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Diffusion Tensor Magnetic Resonance Imaging in the Analysis of Neurodegenerative Diseases
Published on: July 28, 2013
Frailty and Brain Myelin Across Adulthood: Multimodal MRI Insights From the BLSA
Mustapha Bouhrara1, Zhaoyuan Gong1, Toshiko Tanaka1
1National Institute on Aging, NIH, Baltimore, Maryland, USA.
Abstract:
Frailty is a state of reduced physiological resilience and increased vulnerability to adverse health outcomes, but its neurobiological mechanisms across the adult lifespan remain unclear. Emerging evidence suggests that white matter (WM) alterations may accompany frailty, but previous neuroimaging studies have focused mostly on older adults and used nonspecific MRI markers. This study investigates whether systemic frailty, quantified using a Frailty Index (FI), is associated with WM myelin content and integrity using advanced quantitative MRI. A total of 88 participants (aged 22-94 years, mean = 59.9 ± 20.0) from the Baltimore Longitudinal Study of Aging underwent multicomponent relaxometry MRI to measure myelin content, as well as relaxation rates R1 and R2 to probe white matter overall integrity. Multiple linear regression models examined the relationship between FI and whole-brain and regional MRI biomarkers, adjusting for age and sex. Principal component analysis was used to explore global patterns of myelin and microstructural variation. Higher frailty scores were significantly associated with lower MWF across nearly all WM regions, especially in long-range tracts such as the corona radiata and corpus callosum. R1 and R2 also showed inverse associations with FI, suggesting broader white matter vulnerability. These findings provide the initial evidence linking frailty to brain myelin alterations across the adult lifespan. The study highlights myelin degradation as a candidate neural substrate of frailty and underscores the importance of advanced quantitative MRI in detecting early brain vulnerability related to frailty. Further research is needed to clarify the causal relationship between frailty and myelin changes.
Insights
Frailty is linked to reduced white matter myelin content and integrity across the adult lifespan. Advanced MRI reveals myelin degradation as a potential neurobiological basis for frailty.
Area of Science:
- Neuroscience
- Gerontology
- Biomedical Imaging
Background:
- Frailty, a state of reduced resilience, has unclear neurobiological underpinnings.
- White matter alterations are suspected but poorly understood in frailty.
- Previous studies lacked advanced MRI and focused on older adults.
Purpose of the Study:
- To investigate the association between systemic frailty and white matter (WM) myelin content and integrity.
- To utilize advanced quantitative MRI techniques across the adult lifespan.
Main Methods:
- Recruited 88 participants (aged 22-94) from the Baltimore Longitudinal Study of Aging.
- Employed multicomponent relaxometry MRI to assess myelin water fraction (MWF), R1, and R2.
- Used multiple linear regression and principal component analysis to analyze frailty index (FI) and MRI biomarkers.
Main Results:
- Higher FI scores correlated with significantly lower MWF in most WM regions, particularly long-range tracts.
- R1 and R2 relaxation rates also showed inverse associations with FI, indicating broader WM vulnerability.
- Findings suggest myelin degradation as a neural substrate of frailty.
Conclusions:
- This study provides initial evidence linking frailty to brain myelin alterations across adulthood.
- Advanced quantitative MRI is crucial for detecting early brain vulnerability associated with frailty.
- Myelin degradation is a potential neurobiological mechanism underlying frailty.

