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20182025
most citedAnalytical and fast Fiber Orientation Distribution reconstruction in 3D-Polarized Light Imaging

12 citations · 12 across the 3 of their papers we have counts for

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physics.med-ph2024

Scattering polarimetry enables correlative nerve fiber imaging and multimodal analysis

Franca auf der Heiden, Markus Axer, Katrin Amunts +1

Mapping the intricate network of nerve fibers is crucial for understanding brain function. Three-Dimensional Polarized Light Imaging (3D-PLI) and Computational Scattered Light Imag…

physics.med-ph202012 cited

Analytical and fast Fiber Orientation Distribution reconstruction in 3D-Polarized Light Imaging

A. Alimi, S. Deslauriers-Gauthier, F. Matuschke +4

Three dimensional Polarized Light Imaging (3D-PLI) is an optical technique which allows mapping the spatial fiber architecture of fibrous postmortem tissues, at sub-millimeter reso…

physics.med-ph2020

Independent Component Analysis for noise and artifact removal in Three-dimensional Polarized Light Imaging

Kai Benning, Miriam Menzel, Jan Reuter +1

In recent years, Independent Component Analysis (ICA) has successfully been applied to remove noise and artifacts in images obtained from Three-dimensional Polarized Light Imaging…

physics.med-ph2020

Scattered Light Imaging: Resolving the substructure of nerve fiber crossings in whole brain sections with micrometer resolution

Miriam Menzel, Jan André Reuter, David Gräßel +4

For developing a detailed network model of the brain based on image reconstructions, it is necessary to spatially resolve crossing nerve fibers. The accuracy hereby depends on many…

physics.med-ph2018

Diattenuation Imaging reveals different brain tissue properties

Miriam Menzel, Markus Axer, Katrin Amunts +2

When transmitting polarised light through histological brain sections, different types of diattenuation (polarisation-dependent attenuation of light) can be observed: In some brain…

physics.med-ph2018

Finite-Difference Time-Domain simulations of transmission microscopy enable a better interpretation of 3D nerve fiber architectures in the brain

Miriam Menzel, Markus Axer, Hans De Raedt +5

In many laboratories, conventional bright-field transmission microscopes are available to study the structure and organization principles of fibrous tissue samples, but they usuall…