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Published in: Brain Structure and Function 2/2021

01-03-2021 | Methods Paper

Use of computational fluid dynamics for 3D fiber tract visualization on human high-thickness histological slices: histological mesh tractography

Authors: Eduardo Joaquim Lopes Alho, Erich T. Fonoff, Ana Tereza Di Lorenzo Alho, József Nagy, Helmut Heinsen

Published in: Brain Structure and Function | Issue 2/2021

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Abstract

Understanding the intricate three-dimensional relationship between fiber bundles and subcortical nuclei is not a simple task. It is of paramount importance in neurosciences, especially in the field of functional neurosurgery. The current methods for in vivo and post mortem fiber tract visualization have shortcomings and contributions to the field are welcome. Several tracts were chosen to implement a new technique to help visualization of white matter tracts, using high-thickness histology and dark field images. Our study describes the use of computational fluid dynamic simulations for visualization of 3D fiber tracts segmented from dark field microscopy in high-thickness histological slices (histological mesh tractography). A post mortem human brain was MRI scanned prior to skull extraction, histologically processed and serially cut at 430 µm thickness as previously described by our group. High-resolution dark field images were used to segment the outlines of the structures. These outlines served as basis for the construction of a 3D structured mesh, were a Finite Volume Method (FVM) simulation of water flow was performed to generate streamlines representing the geometry. The simulations were accomplished by an open source computer fluid dynamics software. The resulting simulation rendered a realistic 3D impression of the segmented anterior commissure, the left anterior limb of the internal capsule, the left uncinate fascicle, and the dentato-rubral tracts. The results are in line with clinical findings, diffusion MR imaging and anatomical dissection methods.
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Metadata
Title
Use of computational fluid dynamics for 3D fiber tract visualization on human high-thickness histological slices: histological mesh tractography
Authors
Eduardo Joaquim Lopes Alho
Erich T. Fonoff
Ana Tereza Di Lorenzo Alho
József Nagy
Helmut Heinsen
Publication date
01-03-2021
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 2/2021
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-020-02187-3

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