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Detection of binaural interaction in free-field evoked auditory brainstem responses by time-scale representations

机译:通过时标表示检测自由场诱发听性脑干反应中的双耳相互作用

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The so called β-wave of the binaural interaction component (BIC) in auditory brainstem responses (ABR) has been shown to be an objective measure for binaural interaction (BI). This component is the arithmetical difference between the sum of the monaurally evoked ABRs and the binaurally evoked ABR. Unfortunately, these neural responses are known to be very fragile and as a result the calculated BIC. An additional issue is, that the findings of this measurement are predominantly needed in people with hearing loss who may use hearing devices like hearing aids (HA) or cochlear implants (CI), thus they are not able to use headphones (like in conventional ABR measurements) during the detection of possible BI. This is a crucial problem, because it is known that factors like the interaural time delay (ITD) between the receiving ears are responsible for solving tasks like sound source localization or sound source separation, but specially designed measurements to coordinate the fitting of HAs or CIs with respect to BI are still missing. In this paper, we introduce a new measurement setup that is able to detect BI depending on different ITDs in free-field evoked responses by using the more reliable instantaneous phase in the time-scale representation. With this pilot study we are able to demonstrate a decreasing BI with an increasing ITD using the wavelet phase synchronization stability analysis in ten normal hearing subjects.
机译:听觉脑干反应(ABR)中双耳相互作用成分(BIC)的所谓β波已被证明是双耳相互作用(BI)的客观测量。该分量是单眼诱发的ABR和双眼诱发的ABR之和的算术差。不幸的是,已知这些神经反应非常脆弱,其结果是计算出的BIC。另一个问题是,可能会使用助听器(HA)或耳蜗植入物(CI)等助听器的听力丧失者最需要此测量结果,因此他们无法使用耳机(就像在传统的ABR中一样)测量)。这是一个至关重要的问题,因为众所周知,接收耳之间的耳间时间延迟(ITD)等因素可解决声源定位或声源分离等任务,但需要专门设计的测量来协调HA或CI的拟合关于BI仍然缺失。在本文中,我们介绍了一种新的测量设置,该测量设置可以通过在时标表示中使用更可靠的瞬时相位来根据自由场诱发响应中的不同ITD来检测BI。通过这项初步研究,我们可以使用小波相位同步稳定性分析在十名正常听力受试者中证明BI随ITD的增加而降低。

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