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Age-related Shifts in Distortion Product Otoacoustic Emissions Peak-ratios and Amplitude Modulation Spectra

机译:失真产物耳声发射峰比和振幅调制谱的与年龄相关的变化

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摘要

Amplitude modulation (AM) is an important temporal cue for precise speech and complex sound recognition. However, functional decline of the auditory periphery as well as degradation of central auditory processing due to aging can reduce the salience and resolution of temporal cues. Age-related deficits in central temporal processing have previously been observed at more rapid AM frequencies and various AM depths. These centrally observed changes result from cochlear changes compounded with changes along the ascending auditory pathway. In fact, a decrease in ability to detect temporally modulated sounds accurately could originate from changes in cochlear filtering properties and in cochlear mechanics due to aging. Nonetheless, few studies have examined cochlear mechanisms in AM detection. To assess integrity of the mechanical properties of the auditory periphery, distortion product otoacoustic emissions (DPOAEs) are a tool commonly used in clinics and in research. In this study, we measured DPOAEs to reveal age-related changes in peak f2/f1 ratio and degradation in AM detection by basilar membrane vibration. Two tones (f1 and f2, f2>f1) at various f2/f1 ratios and simultaneous presentation of one AM and one pure tone were used as stimuli to evoke DPOAEs. In addition of observing reduced DPOAE amplitudes and steeper slopes in the input-output DPOAE functions, higher peak f2/f1 ratios and broader f2/f1 tuning were also observed in aged animals. Aged animals generally had lower distortion product (DP) and first sideband (SB 1) responses evoked by an f1 pure tone and an f2 AM tone, regardless of whether the AM frequency was 45 Hz or 128 Hz. SB 1 thresholds, which corresponds to the smallest stimulus AM depth that can induce cochlear vibrations at the DP generator locus, were higher in aged animals as well. The results suggest that age-related changes in peak f2/f1 ratio and AM detection by basilar membrane vibration are consistent with a reduction in endocochlear potential and reduced prestin activity but with preserved hair cell bundle function. SB 1 responses evoked by f2 AM/f1 pure tone with various AM depths could serve as an estimate for cochlear AM detection. The sidebands of DP could also serve as additional physiological cues for detection of AM in the presence of other tone(s), even at typical conversational levels in speech.
机译:调幅(AM)是精确语音和复杂声音识别的重要时间提示。但是,由于衰老导致听觉外围功能下降以及中央听觉处理能力下降会降低时间提示的显着性和分辨率。以前在较快的AM频率和各种AM深度观察到中央时态处理中与年龄有关的缺陷。这些集中观察到的变化是由于耳蜗的变化与沿听觉通路的变化而复合引起的。实际上,由于老化,耳蜗过滤特性和耳蜗力学的变化可能会导致准确检测时间调制声音的能力下降。但是,很少有研究检查AM检测中的耳蜗机制。为了评估听觉外围机械特性的完整性,畸变产物耳声发射(DPOAE)是临床和研究中常用的工具。在这项研究中,我们测量了DPOAE,以揭示与年龄相关的峰f2 / f1比率变化以及基底膜振动引起的AM检测降解。使用各种f2 / f1比率的两个音调(f1和f2,f2> f1)并同时呈现一个AM和一个纯音作为刺激来唤起DPOAE。除了观察到降低的DPOAE振幅和输入-输出DPOAE功能的更陡峭的斜率外,在老年动物中还观察到更高的峰值f2 / f1比和更大的f2 / f1调整。不论AM频率是45 Hz还是128 Hz,通常由f1纯音和f2 AM音调引起的老年动物的失真产物(DP)和第一边带(SB 1)响应较低。 SB 1阈值也相应于成年动物较高,该阈值对应于可在DP发生器位置引起耳蜗振动的最小刺激AM深度。结果表明,与年龄相关的峰值f2 / f1比值变化和基底膜振动检测AM与降低耳蜗内电位和降低prestin活性相一致,但保留了毛细胞束功能。由f2 AM / f1纯音引起的SB 1响应具有不同的AM深度,可以用作耳蜗AM检测的估计。 DP的边带还可以用作其他生理线索,以在存在其他音调时甚至在语音的典型对话水平下检测AM。

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