Diffusion magnetic resonance imaging (dMRI) is an important technique used in neuroimaging. It features a relatively low signal-to-noise ratio (SNR) which poses a challenge, especially at stronger diffusion weighting. A common solution to the resulting poor precision is to average signal from multiple identical measurements. Indeed, averaging the magnitude signal is sufficient if the noise is sampled from a distribution with zero mean value. However, at low SNR, the magnitude signal is increased by the rectified noise floor, such that the accuracy can only be maintained if averaging is performed on the complex signal. Averaging of the complex signal is straightforward in the non-diffusion-weighted images, however, in the presence of diffusi...
Magnetic resonance images tend to be influenced by various random factors usually referred to as "no...
Over the past several years, significant efforts have been made to improve the spatial resolution of...
International audienceThe non-Gaussian noise distribution in magnitude Diffusion-Weighted Images (DW...
Phase correction (PC) is a preprocessing technique that exploits the phase of images acquired in Mag...
Diffusion-weighted imaging (DWI) suffers from low SNR when compared to regular MRI images. To attain...
This project aims to characterize the impact of underlying noise distributions on diffusion-weighted...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
Diffusion magnetic resonance imaging (MRI) datasets suffer from low Signal-to-Noise Ratio (SNR), esp...
Diffusion Weighted Images datasets with high spatial resolution and strong diffusion weighting are o...
We introduce and evaluate a post-processing technique for fast denoising of diffusion-weighted MR im...
International audienceDiffusion magnetic resonance imaging (MRI) datasets suffer from low Signal-to-...
PurposeTo improve signal-to-noise ratio for diffusion-weighted magnetic resonance images.MethodsA ne...
International audienceThe non-Gaussian noise distribution, e.g. Rician, in magnitude Diffusion-Weigh...
Over the past several years, significant efforts have been made to improve the spatial resolution of...
Diffusion Tensor Imaging (DTI) is a magnetic resonance technique which enables the in vivo visualisa...
Magnetic resonance images tend to be influenced by various random factors usually referred to as "no...
Over the past several years, significant efforts have been made to improve the spatial resolution of...
International audienceThe non-Gaussian noise distribution in magnitude Diffusion-Weighted Images (DW...
Phase correction (PC) is a preprocessing technique that exploits the phase of images acquired in Mag...
Diffusion-weighted imaging (DWI) suffers from low SNR when compared to regular MRI images. To attain...
This project aims to characterize the impact of underlying noise distributions on diffusion-weighted...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
Diffusion magnetic resonance imaging (MRI) datasets suffer from low Signal-to-Noise Ratio (SNR), esp...
Diffusion Weighted Images datasets with high spatial resolution and strong diffusion weighting are o...
We introduce and evaluate a post-processing technique for fast denoising of diffusion-weighted MR im...
International audienceDiffusion magnetic resonance imaging (MRI) datasets suffer from low Signal-to-...
PurposeTo improve signal-to-noise ratio for diffusion-weighted magnetic resonance images.MethodsA ne...
International audienceThe non-Gaussian noise distribution, e.g. Rician, in magnitude Diffusion-Weigh...
Over the past several years, significant efforts have been made to improve the spatial resolution of...
Diffusion Tensor Imaging (DTI) is a magnetic resonance technique which enables the in vivo visualisa...
Magnetic resonance images tend to be influenced by various random factors usually referred to as "no...
Over the past several years, significant efforts have been made to improve the spatial resolution of...
International audienceThe non-Gaussian noise distribution in magnitude Diffusion-Weighted Images (DW...