Correspondence between white matter hyperintensities and regional grey matter volumes in Alzheimer's disease
Fangyuan Yi1,2, Jirui Wang1, Meiqing Lin1
1Department of Neurology, The First Affiliated Hospital of China Medical University, Shenyang, China.
Objective:
White matter hyperintensities (WMH) are the most common neuroimaging manifestation of cerebral small vessel disease, and is frequently observed in Alzheimer's disease (AD). This study aimed to investigate the relationship between WMH and cognition and to verify the mediation of grey matter atrophy in this relationship.
Methods:
The diffusion tensor imaging (DTI) technique analyses white matter fiber tract to assess white matter integrity. Voxel-based morphometry was applied to measure the grey matter volume (GMV). A linear regression model was applied to examine the associations between WMH and GMV, and mediation analyses was performed to determine the mediating role of regional GMV in the effect of WMH on cognitive function.
Results:
Compared to the HC group, AD group have 8 fiber tract fractional anisotropy (FA) decreased and 16 fiber tract mean diffusivity (MD) increased. Compared to AD without WMH, AD with high WMH had 9 fiber tracts FA decreased and 13 fiber tracts MD increased. High WMH volume was negatively correlated with GMV in the frontal-parietal region. Low WMH volume was also negatively correlated with GMV except for the three regions (right angular gyrus, right superior frontal gyrus and right middle/inferior parietal gyrus), where GMV was positively correlated. Mediation analysis showed that the association between WMH and executive function or episodic memory were mediated by GMV in the frontal-parietal region.
Conclusion:
Damage to white matter integrity was more severe in AD with WMH. Differential changes in DTI metrics may be caused by progressive myelin and axonal damage. There was a negative correlation between WMH and grey matter atrophy in frontal-parietal regions in a volume-dependent manner. This study indicates the correspondence between WMH volume and GMV in cognition, and GMV being a key modulator between WMH and cognition in AD. This result will contribute to understanding the progression of the disease process and applying targeted therapeutic intervention in the earlier stage to delay neurodegenerative changes in frontal-parietal regions to achieve better treatment outcomes and affordability.
Insights
White matter hyperintensities (WMH) in Alzheimer's disease (AD) are linked to reduced grey matter volume (GMV) and impaired cognition. Grey matter atrophy mediates the negative impact of WMH on executive function and memory.
Area of Science:
- Neuroimaging
- Neurology
- Alzheimer's Disease Research
Background:
- White matter hyperintensities (WMH) are common in Alzheimer's disease (AD) and indicate cerebral small vessel disease.
- WMH are associated with cognitive decline and neurodegeneration.
Purpose of the Study:
- To investigate the relationship between WMH and cognitive function in AD.
- To determine if grey matter atrophy mediates the effects of WMH on cognition.
Main Methods:
- Diffusion tensor imaging (DTI) assessed white matter integrity.
- Voxel-based morphometry measured grey matter volume (GMV).
- Linear regression and mediation analyses examined WMH-GMV-cognition relationships.
Main Results:
- AD patients with WMH showed more severe white matter damage (decreased FA, increased MD).
- WMH volume correlated negatively with frontal-parietal GMV, except in specific regions.
- Mediation analysis confirmed GMV in the frontal-parietal region mediates the association between WMH and cognitive functions (executive function, episodic memory).
Conclusions:
- WMH severity is associated with grey matter atrophy in AD.
- Grey matter volume acts as a key modulator between WMH and cognitive impairment in AD.
- Understanding these relationships can inform targeted interventions to delay neurodegeneration in AD.
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