Exploring Dynamic Brain Oscillations in Motor Imagery and Low-frequency Sound

心理学 积极倾听 听力学 阿尔法(金融) 脑电图 大脑活动与冥想 声音(地理) 神经科学 沟通 发展心理学 声学 物理 医学 结构效度 心理测量学
作者
William H. DuPont,Bénédicte Poulin-Charronnat,Carol Madden-Lombardi,Thomas Jacquet,Philippe Pfister,Typhanie Dos Anjos,Florent Lebon
出处
期刊:Journal of Cognitive Neuroscience [The MIT Press]
卷期号:: 1-15
标识
DOI:10.1162/jocn_a_02311
摘要

Although both motor imagery (MI) and low-frequency sound listening have independently been shown to modulate brain activity, the potential synergistic effects that may arise from their combined application remains unexplored. Any further modulation derived from this combination may be relevant for motor learning and rehabilitation. We probed neurophysiological activity during these two processes, measuring alpha and beta band power amplitude by means of EEG recordings. Twenty healthy volunteers were instructed to (i) explicitly imagine right finger flexion/extension movements in a kinaesthetic modality, (ii) listen to low-frequency sounds, (iii) imagine right finger movements while listening to low-frequency sounds, or (iv) stay at rest. We observed a bimodal distribution of alpha-band reactivity to the conditions, suggesting the presence of variability in brain activity across participants during both MI and low-frequency sound listening. One group of participants (12 individuals) displayed increased alpha power within contralateral sensorimotor and ipsilateral medial parieto-occipital regions during MI. Another group (eight individuals) exhibited a decrease in alpha and beta band power within sensorimotor areas. Interestingly, low-frequency sound listening elicited a similar pattern of brain activity within both groups. The combination of MI and sound listening did not result in additional changes in alpha and beta power amplitudes, regardless of group (groups based on individual alpha-band reactivity). Altogether, these findings shed significant insight into the brain activity and its variability generated during MI and low-frequency sound listening. The simultaneous engagement of MI and low-frequency sound listening did not further modulate alpha power amplitude, possibly due to concurrent cortical activation. It remains possible that sequential performance of these tasks could elicit additional modulation.
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