Purpose: The purpose of this study was to develop a spiral-based combined spin- and gradient-echo (spiral-SAGE) method for simultaneous dynamic contrast-enhanced (DCE-MRI) and dynamic susceptibility contrast MRI (DSC-MRI). Methods: Using this sequence, we obtained gradient-echo TEs of 1.69 and 26 ms, a SE TE of 87.72 ms, with a TR of 1663 ms. Using an iterative SENSE reconstruction followed by deblurring, spiral-induced image artifacts were minimized. Healthy volunteer images are shown to demonstrate image quality using the optimized reconstruction, as well as for comparison with EPI-based SAGE. A bioreactor phantom was used to compare dynamic-contrast time courses with both spiral-SAGE and EPI-SAGE. A proof-of-concept cohort of patients wi...
ObjectivesTo apply the MB (multiband) excitation and blipped-CAIPI (blipped-controlled aliasing in p...
BACKGROUND AND PURPOSE: No widespread clinical method provides specific informa-tion about the angio...
Purpose: Brain imaging exams typically take 10-20 min and involve multiple sequential acquisitions. ...
The goal of this study was to optimize and validate a combined spin- and gradient-echo (SAGE) sequen...
The goal of this study was to validate a simplified spin- and gradient-echo (sSAGE) approach to obta...
Purpose In this study, we propose a simplified acquisition and analysis approach for spin and gradie...
Perfusion-based changes in MR signal intensity can occur in response to the introduction of exogenou...
The magnetization-prepared rapid gradient-echo (MP-RAGE) sequence is well known and widely used for ...
Objectives Pulse sequences with non-Cartesian k-space sampling enable improved imaging in anatomical...
Purpose: To improve slice coverage of gradient echo spin echo (GESE) sequences for dynamic susceptib...
Objectives: To compare a novel 3D spiral gradient echo (GRE) sequence with a conventional 2D cartesi...
OBJECTIVES: To compare a novel 3D spiral gradient echo (GRE) sequence with a conventional 2D cartesi...
Purpose: Brain tumor dynamic susceptibility contrast (DSC) MRI is adversely impacted by T1 and (Form...
ObjectivesTo apply the MB (multiband) excitation and blipped-CAIPI (blipped-controlled aliasing in p...
Purpose: Commonly used diffusion weighted (DW) imaging such as DW spin echo (SE) type echo planar im...
ObjectivesTo apply the MB (multiband) excitation and blipped-CAIPI (blipped-controlled aliasing in p...
BACKGROUND AND PURPOSE: No widespread clinical method provides specific informa-tion about the angio...
Purpose: Brain imaging exams typically take 10-20 min and involve multiple sequential acquisitions. ...
The goal of this study was to optimize and validate a combined spin- and gradient-echo (SAGE) sequen...
The goal of this study was to validate a simplified spin- and gradient-echo (sSAGE) approach to obta...
Purpose In this study, we propose a simplified acquisition and analysis approach for spin and gradie...
Perfusion-based changes in MR signal intensity can occur in response to the introduction of exogenou...
The magnetization-prepared rapid gradient-echo (MP-RAGE) sequence is well known and widely used for ...
Objectives Pulse sequences with non-Cartesian k-space sampling enable improved imaging in anatomical...
Purpose: To improve slice coverage of gradient echo spin echo (GESE) sequences for dynamic susceptib...
Objectives: To compare a novel 3D spiral gradient echo (GRE) sequence with a conventional 2D cartesi...
OBJECTIVES: To compare a novel 3D spiral gradient echo (GRE) sequence with a conventional 2D cartesi...
Purpose: Brain tumor dynamic susceptibility contrast (DSC) MRI is adversely impacted by T1 and (Form...
ObjectivesTo apply the MB (multiband) excitation and blipped-CAIPI (blipped-controlled aliasing in p...
Purpose: Commonly used diffusion weighted (DW) imaging such as DW spin echo (SE) type echo planar im...
ObjectivesTo apply the MB (multiband) excitation and blipped-CAIPI (blipped-controlled aliasing in p...
BACKGROUND AND PURPOSE: No widespread clinical method provides specific informa-tion about the angio...
Purpose: Brain imaging exams typically take 10-20 min and involve multiple sequential acquisitions. ...