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Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Measuring myelin repair and axonal loss with diffusion tensor imaging.
1Mellen Center, Department of Neurology, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA. foxr@ccf.org
AJNR. American Journal of Neuroradiology
|October 16, 2010
Summary
Diffusion Tensor Imaging (DTI) revealed changes in brain tissue integrity in multiple sclerosis (MS) patients over one year. These findings support DTI
Area of Science:
- Neuroimaging
- Neurology
- Biomedical Engineering
Background:
- Multiple Sclerosis (MS) is a chronic neurological disease affecting brain tissue integrity.
- Diffusion Tensor Imaging (DTI) offers a sensitive method to assess microstructural changes in the brain.
- DTI is valuable for monitoring disease progression and treatment efficacy in clinical trials.
Purpose of the Study:
- To utilize DTI to longitudinally evaluate changes in brain tissue integrity.
- To assess DTI metrics in patients with MS undergoing treatment with natalizumab.
- To correlate DTI findings with lesion activity and long-term tissue changes.
Main Methods:
- Serial DTI scans were performed on 21 MS patients over 12 months.
- Regions of interest in normal-appearing white and gray matter, and gadolinium-enhancing lesions were analyzed.
- Fractional Anisotropy (FA), λ(∥), λ(⊥), and Mean Diffusivity (MD) were quantified.
- Mixed-model regression analysis assessed DTI changes per month.
Main Results:
- Fractional Anisotropy (FA) increased in active lesions but decreased in normal-appearing brain tissue (NABT).
- Changes in FA were attributed to alterations in λ(⊥) within lesions and λ(∥) within NABT.
- Elevated baseline λ(⊥) in active lesions predicted future T1 black hole formation.
- Mean Diffusivity (MD) remained stable in both lesion types and NABT.
Conclusions:
- DTI measures demonstrated significant longitudinal changes in both active MS lesions and normal-appearing brain tissue.
- Observed DTI changes suggest potential remyelination in acute lesions and chronic axonal damage in normal-appearing white matter.
- DTI is a promising imaging biomarker for assessing neuroprotection in MS treatment studies.

