3D-Polarized Light Imaging is an unique technique used to reconstruct nerve fiber orientations of post-mortem brains at ultra-high resolution. To continuously improve the current physical model of 3D-PLI, simulations are powerful methods. Since the creation of simulated data can be time consuming, we developed a tool which enables fast and efficient creation of synthetic fiber data using parametric functions and interpolation methods. Performance tests showed that every component of the program scales linearly with the amount of fiber points while the reconstructed fiber cup phantom and optic chiasm-like crossing fiber models reproduce known effects known from 3D-PLI measurements
Unraveling the structure and function of the brain requires a detailed knowledge about the neuronal ...
Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the ...
The neuroimaging technique $\textit{Three-dimensional Polarized Light Imaging (3D-PLI)}$ reconstruct...
PURPOSE: The technique 3D polarized light imaging (3D-PLI) allows to reconstruct nerve fiber orienta...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
3D Polarized Light Imaging provides a high-resolution reconstruction of nerve fiber pathways in huma...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
fastPLI is an open source toolbox based on Python and C++ for modeling myelinated axons, i.e. nerve ...
3D polarized light imaging (3D-PLI) is a neuroimaging technique that has recently opened up new aven...
3D-Polarized Light Imaging has become a unique technique to study the fiber architecture of unstaine...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...
Structural connectivity of the brain can be conceptionalized as a multiscale organization. The prese...
To understand the microscopical organization of the human brain including cellular and fiber archite...
The neuroimaging technique Three-dimensional Polarized Light Imaging (3D-PLI) reconstructs the brain...
Unraveling the structure and function of the brain requires a detailed knowledge about the neuronal ...
Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the ...
The neuroimaging technique $\textit{Three-dimensional Polarized Light Imaging (3D-PLI)}$ reconstruct...
PURPOSE: The technique 3D polarized light imaging (3D-PLI) allows to reconstruct nerve fiber orienta...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
3D Polarized Light Imaging provides a high-resolution reconstruction of nerve fiber pathways in huma...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
fastPLI is an open source toolbox based on Python and C++ for modeling myelinated axons, i.e. nerve ...
3D polarized light imaging (3D-PLI) is a neuroimaging technique that has recently opened up new aven...
3D-Polarized Light Imaging has become a unique technique to study the fiber architecture of unstaine...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...
Structural connectivity of the brain can be conceptionalized as a multiscale organization. The prese...
To understand the microscopical organization of the human brain including cellular and fiber archite...
The neuroimaging technique Three-dimensional Polarized Light Imaging (3D-PLI) reconstructs the brain...
Unraveling the structure and function of the brain requires a detailed knowledge about the neuronal ...
Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the ...
The neuroimaging technique $\textit{Three-dimensional Polarized Light Imaging (3D-PLI)}$ reconstruct...