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Atrophy and dysfunction of parahippocampal white matter in mild Alzheimer's disease
Changsheng Wang1, Glenn T Stebbins, David A Medina
1Department of Neurological Sciences, Rush University Medical Center, Chicago, IL, USA. cwang30@emory.edu
Abstract:
In addition to atrophy of mesial temporal lobe structures critical for memory function, white matter projections to the hippocampus may be compromised in individuals with mild Alzheimer's disease (AD), thereby compounding the memory difficulty. In the present study, high-resolution structural imaging and diffusion tensor imaging techniques were used to examine microstructural alterations in the parahippocampal white matter (PWM) region that includes the perforant path. Results demonstrated white matter volume loss bilaterally in the PWM in patients with mild AD. In addition, the remaining white matter had significantly lower fractional anisotropy and higher mean diffusivity values. Both increased mean diffusivity and volume reduction in the PWM were associated with memory performance and ApoE ε4 allele status. These findings indicate that, in addition to partial disconnection of the hippocampus from incoming sensory information due to volume loss in PWM, microstructural alterations in remaining fibers may further degrade impulse transmission to the hippocampus and accentuate memory dysfunction. The results reported here also suggest that ApoE ε4 may exacerbate PWM changes.
Insights
Mild Alzheimer's disease (AD) damages parahippocampal white matter (PWM), affecting memory. This study found PWM volume loss and microstructural changes in AD patients, linked to memory decline and ApoE ε4 status.
Area of Science:
- Neuroimaging
- Neurodegenerative Diseases
- Alzheimer's Disease Research
Background:
- Memory impairment in mild Alzheimer's disease (AD) is linked to hippocampal atrophy.
- White matter pathways connecting to the hippocampus may also be affected, worsening memory deficits.
Purpose of the Study:
- To investigate microstructural alterations in the parahippocampal white matter (PWM) in individuals with mild AD.
- To correlate these changes with memory performance and apolipoprotein E (ApoE) ε4 allele status.
Main Methods:
- Utilized high-resolution structural imaging and diffusion tensor imaging (DTI).
- Examined microstructural integrity and volume of the PWM, including the perforant path.
Main Results:
- Mild AD patients exhibited bilateral PWM volume loss.
- Reduced fractional anisotropy and increased mean diffusivity were observed in the remaining PWM.
- PWM volume reduction and increased mean diffusivity correlated with poorer memory performance and ApoE ε4 allele presence.
Conclusions:
- PWM volume loss and microstructural fiber damage contribute to hippocampal disconnection and memory dysfunction in mild AD.
- These findings suggest that ApoE ε4 may worsen PWM alterations in Alzheimer's disease.
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