Structural connectivity of the brain can be conceptionalized as a multiscale organization. The present study is built on 3D-Polarized Light Imaging (3D-PLI), a neuroimaging technique targeting the reconstruction of nerve fiber orientations and therefore contributing to the analysis of brain connectivity. Spatial orientations of the fibers are derived from birefringence measurements of unstained histological sections that are interpreted by means of a voxel-based analysis. This implies that a single fiber orientation vector is obtained for each voxel, which reflects the net effect of all comprised fibers. We have utilized two polarimetric setups providing an object space resolution of 1.3 μm/px (microscopic setup) and 64 μm/px (macroscopic s...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
The neuroimaging technique 3D-polarized light imaging (3D-PLI) has opened up new avenues to study th...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...
Functional interactions between different brain regions require connecting fiber tracts, the structu...
To understand the microscopical organization of the human brain including cellular and fiber archite...
Introduction:Polarized Light Imaging (PLI) has been shown to be a valuable tool for mapping nerve fi...
3D polarized light imaging (3D-PLI) is a neuroimaging technique that has recently opened up new aven...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
Signal transmission between different brain regions requires connecting fiber tracts, the structural...
To date, there are several methods for mapping connectivity, ranging from the macroscopic to molecul...
3D-Polarized Light Imaging has become a unique technique to study the fiber architecture of unstaine...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
Research of the human brain connectome requires multiscale approaches derived from independent imagi...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
The neuroimaging technique 3D-polarized light imaging (3D-PLI) has opened up new avenues to study th...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...
Functional interactions between different brain regions require connecting fiber tracts, the structu...
To understand the microscopical organization of the human brain including cellular and fiber archite...
Introduction:Polarized Light Imaging (PLI) has been shown to be a valuable tool for mapping nerve fi...
3D polarized light imaging (3D-PLI) is a neuroimaging technique that has recently opened up new aven...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
Signal transmission between different brain regions requires connecting fiber tracts, the structural...
To date, there are several methods for mapping connectivity, ranging from the macroscopic to molecul...
3D-Polarized Light Imaging has become a unique technique to study the fiber architecture of unstaine...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
Research of the human brain connectome requires multiscale approaches derived from independent imagi...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
The neuroimaging technique 3D-polarized light imaging (3D-PLI) has opened up new avenues to study th...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...