Free induction decay (FID) navigators were found to qualitatively detect rigid-body head movements, yet it is unknown to what extent they can provide quantitative motion estimates. Here, we acquired FID navigators at different sampling rates and simultaneously measured head movements using a highly accurate optical motion tracking system. This strategy allowed us to estimate the accuracy and precision of FID navigators for quantification of rigid-body head movements. Five subjects were scanned with a 32-channel head coil array on a clinical 3T MR scanner during several resting and guided head movement periods. For each subject we trained a linear regression model based on FID navigator and optical motion tracking signals. FID-based motion m...
Image quality is degraded by involuntary movement of the subject in an MRI scanner. It is fairly cha...
Diffusion-weighting in magnetic resonance imaging (MRI) increases the sensitivity to molecular Brown...
PURPOSE: To develop a novel approach for head motion and B0 field monitoring based on tracking discr...
Free induction decay (FID) navigators were found to qualitatively detect rigid-body head movements, ...
To develop a novel framework for rapid, intrinsic head motion measurement in MRI using FID navigator...
Purpose: To develop a novel framework for rapid, intrinsic head motion measurement in MRI using FID ...
We suggest a motion correction concept that employs free-induction-decay (FID) navigator signals to ...
This work explores a concept for motion detection in brain MR examinations using high channel-count ...
PURPOSE: We suggest a motion correction concept that employs free-induction-decay (FID) navigator si...
Purpose To develop a framework for prospective free-induction decay (FID)-based navigator gating for...
In this work, we propose a method for prospective motion correction in MRI using a novel image navig...
PurposeTo develop a framework for prospective free-induction decay (FID)-based navigator gating for ...
Magnetic resonance imaging (MRI) is highly susceptible to subject's motion and can significantly deg...
Patient motion remains a significant problem in many magnetic resonance (MR) imaging (MRI) applicati...
Magnetic Resonance Imaging (MRI) is a technique for imaging the soft tissues of the human body. Rese...
Image quality is degraded by involuntary movement of the subject in an MRI scanner. It is fairly cha...
Diffusion-weighting in magnetic resonance imaging (MRI) increases the sensitivity to molecular Brown...
PURPOSE: To develop a novel approach for head motion and B0 field monitoring based on tracking discr...
Free induction decay (FID) navigators were found to qualitatively detect rigid-body head movements, ...
To develop a novel framework for rapid, intrinsic head motion measurement in MRI using FID navigator...
Purpose: To develop a novel framework for rapid, intrinsic head motion measurement in MRI using FID ...
We suggest a motion correction concept that employs free-induction-decay (FID) navigator signals to ...
This work explores a concept for motion detection in brain MR examinations using high channel-count ...
PURPOSE: We suggest a motion correction concept that employs free-induction-decay (FID) navigator si...
Purpose To develop a framework for prospective free-induction decay (FID)-based navigator gating for...
In this work, we propose a method for prospective motion correction in MRI using a novel image navig...
PurposeTo develop a framework for prospective free-induction decay (FID)-based navigator gating for ...
Magnetic resonance imaging (MRI) is highly susceptible to subject's motion and can significantly deg...
Patient motion remains a significant problem in many magnetic resonance (MR) imaging (MRI) applicati...
Magnetic Resonance Imaging (MRI) is a technique for imaging the soft tissues of the human body. Rese...
Image quality is degraded by involuntary movement of the subject in an MRI scanner. It is fairly cha...
Diffusion-weighting in magnetic resonance imaging (MRI) increases the sensitivity to molecular Brown...
PURPOSE: To develop a novel approach for head motion and B0 field monitoring based on tracking discr...