Abstract Purpose Ultrashort echo time (UTE) sequences play a key role in imaging and quantifying short T2 species. However, almost all of the relevant studies was conducted at relatively high fields. The purpose of this work was to further explore the feasibility of UTE imaging and T2* measurement for short T2 species at low fields. Methods A 2D UTE sequence with an echo time (TE) of 0.37 ms was developed on a 0.35 T permanent magnet scanner. This sequence acquires multiecho images to fit the monoexponential signal decay model for quantitative T2* calculations. In the phantom experiments, MnCl2 solutions with different T2* values were used to assess the curve fitting model in low fields. In the in vivo experiments, T2* measurements were per...
MRI biomarkers such as T2 , T2 * and T1rho have been widely used, but are confounded by the magic an...
Ultra-short echo time (UTE) imaging has shown promise as a technique for imaging tis-sues with T2 va...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...
The background underpinning the clinical use of ultrashort echo time, SPRITE and other pulse sequenc...
Ultrashort echo time (UTE) sequences represent a group of clinically compatible techniques that are ...
PurposeTo demonstrate the feasibility of a new method for measuring T1 of short T2 species based on ...
The background underpinning the clinical use of ultrashort echo-time (UTE) pulse sequences for imagi...
Ultrashort echo time (UTE) techniques enable direct imaging of musculoskeletal tissues with short T2...
Ultrashort echo time (UTE) imaging has shown promise as a technique for imaging tissues with T2 valu...
PurposeTo investigate high contrast imaging of short T2 tissues with a three-dimensional double adia...
The human body contains a variety of tissue species with short T2 ranging from a few microseconds to...
It is now possible to detect signals from tissues and tissue components with short T2s, such as cort...
Tissues, such as bone, tendon, and ligaments, contain a high fraction of components with "short" and...
Ultrashort TE (UTE) sequences have the capability to image tissues with very short T2s that typicall...
The human body contains a variety of tissue species with short T2 ranging from a few microseconds to...
MRI biomarkers such as T2 , T2 * and T1rho have been widely used, but are confounded by the magic an...
Ultra-short echo time (UTE) imaging has shown promise as a technique for imaging tis-sues with T2 va...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...
The background underpinning the clinical use of ultrashort echo time, SPRITE and other pulse sequenc...
Ultrashort echo time (UTE) sequences represent a group of clinically compatible techniques that are ...
PurposeTo demonstrate the feasibility of a new method for measuring T1 of short T2 species based on ...
The background underpinning the clinical use of ultrashort echo-time (UTE) pulse sequences for imagi...
Ultrashort echo time (UTE) techniques enable direct imaging of musculoskeletal tissues with short T2...
Ultrashort echo time (UTE) imaging has shown promise as a technique for imaging tissues with T2 valu...
PurposeTo investigate high contrast imaging of short T2 tissues with a three-dimensional double adia...
The human body contains a variety of tissue species with short T2 ranging from a few microseconds to...
It is now possible to detect signals from tissues and tissue components with short T2s, such as cort...
Tissues, such as bone, tendon, and ligaments, contain a high fraction of components with "short" and...
Ultrashort TE (UTE) sequences have the capability to image tissues with very short T2s that typicall...
The human body contains a variety of tissue species with short T2 ranging from a few microseconds to...
MRI biomarkers such as T2 , T2 * and T1rho have been widely used, but are confounded by the magic an...
Ultra-short echo time (UTE) imaging has shown promise as a technique for imaging tis-sues with T2 va...
PurposeTo accelerate the quantitative ultrashort echo time imaging using a time-efficient 3D multisp...