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Distortion product otoaocustic emission fine structure of symphony orchestra musicians

机译:交响乐团失真产物耳声发射的精细结构

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Otoacoustic emissions (OAE) are sounds produced by the healthy inner ear. They can be measured as low-level signals in the ear canal and are used to monitor the functioning of outer hair cells. Several studies indicate that OAE might be a more sensitive measure to detect early noise-induced haring losses than pure-tone audiometry. The distortion product otoacoustic emission (DPOAE) fine structure is obtained when the ear is stimulated by dual tone stimuli using a high frequency resolution. It is characterized by quasi-periodic variations across frequency, as it can be observed in the hearing threshold microstructure also. In this study DPOAE fine structures and hearing thresholds are obtained for symphony orchestra musicians both for left and right ears and before and after the orchestra rehearsal. DPOAE fine structures are analyzed with an automatic classification algorithm, which describes the ripple pattern by parameters. A dierence between left and right ears could be detected for the DPOAE level but not for the fine structure parameters. No dierence between the measures taken before and after exposure could be observed.
机译:耳声发射(OAE)是健康的内耳产生的声音。它们可以作为耳道中的低电平信号进行测量,并用于监视外毛细胞的功能。多项研究表明,与纯音测听法相比,OAE可能是检测早期噪声引起的野兔损失的更灵敏的措施。当使用高频分辨率通过双音刺激刺激耳朵时,可获得畸变产物耳声发射(DPOAE)的精细结构。它的特征是整个频率上的准周期变化,正如在听力阈值微结构中也可以观察到的那样。在这项研究中,DPOAE为左,右耳以及排练前后的交响乐团音乐家提供了良好的结构和听力阈值。使用自动分类算法分析DPOAE的精细结构,该算法通过参数描述波纹图案。对于DPOAE水平,可以检测到左右耳之间的差异,但对于精细结构参数,则不能检测到。在暴露前后所采取的措施之间没有差异。

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