Purpose: To develop new techniques for reducing the effects of microscopic and macroscopic patient motion in diffusion imaging acquired with high-resolution multishot echo-planar imaging. Theory: The previously reported multiplexed sensitivity encoding (MUSE) algorithm is extended to account for macroscopic pixel misregistrations, as well as motion-induced phase errors in a technique called augmented MUSE (AMUSE). Furthermore, to obtain more accurate quantitative diffusion-tensor imaging measures in the presence of subject motion, we also account for the altered diffusion encoding among shots arising from macroscopic motion. Methods: MUSE and AMUSE were evaluated on simulated and in vivo motion-corrupted multishot diffusion data. Evaluation...
Motion sensitivity in diffusion-weighted imaging (DWI) can be effectively suppressed using single-sh...
PURPOSE: Head motion is a significant problem in diffusion-weighted imaging as it may cause signal a...
Diffusion-weighted, single-shot EPI suffers from considerable susceptibility-based distortion artefa...
Diffusion weighted magnetic resonance imaging (DWI) data have been mostly acquired with single-shot ...
<p>Diffusion-weighted MRI (DWI) is an essential tool in clinical applications such as detecting isch...
Purpose To introduce a novel imaging and parameter estimation framework for accurate multi-shot diff...
Purpose To improve the robustness of diffusion-weighted imaging (DWI) data acquired with segmented s...
Purpose We report a series of techniques to reliably eliminate artifacts in interleaved echo-planar ...
Purpose: To introduce a new method for motion-insensitive 3D multishot diffusion imaging using 3D sp...
Purpose: A phase correction method for high-resolution multi-shot (MSH) diffusion weighted imaging (...
Diffusion-weighted MRI (DWI) is an essential tool in clinical applications such as detecting ischemi...
Single‐shot echo‐planar imaging (EPI) is well established as the method of choice for clinical, diff...
Diffusion-weighting in magnetic resonance imaging (MRI) increases the sensitivity to molecular Brown...
This review article describes the effect of bulk motion on diffusion-weighted imaging experiments, a...
Diffusion MRI (dMRI) is typically performed using single-shot Echo Planar Imaging (ssEPI). However, ...
Motion sensitivity in diffusion-weighted imaging (DWI) can be effectively suppressed using single-sh...
PURPOSE: Head motion is a significant problem in diffusion-weighted imaging as it may cause signal a...
Diffusion-weighted, single-shot EPI suffers from considerable susceptibility-based distortion artefa...
Diffusion weighted magnetic resonance imaging (DWI) data have been mostly acquired with single-shot ...
<p>Diffusion-weighted MRI (DWI) is an essential tool in clinical applications such as detecting isch...
Purpose To introduce a novel imaging and parameter estimation framework for accurate multi-shot diff...
Purpose To improve the robustness of diffusion-weighted imaging (DWI) data acquired with segmented s...
Purpose We report a series of techniques to reliably eliminate artifacts in interleaved echo-planar ...
Purpose: To introduce a new method for motion-insensitive 3D multishot diffusion imaging using 3D sp...
Purpose: A phase correction method for high-resolution multi-shot (MSH) diffusion weighted imaging (...
Diffusion-weighted MRI (DWI) is an essential tool in clinical applications such as detecting ischemi...
Single‐shot echo‐planar imaging (EPI) is well established as the method of choice for clinical, diff...
Diffusion-weighting in magnetic resonance imaging (MRI) increases the sensitivity to molecular Brown...
This review article describes the effect of bulk motion on diffusion-weighted imaging experiments, a...
Diffusion MRI (dMRI) is typically performed using single-shot Echo Planar Imaging (ssEPI). However, ...
Motion sensitivity in diffusion-weighted imaging (DWI) can be effectively suppressed using single-sh...
PURPOSE: Head motion is a significant problem in diffusion-weighted imaging as it may cause signal a...
Diffusion-weighted, single-shot EPI suffers from considerable susceptibility-based distortion artefa...