PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multispoke Cones sequence with magnetization transfer (3D UTE-Cones-MT) and signal modeling.Theory and methodsA 3D UTE-Cones-MT acquisition scheme with multispoke per MT preparation and a modified rectangular pulse (RP) approximation was developed for two-pool MT modeling of macromolecular and water components including their relative fractions, relaxation times and exchange rates. Numerical simulation and cadaveric specimens, including human Achilles tendon and bovine cortical bone, were investigated using a clinical 3T scanner.ResultsNumerical simulation showed that the modified RP model provided accurate estimation of MT parameters when multispok...
The background underpinning the clinical use of ultrashort echo time, SPRITE and other pulse sequenc...
Abstract Purpose Ultrashort echo time (UTE) sequences play a key role in imaging and quantifying sho...
Peripheral nerves are a composite tissue consisting of neurovascular elements packaged within a well...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...
PurposeTo investigate the effect of stretching sampling window on quantitative 3D ultrashort TE (UTE...
PurposeTo investigate quantitative 2D ultrashort echo time magnetization transfer (UTE-MT) imaging i...
We report a novel three-dimensional (3D) ultrashort echo time (UTE) sequence employing Cones traject...
MRI biomarkers such as T2 , T2 * and T1rho have been widely used, but are confounded by the magic an...
PurposeWe present three-dimensional ultrashort echo time Cones (3D UTE Cones) techniques for quantif...
PurposeTo develop an accurate T1 measurement method for short T2 tissues using a combination of a 3-...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
PurposeTo investigate high contrast imaging of short T2 tissues with a three-dimensional double adia...
Cortical bone shows as a signal void when using conventional clinical magnetic resonance imaging (MR...
Ultrashort echo time (UTE) sequences represent a group of clinically compatible techniques that are ...
The background underpinning the clinical use of ultrashort echo time, SPRITE and other pulse sequenc...
Abstract Purpose Ultrashort echo time (UTE) sequences play a key role in imaging and quantifying sho...
Peripheral nerves are a composite tissue consisting of neurovascular elements packaged within a well...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...
PurposeTo investigate the effect of stretching sampling window on quantitative 3D ultrashort TE (UTE...
PurposeTo investigate quantitative 2D ultrashort echo time magnetization transfer (UTE-MT) imaging i...
We report a novel three-dimensional (3D) ultrashort echo time (UTE) sequence employing Cones traject...
MRI biomarkers such as T2 , T2 * and T1rho have been widely used, but are confounded by the magic an...
PurposeWe present three-dimensional ultrashort echo time Cones (3D UTE Cones) techniques for quantif...
PurposeTo develop an accurate T1 measurement method for short T2 tissues using a combination of a 3-...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
PurposeTo investigate high contrast imaging of short T2 tissues with a three-dimensional double adia...
Cortical bone shows as a signal void when using conventional clinical magnetic resonance imaging (MR...
Ultrashort echo time (UTE) sequences represent a group of clinically compatible techniques that are ...
The background underpinning the clinical use of ultrashort echo time, SPRITE and other pulse sequenc...
Abstract Purpose Ultrashort echo time (UTE) sequences play a key role in imaging and quantifying sho...
Peripheral nerves are a composite tissue consisting of neurovascular elements packaged within a well...