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Updated: Jul 15, 2026

Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Correlation of diffusion tensor and dynamic perfusion MR imaging metrics in normal-appearing corpus callosum: support
1Department of Radiology, New York University Medical Center, New York, NY, USA.
Background And Purpose:
Hypoperfusion of the normal-appearing white matter in multiple sclerosis (MS) may be related to ischemia or secondary to hypometabolism from wallerian degeneration (WD). This study evaluated whether correlating perfusion and diffusion tensor imaging (DTI) metrics in normal-appearing corpus callosum could provide support for an ischemic mechanism for hypoperfusion.
Materials And Methods:
Fourteen patients with relapsing-remitting MS (RRMS) and 17 control subjects underwent perfusion MR imaging and DTI. Absolute measures of cerebral blood volume (CBV), cerebral blood flow (CBF), and mean transit time (MTT) were calculated. Mean diffusivity (MD) and fractional anisotropy (FA) maps were computed from DTI data. After visual coregistration of perfusion and DTI images, regions of interest were placed in the genu, central body, and splenium of normal-appearing corpus callosum. Pearson product-moment correlation coefficients were calculated using mean DTI and perfusion measures in each region.
Results:
In the RRMS group, CBF and CBV were significantly correlated with MD in the splenium (r = 0.83 and r = 0.63, respectively; both P < .001) and in the central body (r = 0.86 and r = 0.65, respectively; both P < .001), but not in the genu (r = 0.23 and 0.25, respectively; both P is nonsignificant). No significant correlations were found between MTT and DTI measures or between FA and any perfusion measure in the RRMS group. No significant correlations between diffusion and perfusion metrics were found in control subjects.
Conclusion:
In the normal-appearing corpus callosum of patients with RRMS, decreasing perfusion is correlated with decreasing MD. These findings are more consistent with what would be expected in primary ischemia than in secondary hypoperfusion from WD.
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.
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