We introduce an algorithm for diffusion weighted magnetic resonance imaging data enhancement based on structural adaptive smoothing in both voxel space and diffusion-gradient space. The method, called POAS, does not refer to a specific model for the data, like the diffusion tensor or higher order models. It works by embedding the measurement space into a space with defined metric, in this case the Lie group of three-dimensional Euclidean motion SE(3). Subsequently, pairwise comparisons of the values of the diffusion weighted signal are used for adaptation. POAS preserves the edges of the observed fine and anisotropic structures. It is designed to reduce noise directly in the diffusion weighted images and consequently also to reduce bias and...
Diffusion Weighted Imaging has become and will certainly continue to be an important tool in medical...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
International audienceAlthough promising for studying the microstructure of in vivo tissues, the per...
We introduce an algorithm for diffusion weighted magnetic resonance imaging data enhancement based o...
AbstractWe present a novel multi-shell position-orientation adaptive smoothing (msPOAS) method for d...
We present a novel multi-shell position-orientation adaptive smoothing (msPOAS) method for diffusion...
We present an implementation of a recently developed noise reduction algorithm for dMRI data, called...
We present an implementation of a recently developed noise reduction algorithm for dMRI data, called...
We present an implementation of a recently developed noise reduction algorithm for dMRI data, called...
In this article we present a noise reduction method (msPOAS) for multi-shell diffusion-weighted magn...
In contrast to commonly used approaches to improve data quality in diffusion weighted imaging, posit...
# The Author(s) 2014. This article is published with open access at Springerlink.com Abstract We pre...
Using modern diffusion weighted magnetic resonance imaging protocols, the orientations of multiple n...
Diffusion weighted imaging has become and will certainly continue to be an important tool in medical...
Diffusion weighted imaging has become and will certainly continue to be an important tool in medical...
Diffusion Weighted Imaging has become and will certainly continue to be an important tool in medical...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
International audienceAlthough promising for studying the microstructure of in vivo tissues, the per...
We introduce an algorithm for diffusion weighted magnetic resonance imaging data enhancement based o...
AbstractWe present a novel multi-shell position-orientation adaptive smoothing (msPOAS) method for d...
We present a novel multi-shell position-orientation adaptive smoothing (msPOAS) method for diffusion...
We present an implementation of a recently developed noise reduction algorithm for dMRI data, called...
We present an implementation of a recently developed noise reduction algorithm for dMRI data, called...
We present an implementation of a recently developed noise reduction algorithm for dMRI data, called...
In this article we present a noise reduction method (msPOAS) for multi-shell diffusion-weighted magn...
In contrast to commonly used approaches to improve data quality in diffusion weighted imaging, posit...
# The Author(s) 2014. This article is published with open access at Springerlink.com Abstract We pre...
Using modern diffusion weighted magnetic resonance imaging protocols, the orientations of multiple n...
Diffusion weighted imaging has become and will certainly continue to be an important tool in medical...
Diffusion weighted imaging has become and will certainly continue to be an important tool in medical...
Diffusion Weighted Imaging has become and will certainly continue to be an important tool in medical...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
International audienceAlthough promising for studying the microstructure of in vivo tissues, the per...