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双耳节拍通过听觉通路:从脑干到连通模式。

Binaural Beats through the Auditory Pathway: From Brainstem to Connectivity Patterns.

机构信息

Laboratory for Brain, Music and Sound Research (BRAMS), Montreal H2V 2S9, Canada

Department of Psychology, Neuroscience and Behavior, McMaster University, Hamilton L8S 4L8, Canada.

出版信息

eNeuro. 2020 Mar 19;7(2). doi: 10.1523/ENEURO.0232-19.2020. Print 2020 Mar/Apr.

Abstract

Binaural beating is a perceptual auditory illusion occurring when presenting two neighboring frequencies to each ear separately. Several controversial claims have been attributed to binaural beats regarding their ability to entrain human brain activity and mood, in both the scientific literature and the marketing realm. Here, we sought to address those questions in a robust fashion using a single-blind, active-controlled protocol. To do so, we compared the effects of binaural beats with a control beat stimulation (monaural beats, known to entrain brain activity but not mood) across four distinct levels in the human auditory pathway: subcortical and cortical entrainment, scalp-level functional connectivity and self-reports. Both stimuli elicited standard subcortical responses at the pure tone frequencies of the stimulus [i.e., frequency following response (FFR)], and entrained the cortex at the beat frequency [i.e., auditory steady state response (ASSR)]. Furthermore, functional connectivity patterns were modulated differentially by both kinds of stimuli, with binaural beats being the only one eliciting cross-frequency activity. Despite this, we did not find any mood modulation related to our experimental manipulation. Our results provide evidence that binaural beats elicit cross frequency connectivity patterns, but weakly entrain the cortex when compared with monaural beat stimuli. Whether binaural beats have an impact on cognitive performance or other mood measurements remains to be seen and can be further investigated within the proposed methodological framework.

摘要

双耳节拍是一种当分别向每只耳朵呈现两个相邻频率时出现的感知听觉错觉。关于双耳节拍能够使人类大脑活动和情绪同步的能力,在科学文献和营销领域都有一些有争议的说法。在这里,我们试图使用单盲、主动对照的方案来以稳健的方式解决这些问题。为此,我们比较了双耳节拍和控制节拍刺激(单耳节拍,已知能够使大脑活动同步但不能使情绪同步)在人类听觉通路的四个不同水平上的影响:皮质下和皮质同步、头皮水平功能连接和自我报告。这两种刺激都在刺激的纯音频率处引起了标准的皮质下反应(即频率跟随反应[FFR]),并在节拍频率处使皮质同步(即听觉稳态反应[ASSR])。此外,两种刺激都以不同的方式调节了功能连接模式,而双耳节拍是唯一一种引起跨频活动的刺激。尽管如此,我们没有发现任何与我们的实验操作相关的情绪调节。我们的结果提供了证据,表明双耳节拍会引起跨频连接模式,但与单耳节拍刺激相比,对大脑的同步作用较弱。双耳节拍是否会对认知表现或其他情绪测量产生影响还有待观察,可以在提出的方法框架内进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8da/7082494/a3b61bbcbf01/SN-ENUJ200028F008.jpg

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