Hippocampal disconnection contributes to memory dysfunction in individuals at risk for Alzheimer's disease

Travis R Stoub1, Leyla deToledo-Morrell, Glenn T Stebbins

  • 1Department of Neurological Sciences, Rush University Medical Center, 1653 West Congress Parkway, Chicago, IL 60612, USA.

Insights

Mild cognitive impairment (MCI) involves memory decline in older adults. This study found that reduced white matter volume in the parahippocampal gyrus and atrophy in the hippocampus contribute to memory loss in MCI patients.

Area of Science:

  • Neuroimaging
  • Neurology
  • Gerontology

Background:

  • Amnestic mild cognitive impairment (MCI) affects older adults, presenting memory decline without dementia.
  • Individuals with MCI are at increased risk for Alzheimer's disease, making them crucial for studying early disease stages.
  • The precise mechanisms behind memory dysfunction in MCI remain unclear.

Purpose of the Study:

  • To investigate the in vivo anatomical basis of memory dysfunction in amnestic MCI using high-resolution structural MRI.
  • To identify specific brain structure changes associated with memory decline in MCI.
  • To explore the relationship between structural brain changes and memory performance.

Main Methods:

  • Employed quantitative, high-resolution structural MRI.
  • Utilized whole-brain, voxel-based morphometry to assess white matter volume.
  • Performed volumetric segmentation of the entorhinal cortex and hippocampus.

Main Results:

  • Found significantly reduced white matter volume in the parahippocampal gyrus (perforant path region) in MCI participants compared to controls.
  • Observed significant atrophy in both the entorhinal cortex and hippocampus in individuals with amnestic MCI.
  • Demonstrated that hippocampal and parahippocampal white matter volumes predict declarative memory performance.

Conclusions:

  • Memory decline in MCI is associated with both hippocampal atrophy and disruption of parahippocampal white matter fibers.
  • Parahippocampal white matter disruption may impair memory by disconnecting the hippocampus from sensory input.
  • These findings highlight the role of white matter integrity in maintaining memory function in aging and MCI.

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