The method 3D polarised light imaging (3D-PLI) measures the birefringence of histological brain sections to determine the spatial course of nerve fibres (myelinated axons). While the in-plane fibre directions can be determined with high accuracy, the computation of the out-of-plane fibre inclinations is more challenging because they are derived from the amplitude of the birefringence signals, which depends e.g. on the amount of nerve fibres. One possibility to improve the accuracy is to consider the average transmitted light intensity (transmittance weighting). The current procedure requires effortful manual adjustment of parameters and anatomical knowledge. Here, we introduce an automated, optimised computation of the fibre inclinations, a...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
To understand the microscopical organization of the human brain including cellular and fiber archite...
Unraveling the structure and function of the brain requires a detailed knowledge about the neuronal ...
The neuroimaging technique 3D-polarized light imaging (3D-PLI) has opened up new avenues to study th...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
3D-Polarized Light Imaging has become a unique technique to study the fiber architecture of unstaine...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
In recent years, the microscopy technology referred to as Polarized Light Imaging (3D-PLI) has succe...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
Introduction:Polarized Light Imaging (PLI) has been shown to be a valuable tool for mapping nerve fi...
Structural connectivity of the brain can be conceptionalized as a multiscale organization. The prese...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
The neuroimaging technique three-dimensional polarized light imaging (3D-PLI) provides a high-resolu...
The neuroimaging technique three-dimensional polarized light imaging (3D-PLI) provides a high-resolu...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
To understand the microscopical organization of the human brain including cellular and fiber archite...
Unraveling the structure and function of the brain requires a detailed knowledge about the neuronal ...
The neuroimaging technique 3D-polarized light imaging (3D-PLI) has opened up new avenues to study th...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
3D-Polarized Light Imaging has become a unique technique to study the fiber architecture of unstaine...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
In recent years, the microscopy technology referred to as Polarized Light Imaging (3D-PLI) has succe...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
Introduction:Polarized Light Imaging (PLI) has been shown to be a valuable tool for mapping nerve fi...
Structural connectivity of the brain can be conceptionalized as a multiscale organization. The prese...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
The neuroimaging technique three-dimensional polarized light imaging (3D-PLI) provides a high-resolu...
The neuroimaging technique three-dimensional polarized light imaging (3D-PLI) provides a high-resolu...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
To understand the microscopical organization of the human brain including cellular and fiber archite...
Unraveling the structure and function of the brain requires a detailed knowledge about the neuronal ...