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Age-Related Differences in Auditory Processing as Assessed by Amplitude-Modulation Following Responses in Quiet and in Noise

机译:在安静和噪音中通过幅度调制评估听觉处理中与年龄相关的差异

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摘要

Our knowledge of age-related changes in auditory processing in the central auditory system is limited, unlike the changes in the peripheral hearing organs which are more extensively studied. This study aims to further understanding of temporal processing in aging using non-invasive electrophysiological measurements in a rat model system. Amplitude modulation following responses (AMFRs) were assessed using sinusoidally amplitude modulated (SAM) tones presented to aged (92- to 95-weeks old) and young (9- to 12-weeks old) Fischer-344 rats. The modulation frequency and sound level were systematically varied, and the SAM stimuli were also presented simultaneously with wideband background noise at various levels. The overall shapes and cutoff frequencies of the AMFR temporal modulation transfer functions (tMTFs) were similar between young and aged animals. The fast Fourier transform (FFT) amplitudes of the aged animals were similar to the young in the 181–512 Hz modulation frequency range, but were significantly lower at most modulation frequencies above and below. There were no significant age-related differences in the nature of growth or FFT amplitudes with change in sound level at 256 and 1024 Hz modulation frequencies. The AMFR amplitudes were also not correlated with the ABR wave I or wave III amplitudes elicited for broadband click stimuli presented at the same sound level suggesting that sustained AMFR provide complementary information to phasic ABR responses. The FFT amplitudes varied significantly between young and aged animals for SAM stimuli in the presence of background noise, depending on the modulation frequency used and signal to noise ratio. The results show that the representation of temporally modulated stimuli is similar between young and aged animals in quiet listening conditions, but diverges substantially with the addition of background noise. This is consistent with a decrease in inhibition causing altered temporal processing with age.
机译:我们对中央听觉系统中听觉处理过程中与年龄相关的变化的认识是有限的,这与周围的听觉器官的变化不同,而后者已被广泛研究。这项研究旨在进一步利用大鼠模型系统中的非侵入性电生理测量方法来了解衰老过程中的时间过程。使用正弦振幅调制(SAM)音调评估了响应后的振幅调制(AMFR),这些音调适用于年龄较大(92至95周龄)和年轻(9至12周龄)Fischer-344大鼠。系统地改变了调制频率和声级,并且还同时显示了SAM刺激和各种级别的宽带背景噪声。幼小和成年动物的AMFR时间调制传递函数(tMTF)的总体形状和截止频率相似。在181-512 Hz调制频率范围内,成年动物的快速傅里叶变换(FFT)幅度与幼小的相似,但在高于或低于此频率的大多数调制频率下,其幅度均显着降低。在256和1024 Hz调制频率下,随着声级的变化,增长或FFT幅度的性质没有与年龄相关的显着差异。 AMFR幅度也与以相同声级呈现的宽带点击刺激引起的ABR I波或III波幅度不相关,这表明持续的AMFR为相位ABR反应提供了补充信息。在存在背景噪声的情况下,对于SAM刺激,幼年和成年动物之间的FFT幅度差异很大,这取决于所使用的调制频率和信噪​​比。结果表明,在安静的听觉条件下,年幼动物和年老动物的时间调制刺激的表现相似,但随着背景噪声的增加,其表现差异很大。这与抑制作用的降低是一致的,该抑制作用随着年龄的增长而改变了时间过程。

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