The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in which a precise alignment of images from different time points is required to allow reliable quantification of brain activation throughout the scan. Especially the long measurement times and laborious fMRI tasks add to the amount of subject motion found in typical fMRI measurements, even when head restraints are used. In case of moving subjects, prospective motion correction can maintain the relationship between spatial image information and subject anatomy by constantly adapting the image slice positioning to follow the subject in real time. Image-based prospective motion correction is well-established in fMRI studies and typically computes...
We evaluated the performance of an optical camera based prospective motion correction (PMC) system i...
We evaluated the performance of an optical camera based prospective motion correction (PMC) system i...
Head motion limits the accuracy, specificity and sensitivity of fMRI. Rigid body registration of fMR...
The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in...
An automated retrospective image registration based on mutual information is adapted to a multislice...
An automated retrospective image registration based on mutual information is adapted to a multislice...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
Head motion artifacts are major confounds that limit use of functional magnetic resonance imaging (f...
The sensitivity to subject motion is one of the major reasons of image quality degradation in magnet...
The sensitivity to subject motion is one of the major reasons of image quality degradation in magnet...
The sensitivity to subject motion is one of the major reasons of image quality degradation in magnet...
The need for motion correction in functional MRI (fMRI) time series has been well recognised. This c...
Subject motion is known to produce spurious covariance among time-series in functional connectivity ...
Subject motion is known to produce spurious covariance among time-series in functional connectivity ...
We evaluated the performance of an optical camera based prospective motion correction (PMC) system i...
We evaluated the performance of an optical camera based prospective motion correction (PMC) system i...
Head motion limits the accuracy, specificity and sensitivity of fMRI. Rigid body registration of fMR...
The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in...
An automated retrospective image registration based on mutual information is adapted to a multislice...
An automated retrospective image registration based on mutual information is adapted to a multislice...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
Head motion artifacts are major confounds that limit use of functional magnetic resonance imaging (f...
The sensitivity to subject motion is one of the major reasons of image quality degradation in magnet...
The sensitivity to subject motion is one of the major reasons of image quality degradation in magnet...
The sensitivity to subject motion is one of the major reasons of image quality degradation in magnet...
The need for motion correction in functional MRI (fMRI) time series has been well recognised. This c...
Subject motion is known to produce spurious covariance among time-series in functional connectivity ...
Subject motion is known to produce spurious covariance among time-series in functional connectivity ...
We evaluated the performance of an optical camera based prospective motion correction (PMC) system i...
We evaluated the performance of an optical camera based prospective motion correction (PMC) system i...
Head motion limits the accuracy, specificity and sensitivity of fMRI. Rigid body registration of fMR...