Diffusion-Weighted MRI (DW-MRI) often suffers from motion-related artifacts in organs that experience physiological motion. Importantly, organ motion during the application of diffusion gradients results in signal losses, which complicate image interpretation and bias quantitative measures. Motion-compensated gradient designs have been proposed, however they typically result in substantially lower b-values or severe concomitant gradient effects. In this work, we develop an approach for design of first- and second-order motion-compensated gradient waveforms based on a b-value maximization formulation including concomitant gradient nulling, and we compare it to existing techniques. The proposed design provides optimized b-values with motion c...
Diffusion MRI is a useful probe of tissue microstructure. The conventional diffusion encoding sequen...
Dynamic MR image recordings (DCE-MRI) of moving organs using bolus injections create two differentty...
AbstractDynamic MR image recordings (DCE-MRI) of moving organs using bolus injections create two dif...
Diffusion-Weighted MRI often suffers from signal attenuation due to long TE, sensitivity to physiolo...
PURPOSE: Diffusion-weighted MRI is sensitive to incoherent tissue motion, which may confound the mea...
Producción CientíficaPurpose: To present a novel Optimized Diffusion-weighting Gradient waveform Des...
Diffusion MRI uses magnetic field gradients to sensitize the signal to the random motion of spins. I...
PurposeThe study aims to develop easy-to-implement concomitant field-compensated gradient waveforms ...
PurposeThe study aims to develop easy-to-implement concomitant field-compensated gradient waveforms ...
Diffusion encoding along multiple spatial directions per signal acquisition can be described in term...
Motion is a major confound in diffusion-weighted imaging (DWI) in the body, and it is a common cause...
Motion is a major confound in diffusion‐weighted imaging (DWI) in the body, and it is a common cause...
PurposeThe study aims to develop easy-to-implement concomitant field-compensated gradient waveforms ...
It has been suggested that, high b-value diffusion weightedMRI improves the sensitivity and specific...
PURPOSE: Head motion is a significant problem in diffusion-weighted imaging as it may cause signal a...
Diffusion MRI is a useful probe of tissue microstructure. The conventional diffusion encoding sequen...
Dynamic MR image recordings (DCE-MRI) of moving organs using bolus injections create two differentty...
AbstractDynamic MR image recordings (DCE-MRI) of moving organs using bolus injections create two dif...
Diffusion-Weighted MRI often suffers from signal attenuation due to long TE, sensitivity to physiolo...
PURPOSE: Diffusion-weighted MRI is sensitive to incoherent tissue motion, which may confound the mea...
Producción CientíficaPurpose: To present a novel Optimized Diffusion-weighting Gradient waveform Des...
Diffusion MRI uses magnetic field gradients to sensitize the signal to the random motion of spins. I...
PurposeThe study aims to develop easy-to-implement concomitant field-compensated gradient waveforms ...
PurposeThe study aims to develop easy-to-implement concomitant field-compensated gradient waveforms ...
Diffusion encoding along multiple spatial directions per signal acquisition can be described in term...
Motion is a major confound in diffusion-weighted imaging (DWI) in the body, and it is a common cause...
Motion is a major confound in diffusion‐weighted imaging (DWI) in the body, and it is a common cause...
PurposeThe study aims to develop easy-to-implement concomitant field-compensated gradient waveforms ...
It has been suggested that, high b-value diffusion weightedMRI improves the sensitivity and specific...
PURPOSE: Head motion is a significant problem in diffusion-weighted imaging as it may cause signal a...
Diffusion MRI is a useful probe of tissue microstructure. The conventional diffusion encoding sequen...
Dynamic MR image recordings (DCE-MRI) of moving organs using bolus injections create two differentty...
AbstractDynamic MR image recordings (DCE-MRI) of moving organs using bolus injections create two dif...