Purpose Turbo spin echo (TSE) imaging reduces imaging time by acquiring multiple echoes per repetition (TR), requiring fewer TRs. O-space can also require fewer TRs by using a combination of nonlinear magnetic gradient fields and surface coil arrays. Although to date, O-space has only been demonstrated for gradient echo imaging, it is valuable to combine these two techniques. However, collecting multiple O-space echoes per TR is difficult because of the different local k-space trajectories and variable T2-weighting. Theory and Methods A practical scheme is demonstrated to combine the benefits of TSE and O-space for highly accelerated T2-weighted images. The scheme uses a modified acquisition order and filtered projection reconstructi...
In fMRI applications, it is needed to acquire T2*-weighted single-shot images with high resolution. ...
Objectives For turbo spin echo (TSE) sequences to be useful at ultra-high field, they should idea...
Purpose: Specific absorption rate is a serious problem at high field strengths, especially for seque...
Purpose Turbo spin echo (TSE) imaging reduces imaging time by acquiring multiple echoes per repet...
Turbo Spin Echo (TSE) is a method of acquiring the echoes of a Cartesian readout in a T2-weighted ec...
Turbo Spin Echo (TSE) is a sequence of choice for obtaining T2-weighted images. TSE reduces acquisit...
Purpose To optimize the spatial response function (SRF) while maintaining optimal signal to noise ra...
Objectives: For turbo spin echo (TSE) sequences to be useful at ultra-high field, they should ideall...
Purpose: To design a pulse sequence for efficient 3D T2-weighted imaging and T2 mapping. Methods: A ...
PurposeA new acquisition and reconstruction method called T2 Shuffling is presented for volumetric f...
Purpose: Multi-echo spin-echo sequence is commonly used for T2 mapping. The estimated values using c...
At many institutions, turbo spin-echo se-quences have replaced conventional spin-echo sequences in r...
Magnetic Resonance Imaging techniques such as Turbo Spin Echo (TSE) are routinely used in the clinic...
A model-based reconstruction technique for accelerated T2 mapping with improved accuracy is proposed...
In fMRI applications, it is needed to acquire T2*-weighted single-shot images with high resolution. ...
Objectives For turbo spin echo (TSE) sequences to be useful at ultra-high field, they should idea...
Purpose: Specific absorption rate is a serious problem at high field strengths, especially for seque...
Purpose Turbo spin echo (TSE) imaging reduces imaging time by acquiring multiple echoes per repet...
Turbo Spin Echo (TSE) is a method of acquiring the echoes of a Cartesian readout in a T2-weighted ec...
Turbo Spin Echo (TSE) is a sequence of choice for obtaining T2-weighted images. TSE reduces acquisit...
Purpose To optimize the spatial response function (SRF) while maintaining optimal signal to noise ra...
Objectives: For turbo spin echo (TSE) sequences to be useful at ultra-high field, they should ideall...
Purpose: To design a pulse sequence for efficient 3D T2-weighted imaging and T2 mapping. Methods: A ...
PurposeA new acquisition and reconstruction method called T2 Shuffling is presented for volumetric f...
Purpose: Multi-echo spin-echo sequence is commonly used for T2 mapping. The estimated values using c...
At many institutions, turbo spin-echo se-quences have replaced conventional spin-echo sequences in r...
Magnetic Resonance Imaging techniques such as Turbo Spin Echo (TSE) are routinely used in the clinic...
A model-based reconstruction technique for accelerated T2 mapping with improved accuracy is proposed...
In fMRI applications, it is needed to acquire T2*-weighted single-shot images with high resolution. ...
Objectives For turbo spin echo (TSE) sequences to be useful at ultra-high field, they should idea...
Purpose: Specific absorption rate is a serious problem at high field strengths, especially for seque...