Purpose: To introduce a new method for motion-insensitive 3D multishot diffusion imaging using 3D spiral-encoded navigators from stimulated echoes (3D-DISPENSE). Methods: The 3D-DISPENSE sequence contains a 3D stack-of-spiral navigator generated between the diffusion preparation and the turbo spin-echo image acquisition from the twin pathway of a stimulated echo. Unlike normal navigator methods, 3D-DISPENSE separates the navigator acquisition from the imaging readout without compromising the image SNR. Phase information from the navigators was included in an iterative image reconstruction algorithm to correct for intershot phase incoherence caused by motion. Results: In a phantom experiment, 3D-DISPENSE correctly estimated deliberately intr...
Navigator echoes provide a means with which to remove motion artifacts from diffusion-weighted image...
We present an acquisition and reconstruction method designed to acquire high resolution 3D fast spin...
Motion during diffusion-weighted imaging (DWI) introduces phase errors that can cause significant ar...
While most diffusion-weighted imaging (DWI) is acquired using single-shot diffusion-weighted spin-ec...
While most diffusion-weighted imaging (DWI) is acquired using single-shot diffusion-weighted spin-ec...
Purpose To improve the robustness of diffusion-weighted imaging (DWI) data acquired with segmented s...
Purpose: Diffusion weighted imaging (DWI) is commonly limited by low signal-to-noise ratio (SNR) as ...
Purpose The purpose of this work was to improve the quality of single-shot spiral MRI and demonstrat...
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...
Difficulties in obtaining diffusion‐weighted images of acceptable quality using conventional hardwar...
Purpose: To develop new techniques for reducing the effects of microscopic and macroscopic patient m...
A novel MRI method, DIFRAD-FSE (D̲i̲f̲fusion with R̲adial A̲cquisition of D̲ata with F̲ast S̲pin-E̲c...
Diffusion-weighted MRI (DWI) is an essential tool in clinical applications such as detecting ischemi...
Diffusion Weighted Imaging (DWI) has become a valuable tool for imaging tissue microstructure, findi...
Navigator echoes provide a means with which to remove motion artifacts from diffusion-weighted image...
We present an acquisition and reconstruction method designed to acquire high resolution 3D fast spin...
Motion during diffusion-weighted imaging (DWI) introduces phase errors that can cause significant ar...
While most diffusion-weighted imaging (DWI) is acquired using single-shot diffusion-weighted spin-ec...
While most diffusion-weighted imaging (DWI) is acquired using single-shot diffusion-weighted spin-ec...
Purpose To improve the robustness of diffusion-weighted imaging (DWI) data acquired with segmented s...
Purpose: Diffusion weighted imaging (DWI) is commonly limited by low signal-to-noise ratio (SNR) as ...
Purpose The purpose of this work was to improve the quality of single-shot spiral MRI and demonstrat...
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...
Difficulties in obtaining diffusion‐weighted images of acceptable quality using conventional hardwar...
Purpose: To develop new techniques for reducing the effects of microscopic and macroscopic patient m...
A novel MRI method, DIFRAD-FSE (D̲i̲f̲fusion with R̲adial A̲cquisition of D̲ata with F̲ast S̲pin-E̲c...
Diffusion-weighted MRI (DWI) is an essential tool in clinical applications such as detecting ischemi...
Diffusion Weighted Imaging (DWI) has become a valuable tool for imaging tissue microstructure, findi...
Navigator echoes provide a means with which to remove motion artifacts from diffusion-weighted image...
We present an acquisition and reconstruction method designed to acquire high resolution 3D fast spin...
Motion during diffusion-weighted imaging (DWI) introduces phase errors that can cause significant ar...