Related Experiment Video
Updated: Feb 13, 2026

DTI of the Visual Pathway - White Matter Tracts and Cerebral Lesions
Published on: August 26, 2014
Longitudinal microstructural changes of cerebral white matter and their association with mobility performance in
Nicola Moscufo1, Dorothy B Wakefield2, Dominik S Meier1
1Center for Neurological Imaging, Department of Radiology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts, United States of America.
Abstract:
Mobility impairment in older persons is associated with brain white matter hyperintensities (WMH), a common finding in magnetic resonance images and one established imaging biomarker of small vessel disease. The contribution of possible microstructural abnormalities within normal-appearing white matter (NAWM) to mobility, however, remains unclear. We used diffusion tensor imaging (DTI) measures, i.e. fractional anisotropy (FA), mean diffusivity (MD), axial diffusivity (AD), radial diffusivity (RD), to assess microstructural changes within supratentorial NAWM and WMH sub-compartments, and to investigate their association with changes in mobility performance, i.e. Tinetti assessment and the 2.5-meters walk time test. We analyzed baseline (N = 86, age ≥75 years) and 4-year (N = 41) follow-up data. Results from cross-sectional analysis on baseline data showed significant correlation between WMH volume and NAWM-FA (r = -0.33, p = 0.002), NAWM-AD (r = 0.32, p = 0.003) and NAWM-RD (r = 0.39, p = 0.0002). Our longitudinal analysis showed that after 4-years, FA and AD decreased and RD increased within NAWM. In regional tract-based analysis decrease in NAWM-FA and increase in NAWM-RD within the genu of the corpus callosum correlated with slower walk time independent of age, gender and WMH burden. In conclusion, global DTI indices of microstructural integrity indicate that significant changes occur in the supratentorial NAWM over four years. The observed changes likely reflect white matter deterioration resulting from aging as well as accrual of cerebrovascular injury associated with small vessel disease. The observed association between mobility scores and regional measures of NAWM microstructural integrity within the corpus callosum suggests that subtle changes within this structure may contribute to mobility impairment.
Insights
Brain imaging shows subtle white matter changes in older adults are linked to mobility decline. These microstructural abnormalities in normal-appearing white matter (NAWM) worsen over time, impacting walking speed.
Area of Science:
- Neuroimaging
- Gerontology
- Neurology
Background:
- Mobility impairment in older adults is linked to white matter hyperintensities (WMH).
- The role of microstructural changes in normal-appearing white matter (NAWM) on mobility is not well understood.
- Small vessel disease is a common cause of WMH and may affect NAWM.
Purpose of the Study:
- To investigate microstructural abnormalities in NAWM and WMH using diffusion tensor imaging (DTI).
- To examine the association between these microstructural changes and mobility performance over four years.
- To identify specific white matter regions contributing to mobility decline.
Main Methods:
- Diffusion tensor imaging (DTI) measures (FA, MD, AD, RD) were used to assess white matter microstructure.
- Analysis included baseline and 4-year follow-up data from 86 older adults (age ≥75).
- Mobility was assessed using the Tinetti assessment and 2.5-meters walk time test.
Main Results:
- Baseline analysis revealed correlations between WMH volume and NAWM microstructural integrity (FA, AD, RD).
- Longitudinal analysis showed decreased FA and AD, and increased RD in NAWM over four years.
- Reduced NAWM-FA and increased NAWM-RD in the genu of the corpus callosum correlated with slower walk times.
Conclusions:
- Significant microstructural changes occur in supratentorial NAWM over four years in older adults.
- These changes reflect aging and cerebrovascular injury, contributing to white matter deterioration.
- Subtle microstructural alterations in the corpus callosum are associated with mobility impairment.
More Related Videos
Related Concept Videos
Longitudinal Research
Classifying Matter by State
Classifying Matter by Composition
According to its composition, the matter can be classified into two broad categories — pure substances and mixtures.
A pure substance is a form of matter that has a constant composition throughout with uniform properties. For example, any sample of sucrose has the same composition and same physical properties, such as melting point, color, and sweetness, regardless of the source from which it is isolated.
A mixture is composed of two or...
Physical and Chemical Properties of Matter
What is Matter?
The Atomic Theory of Matter

