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  High angular resolution susceptibility imaging and estimation of fiber orientation distribution functions in primate brain

Gkotsoulias, D., Müller, R., Jäger, C., Schlumm, T., Mildner, T., Eichner, C., et al. (2023). High angular resolution susceptibility imaging and estimation of fiber orientation distribution functions in primate brain. NeuroImage, 276: 120202. doi:10.1016/j.neuroimage.2023.120202.

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 Creators:
Gkotsoulias, Dimitrios1, Author           
Müller, Roland1, Author                 
Jäger, Carsten2, Author                 
Schlumm, Torsten1, Author           
Mildner, Toralf1, Author           
Eichner, Cornelius3, Author                 
Pampel, André1, Author           
Jaffe, Jennifer4, 5, Author
Gräßle, Tobias5, 6, 7, Author
Alsleben, Niklas2, Author
Chen, Jingjia8, Author
Crockford, Catherine4, 5, 9, Author
Wittig, Roman4, 5, 9, Author
Liu, Chunlei8, 10, Author
Möller, Harald E.1, Author           
Affiliations:
1Methods and Development Group Nuclear Magnetic Resonance, MPI for Human Cognitive and Brain Sciences, Max Planck Society, ou_634558              
2Department Neurophysics (Weiskopf), MPI for Human Cognitive and Brain Sciences, Max Planck Society, ou_2205649              
3Department Neuropsychology, MPI for Human Cognitive and Brain Sciences, Max Planck Society, ou_634551              
4Max Planck Institute for Evolutionary Anthropology, Leipzig, Germany, ou_persistent22              
5Taï Chimpanzee Project, Centre Suisse de Recherches Scientifiques (CSRS), Abidjan, Ivory Coast, ou_persistent22              
6Helmholtz Institute for One Health, Greifswald, ou_persistent22              
7Research Group Epidemiology of Highly Pathogenic Microorganisms, Robert Koch Institute, Berlin, Germany, ou_persistent22              
8Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, CA, USA, ou_persistent22              
9Institute of Cognitive Sciences, University of Lyon, France, ou_persistent22              
10Helen Wills Neuroscience Institute, University of California, Berkeley, CA, USA, ou_persistent22              

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Free keywords: Anisotropic magnetic susceptibility; Diffusion-weighted imaging; Gradient-recalled echo; High angular resolution; Orientation distribution function, Quantitative susceptibility mapping
 Abstract: Uncovering brain-tissue microstructure including axonal characteristics is a major neuroimaging research focus. Within this scope, anisotropic properties of magnetic susceptibility in white matter have been successfully employed to estimate primary axonal trajectories using mono-tensorial models. However, anisotropic susceptibility has not yet been considered for modeling more complex fiber structures within a voxel, such as intersecting bundles, or an estimation of orientation distribution functions (ODFs). This information is routinely obtained by high angular resolution diffusion imaging (HARDI) techniques. In applications to fixed tissue, however, diffusion-weighted imaging suffers from an inherently low signal-to-noise ratio and limited spatial resolution, leading to high demands on the performance of the gradient system in order to mitigate these limitations. In the current work, high angular resolution susceptibility imaging (HARSI) is proposed as a novel, phase-based methodology to estimate ODFs. A multiple gradient-echo dataset was acquired in an entire fixed chimpanzee brain at 61 orientations by reorienting the specimen in the magnetic field. The constant solid angle method was adapted for estimating phase-based ODFs. HARDI data were also acquired for comparison. HARSI yielded information on whole-brain fiber architecture, including identification of peaks of multiple bundles that resembled features of the HARDI results. Distinct differences between both methods suggest that susceptibility properties may offer complementary microstructural information. These proof-of-concept results indicate a potential to study the axonal organization in post-mortem primate and human brain at high resolution.

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Language(s): eng - English
 Dates: 2023-05-212022-10-192023-05-272023-05-272023-08-01
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1016/j.neuroimage.2023.120202
Other: epub 2023
PMID: 37247762
 Degree: -

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Project name : -
Grant ID : 813120
Funding program : -
Funding organization : European Union (EU)
Project name : -
Grant ID : R01AG070826
Funding program : -
Funding organization : National Institute of Aging of the National Institutes of Health (NIH)

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Title: NeuroImage
Source Genre: Journal
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Publ. Info: Orlando, FL : Academic Press
Pages: - Volume / Issue: 276 Sequence Number: 120202 Start / End Page: - Identifier: ISSN: 1053-8119
CoNE: https://pure.mpg.de/cone/journals/resource/954922650166