We report the first 3D maps of genetic effects on brain fiber complexity. We analyzed HARDI brain imaging data from 90 young adult twins using an information-theoretic measure, the Jensen-Shannon divergence (JSD), to gauge the regional complexity of the white matter fiber orientation distribution functions (ODF). HARDI data were fluidly registered using Karcher means and ODF square-roots for interpol ation; each subject's JSD map was computed from the spatial coherence of the ODFs in each voxel's neighborhood. We evaluated the genetic influences on generalized fiber anisotropy (GFA) and complexity (JSD) using structural equation models (SEM). At each voxel, genetic and environmental components of data variation were estimated, and their goo...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We present a new algorithm to compute the voxel-wise genetic contribution to brain fiber microstruct...
Human brain connectivity is disrupted in a wide range of disorders – from Alzheimer’s disease to aut...
We report the first 3D maps of genetic effects on brain fiber complexity. We analyzed HARDI brain im...
We report the first 3D maps of genetic effects on brain fiber complexity. We analyzed HARDI brain im...
We developed an analysis pipeline enabling population studies of HARDI data, and applied it to map g...
We developed an analysis pipeline enabling population studies of HARDI data, and applied it to map g...
We developed an analysis pipeline enabling population studies of HARDI data, and applied it to map g...
Imaging genetics is a new field that extends methods from quantitative genetics to handle brain imag...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
• High angular resolution diffusion imaging (HARDI) reconstructs local diffusion profile of water i...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We present a new algorithm to compute the voxel-wise genetic contribution to brain fiber microstruct...
Human brain connectivity is disrupted in a wide range of disorders – from Alzheimer’s disease to aut...
We report the first 3D maps of genetic effects on brain fiber complexity. We analyzed HARDI brain im...
We report the first 3D maps of genetic effects on brain fiber complexity. We analyzed HARDI brain im...
We developed an analysis pipeline enabling population studies of HARDI data, and applied it to map g...
We developed an analysis pipeline enabling population studies of HARDI data, and applied it to map g...
We developed an analysis pipeline enabling population studies of HARDI data, and applied it to map g...
Imaging genetics is a new field that extends methods from quantitative genetics to handle brain imag...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
Genetic analysis of diffusion tensor images (DTI) shows great promise in revealing specific genetic ...
• High angular resolution diffusion imaging (HARDI) reconstructs local diffusion profile of water i...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We extended genetic linkage analysis - an analysis widely used in quantitative genetics - to 3D imag...
We present a new algorithm to compute the voxel-wise genetic contribution to brain fiber microstruct...
Human brain connectivity is disrupted in a wide range of disorders – from Alzheimer’s disease to aut...