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Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Microstructural brain assessment in late-life depression and apathy using diffusion MRI multi-compartments models and
Renaud Hédouin1, Jean-Charles Roy1,2,3, Thomas Desmidt4,5,6
1Univ Rennes, INRIA, CNRS, INSERM, IRISA UMR 6074, Empenn ERL U 1228, 35000, Rennes, France.
Abstract:
Late-life depression (LLD) is both common and disabling and doubles the risk of dementia onset. Apathy might constitute an additional risk of cognitive decline but clear understanding of its pathophysiology is lacking. While white matter (WM) alterations have been assessed using diffusion tensor imaging (DTI), this model cannot accurately represent WM microstructure. We hypothesized that a more complex multi-compartment model would provide new biomarkers of LLD and apathy. Fifty-six individuals (LLD n = 35, 26 females, 75.2 ± 6.4 years, apathy evaluation scale scores (41.8 ± 8.7) and Healthy controls, n = 21, 16 females, 74.7 ± 5.2 years) were included. In this article, a tract-based approach was conducted to investigate novel diffusion model biomarkers of LLD and apathy by interpolating microstructural metrics directly along the fiber bundle. We performed multivariate statistical analysis, combined with principal component analysis for dimensional data reduction. We then tested the utility of our framework by demonstrating classically reported from the literature modifications in LDD while reporting new results of biological-basis of apathy in LLD. Finally, we aimed to investigate the relationship between apathy and microstructure in different fiber bundles. Our study suggests that new fiber bundles, such as the striato-premotor tracts, may be involved in LLD and apathy, which bring new light of apathy mechanisms in major depression. We also identified statistical changes in diffusion MRI metrics in 5 different tracts, previously reported in major cognitive disorders dementia, suggesting that these alterations among these tracts are both involved in motivation and cognition and might explain how apathy is a prodromal phase of degenerative disorders.
Insights
Late-life depression (LLD) and apathy show altered white matter microstructure. Novel diffusion MRI models reveal striato-premotor tract changes, linking apathy to cognitive decline and dementia risk.
Area of Science:
- Neuroimaging
- Geriatric Psychiatry
- Cognitive Neuroscience
Background:
- Late-life depression (LLD) is common, disabling, and increases dementia risk.
- Apathy is associated with cognitive decline, but its underlying mechanisms in LLD are unclear.
- Diffusion Tensor Imaging (DTI) has limitations in accurately assessing white matter microstructure.
Purpose of the Study:
- To investigate novel diffusion model biomarkers for LLD and apathy using a multi-compartment model.
- To explore the relationship between apathy and white matter microstructure in specific fiber bundles.
- To identify new biomarkers for LLD and apathy, potentially revealing apathy's role in cognitive decline.
Main Methods:
- A tract-based approach interpolating microstructural metrics along fiber bundles.
- Inclusion of 56 individuals (35 LLD, 21 healthy controls).
- Multivariate statistical analysis combined with principal component analysis for data reduction.
Main Results:
- Identified statistical changes in diffusion MRI metrics in 5 different tracts.
- Demonstrated classically reported white matter modifications in LLD.
- Reported new findings on the biological basis of apathy in LLD, implicating striato-premotor tracts.
Conclusions:
- Novel diffusion models provide enhanced biomarkers for LLD and apathy.
- Striato-premotor tracts may play a role in LLD and apathy.
- White matter alterations in specific tracts are linked to both motivation and cognition, suggesting apathy as a potential prodromal phase of neurodegenerative disorders.
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