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Examining the Characteristics of Episodic Memory using Event-related Potentials in Patients with Alzheimer's Disease
Published on: August 30, 2011
Reduced visual event-related δ oscillatory responses in amnestic mild cognitive impairment
Görsev G Yener1, Pınar Kurt, Derya Durusu Emek-Savaş
1Brain Dynamics Multidisciplinary Research Center, Dokuz Eylül University, Izmir, Turkey Department of Neurosciences, Dokuz Eylül University, Izmir, Turkey Department of Neurology, Dokuz Eylül University Medical School, Izmir, Turkey Brain Dynamics, Cognition and Complex Systems Research Center, Istanbul Kültür University, Istanbul, Turkey.
Abstract:
Mild cognitive impairment (MCI) is considered as a prodromal stage for Alzheimer's disease (AD) in the majority of cases. Event-related oscillations might be used for detection of cognitive deficits. Our group's earlier results showed diminished delta visual and auditory target oscillatory responses in AD, and we investigated whether this prevails for MCI. Eighteen MCI subjects and 18 age-matched healthy elderly controls were investigated. The maximum peak-to-peak amplitudes of oscillatory responses for each subject's averaged oscillatory target responses in delta, theta, and alpha frequency bands upon application of visual oddball paradigm were measured. Repeated measures of ANOVA was used to analyze four locations (frontal, central, parietal, occipital), at three coronal (left, midline, right) sites. Independent t tests were applied for post-hoc analyses. The oddball target delta response (0.5-3.0 Hz) was 26-32% lower in MCI than healthy controls over fronto-central-parietal regions [F(1.34) = 4.562, p = 0.04]. Without a group effect, theta oscillatory responses (4-7 Hz) showed significant differences in coronal electrodes indicating highest values over mid-electrode sites, and a anteriorposterior x coronal effect, being maximum at mid-central. Alpha frequency band analyses indicated no statistical differences. Peak-to-peak amplitudes of visual target delta oscillatory responses were lower in fronto-central-parietal regions in MCI than in healthy controls. This supports our earlier findings in AD, showing hypoactive delta fronto-central-parietal regions during cognitive tasks. These results indicate that event-related oscillations may detect early changes of brain dynamics in MCI, and deserves to be investigated as a candidate biomarker in further studies using multimodal techniques.
Insights
Mild cognitive impairment (MCI) shows reduced delta brain wave activity in visual tasks, similar to Alzheimer's disease (AD). This finding suggests event-related oscillations could serve as an early biomarker for cognitive decline.
Area of Science:
- Neuroscience
- Cognitive Science
- Biomarkers
Background:
- Mild cognitive impairment (MCI) often precedes Alzheimer's disease (AD).
- Event-related oscillations (EROs) show potential for detecting cognitive deficits.
- Previous research indicated reduced delta oscillatory responses in AD.
Purpose of the Study:
- To investigate if diminished delta oscillatory responses observed in AD are also present in MCI.
- To explore the utility of EROs as potential biomarkers for early cognitive changes.
Main Methods:
- Compared EROs in 18 MCI subjects and 18 healthy elderly controls using a visual oddball paradigm.
- Measured peak-to-peak amplitudes in delta, theta, and alpha frequency bands across frontal, central, parietal, and occipital regions.
- Utilized Repeated Measures ANOVA and independent t-tests for statistical analysis.
Main Results:
- MCI patients exhibited 26-32% lower delta oscillatory responses (0.5-3.0 Hz) in fronto-central-parietal regions compared to controls (p=0.04).
- Theta oscillatory responses showed significant differences across coronal electrodes, peaking at midline sites.
- No significant differences were found in the alpha frequency band between groups.
Conclusions:
- Reduced delta oscillatory responses in fronto-central-parietal regions are characteristic of MCI, mirroring findings in AD.
- EROs, particularly delta responses, may serve as sensitive indicators of early brain dynamic changes in MCI.
- Further research using multimodal techniques is warranted to validate EROs as a biomarker for MCI.

