Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the structure of human brain white matter (WM). The results are conventionally reported as maps of the fractional anisotropy (FA), which is a parameter related to microstructural features such as axon density, diameter, and myelination. The interpretation of FA in terms of microstructure becomes ambiguous when there is a distribution of axon orientations within the image voxel. In this paper, we propose a procedure for resolving this ambiguity by determining a new parameter, the microscopic fractional anisotropy (μFA), which corresponds to the FA without the confounding influence of orientation dispersion. In addition, we suggest a method for measuring...
This paper introduces neurite orientation dispersion and density imaging (NODDI), a practical diffus...
International audienceThis paper describes a new NMR imaging modality--MR diffusion tensor imaging. ...
This paper describes a new NMR imaging modality--MR diffusion tensor imaging. It consists of estimat...
Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the struct...
The anisotropy of water diffusion in brain tissue is affected by both disease and development. This ...
The anisotropy of water diffusion in brain tissue is affected by both disease and development. This ...
Complex materials are ubiquitous in science, engineering and nature. One important parameter for cha...
AbstractThe anisotropy of water diffusion in brain tissue is affected by both disease and developmen...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Anisotropic diffusion in the nervous system is most commonly modeled by apparent diffusion tensor, w...
Purpose The gradient‐echo MR signal in brain white matter depends on the orientation of the fibers w...
This paper introduces neurite orientation dispersion and density imaging (NODDI), a practical diffus...
Axon diameter mpl clin tropy in human brain tissue. The microstructural information measured using m...
This paper introduces neurite orientation dispersion and density imaging (NODDI), a practical diffus...
International audienceThis paper describes a new NMR imaging modality--MR diffusion tensor imaging. ...
This paper describes a new NMR imaging modality--MR diffusion tensor imaging. It consists of estimat...
Diffusion tensor imaging (DTI) is the method of choice for non-invasive investigations of the struct...
The anisotropy of water diffusion in brain tissue is affected by both disease and development. This ...
The anisotropy of water diffusion in brain tissue is affected by both disease and development. This ...
Complex materials are ubiquitous in science, engineering and nature. One important parameter for cha...
AbstractThe anisotropy of water diffusion in brain tissue is affected by both disease and developmen...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Microscopic diffusion anisotropy imaging using diffusion-weighted MRI and multidimensional diffusion...
Anisotropic diffusion in the nervous system is most commonly modeled by apparent diffusion tensor, w...
Purpose The gradient‐echo MR signal in brain white matter depends on the orientation of the fibers w...
This paper introduces neurite orientation dispersion and density imaging (NODDI), a practical diffus...
Axon diameter mpl clin tropy in human brain tissue. The microstructural information measured using m...
This paper introduces neurite orientation dispersion and density imaging (NODDI), a practical diffus...
International audienceThis paper describes a new NMR imaging modality--MR diffusion tensor imaging. ...
This paper describes a new NMR imaging modality--MR diffusion tensor imaging. It consists of estimat...