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    Reducing Model Uncertainty in Crossing Fiber Tractography

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    Date
    2021
    Author
    Gruen, Johannes ORCID
    Voort, Gemma van der ORCID
    Schultz, Thomas ORCID
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    Abstract
    Diffusion MRI (dMRI) tractography permits the non-invasive reconstruction of major white matter tracts, and is therefore widely used in neurosurgical planning and in neuroscience. However, it is affected by various sources of uncertainty. In this work, we consider the model uncertainty that arises in crossing fiber tractography, from having to select between alternative mathematical models for the estimation of multiple fiber orientations in a given voxel. This type of model uncertainty is a source of instability in dMRI tractography that has not received much attention so far. We develop a mathematical framework to quantify it, based on computing posterior probabilities of competing models, given the local dMRI data. Moreover, we explore a novel strategy for crossing fiber tractography, which computes tracking directions from a consensus of multiple mathematical models, each one contributing with a weight that is proportional to its probability. Experiments on different white matter tracts in multiple subjects indicate that reducing model uncertainty in this way increases the accuracy of crossing fiber tractography.
    BibTeX
    @inproceedings {10.2312:vcbm.20211345,
    booktitle = {Eurographics Workshop on Visual Computing for Biology and Medicine},
    editor = {Oeltze-Jafra, Steffen and Smit, Noeska N. and Sommer, Björn and Nieselt, Kay and Schultz, Thomas},
    title = {{Reducing Model Uncertainty in Crossing Fiber Tractography}},
    author = {Gruen, Johannes and Voort, Gemma van der and Schultz, Thomas},
    year = {2021},
    publisher = {The Eurographics Association},
    ISSN = {2070-5786},
    ISBN = {978-3-03868-140-3},
    DOI = {10.2312/vcbm.20211345}
    }
    URI
    https://doi.org/10.2312/vcbm.20211345
    https://diglib.eg.org:443/handle/10.2312/vcbm20211345
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    Eurographics Association copyright © 2013 - 2023 
    Send Feedback | Contact - Imprint | Data Privacy Policy | Disable Google Analytics
    Theme by @mire NV
    System hosted at  Graz University of Technology.
    TUGFhA