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    Interactive Volumetric Visual Analysis of Glycogen-derived Energy Absorption in Nanometric Brain Structures

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    Date
    2019
    Author
    Agus, Marco
    Calì, Corrado
    Al-Awami, Ali K.
    Gobbetti, Enrico ORCID
    Magistretti, Pierre J.
    Hadwiger, Markus ORCID
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    Abstract
    Digital acquisition and processing techniques are changing the way neuroscience investigation is carried out. Emerging applications range from statistical analysis on image stacks to complex connectomics visual analysis tools targeted to develop and test hypotheses of brain development and activity. In this work, we focus on neuroenergetics, a field where neuroscientists analyze nanoscale brain morphology and relate energy consumption to glucose storage in form of glycogen granules. In order to facilitate the understanding of neuroenergetic mechanisms, we propose a novel customized pipeline for the visual analysis of nanometric-level reconstructions based on electron microscopy image data. Our framework supports analysis tasks by combining i) a scalable volume visualization architecture able to selectively render image stacks and corresponding labelled data, ii) a method for highlighting distance-based energy absorption probabilities in form of glow maps, and iii) a hybrid connectivitybased and absorption-based interactive layout representation able to support queries for selective analysis of areas of interest and potential activity within the segmented datasets. This working pipeline is currently used in a variety of studies in the neuroenergetics domain. Here, we discuss a test case in which the framework was successfully used by domain scientists for the analysis of aging effects on glycogen metabolism, extracting knowledge from a series of nanoscale brain stacks of rodents somatosensory cortex.
    BibTeX
    @article {10.1111:cgf.13700,
    journal = {Computer Graphics Forum},
    title = {{Interactive Volumetric Visual Analysis of Glycogen-derived Energy Absorption in Nanometric Brain Structures}},
    author = {Agus, Marco and Calì, Corrado and Al-Awami, Ali K. and Gobbetti, Enrico and Magistretti, Pierre J. and Hadwiger, Markus},
    year = {2019},
    publisher = {The Eurographics Association and John Wiley & Sons Ltd.},
    ISSN = {1467-8659},
    DOI = {10.1111/cgf.13700}
    }
    URI
    https://doi.org/10.1111/cgf.13700
    https://diglib.eg.org:443/handle/10.1111/cgf13700
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    Eurographics Association copyright © 2013 - 2023 
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    Theme by @mire NV
    System hosted at  Graz University of Technology.
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