Cross-scanner and cross-protocol variability of diffusion magnetic resonance imaging (dMRI) data are known to be major obstacles in multi-site clinical studies since they limit the ability to aggregate dMRI data and derived measures. Computational algorithms that harmonize the data and minimize such variability are critical to reliably combine datasets acquired from different scanners and/or protocols, thus improving the statistical power and sensitivity of multi-site studies. Different computational approaches have been proposed to harmonize diffusion MRI data or remove scanner-specific differences. To date, these methods have mostly been developed for or evaluated on single b-value diffusion MRI data. In this work, we present the evaluati...
White matter changes are increasingly implicated in neurological disease progression, and diffusion ...
Diffusion magnetic resonance imaging (dMRI) is developing into one of the most important non-invasiv...
Purpose In the present work, we describe the correction of diffusion‐weighted MRI for site and sc...
Cross-scanner and cross-protocol variability of diffusion magnetic resonance imaging (dMRI) data are...
Cross-scanner and cross-protocol variability of diffusion magnetic resonance imaging (dMRI) data are...
Diffusion MRI is being used increasingly in studies of the brain and other parts of the body for its...
We propose a novel method to harmonize diffusion MRI data acquired from multiple sites and scanners,...
Diffusion MRI is being used increasingly in studies of the brain and other parts of the body for its...
Quantification methods based on the acquisition of diffusion magnetic resonance imaging (dMRI) with ...
We propose a novel method to harmonize diffusion MRI data acquired from multiple sites and scanners,...
We present a comparison of five different methods that estimate mappings between scanners for diffus...
We present a summary of competition results in the multi-shell diffusion MRI harmonisation and enhan...
We present a summary of competition results in the multi-shell diffusion MRI harmonisation and enhan...
We present a summary of competition results in the multi-shell diffusion MRI harmonisation and enhan...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
White matter changes are increasingly implicated in neurological disease progression, and diffusion ...
Diffusion magnetic resonance imaging (dMRI) is developing into one of the most important non-invasiv...
Purpose In the present work, we describe the correction of diffusion‐weighted MRI for site and sc...
Cross-scanner and cross-protocol variability of diffusion magnetic resonance imaging (dMRI) data are...
Cross-scanner and cross-protocol variability of diffusion magnetic resonance imaging (dMRI) data are...
Diffusion MRI is being used increasingly in studies of the brain and other parts of the body for its...
We propose a novel method to harmonize diffusion MRI data acquired from multiple sites and scanners,...
Diffusion MRI is being used increasingly in studies of the brain and other parts of the body for its...
Quantification methods based on the acquisition of diffusion magnetic resonance imaging (dMRI) with ...
We propose a novel method to harmonize diffusion MRI data acquired from multiple sites and scanners,...
We present a comparison of five different methods that estimate mappings between scanners for diffus...
We present a summary of competition results in the multi-shell diffusion MRI harmonisation and enhan...
We present a summary of competition results in the multi-shell diffusion MRI harmonisation and enhan...
We present a summary of competition results in the multi-shell diffusion MRI harmonisation and enhan...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
White matter changes are increasingly implicated in neurological disease progression, and diffusion ...
Diffusion magnetic resonance imaging (dMRI) is developing into one of the most important non-invasiv...
Purpose In the present work, we describe the correction of diffusion‐weighted MRI for site and sc...