Bundle-specific axon diameter index as a new contrast to differentiate white matter tracts
Journal article
Barakovic, Muhamed, Girard, Gabriel, Schiavi, Simona, Romascano, David, Descoteaux, Maxime, Granziera, Cristina, Jones, Derek K., Innocenti, Giorgio M., Thiran, Jean-Philippe and Daducci, Alessandro. (2021). Bundle-specific axon diameter index as a new contrast to differentiate white matter tracts. Frontiers in Neuroscience. 15, p. Article 646034. https://doi.org/10.3389/fnins.2021.646034
Authors | Barakovic, Muhamed, Girard, Gabriel, Schiavi, Simona, Romascano, David, Descoteaux, Maxime, Granziera, Cristina, Jones, Derek K., Innocenti, Giorgio M., Thiran, Jean-Philippe and Daducci, Alessandro |
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Abstract | In the central nervous system of primates, several pathways are characterized by different spectra of axon diameters. In vivo methods, based on diffusion-weighted magnetic resonance imaging, can provide axon diameter index estimates non-invasively. However, such methods report voxel-wise estimates, which vary from voxel-to-voxel for the same white matter bundle due to partial volume contributions from other pathways having different microstructure properties. Here, we propose a novel microstructure-informed tractography approach, COMMITAxSize, to resolve axon diameter index estimates at the streamline level, thus making the estimates invariant along trajectories. Compared to previously proposed voxel-wise methods, our formulation allows the estimation of a distinct axon diameter index value for each streamline, directly, furnishing a complementary measure to the existing calculation of the mean value along the bundle. We demonstrate the favourable performance of our approach comparing our estimates with existing histologically-derived measurements performed in the corpus callosum and the posterior limb of the internal capsule. Overall, our method provides a more robust estimation of the axon diameter index of pathways by jointly estimating the microstructure properties of the tissue and the macroscopic organisation of the white matter connectivity. |
Keywords | human brain; white-matter axon signature; diffusion MRI; tractography; microstructure; microstructure informed tractography |
Year | 2021 |
Journal | Frontiers in Neuroscience |
Journal citation | 15, p. Article 646034 |
Publisher | Frontiers Research Foundation |
ISSN | 1662-4548 |
Digital Object Identifier (DOI) | https://doi.org/10.3389/fnins.2021.646034 |
PubMed ID | 34211362 |
PubMed Central ID | PMC8239216 |
Open access | Published as ‘gold’ (paid) open access |
Research or scholarly | Research |
Page range | 1-13 |
Publisher's version | License File Access Level Open |
Output status | Published |
Publication dates | |
Online | 15 Jun 2021 |
Publication process dates | |
Accepted | 17 May 2021 |
Deposited | 04 Nov 2021 |
https://acuresearchbank.acu.edu.au/item/8wzz2/bundle-specific-axon-diameter-index-as-a-new-contrast-to-differentiate-white-matter-tracts
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OA_Barakovic_2021_Bundle_specific_axon_diameter_index_as.pdf | |
License: CC BY 4.0 | |
File access level: Open |
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