The combination of magnitude and phase information inherent in Susceptibility-Weighted Imaging (SWI) greatly benefits from high-resolution MRI acquisitions. The application of a denoising filter to produce SWI images with higher signal-tonoise ratio (SNR) while preserving small structures from excessive blurring is therefore extremely desirable, but non-trivial, as the distribution of magnitude and phase noise may introduce biases during image restoration. Here we present a new dedicated noise removal algorithm based on the Non-Local Means (NLM) filter and compare its results with the original SWI and “standard” NLM-denoised human brain images. Both the visual assessment by two expert readers and the quantitative evaluation of the contrast ...
International audiencePURPOSE: To adapt the so-called nonlocal means filter to deal with magnetic re...
Noise artifacts in magnetic resonance (MR) images increase the complexity of image processing workfl...
In the context of medical image processing, denoising is widely considered as one of most fundamenta...
The combination of magnitude and phase information inherent in Susceptibility-Weighted Imaging (SWI)...
In susceptibility-weighted imaging (SWI), the high resolution required to obtain a proper contrast g...
<div><p>In susceptibility-weighted imaging (SWI), the high resolution required to obtain a proper co...
In susceptibility-weighted imaging (SWI), the high resolution required to obtain a proper contrast g...
Magnetic resonance imaging (MRI) is a medical imaging modality commonly used by radiologists to view...
Magnetic resonance imaging (MRI) is a principal modality of modern medical imaging, which provides a...
Purpose To develop an image noise filter suitable for MRI in real time (acquisition and display), wh...
The random noise arising from the acquisition process of magnetic resonance images negatively influe...
International audienceDiffusion-Weighted MRI (DW-MRI) is subject to random noise yielding measures t...
Abstract. Diffusion-Weighted MRI (DW-MRI) is subject to random noise yielding measures that are diff...
International audienceDiffusion tensor imaging (DT-MRI) is very sensitive to corrupting noise due to...
International audiencePURPOSE: To adapt the so-called nonlocal means filter to deal with magnetic re...
Noise artifacts in magnetic resonance (MR) images increase the complexity of image processing workfl...
In the context of medical image processing, denoising is widely considered as one of most fundamenta...
The combination of magnitude and phase information inherent in Susceptibility-Weighted Imaging (SWI)...
In susceptibility-weighted imaging (SWI), the high resolution required to obtain a proper contrast g...
<div><p>In susceptibility-weighted imaging (SWI), the high resolution required to obtain a proper co...
In susceptibility-weighted imaging (SWI), the high resolution required to obtain a proper contrast g...
Magnetic resonance imaging (MRI) is a medical imaging modality commonly used by radiologists to view...
Magnetic resonance imaging (MRI) is a principal modality of modern medical imaging, which provides a...
Purpose To develop an image noise filter suitable for MRI in real time (acquisition and display), wh...
The random noise arising from the acquisition process of magnetic resonance images negatively influe...
International audienceDiffusion-Weighted MRI (DW-MRI) is subject to random noise yielding measures t...
Abstract. Diffusion-Weighted MRI (DW-MRI) is subject to random noise yielding measures that are diff...
International audienceDiffusion tensor imaging (DT-MRI) is very sensitive to corrupting noise due to...
International audiencePURPOSE: To adapt the so-called nonlocal means filter to deal with magnetic re...
Noise artifacts in magnetic resonance (MR) images increase the complexity of image processing workfl...
In the context of medical image processing, denoising is widely considered as one of most fundamenta...