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Aging patterns of Japanese auditory semantic processing: an fMRI study
Hengshuang Liu1, Makoto Miyakoshi2, Toshiharu Nakai3
1National Key Research Centre for Linguistics and Applied Linguistics, Adjunct Researcher in the Bilingual Cognition and Development Lab, Guangdong University of Foreign Studies, Guangzhou, China.
Summary
Older adults maintain listening comprehension skills, with brain changes like reduced connectivity but increased left-lateralization in high performers. These findings challenge stereotypes of cognitive decline and support neurocognitive aging models.
Area of Science:
- Neuroscience
- Cognitive Psychology
- Gerontology
Background:
- Listening comprehension is often assumed to decline with age, contrary to stereotypes of universal cognitive deterioration.
- Investigating the neural mechanisms supporting preserved auditory semantic function in older adults is crucial.
Purpose of the Study:
- To examine how neural mechanisms support auditory semantic processing in older adults.
- To compare brain activity and connectivity in younger and older adults during a semantic task.
Main Methods:
- Functional magnetic resonance imaging (fMRI) using a 3 Tesla MRI scanner.
- Auditory semantic-tone task administered to 22 younger and 21 older Japanese adults.
- Analysis of brain activation, laterality, and interregional connectivity.
Main Results:
- Older adults exhibited preserved accuracy but slower responses compared to younger adults.
- Weakened interregional connectivity and largely unchanged activation/laterality were observed in older adults.
- Superiorly performing older adults showed increased left-lateralization and stronger connectivity within domain-general networks.
Conclusions:
- Auditory semantic processing appears relatively preserved in aging, challenging notions of inevitable cognitive decline.
- Cortical reorganization, including increased left-lateralization and connectivity, may underlie preserved function in older adults.
- Observed neural changes align with neurocognitive aging models, suggesting their applicability to age-intact cognitive functions.
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