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基于先前声音序列规律性的预期与内侧橄榄耳蜗反射之间的关系。

Relationships between the expectations based on the regularity of preceding sound sequences and the medial olivocochlear reflex.

作者信息

Ishizaka Yuki, Otsuka Sho, Nakagawa Seiji

机构信息

Department of Medical Engineering, Graduate School of Science and Engineering, Chiba University, Chiba, Japan.

Center for Frontier Medical Engineering, Chiba University, Chiba, Japan.

出版信息

PLoS One. 2024 Jul 17;19(7):e0304027. doi: 10.1371/journal.pone.0304027. eCollection 2024.

Abstract

Rhythms are the most natural cue for temporal anticipation because many sounds in our living environment have rhythmic structures. Humans have cortical mechanisms that can predict the arrival of the next sound based on rhythm and periodicity. Herein, we showed that temporal anticipation, based on the regularity of sound sequences, modulates peripheral auditory responses via efferent innervation. The medial olivocochlear reflex (MOCR), a sound-activated efferent feedback mechanism that controls outer hair cell motility, was inferred noninvasively by measuring the suppression of otoacoustic emissions (OAE). First, OAE suppression was compared between conditions in which sound sequences preceding the MOCR elicitor were presented at regular (predictable condition) or irregular (unpredictable condition) intervals. We found that OAE suppression in the predictable condition was stronger than that in the unpredictable condition. This implies that the MOCR is strengthened by the regularity of preceding sound sequences. In addition, to examine how many regularly presented preceding sounds are required to enhance the MOCR, we compared OAE suppression within stimulus sequences with 0-3 preceding tones. The OAE suppression was strengthened only when there were at least three regular preceding tones. This suggests that the MOCR was not automatically enhanced by a single stimulus presented immediately before the MOCR elicitor, but rather that it was enhanced by the regularity of the preceding sound sequences.

摘要

节奏是时间预期最自然的线索,因为我们生活环境中的许多声音都有节奏结构。人类拥有皮质机制,能够根据节奏和周期性预测下一个声音的到来。在此,我们表明,基于声音序列的规律性的时间预期通过传出神经支配调节外周听觉反应。通过测量耳声发射(OAE)的抑制来无创推断内侧橄榄耳蜗反射(MOCR),这是一种控制外毛细胞运动的声音激活传出反馈机制。首先,比较了在MOCR激发器之前的声音序列以规则(可预测条件)或不规则(不可预测条件)间隔呈现的条件下的OAE抑制。我们发现,可预测条件下的OAE抑制比不可预测条件下更强。这意味着MOCR通过先前声音序列的规律性得到加强。此外,为了研究需要多少个规则呈现的先前声音来增强MOCR,我们比较了刺激序列中包含0 - 3个先前音调时的OAE抑制。只有当至少有三个规则的先前音调时,OAE抑制才会增强。这表明MOCR不会被紧接在MOCR激发器之前呈现的单个刺激自动增强,而是被先前声音序列的规律性增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34d7/11253965/3555c37488d1/pone.0304027.g001.jpg

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