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Abstract #3592

Quantification of Fiber Bundle Properties Using a Decomposition of the Fiber Orientation Distribution Function

Till Riffert1, Thomas Knsche1, Alfred Anwander1

1Cortical Networks and Cognitive Functions, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany

 

Keywords

able accounts allowed allows analogously angular anisotropy approximate approximated approximating approximation array assigned assuming attenuation background blue brain bundle bundles capsule capture channel characterize circular closely coefficient cognitive coherent coil combination compartments complex concentration contained contribution corpus correspond corresponds cortical crossing dealing decomposition deconvolution density depicts derived deriving describing diffusion diffusivity disentangle distinct distribution distributions done easily either enables examined expected explained fanning fiber fibers fitted fitting function functions geometry glyph greater green harmonic harmonics head healthy human improvements incorporating influence influences institute integral interdependence interestingly internal isotropic kernel largest leads major measure measures might model modeling much necessary neighborhood networks orientation orientations overlap parameterizing parametric patient peak peaks population populations powerful problem produces properties quantification quantifies quantify relatively replace representation represents resolution scaled scanner sciences separate separately separating separation shape significantly spatial sphere spherical stat statistics subject superposition supplies surrounding tensor thereby till tool transform trio tumor underlying unit white