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Abstract #3668

A mathematical description of the changes of quantitative MPM parameters in ex-vivo whole brain human brains during fixation and hydration

Francisco J Fritz1, Tobias Streubel1, Herbert Mushumba2, Klaus Püschel2, and Siawoosh Mohammadi1,3,4
1Institut für Systemischeneurowissenschaften, Universitätsklinikum Hamburg-Eppendorf, Hamburg, Germany, 2Rechtsmedizin, Universitätsklinikum Hamburg-Eppendorf, Hamburg, Germany, 3Department of Neurophysics, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany, 4Max Planck Research Group MR Physics, Max Planck Institute for Human Development, Berlin, Germany

Synopsis

Keywords: Multi-Contrast, Modelling, Fixation, Postmortem whole human brain, Hydration

Motivation: Relaxation rates in the in-vivo human brain are strongly different to their counterparts in formalin-fixed postmortem tissue.

Goal(s): To model the changes of the relaxation rate parameters for different tissue stages from in-vivo to ex-vivo: unfixed, during fixation and during hydration.

Approach: The multi-parameter mapping (MPM) protocol was used to measure the changes of five whole-human brains across the aforementioned tissue stages, and different saturation models were tested to describe relaxation parameter changes during fixation.

Results: The MPM parameters varied strongly per tissue stage, and a mathematical description of the change of the MPM during fixation was found.

Impact: We characterised the MPM parameters during the fixation and hydration process across the entire brain and propose a mathematical model to describe the changes. This information could facilitate translating microstructure-mapping methods from fixed ex-vivo tissue samples to in-vivo application

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