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通过听觉-触觉刺激增强神经相位锁定。

Enhanced neural phase locking through audio-tactile stimulation.

作者信息

Jagt Mels, Ganis Francesco, Serafin Stefania

机构信息

Multisensory Experience Lab, Department of Architecture, Design and Media Technology, Aalborg University Copenhagen, Copenhagen, Denmark.

Life Sciences Engineering (Neuroscience and Neuroengineering), École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Front Neurosci. 2024 Oct 2;18:1425398. doi: 10.3389/fnins.2024.1425398. eCollection 2024.

Abstract

Numerous studies have underscored the close relationship between the auditory and vibrotactile modality. For instance, in the peripheral structures of both modalities, afferent nerve fibers synchronize their activity to the external sensory stimulus, thereby providing a temporal code linked to pitch processing. The Frequency Following Response is a neurological measure that captures this phase locking activity in response to auditory stimuli. In our study, we investigated whether this neural signal is influenced by the simultaneous presentation of a vibrotactile stimulus. Accordingly, our findings revealed a significant increase in phase locking to the fundamental frequency of a speech stimulus, while no such effects were observed at harmonic frequencies. Since phase locking to the fundamental frequency has been associated with pitch perceptual capabilities, our results suggests that audio-tactile stimulation might improve pitch perception in human subjects.

摘要

众多研究强调了听觉和振动触觉模态之间的密切关系。例如,在这两种模态的外周结构中,传入神经纤维将其活动与外部感觉刺激同步,从而提供与音高处理相关的时间编码。频率跟随反应是一种神经学测量方法,用于捕捉对听觉刺激的这种锁相活动。在我们的研究中,我们调查了这种神经信号是否会受到同时呈现的振动触觉刺激的影响。相应地,我们的研究结果显示,对语音刺激基频的锁相显著增加,而在谐波频率上未观察到此类影响。由于对基频的锁相与音高感知能力有关,我们的结果表明,听觉-触觉刺激可能会改善人类受试者的音高感知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb71/11480033/c12c15203907/fnins-18-1425398-g0001.jpg

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