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Updated: Oct 20, 2025

Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Intracortical surface-based MR diffusivity to investigate neurologic and psychiatric disorders: a review
Frederic Sampedro1,2,3, Jaime Kulisevsky1,2,3
1Movement Disorders Unit, Neurology Department, Hospital de la Santa Creu i Sant Pau, Barcelona, Spain.
Abstract:
Diffusion tensor imaging (DTI) allows the quantification of water diffusivity within the cerebral cortex. Alterations in cortical mean diffusivity (MD) have been suggested to reflect microstructural damage. Interestingly, microstructural changes can be detected in the absence of macrostructural alterations such as cortical thinning or gray matter volume loss. However, volume-based neuroimaging techniques for the study of cortical MD have shown some limitations in terms of intersubject registration, partial volume correction, and smoothing artifacts. In this review, we summarize how a surface-based approach for the assessment of intracortical MD has not only overcome these technical limitations, but also provided important contributions to the fields of neurology and psychiatry. Since its proposal in 2018, the use of this neuroimaging technique has revealed cortical microstructural alterations in a wide range of clinical contexts, including Alzheimer's disease, Parkinson's disease, schizophrenia, Huntington's disease, multiple sclerosis, amyotrophic lateral sclerosis, and primary progressive aphasia. In most cases, the detection of early intracortical MD alterations preceded the identification of macrostructural changes. Importantly, microstructural damage significantly correlated with cognitive performance and biomarker measures, suggesting a potential role for its use in clinical trials as a sensitive imaging marker of neurodegeneration. Given that DTI is a widely available imaging modality, these encouraging results motivate further research using this novel neuroimaging metric in other clinical contexts. Overall, this technique has shed light into the key role of early cortical degeneration in many diseases where cortical involvement was previously thought to have limited clinical and biological significance.
Insights
Surface-based diffusion tensor imaging (DTI) detects early cortical microstructural damage, measured by mean diffusivity (MD), before visible brain changes occur. This sensitive neuroimaging marker aids in understanding neurodegenerative diseases.
Area of Science:
- Neuroimaging
- Neurology
- Psychiatry
Background:
- Diffusion tensor imaging (DTI) quantifies water diffusivity in the cerebral cortex, with mean diffusivity (MD) alterations indicating microstructural damage.
- Microstructural changes can precede macrostructural alterations like cortical thinning or volume loss.
- Traditional volume-based DTI methods face limitations in registration, partial volume correction, and smoothing artifacts.
Purpose of the Study:
- To review the advancements and applications of a surface-based approach for assessing intracortical mean diffusivity (MD).
- To highlight how this technique overcomes limitations of volume-based methods.
- To summarize its contributions to neurology and psychiatry research.
Main Methods:
- Utilizes a surface-based approach for analyzing intracortical mean diffusivity (MD) from diffusion tensor imaging (DTI) data.
- Overcomes technical limitations associated with volume-based neuroimaging techniques.
- Reviews findings from studies employing this method since its introduction in 2018.
Main Results:
- Surface-based DTI has revealed cortical microstructural alterations in various neurological and psychiatric conditions, including Alzheimer's, Parkinson's, and schizophrenia.
- Early detection of intracortical MD changes often precedes macrostructural alterations.
- Microstructural damage correlates significantly with cognitive performance and biomarker measures.
Conclusions:
- Surface-based assessment of intracortical MD is a sensitive neuroimaging marker for early neurodegeneration.
- This technique offers potential utility in clinical trials for monitoring disease progression and treatment response.
- Further research is warranted to explore its application in additional clinical contexts, given DTI's widespread availability.
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