A feasibility study on electroencephalographic monitoring of executive functions during dual (motor and cognitive) task execution is presented. Electroencephalographic (EEG) signals are acquired by means of a wearable device with few channels and dry electrodes. The light weight and wireless device allow for walking in a natural way. The most significant EEG features are investigated to classify different levels of activation for two fundamental Executive Functions (EF) both in sitting and walking conditions. Power spectral density in the gamma band resulted in the most relevant feature in discriminating low and high levels of Inhibition. Power spectral density in the beta and gamma bands resulted the most discriminating the level of activation of Working Memory. The study poses the basis for (i) monitoring the activation levels of EF during Gait allowing loss prevention in the elderly and (ii) specific cognitive rehabilitation aimed at the most relevant executive functions during walking.
Electroencephalographic-based wearable instrumentation to monitor the executive functions during gait: a feasibility study / Arpaia, P.; Cuocolo, R.; De Blasiis, P.; Calce, A. D.; Fullin, A.; Gargiulo, L.; Maffei, L.; Moccaldi, N.. - In: ACTA IMEKO. - ISSN 0237-028X. - 12:2(2023), pp. 1-6. [10.21014/actaimeko.v12i2.1460]
Electroencephalographic-based wearable instrumentation to monitor the executive functions during gait: a feasibility study
Arpaia P.
;Cuocolo R.;Fullin A.;Gargiulo L.;Maffei L.;Moccaldi N.
2023
Abstract
A feasibility study on electroencephalographic monitoring of executive functions during dual (motor and cognitive) task execution is presented. Electroencephalographic (EEG) signals are acquired by means of a wearable device with few channels and dry electrodes. The light weight and wireless device allow for walking in a natural way. The most significant EEG features are investigated to classify different levels of activation for two fundamental Executive Functions (EF) both in sitting and walking conditions. Power spectral density in the gamma band resulted in the most relevant feature in discriminating low and high levels of Inhibition. Power spectral density in the beta and gamma bands resulted the most discriminating the level of activation of Working Memory. The study poses the basis for (i) monitoring the activation levels of EF during Gait allowing loss prevention in the elderly and (ii) specific cognitive rehabilitation aimed at the most relevant executive functions during walking.File | Dimensione | Formato | |
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