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Response pattern based on the amplitude of ear canal recorded cochlear microphonic waveforms across acoustic frequencies in normal hearing subjects

机译:基于耳道记录的耳蜗微音波形在正常听觉受试者中跨声频的振幅的响应模式

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摘要

Low-frequency otoacoustic emissions (OAEs) are often concealed by acoustic background noise such as those from a patient's breathing and from the environment during recording in clinics. When using electrocochleaography (ECochG or ECoG), such as cochlear microphonics (CMs), acoustic background noise do not contaminate the recordings. Our objective is to study the response pattern of CM waveforms (CMWs) to explore an alternative approach in assessing cochlear functions. In response to a 14-msec tone burst across several acoustic frequencies, CMWs were recorded at the ear canal from ten normal hearing subjects. A relatively long tone burst has a relatively narrow frequency band. The CMW amplitudes among different frequencies were compared. The CMW amplitudes among different frequencies were compared. Two features were observed in the response pattern of CMWs: the amplitude of CMWs decreased with an increase of stimulus frequency of the tone bursts; and such a decrease occurred at a faster rate at lower frequencies than at higher frequencies. Five factors as potential mechanisms for these features are proposed. Clinical applications such as hearing screening are discussed. Therefore, the response pattern of CMWs suggests that they may be used as an alternative to OAEs in the assessment of cochlear functions in the clinic, especially at low frequencies.
机译:低频耳声发射(OAE)通常被声学背景噪声掩盖,例如在诊所录制过程中来自患者呼吸和环境的噪声。当使用诸如耳蜗微音(CM)之类的电耳蜗描记法(ECochG或ECoG)时,声学背景噪声不会污染录音。我们的目标是研究CM波形(CMW)的响应模式,以探索评估耳蜗功能的另一种方法。为响应跨多个声频的14毫秒音调突发,从十名正常听力受试者的耳道记录了CMW。相对较长的音调脉冲串具有相对较窄的频带。比较了不同频率之间的CMW振幅。比较了不同频率之间的CMW振幅。在CMWs的响应模式中观察到两个特征:CMWs的幅度随音调脉冲频率的增加而降低; CMWs的幅度随着激励频率的增加而减小。并且这种降低在较低频率下比在较高频率下以更快的速率发生。提出了五个因素作为这些特征的潜在机制。讨论了听力筛查等临床应用。因此,CMWs的反应模式表明,在临床中,尤其是在低频下,CMWs可以替代OAEs评估耳蜗功能。

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