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Details

Autor(en) / Beteiligte
Titel
Functional near‐infrared spectroscopy evidence of cognitive–motor interference in different dual tasks
Ist Teil von
  • The European journal of neuroscience, 2024-06, Vol.59 (11), p.3045-3060
Ort / Verlag
France: Wiley Subscription Services, Inc
Erscheinungsjahr
2024
Link zum Volltext
Quelle
Wiley Online Library Journals Frontfile Complete
Beschreibungen/Notizen
  • Dual tasks (DTs) combining walking with a cognitive task can cause various levels of cognitive–motor interference, depending on which brain resources are recruited in each case. However, the brain activation and functional connectivity underlying cognitive–motor interferences remain to be elucidated. Therefore, this study investigated the neural correlation during different DT conditions in 40 healthy young adults (mean age: 27.53 years, 28 women). The DTs included walking during subtraction or N‐Back tasks. Cognitive–motor interference was calculated, and brain activation and functional connectivity were analysed. Portable functional near‐infrared spectroscopy was utilized to monitor haemodynamics in the prefrontal cortex (PFC), motor cortex and parietal cortex during each task. Walking interference (decrease in walking speed during DT) was greater than cognitive interference (decrease in cognitive performance during DT), regardless of the type of task. Brain activation in the bilateral PFC and parietal cortex was greater for walking during subtraction than for standing subtraction. Furthermore, brain activation was higher in the bilateral motor and parietal and PFCs for walking during subtraction than for walking alone, but only increased in the PFC for walking during N‐Back. Coherence between the bilateral lateral PFC and between the left lateral PFC and left motor cortex was significantly greater for walking during 2‐Back than for walking. The PFC, a critical brain region for organizing cognitive and motor functions, played a crucial role in integrating information coming from multiple brain networks required for completing DTs. Therefore, the PFC could be a potential target for the modulation and improvement of cognitive–motor functions during neurorehabilitation. We used portable functional near‐infrared spectroscopy to investigate brain activation and functional connectivity in N‐Back and subtraction tasks with simultaneous walking in healthy adults. We found that the prefrontal cortex is a critical brain region that may serve as a potential target for modulating and improving cognitive–motor functions during neurorehabilitation.
Sprache
Englisch
Identifikatoren
ISSN: 0953-816X
eISSN: 1460-9568
DOI: 10.1111/ejn.16333
Titel-ID: cdi_proquest_miscellaneous_3034243805

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