Demyelination is the key pathological process in multiple sclerosis (MS). The extent of demyelination can be quantified with magnetic resonance imaging by assessing the myelin water fraction (MWF). However, long computation times and high noise sensitivity hinder the translation of MWF imaging to clinical practice. In this work, we introduce a more efficient and noise robust method to determine the MWF using a joint sparsity constraint and a pre-computed B-1(+)-T-2 dictionary.A single component analysis with this dictionary is used in an initial step to obtain a B-1(+) map. The T-2 distribution is then determined from a reduced dictionary corresponding to the estimated B-1(+) map using a combination of a non-negativity and a joint sparsity ...
Abstract. Quantitative assessment of myelin density in the white mat-ter is an emerging tool for neu...
The brain’s myelin content can be mapped by T2-relaxometry, which resolves multiple differentially r...
Myelin water fraction (MWF) mapping based on data fitting of a 3-pool exponential model of multi-ech...
Demyelination is the key pathological process in multiple sclerosis (MS). The extent of demyelinatio...
Myelin water imaging can be achieved using multicomponent T2 relaxation analysis to quantify in vivo...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
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...
Currently, one of the gold-standard methods to obtain brain myelin water fraction (MWF) maps is the ...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Recovering the T <sub>2</sub> distribution from multi-echo T <sub>2</sub> ma...
T2 relaxation imaging can be used to measure signal from water trapped between myelin bilayers; the ...
Myelin is an essential component of nerve fibers and monitoring its health is important for studying...
\u3cp\u3ePurpose: In vivo myelin quantification can provide valuable noninvasive information on neur...
Abstract. Quantitative assessment of myelin density in the white mat-ter is an emerging tool for neu...
The brain’s myelin content can be mapped by T2-relaxometry, which resolves multiple differentially r...
Myelin water fraction (MWF) mapping based on data fitting of a 3-pool exponential model of multi-ech...
Demyelination is the key pathological process in multiple sclerosis (MS). The extent of demyelinatio...
Myelin water imaging can be achieved using multicomponent T2 relaxation analysis to quantify in vivo...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
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...
Currently, one of the gold-standard methods to obtain brain myelin water fraction (MWF) maps is the ...
Purpose: In vivo myelin quantification can provide valuable noninvasive information on neuronal matu...
Recovering the T <sub>2</sub> distribution from multi-echo T <sub>2</sub> ma...
T2 relaxation imaging can be used to measure signal from water trapped between myelin bilayers; the ...
Myelin is an essential component of nerve fibers and monitoring its health is important for studying...
\u3cp\u3ePurpose: In vivo myelin quantification can provide valuable noninvasive information on neur...
Abstract. Quantitative assessment of myelin density in the white mat-ter is an emerging tool for neu...
The brain’s myelin content can be mapped by T2-relaxometry, which resolves multiple differentially r...
Myelin water fraction (MWF) mapping based on data fitting of a 3-pool exponential model of multi-ech...