Correlation of diffusion tensor and dynamic perfusion MR imaging metrics in normal-appearing corpus callosum: support

A M Saindane1, M Law, Y Ge

  • 1Department of Radiology, New York University Medical Center, New York, NY, USA.

Abstract

Insights

In multiple sclerosis (MS), reduced blood flow in normal-appearing white matter correlates with increased diffusion, suggesting an ischemic cause rather than secondary degeneration. This finding supports primary ischemia as a mechanism in MS white matter changes.

Area of Science:

  • Neuroimaging
  • Neurology
  • Radiology

Background:

  • Multiple sclerosis (MS) involves hypoperfusion in normal-appearing white matter.
  • This hypoperfusion may stem from ischemia or Wallerian degeneration (WD).

Purpose of the Study:

  • To investigate if correlating perfusion and diffusion tensor imaging (DTI) metrics in the normal-appearing corpus callosum supports an ischemic mechanism for hypoperfusion in MS.
  • To differentiate between ischemic and secondary hypoperfusion in MS white matter.

Main Methods:

  • 14 patients with relapsing-remitting MS (RRMS) and 17 controls underwent perfusion MRI and DTI.
  • Calculated cerebral blood volume (CBV), cerebral blood flow (CBF), mean transit time (MTT), mean diffusivity (MD), and fractional anisotropy (FA).
  • Regions of interest were placed in the corpus callosum; Pearson correlations were computed between DTI and perfusion metrics.

Main Results:

  • In RRMS patients, CBF and CBV significantly correlated with MD in the splenium and central body of the corpus callosum (P < .001).
  • No significant correlations were found in the genu, between MTT and DTI measures, or between FA and perfusion metrics in RRMS.
  • Control subjects showed no significant correlations between diffusion and perfusion metrics.

Conclusions:

  • Decreasing perfusion in the normal-appearing corpus callosum of RRMS patients correlates with decreasing mean diffusivity (MD).
  • These findings align more with primary ischemia than secondary hypoperfusion from Wallerian degeneration (WD).
  • Correlating perfusion and DTI metrics offers insights into the mechanisms of white matter changes in MS.