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本文引用的文献

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Middle ear muscle and medial olivocochlear activity inferred from individual human ears via cochlear potentials.通过耳蜗电位从个体人耳推断中耳肌肉和内侧橄榄耳蜗活动。
J Acoust Soc Am. 2023 Mar;153(3):1723. doi: 10.1121/10.0017604.
2
Minimum Detectable Differences in Electrocochleography Measurements: Bayesian-Based Predictions.电测听测量中的最小可检测差异:基于贝叶斯的预测。
J Assoc Res Otolaryngol. 2023 Apr;24(2):217-237. doi: 10.1007/s10162-023-00888-0. Epub 2023 Feb 16.
3
Medial Olivocochlear Reflex Effect on Cochlear Response in Humans: Elicitor Side and Level.人类蜗神经反应的内侧橄榄耳蜗反射效应:刺激侧和刺激强度。
J Am Acad Audiol. 2021 Jun;32(6):366-373. doi: 10.1055/s-0041-1728649. Epub 2021 Nov 3.
4
The role of the medial olivocochlear reflex in psychophysical masking and intensity resolution in humans: a review.人类中内侧橄榄耳蜗反射在心理物理掩蔽和强度分辨中的作用:综述。
J Neurophysiol. 2021 Jun 1;125(6):2279-2308. doi: 10.1152/jn.00672.2020. Epub 2021 Apr 28.
5
Medial olivocochlear reflex effects on amplitude growth functions of long- and short-latency components of click-evoked otoacoustic emissions in humans.人类短声诱发耳声发射的长潜伏期和短潜伏期成分的幅度增长函数的内侧橄榄耳蜗反射效应。
J Neurophysiol. 2021 May 1;125(5):1938-1953. doi: 10.1152/jn.00410.2020. Epub 2021 Feb 24.
6
Techniques for Obtaining High-quality Recordings in Electrocochleography.耳蜗电图中获取高质量记录的技术
Front Syst Neurosci. 2020 Apr 15;14:18. doi: 10.3389/fnsys.2020.00018. eCollection 2020.
7
Human medial olivocochlear reflex: Contralateral activation effect on low and high frequency cochlear response.人类内侧橄榄耳蜗反射:对低频和高频耳蜗反应的对侧激活效应。
Hear Res. 2020 Apr;389:107925. doi: 10.1016/j.heares.2020.107925. Epub 2020 Feb 15.
8
The Spatial Origins of Cochlear Amplification Assessed by Stimulus-Frequency Otoacoustic Emissions.刺激频率耳声发射评估的耳蜗放大的空间起源。
Biophys J. 2020 Mar 10;118(5):1183-1195. doi: 10.1016/j.bpj.2019.12.031. Epub 2020 Jan 3.
9
Cochlear Efferent Innervation Is Sparse in Humans and Decreases with Age.人类耳蜗传出神经支配稀疏,并随年龄增长而减少。
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10
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PLoS One. 2019 Jan 7;14(1):e0208939. doi: 10.1371/journal.pone.0208939. eCollection 2019.

人类蜗神经效应:应用于扫频音诱发耳蜗微音的统计检测方法。

Human Olivocochlear Effects: A Statistical Detection Approach Applied to the Cochlear Microphonic Evoked by Swept Tones.

机构信息

Department of Communication Sciences and Disorders, University of Iowa, Iowa City, IA, USA.

Department of Communication Sciences and Disorders, University of Utah, Salt Lake City, UT, USA.

出版信息

J Assoc Res Otolaryngol. 2024 Oct;25(5):451-475. doi: 10.1007/s10162-024-00956-z. Epub 2024 Jul 1.

DOI:10.1007/s10162-024-00956-z
PMID:38954166
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11527856/
Abstract

The human medial olivocochlear (MOC) reflex was assessed by observing the effects of contralateral acoustic stimulation (CAS) on the cochlear microphonic (CM) across a range of probe frequencies. A frequency-swept probe tone (125-4757 Hz, 90 dB SPL) was presented in two directions (up sweep and down sweep) to normal-hearing young adults. This study assessed MOC effects on the CM in individual participants using a statistical approach that calculated minimum detectable changes in magnitude and phase based on CM signal-to-noise ratio (SNR). Significant increases in CM magnitude, typically 1-2 dB in size, were observed for most participants from 354 to 1414 Hz, where the size and consistency of these effects depended on participant, probe frequency, sweep direction, and SNR. CAS-related phase lags were also observed, consistent with CM-based MOC studies in laboratory animals. Observed effects on CM magnitude and phase were in the opposite directions of reported effects on otoacoustic emissions (OAEs). OAEs are sensitive to changes in the motility of outer hair cells located near the peak region of the traveling wave, while the effects of CAS on the CM likely originate from MOC-related changes in the conductance of outer hair cells located in the basal tail of the traveling wave. Thus, MOC effects on the CM are complementary to those observed for OAEs.

摘要

人类内侧橄榄耳蜗(MOC)反射通过观察对侧声刺激(CAS)对一系列探测频率下耳蜗微音(CM)的影响来评估。频率扫描探针音(125-4757 Hz,90 dB SPL)以两种方向(上扫描和下扫描)呈现给正常听力的年轻成年人。本研究使用统计方法评估了个体参与者的 MOC 对 CM 的影响,该方法根据 CM 信噪比(SNR)计算了幅度和相位的最小可检测变化。对于大多数参与者,从 354 Hz 到 1414 Hz,观察到 CM 幅度的显著增加,通常为 1-2 dB,这些效果的大小和一致性取决于参与者、探测频率、扫描方向和 SNR。还观察到与 CAS 相关的相位滞后,与实验室动物的 CM 基 MOC 研究一致。观察到的 CM 幅度和相位的影响与报道的对耳声发射(OAE)的影响方向相反。OAE 对外毛细胞运动的变化敏感,这些细胞位于行波的峰值区域附近,而 CAS 对 CM 的影响可能源自行波基部尾端的 MOC 相关的外毛细胞电导变化。因此,MOC 对 CM 的影响与观察到的 OAE 互补。