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Abstract #4791

Determining the Relationship between DTI and MR Elastography Metrics in Highly Anisotropic White Matter Structures at 7T

Em Triolo1, Oleksandr Khegai2, Andrew Frankini2, Matthew McGarry3, Priti Balchandani2, and Mehmet Kurt1,4
1Mechanical Engineering, University of Washington, Seattle, WA, United States, 2Biomedical Engineering and Imaging Institute, Icahn School of Medicine at Mount Sinai, New York City, NY, United States, 3Dartmouth College, Hanover, NH, United States, 4Icahn School of Medicine at Mount Sinai, New York City, NY, United States

Synopsis

Keywords: Elastography, Brain

Motivation: Changes in the relationship between MRE and DTI metrics in small white matter structures could indicate alterations in brain microstructure due to white matter damage.

Goal(s): This study aims to determine correlations between metrics measured by MRE and DTI at 7T in the healthy human brain.

Approach: MRE and DTI acquisitions were performed on 14 young, healthy volunteers at 7T, and Shear Stiffness, Damping Raio, FA and RD were calculated for each person.

Results: Significant correlations were found in small, highly anisotropic, brain regions between Shear Stiffness or Damping Raio and FA or RD.

Impact: The high resolutions achieved at 7T for both MRE and DTI allow us to investigate microstructural relationships in small, highly-anisotropic, brain regions. Changes in these metrics or relationships between these metrics could indicate alterations in microstructure integrity, suggesting potential damage.

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Keywords