Three-dimensional segmented echo planar imaging (3D-EPI) is a promising approach for high-resolution functional magnetic resonance imaging, as it provides an increased signal-to-noise ratio (SNR) at similar temporal resolution to traditional multislice 2D-EPI readouts. Recently, the 3D-EPI technique has become more frequently used and it is important to better understand its implications for fMRI. In this study, the temporal SNR characteristics of 3D-EPI with varying numbers of segments are studied. It is shown that, in humans, the temporal variance increases with the number of segments used to form the EPI acquisition and that for segmented acquisitions, the maximum available temporal SNR is reduced compared to single shot acquisitions. Th...
In this work, we combine three-dimensional echo planar imaging (3D-EPI) with controlled aliasing to ...
We compared the sensitivity of standard single-shot 2D echo planar imaging (EPI) to three advanced E...
We compared the sensitivity of standard single-shot 2D echo planar imaging (EPI) to three advanced E...
Three-dimensional segmented echo planar imaging (3D-EPI) is a promising approach for high-resolution...
PURPOSE: To introduce a new k-space traversal strategy for segmented three-dimensional echo planar i...
PURPOSE: To introduce a new k-space traversal strategy for segmented three-dimensional echo planar i...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
High-resolution functional MRI (fMRI) offers unique possibilities for studying human functional neur...
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...
Echo planar imaging (EPI) is an MRI technique of particular value to neuroscience, with its use for ...
Segmented three-dimensional echo planar imaging (3D-EPI) provides higher image signal-to-noise ratio...
In this work, we combine three-dimensional echo planar imaging (3D-EPI) with controlled aliasing to ...
We compared the sensitivity of standard single-shot 2D echo planar imaging (EPI) to three advanced E...
We compared the sensitivity of standard single-shot 2D echo planar imaging (EPI) to three advanced E...
Three-dimensional segmented echo planar imaging (3D-EPI) is a promising approach for high-resolution...
PURPOSE: To introduce a new k-space traversal strategy for segmented three-dimensional echo planar i...
PURPOSE: To introduce a new k-space traversal strategy for segmented three-dimensional echo planar i...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
Functional MRI (fMRI) most commonly employs 2D echo-planar imaging (EPI). The advantages for fMRI br...
High-resolution functional MRI (fMRI) offers unique possibilities for studying human functional neur...
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...
Echo planar imaging (EPI) is an MRI technique of particular value to neuroscience, with its use for ...
Segmented three-dimensional echo planar imaging (3D-EPI) provides higher image signal-to-noise ratio...
In this work, we combine three-dimensional echo planar imaging (3D-EPI) with controlled aliasing to ...
We compared the sensitivity of standard single-shot 2D echo planar imaging (EPI) to three advanced E...
We compared the sensitivity of standard single-shot 2D echo planar imaging (EPI) to three advanced E...