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2026 / NMR in Biomedicine / Article

Standard Model Imaging in the Brain and Spinal Cord of MS Patients: Initial Assessment and Comparison to Diffusion Tensor Imaging

Atlee Witt, Alicia E. Cronin, Bailey Busher, Isabella Stuart, Grace Sweeney, Kristin P. O'Grady, Seth A. Smith, Samantha By, Kurt Schilling

Summary

Same-session brain and spinal cord imaging compares standard diffusion tensor measurements with Standard Model Imaging in 34 people with relapsing-remitting multiple sclerosis and 36 controls. Neurite density estimates show sensitivity to pathology in both regions, while the usefulness of other measurements depends on the anatomical setting.

Study overview

This study evaluates diffusion tensor imaging and Standard Model Imaging with free water in the brain and cervical spinal cord during the same 3T MRI session. It includes 34 people with relapsing-remitting multiple sclerosis and 36 healthy controls. Analyses compare lesions and normal-appearing white matter and assess reproducibility in controls. SMI-derived neurite density fraction provides a sensitive measurement in both anatomical regions, while comparable sensitivity from fractional anisotropy and radial diffusivity is observed in the brain. The findings support further investigation of SMI for assessment across the central nervous system.

Main findings

  • Compares brain and cervical cord measurements in the same participants.
  • SMI neurite density fraction is sensitive to pathology in both regions.
  • Model performance and lesion characteristics differ between brain and cord.
Standard model imaging parameter maps in the brain and spinal cord of a person with relapsing-remitting MS.
Witt et al. (2026), Figure 4. Standard model imaging parameter maps in the brain and spinal cord of a person with relapsing-remitting MS. Source · License · Select the figure to view at full size.

Cite this work

Atlee Witt et al. · Last author: Kurt Schilling (2026). Standard Model Imaging in the Brain and Spinal Cord of MS Patients: Initial Assessment and Comparison to Diffusion Tensor Imaging. NMR in Biomedicine. https://doi.org/10.1002/nbm.70354

This page summarizes the work; consult the original article for the complete methods, results, and qualifications.