Purpose: Previously, an artificial neural network method was introduced to estimate quantitative myelin water fraction (MWF) using multi-echo gradient-echo data. However, the fiber orientation of white matter with respect to B0 could bias the quantification of MWF. Here, we developed an advanced workflow for MWF estimation that could improve the quantification of MWF. Methods: To adopt fiber orientation effects, a complex-valued neural network with complex-valued operation was used. In addition, to compensate for the bias from different scan parameters, a signal model incorporating the T1 value was devised for training data generation. At the testing stage, a voxel-spread function approach was utilized for spatial B0 artifact correction....
Quantitative imaging of the myelin water fraction (MWF) is able to show demyelinating processes and ...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Magnetic resonance imaging (MRI) is a useful imaging modality governed by complicated physics. One i...
Purpose: To demonstrate robust myelin water fraction (MWF) mapping using an artificial neural networ...
Myelin water fraction (MWF) mapping based on data fitting of a 3-pool exponential model of multi-ech...
Currently, one of the gold-standard methods to obtain brain myelin water fraction (MWF) maps is the ...
Myelin water mapping aims to quantify the myelin content within the brain using the short T2 time of...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Long acquisition times preclude the application of multiecho spin echo (MESE) sequences for myelin w...
Myelin is vital for healthy neuronal development, and can therefore provide valuable information reg...
Myelin water imaging can be achieved using multicomponent T2 relaxation analysis to quantify in vivo...
\u3cp\u3ePurpose: In vivo myelin quantification can provide valuable noninvasive information on neur...
Myelin content is an important marker for neuropathology; however, direct imaging of myelin is diffi...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Quantitative imaging of the myelin water fraction (MWF) is able to show demyelinating processes and ...
Quantitative imaging of the myelin water fraction (MWF) is able to show demyelinating processes and ...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Magnetic resonance imaging (MRI) is a useful imaging modality governed by complicated physics. One i...
Purpose: To demonstrate robust myelin water fraction (MWF) mapping using an artificial neural networ...
Myelin water fraction (MWF) mapping based on data fitting of a 3-pool exponential model of multi-ech...
Currently, one of the gold-standard methods to obtain brain myelin water fraction (MWF) maps is the ...
Myelin water mapping aims to quantify the myelin content within the brain using the short T2 time of...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Long acquisition times preclude the application of multiecho spin echo (MESE) sequences for myelin w...
Myelin is vital for healthy neuronal development, and can therefore provide valuable information reg...
Myelin water imaging can be achieved using multicomponent T2 relaxation analysis to quantify in vivo...
\u3cp\u3ePurpose: In vivo myelin quantification can provide valuable noninvasive information on neur...
Myelin content is an important marker for neuropathology; however, direct imaging of myelin is diffi...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Quantitative imaging of the myelin water fraction (MWF) is able to show demyelinating processes and ...
Quantitative imaging of the myelin water fraction (MWF) is able to show demyelinating processes and ...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Magnetic resonance imaging (MRI) is a useful imaging modality governed by complicated physics. One i...