for non- commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions.Rapid 3D mapping of T(1) relaxation times is valuable in diverse clinical applications. Recently, the variable flip angle (VFA) spoiled gradient recalled echo approach was shown to be a practical alternative to conventional methods, pr...
Knowledge of the spatial distribution of transmission field B(1)(+) and reception sensitivity maps i...
BACKGROUND: Three-dimensional variable flip angle (VFA) methods are commonly used for T1 mapping of ...
RF field B-1 nonuniformity is the largest cause of error in the quantitative measurement of many cli...
In magnetic resonance imaging, precise measurements of longitudinal relaxation time (T1) is crucial ...
In magnetic resonance imaging, precise measurements of longitudinal relaxation time (T1) is crucial ...
Purpose Variable flip angle (VFA) T1 quantification using three‐dimensional (3D) radiofrequency (RF)...
In magnetic resonance imaging, precise measurements of longitudinal relaxation time (T1) is crucial ...
Purpose: To address the systematic bias in whole-brain dual flip angle (DFA) T1-mapping at 7T by opt...
Purpose : Variable flip angle (VFA)-based T 1 quantification techniques are highly sensitive to B 1 ...
International audienceErrors in the flip angle have to be corrected in many magnetic resonance imagi...
MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the r...
INTRODUCTION: Visual but subjective reading of longitudinal relaxation time (T1) weighted magnetic r...
INTRODUCTION: Visual but subjective reading of longitudinal relaxation time (T1) weighted magnetic r...
PurposeTo present a new method that can simultaneously and efficiently measure T1 and B1 (+) maps us...
In the ongoing quest to extract more information from MRI images, there has arisen a need to rapidly...
Knowledge of the spatial distribution of transmission field B(1)(+) and reception sensitivity maps i...
BACKGROUND: Three-dimensional variable flip angle (VFA) methods are commonly used for T1 mapping of ...
RF field B-1 nonuniformity is the largest cause of error in the quantitative measurement of many cli...
In magnetic resonance imaging, precise measurements of longitudinal relaxation time (T1) is crucial ...
In magnetic resonance imaging, precise measurements of longitudinal relaxation time (T1) is crucial ...
Purpose Variable flip angle (VFA) T1 quantification using three‐dimensional (3D) radiofrequency (RF)...
In magnetic resonance imaging, precise measurements of longitudinal relaxation time (T1) is crucial ...
Purpose: To address the systematic bias in whole-brain dual flip angle (DFA) T1-mapping at 7T by opt...
Purpose : Variable flip angle (VFA)-based T 1 quantification techniques are highly sensitive to B 1 ...
International audienceErrors in the flip angle have to be corrected in many magnetic resonance imagi...
MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the r...
INTRODUCTION: Visual but subjective reading of longitudinal relaxation time (T1) weighted magnetic r...
INTRODUCTION: Visual but subjective reading of longitudinal relaxation time (T1) weighted magnetic r...
PurposeTo present a new method that can simultaneously and efficiently measure T1 and B1 (+) maps us...
In the ongoing quest to extract more information from MRI images, there has arisen a need to rapidly...
Knowledge of the spatial distribution of transmission field B(1)(+) and reception sensitivity maps i...
BACKGROUND: Three-dimensional variable flip angle (VFA) methods are commonly used for T1 mapping of ...
RF field B-1 nonuniformity is the largest cause of error in the quantitative measurement of many cli...