完整栗鼠耳蜗顶端柯蒂耳振动的调谐和时间。

Alberto Recio-Spinoso, John S Oghalai, Mario A Ruggero
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引用次数: 0

摘要

目的:本研究的目的是记录栗鼠完整耳蜗顶端柯蒂器官的声诱发振动,栗鼠的听力频率范围与人类相似:方法:使用 12 只成年麻醉龙猫,雌雄均可。使用光学相干断层扫描(OCT)对完整的柯蒂耳器(OoC)的声诱发振动进行测量。声刺激包括持续时间为 1 秒的单音。用 Telesto 光谱域 OCT 系统(Thorlabs GmbH,德国)和 ThorImage® OCT 5.4.2 版(Thorlabs GmbH,德国)记录 OoC 振动。使用 Matlab® R2020b 编写的特别程序对 ThorImage 软件的输出结果进行了进一步分析:在从 Hensen 细胞区延伸至基底膜(BM)附近的多个 OoC 点进行了记录。OCT 系统光轴与基底膜之间的测量角度约为 45°。在该实验条件下,不同 OoC 位置之间的延迟表明基底膜运动发生的时间早于其他位置。在所有 OoC 位置,声音诱发的振动在压缩率下与刺激水平呈非线性增长。咽鼓管振动的尖锐度随刺激水平和死亡而增加。等速曲线与频率的函数关系在500赫兹左右调谐良好,与具有类似特征频率的栗鼠听觉神经纤维的阈值调谐曲线非常相似:结论:在同一物种中,栗鼠耳蜗顶端对声音的非线性处理与耳蜗底部对声音的处理有很大不同。
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Tuning and Timing of Organ of Corti Vibrations at the Apex of the Intact Chinchilla Cochlea.

Purpose: The goal of this research was to record sound-evoked vibrations in the organ of Corti at the apex of the intact cochlea of the chinchilla, an animal with a frequency hearing range similar to that of humans.

Methods: Twelve adult anesthetized chinchillas of either sex were used. Measurements of sound-evoked vibrations of the intact organ of Corti (OoC) were performed using optical coherence tomography (OCT). Acoustic stimuli consisted of single tones of 1-s duration. OoC vibrations were recorded using a Telesto Spectral Domain OCT system (Thorlabs GmbH, Germany) and ThorImage® OCT version 5.4.2 (Thorlabs GmbH, Germany). Further analysis of the output of the ThorImage software was performed by ad hoc programs written using Matlab® R2020b.

Results: Recordings were performed at several OoC sites extending from the Hensen's cell region to the vicinity of the basilar membrane (BM). The measurement angle between the optical axis of the OCT system and the BM was approximately 45°. Under that experimental condition, delays among the different OoC locations indicate that BM motion occurs earlier than at other sites. At all OoC sites, sound-evoked vibrations grow nonlinearly with stimulus level at compressive rates. The sharpness of tuning of OoC vibrations increases with stimulus level and death. Iso-velocity curves as a function of frequency are well-tuned around 500 Hz and closely resemble threshold tuning curves of chinchilla auditory-nerve fibers with similar characteristic frequencies.

Conclusions: The nonlinear processing of sounds at the apex of the chinchilla cochlea differs significantly from the processing of sounds at the base of the cochlea in the same species.

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来源期刊
CiteScore
4.10
自引率
12.50%
发文量
57
审稿时长
6-12 weeks
期刊介绍: JARO is a peer-reviewed journal that publishes research findings from disciplines related to otolaryngology and communications sciences, including hearing, balance, speech and voice. JARO welcomes submissions describing experimental research that investigates the mechanisms underlying problems of basic and/or clinical significance. Authors are encouraged to familiarize themselves with the kinds of papers carried by JARO by looking at past issues. Clinical case studies and pharmaceutical screens are not likely to be considered unless they reveal underlying mechanisms. Methods papers are not encouraged unless they include significant new findings as well. Reviews will be published at the discretion of the editorial board; consult the editor-in-chief before submitting.
期刊最新文献
Evaluating the Correlation Between Stimulus Frequency Otoacoustic Emission Group Delays and Tuning Sharpness in a Cochlear Model. Tuning and Timing of Organ of Corti Vibrations at the Apex of the Intact Chinchilla Cochlea. Vital Dye Uptake of YO-PRO-1 and DASPEI Depends Upon Mechanoelectrical Transduction Function in Zebrafish Hair Cells. Investigating the Effect of Blurring and Focusing Current in Cochlear Implant Users with the Panoramic ECAP Method. Eric Daniel Young.
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