We report a novel three-dimensional (3D) ultrashort echo time (UTE) sequence employing Cones trajectory and T1ρ preparation (UTE-Cones-T1ρ ) for quantitative T1ρ assessment of short T2 tissues in the musculoskeletal system. A basic 3D UTE-Cones sequence was combined with a spin-locking preparation pulse for T1ρ contrast. A relatively short TR was used to decrease the scan time, which required T1 measurement and compensation using 3D UTE-Cones data acquisitions with variable TRs. Another strategy to reduce the total scan time was to acquire multiple Cones spokes (Nsp ) after each T1ρ preparation and fat saturation. Four spin-locking times (TSL = 0-20 ms) were acquired over 12 min, plus another 7 min for T1 measuremen...
The objectives of this study were to compare the ultrashort T2* relaxation time with the T2* relaxat...
PurposeTo investigate the effect of stretching sampling window on quantitative 3D ultrashort TE (UTE...
PurposeTo demonstrate the feasibility of a new method for measuring T1 of short T2 species based on ...
PurposeTo develop a 3D adiabatic T1ρ prepared ultrashort echo time cones (3D AdiabT1ρ UTE-Cones) seq...
PurposeTo investigate high contrast imaging of short T2 tissues with a three-dimensional double adia...
PurposeTo develop an accurate T1 measurement method for short T2 tissues using a combination of a 3-...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...
The collagen density is not detected in the patellar tendon (PT), posterior cruciate ligament (PCL),...
The collagen density is not detected in the patellar tendon (PT), posterior cruciate ligament (PCL),...
PurposeTo measure T1 relaxations for the major tissues in whole knee joints on a clinical 3T scanner...
PurposeWe present three-dimensional adiabatic inversion recovery prepared ultrashort echo time Cones...
Ultrashort echo time (UTE) techniques enable direct imaging of musculoskeletal tissues with short T2...
PurposeWe present three-dimensional ultrashort echo time Cones (3D UTE Cones) techniques for quantif...
Ultrashort echo time (UTE) sequences represent a group of clinically compatible techniques that are ...
Background Ultrashort echo time (UTE) image to directly visualize short T2 tissues requires postproc...
The objectives of this study were to compare the ultrashort T2* relaxation time with the T2* relaxat...
PurposeTo investigate the effect of stretching sampling window on quantitative 3D ultrashort TE (UTE...
PurposeTo demonstrate the feasibility of a new method for measuring T1 of short T2 species based on ...
PurposeTo develop a 3D adiabatic T1ρ prepared ultrashort echo time cones (3D AdiabT1ρ UTE-Cones) seq...
PurposeTo investigate high contrast imaging of short T2 tissues with a three-dimensional double adia...
PurposeTo develop an accurate T1 measurement method for short T2 tissues using a combination of a 3-...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...
The collagen density is not detected in the patellar tendon (PT), posterior cruciate ligament (PCL),...
The collagen density is not detected in the patellar tendon (PT), posterior cruciate ligament (PCL),...
PurposeTo measure T1 relaxations for the major tissues in whole knee joints on a clinical 3T scanner...
PurposeWe present three-dimensional adiabatic inversion recovery prepared ultrashort echo time Cones...
Ultrashort echo time (UTE) techniques enable direct imaging of musculoskeletal tissues with short T2...
PurposeWe present three-dimensional ultrashort echo time Cones (3D UTE Cones) techniques for quantif...
Ultrashort echo time (UTE) sequences represent a group of clinically compatible techniques that are ...
Background Ultrashort echo time (UTE) image to directly visualize short T2 tissues requires postproc...
The objectives of this study were to compare the ultrashort T2* relaxation time with the T2* relaxat...
PurposeTo investigate the effect of stretching sampling window on quantitative 3D ultrashort TE (UTE...
PurposeTo demonstrate the feasibility of a new method for measuring T1 of short T2 species based on ...