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Updated: May 14, 2026

Lesion Explorer: A Video-guided, Standardized Protocol for Accurate and Reliable MRI-derived Volumetrics in Alzheimer's Disease and Normal Elderly
Published on: April 14, 2014
Associations between T1 white matter lesion volume and regional white matter microstructure in aging
Elizabeth C Leritz1, Juli Shepel, Victoria J Williams
1Geriatric Research, Education and Clinical Center (GRECC) and Neuroimaging Research for Veterans Center (NeRVe), VA Boston Healthcare System, Boston, Massachusetts; Division of Aging, Brigham and Women's Hospital, Boston, Massachusetts; Harvard Medical School, Boston, Massachusetts; Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Boston, Massachusetts.
Abstract:
White matter lesions, typically manifesting as regions of signal intensity abnormality (WMSA) on MRI, increase in frequency with age. However, the role of this damage in cognitive decline and disease is still not clear, as lesion volume has only loosely been associated with clinical status. Diffusion tensor imaging (DTI) has been used to examine the quantitative microstructural integrity of white matter, and has applications in the examination of subtle changes to tissue that appear visually normal on conventional imaging. The primary goal of this study was to determine whether major macrostructural white matter damage, (total WMSA volume), is associated with microstructural integrity of normal appearing white matter, and if these macrostructural changes fully account for microstructural changes. Imaging was performed in 126 nondemented individuals, ages 43-85 years, with no history of cerebrovascular disease. Controlling for age, greater WMSA volume was associated with decreased fractional anisotropy (FA) in widespread brain regions. Patterns were similar for FA and radial diffusivity but in contrast, WMSA was associated with axial diffusivity in fewer areas. Age was associated with FA in several regions, and many of these effects remained even when controlling for WMSA volume, suggesting the etiology of WMSAs does not fully account for all age-associated white matter deterioration. These results provide evidence that WMSA volume is associated with the integrity of normal-appearing white matter. In addition, our results suggest that overt lesions may not account for the association of increasing age with decreased white matter tissue integrity.
Insights
White matter lesions (WMSA) correlate with reduced white matter integrity in visually normal brain tissue. This damage, however, does not fully explain age-related white matter changes.
Area of Science:
- Neuroimaging
- White Matter Integrity
- Aging Brain
Background:
- White matter lesions (WMSA) are common with age but their impact on cognition is unclear.
- Lesion volume loosely correlates with clinical status.
- Diffusion tensor imaging (DTI) detects subtle white matter microstructural changes.
Purpose of the Study:
- To investigate the association between macrostructural white matter damage (WMSA volume) and microstructural integrity of normal-appearing white matter.
- To determine if WMSA volume fully explains microstructural changes.
Main Methods:
- 126 non-demented individuals (43-85 years) underwent MRI and DTI.
- Analysis controlled for age and cerebrovascular disease history.
- Examined associations between WMSA volume and DTI metrics (FA, radial/axial diffusivity).
Main Results:
- Greater WMSA volume associated with decreased fractional anisotropy (FA) and altered radial diffusivity in normal-appearing white matter.
- WMSA volume associated with axial diffusivity in fewer regions.
- Age-related FA changes persisted even after controlling for WMSA volume.
Conclusions:
- Macrostructural white matter lesions are linked to microstructural integrity of adjacent normal-appearing white matter.
- Overt lesions do not entirely account for age-associated declines in white matter integrity.
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