Subject motion is known to produce spurious covariance among time-series in functional connectivity that has been reported to induce distance-dependent spurious correlations. To present a feasibility study for applying the extended Kalman filter (EKF) framework for high temporal resolution motion correction of resting state functional MRI (rs-fMRI) series using each simultaneous multi-slice (SMS) echo planar imaging (EPI) shot as its own navigator. Prospective feasibility study. Three human volunteers. 3T GE DISCOVERY MR750 scanner using a 32-channel head coil. Simultaneous multi-slice rs-fMRI sequence with repetition time (TR)/echo time (TE) = 800/30 ms, and SMS factor 6. Motion estimates were computed using two techniques: a conventional ...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
An automated retrospective image registration based on mutual information is adapted to a multislice...
Purpose: Prospective motion correction reduces artifacts in MRI by correcting for subject motion in ...
Subject motion is known to produce spurious covariance among time-series in functional connectivity ...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in...
The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in...
Due to the confounding effects of head motion artifacts on resting-state functional connectivity (RS...
Functional MRI acquisition is sensitive to subjects' motion that cannot be fully constrained. Theref...
<p>Functional MRI acquisition is sensitive to subjects' motion that cannot be fully constrained. The...
The need for motion correction in functional MRI (fMRI) time series has been well recognised. This c...
Motion correction is an important component in fMRI brain image analysis. Linear registration techni...
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...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
An automated retrospective image registration based on mutual information is adapted to a multislice...
Purpose: Prospective motion correction reduces artifacts in MRI by correcting for subject motion in ...
Subject motion is known to produce spurious covariance among time-series in functional connectivity ...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
Functional magnetic resonance imaging (fMRI) has provided neuroscientists with a powerful tool to no...
The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in...
The sensitivity to subject motion is one of the major challenges in functional MRI (fMRI) studies in...
Due to the confounding effects of head motion artifacts on resting-state functional connectivity (RS...
Functional MRI acquisition is sensitive to subjects' motion that cannot be fully constrained. Theref...
<p>Functional MRI acquisition is sensitive to subjects' motion that cannot be fully constrained. The...
The need for motion correction in functional MRI (fMRI) time series has been well recognised. This c...
Motion correction is an important component in fMRI brain image analysis. Linear registration techni...
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...
This work addresses the distortions in Functional Magnetic Resonance Images (FMRI) caused by subject...
An automated retrospective image registration based on mutual information is adapted to a multislice...
Purpose: Prospective motion correction reduces artifacts in MRI by correcting for subject motion in ...