Three-dimensional (3D) encoding methods are increasingly being explored as alternatives to two-dimensional (2D) multi-slice acquisitions in fMRI, particularly in cases where high isotropic resolution is needed. 3D multi-shot EPI acquisition, as the workhorse of 3D fMRI imaging, is susceptible to physiological fluctuations which can induce inter-shot phase variations, and thus reducing the achievable tSNR, negating some of the benefit of 3D encoding. This issue can be particularly problematic at ultra-high fields like 7T, which have more severe off-resonance effects. In this work, we aim to improve the temporal stability of 3D multi-shot EPI at 7T by improving its robustness to inter-shot phase variations. We presented a 3D segmented CAIPI s...
Efficient GRAPPA or SENSE reconstruction is largely dependent on coil geometry in the direction in w...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
Purpose: We investigate the use of TURBINE, a 3D radial-Cartesian acquisition scheme in which EPI pl...
This dataset includes the k-space data of two 2D sagittal slices from the conventional and seg-CAIPI...
Three-dimensional segmented echo planar imaging (3D-EPI) is a promising approach for high-resolution...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
Introduction: Fast, three-dimensional acquisition is advantageous for fMRI1. While advanced 3D metho...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
PURPOSE: This work aims to develop a novel distortion-free 3D-EPI acquisition and image reconstructi...
Magnetic resonance imaging (MRI) has inherently slow acquisition speed, and Echo-Planar Imaging (EPI...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
In the tendency towards high-field imaging, three-dimensional (3D) acquisition has potential advanta...
Purpose: EPI with blip-up/down acquisition (BUDA) can provide high-quality images with minimal disto...
Purpose: Quantitative multi-parameter mapping (MPM) has been shown to provide good longitudinal and...
The spatio-temporal noise properties fundamentally influence the functional result in fMRI. Although...
Efficient GRAPPA or SENSE reconstruction is largely dependent on coil geometry in the direction in w...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
Purpose: We investigate the use of TURBINE, a 3D radial-Cartesian acquisition scheme in which EPI pl...
This dataset includes the k-space data of two 2D sagittal slices from the conventional and seg-CAIPI...
Three-dimensional segmented echo planar imaging (3D-EPI) is a promising approach for high-resolution...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
Introduction: Fast, three-dimensional acquisition is advantageous for fMRI1. While advanced 3D metho...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
PURPOSE: This work aims to develop a novel distortion-free 3D-EPI acquisition and image reconstructi...
Magnetic resonance imaging (MRI) has inherently slow acquisition speed, and Echo-Planar Imaging (EPI...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
In the tendency towards high-field imaging, three-dimensional (3D) acquisition has potential advanta...
Purpose: EPI with blip-up/down acquisition (BUDA) can provide high-quality images with minimal disto...
Purpose: Quantitative multi-parameter mapping (MPM) has been shown to provide good longitudinal and...
The spatio-temporal noise properties fundamentally influence the functional result in fMRI. Although...
Efficient GRAPPA or SENSE reconstruction is largely dependent on coil geometry in the direction in w...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
Purpose: We investigate the use of TURBINE, a 3D radial-Cartesian acquisition scheme in which EPI pl...