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September 17, 2025Proceedings on CD-ROM - International Society for Magnetic Resonance in Medicine. Scientific Meeting and Exhibition/Proceedings of the International Society for Magnetic Resonance in Medicine, Scientific Meeting and Exhibition0 citations

Tractometry of shear stiffness and damping ratio using diffusion weighted imaging and magnetic resonance elastography

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PCPaul CamachoAAAaron AndersonBSBradley P. Sutton

Key Points

  • The study found that shear stiffness and damping ratio in white matter tracts are not fully explained by diffusion metrics.
  • Using diffusion imaging and magnetic resonance elastography, the results showed limited mutual information between diffusion metrics and elastography properties.
  • A sample of 44 adults was analyzed through co-registration of MRE measures to tractogram space for improved structural health characterization.
  • The findings suggest that elastography provides unique structural information that may enhance biomarker discovery in white matter analysis.

Abstract

Motivation: Advancements in diffusion MRI enable more complete characterization of white matter tracts with magnetic resonance elastography-derived properties via tractometry. Goal(s): We apply tractometry to measure tract shear stiffness and damping ratio. Approach: For a sample of 44 adults, MRE measures were co-registered to tractogram space and sampled, along with diffusion scalars. Results: Patterns in both shear stiffness and damping ratio were not strongly explained by diffusion metrics in either the corpus callosum or the superior longitudinal fasciculus. This highlights that while shear stiffness has some spatial relationship with diffusion anisotropy, elastography provides unique structural information with limited mutual information from diffusion MRI. Impact: As biomarker discovery continues to incorporate the more spatially informative tract profiles from tractometry, this approach offers researchers and clinicians the ability to spatially sample both diffusion- and elastography-based structural information to better characterize white matter tract structural health.

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Cite This Study

Camacho et al. (2025) studied this question.

synapsesocial.com/papers/68d4597b31b076d99fa5cbefhttps://doi.org/10.58530/2025/3263
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