Functional interactions between different brain regions require connecting fiber tracts, the structural basis of the human connectome. To assemble a comprehensive structural understanding of neural network elements from the microscopic to the macroscopic dimensions, a multimodal and multiscale approach has to be envisaged. However, the integration of results from complementary neuroimaging techniques poses a particular challenge. In this paper, we describe a steadily evolving neuroimaging technique referred to as three-dimensional polarized light imaging (3D-PLI). It is based on the birefringence of the myelin sheaths surrounding axons, and enables the high-resolution analysis of myelinated axons constituting the fiber tracts. 3D-PLI provid...
Research of the human brain connectome requires multiscale approaches derived from independent imagi...
Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the ...
Polarised light imaging (PLI) utilises the birefringence of the myelin sheaths in order to visualise...
Signal transmission between different brain regions requires connecting fiber tracts, the structural...
Structural connectivity of the brain can be conceptionalized as a multiscale organization. The prese...
3D polarized light imaging (3D-PLI) is a neuroimaging technique that has recently opened up new aven...
To date, there are several methods for mapping connectivity, ranging from the macroscopic to molecul...
To understand the microscopical organization of the human brain including cellular and fiber archite...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
Introduction:Polarized Light Imaging (PLI) has been shown to be a valuable tool for mapping nerve fi...
Introduction:Polarized Light Imaging (PLI) has been developed to analyze the fiber orientation in th...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
Research of the human brain connectome requires multiscale approaches derived from independent imagi...
Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the ...
Polarised light imaging (PLI) utilises the birefringence of the myelin sheaths in order to visualise...
Signal transmission between different brain regions requires connecting fiber tracts, the structural...
Structural connectivity of the brain can be conceptionalized as a multiscale organization. The prese...
3D polarized light imaging (3D-PLI) is a neuroimaging technique that has recently opened up new aven...
To date, there are several methods for mapping connectivity, ranging from the macroscopic to molecul...
To understand the microscopical organization of the human brain including cellular and fiber archite...
3D-Polarized Light Imaging (3D-PLI) enables high-resolution three-dimensional mapping of the nerve f...
Introduction:Polarized Light Imaging (PLI) has been shown to be a valuable tool for mapping nerve fi...
Introduction:Polarized Light Imaging (PLI) has been developed to analyze the fiber orientation in th...
Three-dimensional Polarized Light Imaging (3D-PLI) is a neuroimaging technique that is able to recon...
3D-Polarized Light Imaging (3D-PLI) is a neuroimaging technique used to study the structural connect...
Three-dimensional (3D) polarized light imaging (PLI) is able to reveal nerve fibers in the human bra...
3D Polarized Light Imaging (3D-PLI) is a neuroimaging technique that has opened up new avenues to st...
Research of the human brain connectome requires multiscale approaches derived from independent imagi...
Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the ...
Polarised light imaging (PLI) utilises the birefringence of the myelin sheaths in order to visualise...