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Theta-gamma-coupling as predictor of working memory performance in young and elderly healthy people
M. Abubaker, W. Al Qasem, K. Pilátová, P. Ježdík, E. Kvašňák
Language English Country England, Great Britain
Document type Journal Article
Grant support
This study was supported by the COOPERATIO program of the Third Faculty of Medicine, Charles University
This study was supported by the COOPERATIO program of the Third Faculty of Medicine, Charles University
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- MeSH
- Adult MeSH
- Electroencephalography MeSH
- Gamma Rhythm * physiology MeSH
- Memory, Short-Term * physiology MeSH
- Middle Aged MeSH
- Humans MeSH
- Young Adult MeSH
- Transcranial Direct Current Stimulation * MeSH
- Reaction Time physiology MeSH
- Aged MeSH
- Aging physiology MeSH
- Theta Rhythm * physiology MeSH
- Health MeSH
- Check Tag
- Adult MeSH
- Middle Aged MeSH
- Humans MeSH
- Young Adult MeSH
- Male MeSH
- Aged MeSH
- Female MeSH
- Publication type
- Journal Article MeSH
The relationship between working memory (WM) and neuronal oscillations can be studied in detail using brain stimulation techniques, which provide a method for modulating these oscillations and thus influencing WM. The endogenous coupling between the amplitude of gamma oscillations and the phase of theta oscillations is crucial for cognitive control. Theta/gamma peak-coupled transcranial alternating current stimulation (TGCp-tACS) can modulate this coupling and thus influence WM performance. This study investigated the effects of TGCp-tACS on WM in older adults and compared their responses with those of younger participants from our previous work who underwent the same experimental design. Twenty-eight older subjects underwent both TGCp-tACS and sham stimulation sessions at least 72 h apart. Resting-state electroencephalography (EEG) was recorded before and after the interventions, and a WM task battery with five different WM tasks was performed during the interventions to assess various WM components. Outcomes measured included WM task performance (e.g., accuracy, reaction time (RT)) and changes in power spectral density (PSD) in different frequency bands. TGCp-tACS significantly decreased accuracy and RT on the 10- and 14-point Sternberg tasks and increased RT on the Digit Symbol Substitution Test in older adults. In contrast, younger participants showed a significant increase in accuracy only on the 14-item Sternberg task. Electrophysiological analysis revealed a decrease in delta and theta PSD and an increase in high gamma PSD in both younger and older participants after verum stimulation. In conclusion, theta-gamma coupling is essential for WM and modulation of this coupling affects WM performance. The effects of TGCp-tACS on WM vary with age due to natural brain changes. To better support older adults, the study suggests several strategies to improve cognitive function, including: Adjusting stimulation parameters, applying stimulation to two sites, conducting multiple sessions, and using brain imaging techniques for precise targeting.
References provided by Crossref.org
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