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Updated: May 23, 2026

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Diminished performance on neuropsychological testing in late life depression is correlated with microstructural white
Joseph M Mettenburg1, Tammie L Benzinger, Joshua S Shimony
1Department of Radiology, 660 S. Euclid Ave, Campus Box 8131, Washington University School of Medicine, St Louis, MO 63110, USA.
Background:
Traditional T2 weighted MR imaging results are non-specific for the extent of underlying white matter structural abnormalities present in late life depression (LLD). Diffusion tensor imaging provides a unique opportunity to investigate the extent and nature of structural injury, but has been limited by examining only a subset of regions of interest (ROI) and by confounds common to the study of an elderly population, including comorbid vascular pathology. Furthermore, comprehensive correlation of diffusion tensor imaging (DTI) measurements, including axial and radial diffusivity measurements, has not been demonstrated in the late life depression population.
Methods:
51 depressed and 16 non-depressed, age- and cerebrovascular risk factor-matched elderly subjects underwent traditional anatomic T1 and T2 weight imaging, as well as DTI. The DTI data were skeletonized using tract based spatial statistics (TBSS), and both regional and global analyses were performed.
Results:
Widespread structural abnormalities within white matter were detected in the LLD group, accounting for age, gender and education and matched for cerebrovascular risk factors and global T2 white matter hyperintensities (T2WMH). Regional differences were most prominent in uncinate and cingulate white matter and were generally characterized by an increase in radial diffusivity. Age-related changes particularly in the cingulate bundle were more advanced in individuals with LLD relative to controls. Regression analysis demonstrated significant correlations of regional fractional anisotropy and radial diffusivity with five different neuropsychological factor scores. TBSS analysis demonstrated a greater extent of white matter abnormalities in LLD not responsive to treatment, as compared to controls.
Conclusions:
White matter integrity is compromised in late life depression, largely manifested by increased radial diffusivity in specific regions, suggesting underlying myelin injury. A possible mechanism for underlying myelin injury is chronic white matter ischemia related to intrinsic cerebrovascular disease. In some regions such as the cingulate bundle, the white matter injury related to late life depression appears to be independent of and compounded by age-related changes. The correlations with neuropsychological testing indicate the essential effects of white matter injury on functional status. Lastly, response to treatment may depend on the extent of white matter injury, suggesting a need for intact functional networks.
Insights
Late life depression (LLD) shows widespread white matter abnormalities, particularly increased radial diffusivity, indicating myelin injury. This structural damage correlates with cognitive function and may impact treatment response.
Area of Science:
- Neuroimaging
- Neurology
- Geriatrics
Background:
- Traditional MRI lacks specificity for white matter abnormalities in late-life depression (LLD).
- Diffusion Tensor Imaging (DTI) offers insights into structural brain changes but faces challenges in elderly populations, including confounding vascular pathology.
- Previous studies have not comprehensively correlated DTI metrics, such as axial and radial diffusivity, with LLD.
Purpose of the Study:
- To investigate white matter integrity in LLD using DTI.
- To correlate DTI findings with neuropsychological performance.
- To explore the relationship between white matter abnormalities and treatment response in LLD.
Main Methods:
- 51 individuals with LLD and 16 controls underwent T1, T2, and DTI MRI.
- Tract-Based Spatial Statistics (TBSS) was used for DTI data skeletonization and analysis.
- Regional and global DTI metrics, including fractional anisotropy and radial diffusivity, were analyzed.
Main Results:
- Widespread white matter abnormalities were found in the LLD group, even after accounting for age, education, and vascular risk factors.
- Increased radial diffusivity, suggesting myelin injury, was prominent in the uncinate and cingulate white matter.
- White matter injury in LLD was associated with poorer neuropsychological scores and was more extensive in treatment-non-responsive individuals.
Conclusions:
- White matter integrity is compromised in LLD, characterized by increased radial diffusivity and likely myelin injury.
- Cerebrovascular disease may contribute to myelin injury in LLD.
- White matter damage in LLD impacts cognitive function and may influence treatment outcomes, highlighting the importance of intact neural networks.
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