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Updated: Apr 13, 2026

Automatic Detection of Highly Organized Theta Oscillations in the Murine EEG
Published on: March 10, 2017
Theta and alpha EEG frequency interplay in subjects with mild cognitive impairment: evidence from EEG, MRI, and SPECT
1Istituto di Ricovero e Cura a Carattere Scientifico San Giovanni di Dio - Fatebenefratelli, Brescia, Italy.
Background:
Temporo-parietal and medial temporal cortex atrophy are associated with mild cognitive impairment (MCI) due to Alzheimer disease (AD) as well as the reduction of regional cerebral blood perfusion in hippocampus. Moreover, the increase of EEG alpha3/alpha2 power ratio has been associated with MCI due to AD and with an increase in theta frequency power in a group of subjects with impaired cerebral perfusion in hippocampus.
Methods:
Seventy four adult subjects with MCI underwent clinical and neuropsychological evaluation, electroencephalogram (EEG) recording and high resolution 3D magnetic resonance imaging (MRI). Among the patients, a subset of 27 subjects underwent also perfusion single-photon emission computed tomography and hippocampal atrophy evaluation. Alpha3/alpha2 power ratio as well as cortical thickness was computed for each subject. Three MCI groups were detected according to increasing tertile values of alpha3/alpha2 power ratio and difference of cortical thickness among the groups estimated.
Results:
Higher alpha3/alpha2 power ratio group had wider cortical thinning than other groups, mapped to the Supramarginal and Precuneus bilaterally. Subjects with higher alpha3/alpha2 frequency power ratio showed a constant trend to a lower perfusion than lower alpha3/alpha2 group. Moreover, this group correlates with both a bigger hippocampal atrophy and an increase of theta frequency power.
Conclusion:
Higher EEG alpha3/alpha2 power ratio was associated with temporo-parietal cortical thinning, hippocampal atrophy and reduction of regional cerebral perfusion in medial temporal cortex. In this group an increase of theta frequency power was detected inMCI subjects. The combination of higher EEG alpha3/alpha2 power ratio, cortical thickness measure and regional cerebral perfusion reveals a complex interplay between EEG cerebral rhythms, structural and functional brain modifications.
Insights
Increased EEG alpha3/alpha2 power ratio in mild cognitive impairment (MCI) correlates with brain atrophy and reduced blood flow. This suggests a link between brain electrical activity and structural/functional changes in MCI patients.
Area of Science:
- Neuroscience
- Medical Imaging
- Electroencephalography
Background:
- Mild cognitive impairment (MCI) due to Alzheimer disease (AD) is linked to temporo-parietal and medial temporal cortex atrophy.
- Reduced hippocampal cerebral blood perfusion is observed in MCI due to AD.
- Elevated EEG alpha3/alpha2 power ratio and increased theta frequency power are associated with MCI and hippocampal perfusion impairment.
Purpose of the Study:
- To investigate the relationship between EEG alpha3/alpha2 power ratio, cortical thickness, and cerebral perfusion in subjects with MCI.
- To identify distinct MCI subgroups based on EEG alpha3/alpha2 power ratio and cortical thickness.
Main Methods:
- Seventy-four adult subjects with MCI underwent clinical, neuropsychological, EEG, and MRI evaluations.
- A subset of 27 subjects had perfusion SPECT and hippocampal atrophy assessment.
- EEG alpha3/alpha2 power ratio and cortical thickness were calculated to define three MCI groups.
Main Results:
- Higher EEG alpha3/alpha2 power ratio was associated with greater temporo-parietal cortical thinning (Supramarginal and Precuneus).
- Subjects with higher alpha3/alpha2 power ratio showed a trend towards lower cerebral perfusion.
- This group also exhibited increased hippocampal atrophy and elevated theta frequency power.
Conclusions:
- Elevated EEG alpha3/alpha2 power ratio in MCI is linked to temporo-parietal cortical thinning, hippocampal atrophy, and reduced medial temporal perfusion.
- Increased theta frequency power was observed in MCI subjects with higher EEG alpha3/alpha2 power ratio.
- The study highlights a complex interplay between EEG rhythms, structural, and functional brain changes in MCI.
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