Short association fibers (U-fibers) connect proximal cortical areas and constitute the majority of white matter connections in the human brain. U-fibers play an important role in brain development, function, and pathology but are underrepresented in current descriptions of the human brain connectome, primarily due to methodological challenges in diffusion magnetic resonance imaging (dMRI) of these fibers. High spatial resolution and dedicated fiber and tractography models are required to reliably map the U-fibers. Moreover, limited quantitative knowledge of their geometry and distribution makes validation of U-fiber tractography challenging. Submillimeter resolution diffusion MRI-facilitated by a cutting-edge MRI scanner with 300 mT/m maxim...
Why has diffusion MRI become a principal modality for mapping connectomes in vivo? How do different ...
The ability of fiber tractography to delineate non-invasively the white matter fiber pathways of the...
Superficial white matter (SWM) contains the most cortico-cortical white matter connections in the hu...
Les fibres d’association courtes (fibres en U) de la substance blanche connectent des territoires co...
The white matter of the brain consists of fiber tracts that connect different regions of the brain. ...
Recent emergence of human connectome imaging has led to a high demand on angular and spatial resolut...
Tractography combined with regions of interest (ROIs) has been used to non-invasively study the stru...
Diffusion tensor imaging allows unprecedented insight into brain neural connectivity in vivo by allo...
The global structural connectivity of the brain, the human connectome, is now accessible at millimet...
International audienceNew magnetic resonance imaging processing tools allow white-matter fiber bundl...
Diffusion Weighted Imaging (DWI) was introduced to explore the human connectome in vivo; although ma...
In vivo tractography based on diffusion magnetic resonance imaging (dMRI) has opened new doors to s...
In this work, we show for the first time that the tangential diffusion component is orientationally ...
It is estimated that in the human brain, short association fibres (SAF) represent more than half of ...
Gaolang Gong and Yong He have contributed equally to this work The characterization of the topologic...
Why has diffusion MRI become a principal modality for mapping connectomes in vivo? How do different ...
The ability of fiber tractography to delineate non-invasively the white matter fiber pathways of the...
Superficial white matter (SWM) contains the most cortico-cortical white matter connections in the hu...
Les fibres d’association courtes (fibres en U) de la substance blanche connectent des territoires co...
The white matter of the brain consists of fiber tracts that connect different regions of the brain. ...
Recent emergence of human connectome imaging has led to a high demand on angular and spatial resolut...
Tractography combined with regions of interest (ROIs) has been used to non-invasively study the stru...
Diffusion tensor imaging allows unprecedented insight into brain neural connectivity in vivo by allo...
The global structural connectivity of the brain, the human connectome, is now accessible at millimet...
International audienceNew magnetic resonance imaging processing tools allow white-matter fiber bundl...
Diffusion Weighted Imaging (DWI) was introduced to explore the human connectome in vivo; although ma...
In vivo tractography based on diffusion magnetic resonance imaging (dMRI) has opened new doors to s...
In this work, we show for the first time that the tangential diffusion component is orientationally ...
It is estimated that in the human brain, short association fibres (SAF) represent more than half of ...
Gaolang Gong and Yong He have contributed equally to this work The characterization of the topologic...
Why has diffusion MRI become a principal modality for mapping connectomes in vivo? How do different ...
The ability of fiber tractography to delineate non-invasively the white matter fiber pathways of the...
Superficial white matter (SWM) contains the most cortico-cortical white matter connections in the hu...