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用于脑电波诱导的个性化θ波和β波双耳节拍:一项脑电图分析。

Personalized Theta and Beta Binaural Beats for Brain Entrainment: An Electroencephalographic Analysis.

作者信息

Corona-González César E, Alonso-Valerdi Luz María, Ibarra-Zarate David I

机构信息

Escuela de Ingeniería y Ciencias, Tecnológico de Monterrey, Monterrey, Mexico.

出版信息

Front Psychol. 2021 Nov 11;12:764068. doi: 10.3389/fpsyg.2021.764068. eCollection 2021.

Abstract

Binaural beats (BB) consist of two slightly distinct auditory frequencies (one in each ear), which are differentiated with clinical electroencephalographic (EEG) bandwidths, namely, delta, theta, alpha, beta, or gamma. This auditory stimulation has been widely used to module brain rhythms and thus inducing the mental condition associated with the EEG bandwidth in use. The aim of this research was to investigate whether personalized BB (specifically those within theta and beta EEG bands) improve brain entrainment. Personalized BB consisted of pure tones with a carrier tone of 500 Hz in the left ear together with an adjustable frequency in the right ear that was defined for theta BB (since for theta EEG band was 4.60 Hz ± 0.70 SD) and beta BB (since for beta EEG band was 18.42 Hz ± 2.82 SD). The adjustable frequencies were estimated for each participant in accordance with their heart rate by applying the Brain-Body Coupling Theorem postulated by Klimesch. To achieve this aim, 20 healthy volunteers were stimulated with their personalized theta and beta BB for 20 min and their EEG signals were collected with 22 channels. EEG analysis was based on the comparison of power spectral density among three mental conditions: (1) theta BB stimulation, (2) beta BB stimulation, and (3) resting state. Results showed larger absolute power differences for both BB stimulation sessions than resting state on bilateral temporal and parietal regions. This power change seems to be related to auditory perception and sound location. However, no significant differences were found between theta and beta BB sessions when it was expected to achieve different brain entrainments, since theta and beta BB induce relaxation and readiness, respectively. In addition, relative power analysis (theta BB/resting state) revealed alpha band desynchronization in the parieto-occipital region when volunteers listened to theta BB, suggesting that participants felt uncomfortable. In conclusion, neural resynchronization was met with both personalized theta and beta BB, but no different mental conditions seemed to be achieved.

摘要

双耳节拍(BB)由两个略有不同的听觉频率组成(每只耳朵一个),这些频率在临床脑电图(EEG)带宽中有所区分,即δ波、θ波、α波、β波或γ波。这种听觉刺激已被广泛用于调节脑节律,从而诱发与所使用的EEG带宽相关的精神状态。本研究的目的是调查个性化的BB(特别是那些在θ波和β波EEG频段内的)是否能改善脑同步。个性化的BB由左耳500Hz的载波纯音和右耳的可调频率组成,该可调频率针对θ波BB(因为θ波EEG频段为4.60Hz±0.70标准差)和β波BB(因为β波EEG频段为18.42Hz±2.82标准差)进行定义。根据Klimesch提出的脑-体耦合定理,为每个参与者根据其心率估计可调频率。为实现这一目标,20名健康志愿者接受个性化的θ波和β波BB刺激20分钟,并通过22个通道收集他们的EEG信号。EEG分析基于三种精神状态下功率谱密度的比较:(1)θ波BB刺激,(2)β波BB刺激,以及(3)静息状态。结果显示,与静息状态相比,双侧颞叶和顶叶区域的两个BB刺激阶段的绝对功率差异更大。这种功率变化似乎与听觉感知和声音定位有关。然而,当预期实现不同的脑同步时,θ波和β波BB阶段之间未发现显著差异,因为θ波和β波BB分别诱发放松和警觉状态。此外,相对功率分析(θ波BB/静息状态)显示,当志愿者听θ波BB时,顶枕区α波去同步化,这表明参与者感到不舒服。总之,个性化的θ波和β波BB都实现了神经再同步,但似乎没有实现不同的精神状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a85/8636003/89bca1835ad0/fpsyg-12-764068-g001.jpg

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