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Frequencies of Inaudible High-Frequency Sounds Differentially Affect Brain Activity: Positive and Negative Hypersonic Effects

机译:高频听不见的频率差异地影响大脑活动:正面和负面的高超声速效应

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摘要

The hypersonic effect is a phenomenon in which sounds containing significant quantities of non-stationary high-frequency components (HFCs) above the human audible range (max. 20 kHz) activate the midbrain and diencephalon and evoke various physiological, psychological and behavioral responses. Yet important issues remain unverified, especially the relationship existing between the frequency of HFCs and the emergence of the hypersonic effect.In this study, to investigate the relationship between the hypersonic effect and HFC frequencies, we divided an HFC (above 16 kHz) of recorded gamelan music into 12 band components and applied them to subjects along with an audible component (below 16 kHz) to observe changes in the alpha2 frequency component (10–13 Hz) of spontaneous EEGs measured from centro-parieto-occipital regions (Alpha-2 EEG), which we previously reported as an index of the hypersonic effect.Our results showed reciprocal directional changes in Alpha-2 EEGs depending on the frequency of the HFCs presented with audible low-frequency component (LFC). When an HFC above approximately 32 kHz was applied, Alpha-2 EEG increased significantly compared to when only audible sound was applied (positive hypersonic effect), while, when an HFC below approximately 32 kHz was applied, the Alpha-2 EEG decreased (negative hypersonic effect). These findings suggest that the emergence of the hypersonic effect depends on the frequencies of inaudible HFC.
机译:高超声速效应是一种现象,其中声音中包含大量高于人的可听范围(最大20 kHz)的非平稳高频分量(HFC),从而激活中脑和间脑并引起各种生理,心理和行为反应。然而,重要的问题仍未得到证实,尤其是HFC的频率与高超声速效应的出现之间存在的关系。在这项研究中,为了研究高超声速效应与HFC频率之间的关系,我们将记录的HFC(16 kHz以上)进行了划分将加麦兰音乐分为12个频段成分,并将它们与可听见成分(低于16 kHz)一起应用于对象,以观察从上顶枕区(Alpha-2)测量到的自发性EEG的alpha2频率成分(10–13 Hz)的变化。脑电图),我们先前将其报告为高超声速效应的指标。我们的结果表明,Alpha-2脑电图的方向性变化取决于出现低频分量(LFC)的HFC的频率。当应用HFC高于大约32 kHz时,与仅应用听得见的声音(正高超音速)相比,Alpha-2 EEG显着增加,而当应用低于32 kHz的HFC时,Alpha-2 EEG降低(负高超音速效果)。这些发现表明,高超音速效应的出现取决于听不见的HFC的频率。

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