Recent developments in highly accelerated fMRI data acquisition have employed low-rank and/or sparsity constraints for image reconstruction, as an alternative to conventional, time-independent parallel imaging. When under-sampling factors are high or the signals of interest are low-variance, however, functional data recovery can be poor or incomplete. We introduce a method for improving reconstruction fidelity using external constraints, like an experimental design matrix, to partially orient the estimated fMRI temporal subspace. Combining these external constraints with low-rank constraints introduces a new image reconstruction model that is analogous to using a mixture of subspace-decomposition (PCA/ICA) and regression (GLM) models in fMR...
This study aims to investigate the impact of various denoising algorithms on the quality of visual s...
Functional neuroimaging can measure the brain’s response to an external stimulus. It is used to perf...
In task-based functional magnetic resonance imaging (fMRI), researchers seek to measure fMRI signals...
Acceleration methods in fMRI aim to reconstruct high fidelity images from under-sampled k-space, all...
Functional magnetic resonance imaging (fMRI) is a powerful imaging modality commonly used to study b...
Functional magnetic resonance imaging (fMRI) is a medical imaging technique that measures brain acti...
Purpose In functional MRI (fMRI), faster acquisition via undersampling of data can improve the spati...
We propose a new matrix recovery framework to partition brain activity using time series of resting-...
International audienceStandard methodologies for functional Magnetic Resonance Imaging (fMRI) data a...
Recently, k-t FASTER (fMRI Accelerated in Space-time by means of Truncation of Effective Rank) was i...
Resting-state functional magnetic resonance imaging (R-fMRI) applications can entail a higher tempor...
In functional magnetic resonance imaging, images of the brain are acquired as rapidly as physically ...
Conventional magnetic resonance imaging (MRI) methods are based on the Shannon-Nyquist sampling theo...
The exponential growth of fMRI big data offers researchers an unprecedented opportunity to explore f...
The voxel-wise general linear model (GLM) approach has arguably become the dominant way to analyze f...
This study aims to investigate the impact of various denoising algorithms on the quality of visual s...
Functional neuroimaging can measure the brain’s response to an external stimulus. It is used to perf...
In task-based functional magnetic resonance imaging (fMRI), researchers seek to measure fMRI signals...
Acceleration methods in fMRI aim to reconstruct high fidelity images from under-sampled k-space, all...
Functional magnetic resonance imaging (fMRI) is a powerful imaging modality commonly used to study b...
Functional magnetic resonance imaging (fMRI) is a medical imaging technique that measures brain acti...
Purpose In functional MRI (fMRI), faster acquisition via undersampling of data can improve the spati...
We propose a new matrix recovery framework to partition brain activity using time series of resting-...
International audienceStandard methodologies for functional Magnetic Resonance Imaging (fMRI) data a...
Recently, k-t FASTER (fMRI Accelerated in Space-time by means of Truncation of Effective Rank) was i...
Resting-state functional magnetic resonance imaging (R-fMRI) applications can entail a higher tempor...
In functional magnetic resonance imaging, images of the brain are acquired as rapidly as physically ...
Conventional magnetic resonance imaging (MRI) methods are based on the Shannon-Nyquist sampling theo...
The exponential growth of fMRI big data offers researchers an unprecedented opportunity to explore f...
The voxel-wise general linear model (GLM) approach has arguably become the dominant way to analyze f...
This study aims to investigate the impact of various denoising algorithms on the quality of visual s...
Functional neuroimaging can measure the brain’s response to an external stimulus. It is used to perf...
In task-based functional magnetic resonance imaging (fMRI), researchers seek to measure fMRI signals...